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Zygogramma bicolorata (Coleoptera: Chrysomelidae): an exotic biocontrol agent of the noxious weed, Parthenium hysterophorus (Asteraceae)

Published online by Cambridge University Press:  15 February 2024

Uzma Afaq*
Affiliation:
Department of Biosciences, Faculty of Science, Integral University, Lucknow, Uttar Pradesh UP-226026, India
Gyanendra Kumar
Affiliation:
Department of Zoology, National P.G. College, Lucknow, Uttar Pradesh UP-226001, India
Arshi Siddiqui
Affiliation:
Department of Biosciences, Faculty of Science, Integral University, Lucknow, Uttar Pradesh UP-226026, India
Omkar
Affiliation:
Ladybird Research Laboratory, Department of Zoology, University of Lucknow, Uttar Pradesh UP-226007, India
*
Corresponding author: Uzma Afaq; Emails: uzmaafaq89@gmail.com; uzmaafaq@iul.ac.in

Abstract

Parthenium hysterophorus Linnaeus (Asteraceae), commonly known as “congress grass,” is among the 10 worst weeds of India and is considered one of the world’s 100 most harmful invasive species. This species has been introduced accidentally into several countries, including India, and is a major agricultural and rangeland weed in more than 45 countries. It affects crop production, suppressing biodiversity, crop yields, the health of farm animals and human beings, and local and regional economies. Biological control has been found to be a cost-effective management strategy to control the weed, with the leaf beetle, Zygogramma bicolorata Pallister (Coleoptera: Chrysomelidae), considered an effective and safe biocontrol agent. Several studies have investigated the beetle’s biology, reproduction, and other life attributes. This review compiles the existing information about Z. bicolorata biology, growth, development, reproduction, food, and host specificity, and the effects of abiotic and biotic stressors on the insect’s life attributes. We anticipate that this review will helpful for improving strategies for this bioagent’s swift mass rearing and for developing classical biological control design for Parthenium weed.

Type
Review
Copyright
© The Author(s), 2024. Published by Cambridge University Press on behalf of Entomological Society of Canada

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Footnotes

Subject Editor: Michele Tseng

References

Abels, T. 2018. Zygogramma bicolorata biology and its impact on the alien invasive weed Parthenium hysterophorus in South Africa. M.Sc. thesis. University of the Witwatersrand, Johannesburg, South Africa.Google Scholar
Afaq, U. 2012. Life history traits of Parthenium beetle, Zygogramma bicolorata Pallister (Coleoptera: Chrysomelidae). Ph.D. thesis. University of Lucknow, Lucknow, India.Google Scholar
Afaq, U. and Omkar 2016. Endogenously entrained life events of Parthenium beetle, Zygogramma bicolorata Pallister (Coleoptera: Chrysomelidae). Biological Rhythm Research, 47: 885896.CrossRefGoogle Scholar
Afaq, U. and Omkar. 2017a. Prolonged copula duration: an alternative male tactic to amplify sperm transfer, reproductive attributes and paternity outcomes in the Parthenium beetle, Zygogramma bicolorata Pallister. Entomologia Experimentalis et Applicata, 164: 4553.CrossRefGoogle Scholar
Afaq, U. and Omkar. 2017b. Polygyny influences the fitness of Parthenium beetle, Zygogramma bicolorata Pallister. Journal of Asia-Pacific Entomology, 20: 215219.CrossRefGoogle Scholar
Afaq, U., Kumar, G., and Omkar. 2021. Is developmental rate polymorphism constant? Influence of temperature on the occurrence and constancy of slow and fast development in Zygogramma bicolorata Pallister (Coleoptera: Chrysomelidae). Journal of Thermal Biology, 100: 103043. https://doi.org/10.1016/j.jtherbio.2021.103043.CrossRefGoogle Scholar
Afaq, U., Kumar, G., and Omkar. 2022. Optimal ovipositional behaviour of Parthenium beetle, Zygogramma bicolorata Pallister (Coleoptera: Chrysomelidae). Current Science, 122: 11931198.CrossRefGoogle Scholar
Aherkar, S.K., Kulkarni, U.S., and Kale, S.N. 2014. Incidence of Zygogramma bicolorata on Xanthium, Indian Journal of Asia-Pacific Entomology, 76: 253254.Google Scholar
Alcock, J. 1994. Postinsemination associations between males and females in insects: the mate guarding hypothesis. Annual Review of Entomology, 39: 121.CrossRefGoogle Scholar
Annadurai, R.S. 1989. Reproductive potential in terms of quantitative food utilization of Zygogramma bicolorata (Coleoptera: Chrysomelidae) on Parthenium hysterophorus (Asteraceae). In 7th International Symposium on the biological control of Weeds. Rome, Italy. Pp. 385–394.Google Scholar
Arthanari, P.M., Prabhakaran, N.K., and Chinnusamy, C. 2018. Feeding potential of Zygogramma bicolorata on Parthenium hysterophorus during different months at western zone of Tamil Nadu. Journal of Entomology and Zoology Studies, 6: 702704.Google Scholar
Bajracharya, A., Thapa, R., Bahadur, K.C.G., Pradhan, S., and Ranjit, J. 2021. Evaluation of host-specificity of Zygogramma bicolorata Pallister (Coleoptera: Chrysomelidae) for the biological control of Parthenium hysterophorus L. (Asteraceae: Heliantheae) in Nepal. Journal of Agriculture and Natural Resources, 4: 2941.CrossRefGoogle Scholar
Bajwa, A.A., Chauhan, B.S., Farooq, M., Shabbir, A., and Adkins, S.W. 2016. What do we really know about alien plant invasion? A review of the invasion mechanism of one of the world’s worst weeds. Planta, 244: 3957.CrossRefGoogle ScholarPubMed
Beck, S.D. 1980. Insect photoperiodism. Academic Press, New York, New York, United States of America. Pp. 387.Google Scholar
Bernays, E.A. and Chapman, R.F. 1994. Host-plant selection by phytophagous insects. Chapman and Hall, New York, New York, United States of America. Pp. 95–312.Google Scholar
Bhaisare, L.Y. and Chaudhary, D.D. 2023. Mate guarding behaviour in response to temperature in Parthenium beetle Zygogramma bicolorata Pallister. Indian Journal of Entomology, 1–6. https://doi.org/10.55446/IJE.2023.1511.CrossRefGoogle Scholar
Bhaisare, L.Y., Paraste, S., Kaushik, S., Chaudhary, D.D., Al-Misned, F., Mahboob, S., et al. 2021. Reproductive success in Zygogramma bicolorata: a role of post-insemination association of male and female. Saudi Journal of Biological Sciences, 28: 15391543.CrossRefGoogle ScholarPubMed
Bhan, V.M., Kauraw, L.P., and Chile, A. 1999. Biological suppression of weeds with pathogens. In Biological suppression of plant diseases, phytoparasitic nematodes and weeds. Edited by S.P. Singh and S.S. Hussaini. Project Directorate of Biological Control, Bangalore, India. Pp. 192–210.Google Scholar
Bhatti, A.A., Tripathi, N.K., and Khajuria, M. 2017. First report on karyotypic and morphometric analysis of a defoliator beetle, Zygogramma bicolorata (Coleoptera: Chrysomelidae), from Jammu region (J&K), India. Nucleus, 60: 3336.CrossRefGoogle Scholar
Bhosle, A.B., Shetgar, S.S., Jadhav, M.S., and Gaikwad, B.B. 2014. Biology of Zygogramma bicolorata (Pallister) on Parthenium hysterophorus (Linnaeus). Journal of Entomological Research, 38: 311314.Google Scholar
Bhumannavar, B.S. and Balasubramanian, C. 1998. Food consumption and utilization by the Mexican beetle, Zygogramma bicolorata Pallister (Coleoptera: Chrysomelidae), on Parthenium hysterophorus Linnaeus. Journal of Biological Control, 12: 1923.Google Scholar
Bhusal, D.R., Ghimire, K.C., Patel, P., Bishta, M., Upadhyaya, R., and Kumar, B. 2020. Temperature and altitude modulate feeding attributes of Mexican beetle, Zygogramma bicolorata Pallister, on Parthenium hysterophorus . Journal of Thermal Biology, 89: 102540. https://doi.org/10.1016/j.jtherbio.2020.102540.CrossRefGoogle ScholarPubMed
Bilashini, Y., Lokeshwari, R.K., Singh, T.K., and Gautam, R.D. 2011. Host range of Zygogramma bicolorata . Annals of Plant Protection Sciences, 19: 507508.Google Scholar
Bissoondath, C.J. and Wiklund, C. 1996. Effect of male mating history and body size on ejaculate size and quality in two polyandrous butterflies, Pieris napi and Pieris rapae (Lepidoptera: Pieridae). Functional Ecology, 10: 457464.CrossRefGoogle Scholar
Braga Gonçalves, I., Mobley, K.B., Ahnesjo, I., Sagebakken, G., Jones, A.G., and Kvarnemo, C. 2010. Reproductive compensation in broad-nosed pipefish females. Proceedings of the Royal Society B: Biological Sciences, 277: 15811587.Google Scholar
Chaudhary, D.D., Mishra, G., and Omkar. 2015. Prolonged mating in a ladybird, Menochilus sexmaculatus: a mate guarding mechanism? Journal of Asia Pacific Entomology, 18: 453458.CrossRefGoogle Scholar
Chauhan, B.S. 2020. Grand challenges in weed management. Frontiers in Agronomy, 1: 13.CrossRefGoogle Scholar
Chidawanyika, F., Nyamukondiwa, C., Strathie, L.S., and Fisher, K. 2017. Effects of thermal regimes, starvation and age on heat tolerance of the Parthenium beetle, Zygogramma bicolorata (Coleoptera: Chrysomelidae), following dynamic and static protocols. PLOS One, 12: e0169371. https://doi.org/10.1371/journal.pone.0169371.CrossRefGoogle ScholarPubMed
Cowie, B.W., Strathie, L.W., Goodall, J.M., Venter, N., Witkowski, E.T., and Byrne, M.J. 2019. Does host plant quality constrain the performance of the Parthenium beetle, Zygogramma bicolorata? Biological Control, 139: 104078.CrossRefGoogle Scholar
Cowie, B.W., Witkowski, E.T., Byrne, M.J., Strathie, L.W., Goodall, J.M., and Venter, N. 2018. Physiological response of Parthenium hysterophorus to defoliation by the leaf-feeding beetle Zygogramma bicolorata . Biological Control, 117: 3542.CrossRefGoogle Scholar
Darwin, C. 1874. The descent of man, and selection in relation to sex. Second edition. Appleton, New York, New York, United States of America.CrossRefGoogle Scholar
Dhileepan, K. 2003. Seasonal variation in the effectiveness of leaf-feeding beetle Zygogramma bicolorata (Coleoptera: Curculionidae) and stem-galling moth Epiblema strenuana (Lepidoptera: Tortricidae) as biocontrol agents on the weed Parthenium hysterophorus (Asteraceae). Bulletin of Entomological Research, 93: 393401.CrossRefGoogle Scholar
Dhileepan, K. 2007. Biological control of Parthenium (Parthenium hysterophorus) in Australian rangeland translates to improved grass production. Weed Science, 55: 497501.CrossRefGoogle Scholar
Dhileepan, K., Callander, J., Shi, B., and Osunkoya, O.O. 2018. Biological control of Parthenium (Parthenium hysterophorus): the Australian experience. Biocontrol Science and Technology, 28: 970988.CrossRefGoogle Scholar
Dhileepan, K. and McFadyen, R.C. 2012. Parthenium hysterophorus L. – Parthenium. In Biological control of weeds in Australia. Edited by M.H. Julien, R.E. McFadyen, and J. Cullen. CSIRO Publishing, Clayton, Australia. Pp. 448–462.Google Scholar
Dhileepan, K. and McFadyen, R.E. 1997. Biological control of Parthenium in Australia: progress and prospects. In First international conference on Parthenium management. Edited by M. Mahadeveppa and V.C. Patil. University of Agricultural Sciences, Dharwad, India. Pp. 40–44.Google Scholar
Dhileepan, K. and Senaratne, K.A.D. 2009. How widespread is Parthenium hysterophorus and its biological control agent Zygogramma bicolorata in south Asia? Weed Research, 49: 557562.CrossRefGoogle Scholar
Dhileepan, K., Setter, S.D., and McFadyen, R.E. 2000b. Impact of defoliation by the biocontrol agent Zygogramma bicolorata (Coleoptera: Chrysomelidae) on the weed Parthenium hysterophorus (Asteraceae) in Australia. Biological Control, 45: 501512.Google Scholar
Dhileepan, K., Setter, S.D., and McFadyen, R.E.C. 2000a. Response of the weed Parthenium hysterophorus (Asteraceae) to defoliation by the introduced biocontrol agent, Zygogramma bicolorata (Coleoptera: Chrysomelidae). Biological Control, 19: 916.CrossRefGoogle Scholar
Dhileepan, K. and Strathie, L. 2009. Parthenium hysterophorus. In Weed biological control with arthropods in the tropics: towards sustainability. Edited by R. Muniappan, D.V.P. Reddy, and A. Raman. Cambridge University Press, Cambridge, United Kingdom. Pp. 272–316.Google Scholar
Dhiman, S.C. and Bhargava, M.L. 2005a. Biology and population dynamics of Zygogramma bicolora P., a biocontrol agent of Parthenium hysterophorus L. Journal of Applied Zoology Research, 16: 4143.Google Scholar
Dhiman, S.C. and Bhargava, M.L. 2005b. Seasonal occurrence and biocontrol efficacy of Zygogramma bicolorata Pallister (Coleoptera: Chrysomelidae) on Parthenium hysterophorus . Annals of Plant Protection Sciences, 13: 8184.Google Scholar
Dolai, A.K., Ghosh, P., Bhowmick, M.K., Ghosh, R.K., Bandyopadhyay, P., Hembram, A.K., and Das, A. 2016. Suitability of Mexican beetle (Zygogramma bicolorata) for the management of Parthenium hysterophorus, as influenced by weather parameters in West Bengal. International Journal of Biological Engineering and Agricultural Science, 2: 449452.Google Scholar
Dubey, P., Ray, P., and Pandey, A.K. 2010. First record of entomopathogen Beauveria bassiana (bals.-criv.) vuill. on Zygogramma bicolorata Pallister, a biocontrol agent of Parthenium hysterophorus L. Journal of Plant Protection Research, 50: 5355.CrossRefGoogle Scholar
Fazil, H., Ansari, M.S., Mukesh, K., Muslim, M., Bhadauriya, A.S., Tanwar, A.K., and Ahmad, S. 2018. Diapause regulation in Zygogramma bicolorata (Coleoptera: Chrysomelidae), a biocontrol agent of Parthenium hysterophorus. International Journal of Tropical Insect Science, 38: 145158.Google Scholar
Fugere, V., Hebert, M.P., da Costa, N.B., Xu, C.C.Y., Barrett, R.D.H., Beisner, B.E., et al. 2020. Community rescue in experimental phytoplankton communities facing severe herbicide pollution. Nature Ecology and Evolution, 4: 578588.CrossRefGoogle ScholarPubMed
Gautam, R.D., Khan, Md.A., and Gautam, C.P.M. 2007. Population dynamics of Mexican beetle Zygogramma bicolorata Pallister. Annals of Plant Protection Sciences, 15: 325328.Google Scholar
Gautam, R.D., Samyal, A., and Khan, M.A. 2005. Changing status of diapause in Zygogramma bicolorata Pallister in North India. Annals of Plant Protection Sciences, 13: 343346.Google Scholar
Gharde, Y., Sushilkumar, and Sharma, A.R. 2019. Exploring models to predict the establishment of the leaf-feeding beetle Zygogramma bicolorata (Coleoptera: Chrysomelidae) for the management of Parthenium hysterophorus (Asteraceae: Heliantheae) in India. Crop Protection, 122: 5762.CrossRefGoogle Scholar
Gharde, Y., Singh, P.K., Gupta, R.P., and Gupta, P.K. 2018. Assessment of yield and economic losses in agriculture due to weeds in India. Crop Protection, 107: 1218.CrossRefGoogle Scholar
Gupta, R.K., Bali, K., and Khan, M.S. 2002. Biological war against congress grass in J&K. Popular Science, 10: 2833.Google Scholar
Gupta, R.K., Bali, K., Khan, M.S., Monobrulla, Md., and Bhagat, R.M. 2004. Predatory bugs of Zygogramma bicolorata: an exotic beetle or biological suppression of Parthenium hysterophorus L. Current Science, 87: 10051010.Google Scholar
Gupta, R.K., Gupta, S., Balia, K., and Srivastava, K. 2010. Enhancing bio-suppression of Parthenium hysterophorus L.: diapause in Zygogramma bicolorata Pallister and its manipulation through insulin-like peptides (ILPs). Journal of Asia-Pacific Entomology, 13: 303308.CrossRefGoogle Scholar
Halliday, T. 1983. Do frogs and toads choose their mates? Nature, 306: 226227.CrossRefGoogle Scholar
Harshana, A. 2021a. New record on natural enemies of the Mexican beetle, Zygogramma bicolorata . Indian Journal of Entomology, 83: 4850 CrossRefGoogle Scholar
Harshana, A. 2021b. Observations on Mexican beetle Zygogramma bicolorata with new records of its predation. Indian Journal of Entomology, 83: e20309. https://doi.org/10.5958/0974-8172.2020.00243.6.CrossRefGoogle Scholar
Hasan, F. 2015. Bionomics of Zygogramma bicolorata Pallister on Parthenium hysterophorus (Linn.). Ph.D. thesis. Muslim University, Aligarh, India.Google Scholar
Hasan, F., Al-Ghanim, K.A., Al-Misned, F., and Mahboob, S. 2020a. Does Zygogramma bicolorata Pallister really affects the growth, density and reproductive performance of Parthenium hysterophorus L.? Saudi Journal of Biological Sciences, 27: 18711878.CrossRefGoogle ScholarPubMed
Hasan, F. and Ansari, M.S. 2016a. Temperature-dependent development and demography of Zygogramma bicolorata (Coleoptera: Chrysomelidae) on Parthenium hysterophorus . Annals of Applied Biology, 168: 8192.CrossRefGoogle Scholar
Hasan, F. and Ansari, M.S. 2016b. Factors responsible for stage-specific mortality and sex ratio adjustment in Zygogramma bicolorata Pallister on Parthenium in field conditions. Archives of Phytopathology and Plant Protection, 48: 1720.Google Scholar
Hasan, F. and Ansari, M.S. 2016c. Ecotoxicological hazards of herbicides on biological attributes of Zygogramma bicolorata Pallister (Coleoptera: Chrysomelidae). Chemosphere, 154: 398407.CrossRefGoogle ScholarPubMed
Hasan, F. and Ansari, M.S. 2017. Lethal and sub-lethal effects of insecticides on the biological attributes of Zygogramma bicolorata Pallister (Coleoptera: Chrysomelidae): a biocontrol agent of Parthenium hysterophorus L. Neotropical Entomology, 46: 473486.CrossRefGoogle Scholar
Hasan, F., Ansari, M.S., Dhillon, M.K., Muslim, M., Bhadauriya, A.S., Tanwar, A.K., and Ahmad, S. 2018. Diapause regulation in Zygogramma bicolorata (Coleoptera: Chrysomelidae), a biocontrol agent of Parthenium hysterophorus . International Journal of Tropical Insect Science, 38: 145158.CrossRefGoogle Scholar
Hasan, F., Mahboob, S., Al-Ghanim, K.A., Al-Misned, F., Dhillon, M.K., and Manzoor, U. 2020b. Ecotoxicity of neonicotinoids and diamides on population growth performance of Zygogramma bicolorata (Coleoptera: Chrysomelidae). Ecotoxicology and Environmental Safety, 203: 110998.CrossRefGoogle ScholarPubMed
Hassell, M.P. 1978. The dynamics of arthropod predator prey systems. Monographs in Population Biology, 13: 237.Google Scholar
Heisler, L., Andersson, M.B., Arnold, S.J., Boake, C.R., Borgia, G., Hausfater, G., et al. 1987. The evolution of mating preferences and sexually selected traits: group report. In Sexual selection: testing the alternatives. Edited by J.W. Bradbury and M.B. Andersson. Wiley, Chichester, United Kingdom. Pp. 96118.Google Scholar
Helinski, M.E.H. and Harrington, L.C. 2011. Male mating history and body size influence female fecundity and longevity of the dengue vector Aedes aegypti . Journal of Medical Entomology, 48: 202211.CrossRefGoogle ScholarPubMed
Hodek, I. and Honek, A. 1996. Ecology of Coccinellidae. Kluwer Academic Publishers, Dordrecht, The Netherlands. 464 pp.CrossRefGoogle Scholar
Honek, A. 1993. Intraspecific variation in body size and fecundity in insects: a general relationship. Oikos, 66: 483492.CrossRefGoogle Scholar
Hrabar, H., Hattas, D., and Du Toit, J.T. 2009. Intraspecific host preferences of Mopane moth (Imbrasia belina) in Mopane (Colophospermum mopane) woodland. African Zoology, 44: 131140.CrossRefGoogle Scholar
Indian Council of Forestry Research and Education. 2020. A handbook on invasive species. Indian Council of Forestry Research and Education, Dehradun, India.Google Scholar
Jain, V., Jaya, T., Veeru, P., and Kishor, M.P. 2019. Appraisal and perceptivity of proteins purified from Zygogramma bicolorata (Coleoptera: Chrysomelidae) against pathogens engendering mycotic infection. Applied Biology Research, 21: 192199.CrossRefGoogle Scholar
Jain, V., Mishra, P.K., Mishra, M., and Parakash, V. 2021. Constitutive expression and discovery of antimicrobial peptides in Zygogramma bicolorata (Coleoptera: Chrysomelidae). Proteins: Structure, Function, and Bioinformatics, 90: 465475. https://doi.org/10.1002/prot.26239.CrossRefGoogle ScholarPubMed
Jain, V., Tiwari, J., Ratre, Y.K., Mishra, P.K., Prakash, V., and Patra, P.K. 2017. Mass rearing and establishment of Zygogramma bicolorata Pallister (Coleoptera: Chrysomelidae): a Mexican beetle. Life Science Bulletin, 14: 177180.Google Scholar
Jaiswal, S.K. and Ganguli, J. 2020. Life cycle details and biometrics of Zygogramma bicolorata Pallister (Coleoptera: Chrysomelidae) on Parthenium hysterophorus in Raipur, Chhattisgarh. Journal of Entomology and Zoology Studies, 8: 20382042.Google Scholar
Jasinskas, A., Steponavicius, D., Sniauka, P., and Zinkevicius, R. 2015. Weed control by chemical and mechanical means. In Weed biology and control. Edited by V. Pilipavicius. https://doi.org/10.5772/60002 CrossRefGoogle Scholar
Jayanth, K.P. and Bali, G. 1992. Estimation of number of generations of the Mexican beetle Zygogramma bicolorata Pallister (Coleoptera: Chrysomelidae) by measurement of thermal units. Journal of the Entomological Research Society, 16: 273276.Google Scholar
Jayanth, K.P. and Bali, G. 1993a. Biological studies on Zygogramma bicolorata Pallister (Coleoptera: Chrysomelidae), a biocontrol agent of Parthenium hysterophorus L. (Asteraceae). Biological Control, 7: 9398.Google Scholar
Jayanth, K.P. and Bali, G. 1993b. Diapause behaviour of Zygogramma bicolorata (Coleoptera: Chrysomelidae), a biocontrol agent of Parthenium hysterophorus in Bangalore, India. Bulletin of Entomological Research, 83: 383388.CrossRefGoogle Scholar
Jayanth, K.P. and Bali, G. 1993c. Temperature tolerance of Zygogramma bicolorata (Coleoptera: Chrysomelidae) introduced for biological control of Parthenium hysterophorus (Asteraceae) in India. Journal of the Entomological Research Society, 17: 2734.Google Scholar
Jayanth, K.P. and Bali, G. 1994. Biological control of Parthenium by the beetle Zygogramma bicolorata in India. FAO Plant Protection Bulletin, 42: 207213.Google Scholar
Jayanth, K.P. and Bali, G. 1996. Effect of continuous laboratory rearing on the fecundity, longevity and sex ratio of the Parthenium beetle, Zygogramma bicolorata Pallister (Coleoptera: Chrysomelidae). Journal of Entomological Research, 20: 151156.Google Scholar
Jayanth, K.P. and Nagarkatti, S. 1987. Investigation on the host-specificity and damage potential of Zygogramma bicolorata Pallister (Coleoptera: Chrysomelidae) introduced into India for the biological control of Parthenium hysterophorus. Entomon, 12: 141–145.Google Scholar
Jayanth, K.P., Sukhada, M., Asokan, R., and Visalakshy, P.N.G. 1993. Parthenium pollen–induced feeding by Zygogramma bicolorata (Coleoptera: Chrysomelidae) on sunflower (Helianthus annuus) (Compositae). Bulletin of Entomological Research, 83: 5955–98.CrossRefGoogle Scholar
Jayanth, K.P., Visalakshy, G.P.N., Ghosh, S.K., and Chaudhary, M. 1996. An Indigenous parasitoid on the Parthenium beetle Zygogramma bicolorata. Insect Environment, 2: 6768.Google Scholar
Jayanth, K.P. and Visalakshy, P.N.G. 1994a. Dispersal of the Parthenium beetle Zygogramma bicolorata (Chrysomelidae) in India. Biocontrol Science and Technology, 4: 363365.CrossRefGoogle Scholar
Jayanth, K.P. and Visalakshy, P.N.G. 1994b. Field evaluation of sunflower varieties for susceptibility to the Parthenium beetle Zygogramma bicolorata in India. Journal of Biological Control, 8: 4852.Google Scholar
Jayanth, K.P. and Visalakshy, P.N.G. 1996. Succession of vegetation after suppression of Parthenium weed by Zygogramma bicolorata in Bangalore. Biological Agriculture & Horticulture, 12: 303309.CrossRefGoogle Scholar
Jayanth, K.P., Visalakshy, P.N.G., Ghosh, S.K., and Chaudhary, M. 1997. Feasibility of biological control of Parthenium hysterophorus by Zygogramma bicolorata in the light of the controversy due to its feeding on sunflower. In First International Conference on Parthenium Management, University of Agricultural Sciences, Dharwad, India. Edited by M. Mahadeveppa and V.C. Patil. Pp. 45–51.Google Scholar
Kanagwa, W., Kilewa, R., and Treydte, A.C. 2020. Effectiveness of Zygogramma bicolorata as a biocontrol agent against Parthenium hysterophorus in Arusha, Tanzania. Biocontrol Science and Technology, 30: 806817.CrossRefGoogle Scholar
King, H. 2008. Thermal physiology and predicted distribution of Zygogramma bicolorata (Chrysomelidae), a promising agent for the biological control of the invasive weed Parthenium hysterophorus in South Africa. M.Sc. thesis. University of KwaZulu-Natal, South Africa.Google Scholar
Kirkpatrick, M. 1982. Sexual selection and the evolution of female choice. Evolution, 36: 112.CrossRefGoogle ScholarPubMed
Kour, P. and Shenhmar, M. 2008. Biology of Zygogramma bicolorata Pallister on Parthenium hysterophorus (Linnaeus). Journal of Insect Science, 21: 139145.Google Scholar
Kulkarni, K.A., Kulkarni, N.S., Santhoshkumar, G.H., and Lingappa, S. 2000. Biology of Zygogramma bicolorata from two locations (in Northern Karnataka, India). Insect Environment, 5: 184.Google Scholar
Kulshretha, A.K. and Kumar, M. 2013. Impact of weather parameters on incidence of chrysomelid beetles (Zygogramma bicolorata Pallister) in gajar-ghas (Parthenium hysterophorus Linn.). Asian Journal of Environmental Science, 8: 143144.Google Scholar
Kumar, A., Singh, R., Prasad, C.S., Tiwari, G.N., and Kumar, S. 2017. New records of predatory coccinellids beetles (Coccinellidae: Coleoptera) in the western plain zone of Uttar Pradesh. Journal of Entomology and Zoology Studies, 5: 11401147.Google Scholar
Kumar, A.R.V. 1992. Is the Mexican beetle Zygogramma bicolorata (Coleoptera: Chrysomelidae) expanding its host range? Current Science, 63: 729730.Google Scholar
Kumar, B., Bhusal, D.R., Ghimire, K.C., Chaudhary, D.D., Kumar, A., and Kumar, D. 2021a. Temperature and altitude modulate energy reserves of Zygogramma bicolorata Pallister (Coleoptera: Chrysomelidae) on Parthenium hysterophorus. Biochemical and Cellular Archives, 21: 2975–2978.Google Scholar
Kumar, L., Sushilkumar, Choudhary, J.S., and Kumar, B. 2021b. Host plant-mediated effects of elevated CO2 and temperature on growth and developmental parameters of Zygogramma bicolorata (Coleoptera: Chrysomelidae). Bulletin of Entomological Research, 111: 111119. https://doi.org/10.1017/S0007485320000395.CrossRefGoogle ScholarPubMed
Kumar, S. 2000. Impact of the introduced Mexican beetle Zygogramma bicolorata on the suppression of Parthenium hysterophorus: a case study (367). III. International Weed Science Congress, Foz do Iguassu, Brazil. Pp. 183.Google Scholar
Kumar, S. 2005. Biological control of Parthenium through Zygogramma bicolorata. NRCWS Technical Bulletin 5. National Centre for Weed Science, ICAR – Directorate of Weed Research, Maharajpur, Jabalpur, India. 89 pp.Google Scholar
Lande, R. 1981. Models of speciation by sexual selection on polygenic traits. Proceedings of the National Academy of Sciences, 78: 37213725.Google Scholar
Mahadevappa, M. 2005. Methods of Parthenium control. International Parthenium Research News Group. 9 pp.Google Scholar
Maheswaran, S., Sathesh, S., Gayathri, M., Bhaarathei, E.D., and Kavin, D. 2020. Design and development of chemical-free green embedded weeder for row-based crops. Journal of Green Engineering, 10: 2103–2020.Google Scholar
Malkapure, A.P. 2012. Feeding preference on Zygogramma bicolorata Pallister on different hosts. Crop Research (Hisar, India), 44: 418422.Google Scholar
Manjunath, T.M. 2010. Biological control of the wasteland weed, Parthenium hysterophorus, in India: an overview. Third International Conference on Parthenium. IARI, New Delhi, India. Pp. 10.Google Scholar
Mattingly, W.B. and Flory, S.L. 2011. Host plant architecture affects oviposition site selection of periodical cicadas. Oikos, 120: 10831091. https://doi.org/10.1111/j.1600-0706.2010.18994.x.CrossRefGoogle Scholar
Maynard Smith, J. 1987. Sexual selection: a classification of models. In Sexual selection: testing the alternatives. Edited by J.W. Bradbury and M.B. Andersson. Wiley, New York, New York, United States of America. Pp. 920.Google Scholar
Mayntz, D., Raubenheimer, D., Salomon, M., Toft, S., and Simpson, S.J. 2005. Nutrient-specific foraging in invertebrate predators. Science, 307: 111113.CrossRefGoogle ScholarPubMed
McClay, A.S. 1980. Preliminary report on the biology and host-specificity of Zygogramma sp. near Malvae Star. (Col., Chrysomelidae), a potential biocontrol agent for Parthenium hysterophorus L. Mimeographed report. Commonwealth Institute of Biological Control, Mexico.Google Scholar
McClay, A.S. 1985. Biological control agents for Parthenium hysterophorus L. from Mexico. In Proceedings of VI International symposium on biological control of weeds. Edited by E.S. Delfosse. Agriculture Canada, Ottawa, Canada. Pp. 771–778.Google Scholar
McConnachie, A.J. 2015. Host range and risk assessment of Zygogramma bicolorata, a defoliating agent released in South Africa for the biological control of Parthenium hysterophorus . Biocontrol Science and Technology, 25: 975991.CrossRefGoogle Scholar
McFadyen, R.E. and McClay, A.S. 1981. Two new insects for the biological control of Parthenium weed in Queensland. Proceedings of 6th Australian Weeds Conference, 1: 145149.Google Scholar
Mehta, M.C. and Raghuraman, M. 2019. Study on biology and morphometric aspects of Zygogramma bicolorata Pallister (Coleoptera: Chrysomelidae) on Parthenium in Varanasi region, India. Journal of Pharmacognosy and Phytochemistry, 8: 16941699.Google Scholar
Mersie, W., Alemayehu, L., Strathie, L., McConnachie, A., Terefe, S., Negeri, M., and Zewdie, K. 2019. Host range evaluation of the leaf-feeding beetle, Zygogramma bicolorata, and the stemboring weevil, Listronotus setosipennis, demonstrates their suitability for biological control of the invasive weed, Parthenium hysterophorus, in Ethiopia. Biocontrol Science and Technology, 29: 239251.CrossRefGoogle Scholar
Mishra, B. and Pathak, P.H. 2012. Role of physical character of the ovipositional substrate for preferential egg laying and viability in Zygogramma bicolorata. World Journal of Zoology, 7: 264266.Google Scholar
Morris, D.W. 2003. Toward an ecological synthesis: a case for habitat selection. Oecologia, 136: 113.CrossRefGoogle ScholarPubMed
Navie, S.C., McFadyen, R.E., Panetta, F.D., and Adkins, S.W. 1996. The biology of Australian weeds. 27. Parthenium hysterophorus L. Plant Protection Quarterly, 11: 76–88.Google Scholar
Omkar, and Pandey, P. 2010. Benefits of polyandry in Parthenium beetle, Zygogramma bicolorata Pallister (Coleoptera: Chrysomelidae). Journal of Asia-Pacific Entomology, 13: 151155.CrossRefGoogle Scholar
Omkar, , Pandey, P., Rastogi, S., and Mishra, G. 2010. Influence of age at mating on the reproductive performance of Parthenium beetle, Zygogramma bicolorata (Coleoptera: Chrysomelidae). Insect Science, 17: 112–120.CrossRefGoogle Scholar
Omkar, , Rastogi, S., and Pervez, A. 2013a. Demographic attributes of the Parthenium beetle Zygogramma bicolorata (Coleoptera: Chrysomelidae) under different variables. International Journal of Tropical Insect Science, 33: 170177.CrossRefGoogle Scholar
Omkar, , Rastogi, S., and Pervez, A. 2013b. Life table of the Parthenium beetle, Zygogramma bicolorata (Coleoptera: Chrysomelidae), under different environmental variables. Acta Ecologica Sinica, 56: 12861293.Google Scholar
Omkar, , Rastogi, S., and Pandey, P. 2008. Effect of temperature on development and immature survival of Zygogramma bicolorata (Coleoptera: Chrysomelidae) under laboratory conditions. International Journal of Tropical Insect Science, 28: 130135.CrossRefGoogle Scholar
Omkar, and Afaq, U. 2009. Intraspecific competition in the Parthenium beetle Zygogramma bicolorata (Coleoptera: Chrysomelidae): effect of larval crowding on life-history traits. International Journal of Tropical Insect Science, 29: 4047.CrossRefGoogle Scholar
Omkar, and Afaq, U. 2011. Food consumption, utilization and ecological efficiency of Parthenium beetle, Zygogramma bicolorata Pallister (Coleoptera: Chrysomelidae). Journal of Asia-Pacific Entomology, 14: 393397.CrossRefGoogle Scholar
Omkar, and Afaq, U. 2012. Evaluation of Darwin’s fecundity advantage hypothesis in Parthenium beetle, Zygogramma bicolorata . Insect Science, 20: 531540.Google Scholar
Pandey, P. 2010. Certain reproductive attributes of Parthenium beetle, Zygogramma bicolorata Pallister (Coleoptera: Chrysomelidae). Ph.D. thesis. University of Lucknow, Lucknow.Google Scholar
Pandey, P. and Omkar 2013. Age-based mate choice improves reproductive performance and offspring attributes in Parthenium beetle, Zygogramma bicolorata (Coleoptera: Chrysomelidae). The Canadian Entomologist, 145: 292301. https://doi.org/10.4039/tce.2012.98.CrossRefGoogle Scholar
Parise, V.S., Deotale, R.O., Goramanagar, H.B., and Dawane, P.N. 2010. Biology and feeding potential of Zygogramma bicolorata Pall. on Parthenium hysterophorus Linn. Green Farming, 3: 58–61.Google Scholar
Parker, G.A. 1984. Sperm competition and the evolution of animal mating strategies. In Sperm competition and the evolution of animal mating strategies. Edited by R.L. Smith. Academic Press, Orlando, Florida, United States of America. Pp. 1–60.Google Scholar
Patel, A.K., Singh, V., Patel, P., Kumar, B., and Kumar, D. 2020b. Semiochemical footprints of the predaceous coccinellid beetle, Menochilus sexmaculatus, deter Zygogramma bicolorata (Coleoptera: Chrysomelidae) from feeding on Parthenium. Biocontrol Science and Technology, 29: 201205.CrossRefGoogle Scholar
Patel, P., Bhusal, D.R., Kumar, B., and Kumar, D. 2020a. Life attributes of Zygogramma bicolorata Pallister (Coleoptera: Chrysomelidae): challenges and future directions. Biocontrol Science and Technology, 30: 160177.CrossRefGoogle Scholar
Patel, P., Kumar, B., and Kumar, D. 2018. Stage-specific feeding attributes of Parthenium beetle, Zygogramma bicolorata Pallister (Coleoptera: Chrysomelidae), under fluctuating food quality. Journal of Experimental Zoology India, 21: 49–53.Google Scholar
Patel, P., Singh, S., Patel, A.K., Kumar, B., Singh, A.V., and Dinesh, K. 2020c. Stage-specific feeding attributes and mobilization of nutrients in Mexican beetle, Zygogramma bicolorata Pallister, on Parthenium hysterophorus L. Journal of Asia-Pacific Entomology, 23: 310314.CrossRefGoogle Scholar
Pawar, S.R., Sangle, P.M., and Korat, D.M. 2015. Biology and morphometric studies of Mexican beetle, Zygogramma bicolorata Pallister on Parthenium. Annals of Plant Protection Sciences, 23: 290293.Google Scholar
Pearman, P.B. and Wilbur, H.M. 1990. Changes in population dynamics resulting from oviposition in a subdivided habitat. The American Naturalist, 135: 708723.CrossRefGoogle Scholar
Priyanka, Y., Kumar, B., and Kumar, D. 2020. Effects of conspecific semiochemicals footprints on feeding attributes of Mexican beetle, Zygogramma bicolorata Pallister. Journal of Experimental Zoology, 23: 11431147.Google Scholar
Qadir, I. and Qamar, A. 2019. Sexual dimorphism in antennal sensilla of Parthenium beetle Zygogramma bicolorata . Turkish Journal of Zoology, 43: 164170.CrossRefGoogle Scholar
Qadir, I., Qamar, A., Paul, B., and Mir, A.H. 2020. Cuticular hydrocarbons C14–C36 are potential contact pheromonal elements modulating some behaviours in Zygogramma bicolorata (Coleoptera: Chrysomelidae). Biologia, 76: 123132. https://doi.org/10.2478/s11756-020-00515-w.CrossRefGoogle Scholar
Rastogi, S. 2010. Demographic attributes of Parthenium beetle, Zygogramma bicolorata Pallister (Coleoptera: Chrysomelidae). Ph.D. thesis. University of Lucknow, Lucknow, Uttar Pradesh, India.Google Scholar
Rathod, P.N., Deotale, R O., Dawane, P.N., and Deulkar, M.M. 2012. Biology and feeding potential of Zygogramma bicolorata Pall. on Parthenium hysterophorus Linn. on different weeds and sunflower. Journal of Soils and Crops, 22: 122–128.Google Scholar
Raubenheimer, D. and Simpson, S.J. 2003. Nutrient balancing in grasshoppers: behavioural and physiological correlates of dietary breadth. Journal of Experimental Biology, 206: 16691681.CrossRefGoogle ScholarPubMed
Ray, P. 2011. Evaluation of augmentative release of Zygogramma bicolorata Pallister (Coleoptera: Chrysomelidae) for biological control of Parthenium hysterophorus L. Crop Protection, 30: 587591.Google Scholar
Saha, R.S., Bangadkar, M.K., and Raja, I.A. 2015. Effect of temperature variation on reproductive behaviour of Zygogramma bicolorata, a potential biocontrol agent of Parthenium hysterophorus. Journal of Soils and Crops, 25: 297–299.Google Scholar
Saha, R.S., Bangadkar, M.K., and Raja, I.A. 2017. Potential of Zygogramma bicolorata as a biocontrol agent for the management of Parthenium hysterophorus to save environment, health and biodiversity in Nagpur. International Journal in Researches in Biosciences, Agriculture & Technology, 5: 1114.Google Scholar
Sahoo, S. 2018. Biology and seasonal incidence of the Mexican beetle, Zygogramma bicolorata Pallister, on Parthenium in new alluvial zone of West Bengal. Indian Journal of Entomology, 80: 11831185.CrossRefGoogle Scholar
Shabbir, A., Asmat, N., Fatima, N., Ahmad, S., Dhileepan, K., and Adkins, S. 2018. Development of Zygogramma bicolorata Pallister on evolving populations of Parthenium weed. XV International Symposium on Biological Control of Weeds, Engelberg, Switzerland. Pp. 26–31.Google Scholar
Shabbir, A., Dhileepan, K., and Adkins, S.W. 2012. Spread of Parthenium weed and its biological control agent in the Punjab, Pakistan. Pakistan Journal of Weed Science Research, 18: 581588.Google Scholar
Shabbir, A., Dhileepan, K., Zalucki, M.P., O’Donnell, C., Khan, N., Hanif, Z., and Adkins, S.W. 2015. The combined effect of biological control with plant competition on the management of Parthenium weed (Parthenium hysterophorus L.). Pakistan Journal of Botany, 47: 157159.Google Scholar
Shabbir, A., Sheema, S., and Iram, M. 2016. Biocontrol efficiency of Zygogramma bicolorata at different growth stages of Parthenium hysterophorus . Indian Journal of Weed Science, 48: 460463.CrossRefGoogle Scholar
Shrestha, B.B., Pokhrel, K., Paudel, N., Poudel, S., Shabbir, A., and Adkins, S. 2019. Distribution of Parthenium hysterophorus and one of its biological control agents (Coleoptera: Zygogramma bicolorata) in Nepal. Weed Research, 59: 467–478.CrossRefGoogle Scholar
Shrestha, B.B., Poudel, A., KC, J., Karki, D., Gautam, R.D., and Jha, P.K. 2010. Fortuitous biological control of Parthenium hysterophorus by Zygogramma bicolorata in Nepal. Journal of the Natural History Museum, 25: 333–338.Google Scholar
Shrestha, B.B., Thapa-Magar, K.B., Paudel, A., and Shrestha, U.B. 2011. Beetle on the battle: defoliation of Parthenium hysterophorus by Zygogramma bicolorata in Kathmandu Valley, Nepal. Journal of Plant Science, 8: 100104.Google Scholar
Siddhapara, M.R., Patel, M.B., and Patel, H.V. 2012. Biology of Zygogramma bicolorata Pallister (Coleoptera: Chrysomelidae) and their feeding potential on Parthenium and sunflower. Madras Agricultural Journal, 99: 841844.Google Scholar
Simmons, L.W. 2001. Sperm competition and its evolutionary consequences in the insects. Princeton University Press, Princeton, New Jersey, United States of America.Google Scholar
Simpson, S.J. and Raubenheimer, D. 2000. The hungry locust. Advances in the Study of Behavior, 29: 144.CrossRefGoogle Scholar
Singh, S., Gill, P.K., Dhaliwal, H.S., and Kumar, V. 2017. Life cycle and effectiveness of Zygogramma bicolorata Pallister (Chrysomelidae: Coleoptera) on Parthenium hysterophorus eradication. Journal of Global Agriculture and Ecology, 7: 60–65.Google Scholar
Singh, S.K. and Negerei, M. 2013. Listronotus setosipennis Hustache and Zygogramma bicolorata Pallister as potential bioagents of Parthenium hysterophorus L. in Ethiopia. Biopesticides International, 9: 71–76.Google Scholar
Sridhar, S. 1991. A cure no more, under attack the sunflower crop. Frontline, 100: 922.Google Scholar
Sterner, R.W. and Elser, J.J. 2002. Ecological stoichiometry: the biology of elements from molecules to the biosphere. Princeton University Press, Princeton, New Jersey, United States of America.Google Scholar
Sushilkumar, . 2005a. Current status of Parthenium and Mexican beetle (Zygogramma bicolorata) in central India. In Proceedings of the Second International Conference on Parthenium Management, Bangalore (Karnataka). Pp. 114–119.Google Scholar
Sushilkumar, . 2005b. Biological control of Parthenium through Zygogramma bicolorata. Director, National Research Centre for Weed Science, ICAR – Directorate of Weed Research, Maharajpur, Jabalpur, India. Pp. 89.Google Scholar
Sushilkumar, , Vishwakarma, K., and Ray, P. 2003. Impact of herbicides on turtle beetle (Cassida sp.nr enervis Boh.): a bioagent of exotic alligator weed (Alternanthera philoxeroides). National Seminar on Alien Invasive Weeds in India. Assam Agricultural University, Jorhat, Assam, India. Pp. e83–e84.Google Scholar
Sushilkumar, and Ray, P. 2010. Activity enhancement of Zygogramma bicolorata, a biocontrol agent of Parthenium hysterophorus, by temperature regulated diapause aversion. Biocontrol Science and Technology, 20: 903908.CrossRefGoogle Scholar
Sushilkumar, and Ray, P. 2011. Evaluation of augmentative release of Zygogramma bicolorata Pallister (Coleoptera: Chrysomelidae) for biological control of Parthenium hysterophorus L. Crop Protection, 30: 587591.CrossRefGoogle Scholar
Sushilkumar, and Bhan, V.M. 1997. Natural population replacement by Cassia tora at Jabalpur and adjoining areas of Madhya Pradesh. In Proceedings of the First International Conference on Parthenium Management, 6–8 October 1997, University of Agricultural Sciences, Dharwad, India. Edited by M. Mahadevappa and V.C. Patil. Pp. 41–43.Google Scholar
Swamiappan, M., Sethupitchai, U., and Bali, G. 1997. Feeding potential of freshly emerged Zygogramma bicolorata adults on sunflower and Parthenium. In Proceedings of the First International Conference on Parthenium Management, 6–8 October 1997, University of Agricultural Sciences, Dharwad, India. Edited by M. Mahadevappa and V.C. Patil. Pp. 52–54.Google Scholar
Tripathi, R.C. and Tripathi, P. 2020. Biological control of Parthenium hysterophorus (gajar ghas) using Zygogramma bicolorata (Mexican beetle) in Chitrakoot (Uttar Pradesh). Advances in agriculture for doubling of farmer’s income. Empyreal Publishing House, Ghaziabad, Uttar Pradesh, India. Pp. 3842.Google Scholar
Vahed, K., Parker, D.J., and Gilbert, J.D. 2011. Larger testes are associated with a higher level of polyandry but a smaller ejaculate volume, across bush cricket species (Tettigoniidae). Biological Letters, 7: 261264.CrossRefGoogle Scholar
Venter, N., Hill, M.P., Hutchinson, S.L., and Ripley, B.S. 2013. Weevil-borne microbes contribute as much to the reduction of photosynthesis in water hyacinth as does herbivory. Biological Control, 64: 138142.CrossRefGoogle Scholar
Viraktamath, C.A., Bhumannavar, B.S., and Patel, V.N. 2004. Biology and ecology of Zygogramma bicolorata Pallister, 1953. In New developments in the biology of Chrysomelidae. Edited by P. Jolivet, J.A. Santiago-Blay, and M. Schmitt. SPB Academic Publishing, The Hague, The Netherlands. Pp. 767–777.Google Scholar
Yadav, P., Kumar, B., and Kumar, D. 2020. Effects of conspecific semiochemical footprints on feeding attributes and development of Mexican beetle, Zygogramma bicolorata Pallister. Journal of Experimental Zoology, 23: 11431147.Google Scholar