数字农科院2.0

Biology, ecology, host range, and management approaches for Monolepta spp. (Coleoptera: Chrysomelidae), emerging threats to crops

文献类型: 外文期刊

作者: Muhammad Ramzan;Adel Khashaveh;Chaoqun Yi;Shuang Shan;Ziyi Tang;Wentao Liu;Khalid Ali Khan;Yongjun Zhang

作者机构:

关键词: agricultural crops;corn;Monolepta spp;natural enemies;resistant crop varieties

期刊名称: Journal of Integrated Pest Management

ISSN: 2155-7470

年卷期: 2024 年 15 卷 1 期

页码:

收录情况: SCIE(2024版)

摘要: Monolepta signata, Monolepta hieroglyphica, and Monolepta quadriguttata are highly destructive agricultural pests in East and Southeast Asia, causing considerable economic losses by damaging a variety of crops in China, including soybeans, corn, cotton, rice, and vegetables. Despite numerous studies to prevent and control their spread, these pests continue to pose a severe agricultural issue demanding attention. This review focuses on the latest research concerning the biology, hosts, and prevention of these beetles. We also explore the biotic and abiotic factors influencing the population dynamics of these pests. While insecticides are commonly employed to manage these beetles, options for suppressing adult beetles and grubs are limited. Despite ongoing regulatory efforts, these beetles remain a significant threat to several crops, including cotton and corn. Researching the pests' interactions with predators, parasitoids, and host plants in their ecosystem can provide valuable insights into their ecological roles and potential control methods.

分类号:

  • 相关文献

[1]Adopting higher-yielding varieties to ensure Chinese food security under climate change in 2050. Ye, Liming,Tang, Huajun,Yang, Guixia,Van Ranst, Eric,Ye, Liming,Tang, Huajun,Yang, Guixia,Ye, Liming,Van Ranst, Eric. 2015

[2]Risk Assessment of Spodoptera exempta against Food Security: Estimating the Potential Global Overlapping Areas of Wheat, Maize, and Rice under Climate Change. Ming Li,Zhenan Jin,Yuhan Qi,Haoxiang Zhao,Nianwan Yang,Jianyang Guo,Baoxiong Chen,Xiaoqing Xian,Wanxue Liu. 2024

[3]Current status and potential of conservation biological control for agriculture in the developing world. Wyckhuys, Kris A. G.,Lu, Yanhui,Morales, Helda,Vazquez, Luis L.,Legaspi, Jesusa C.,Eliopoulos, Panagiotis A.,Hernandez, Luis M.. 2013

[4]Influence of Garlic Intercropping or Active Emitted Volatiles in Releasers on Aphid and Related Beneficial in Wheat Fields in China. Chen Ju-lian,Sun Jing-rui,Cheng Deng-fa,Zhou Hai-bo,Francis, Frederic,Haubruge, Eric,Liu Yong,Bragard, Claude. 2013

[5]Exploratory survey in China for potential insect biocontrol agents of mile-a-minute weed, Polygonum perfoliatum L., in Eastern USA. Ding, JQ,Fu, WD,Reardon, R,Wu, Y,Zhang, GL. 2004

[6]Elevated O-3 increases volatile organic compounds via jasmonic acid pathway that promote the preference of parasitoid Encarsia formosa for tomato plants. Cui, Hongying,Wei, Jianing,Su, Jianwei,Ge, Feng,Cui, Hongying,Li, Chuanyou.

[7]Influence of Transgenic Cotton on the Cotton Aphid (Aphid gossypii) and Its Two Major enemies in North China. Velders R M,崔金杰,夏敬源,van der Werf W. 2002

[8]Effects of land use and insecticides on natural enemies of aphids in cotton: First evidence from smallholder agriculture in the North China Plain. Huang, Jikun,Deng, Xiangzheng,Wu, Feng,Zhou, Ke,van der Werf, Wopke,Zhang, Wei,Lu, Yanhui,Wu, Kongming,Wu, Feng. 2014

[9]Biological control of cotton pests in China. Wu, Kongming,Naranjo, Steven E.. 2014

[10]Tea: Biological control of insect and mite pests in China. Ye, Gong-Yin,Chen, Xue-xin,Hu, Cui,Xiao, Qiang,Yuan, Zhi-jun,Chen, Mao,Stanley, David W.. 2014

[11]Population dynamics of Aphis glycines (Homoptera : Aphididae) and impact of natural enemies in Northern China. Wu, Kongming,Hopper, Keith R.,Li, Guoxun. 2007

[12]Adaptation of Wheat-Pea Intercropping Pattern in China to Reduce Sitobion avenae (Hemiptera: Aphididae) Occurrence by Promoting Natural Enemies. Chen, Julian,Cheng, Dengfa,Zhou, Haibo,Chen, Lin,Francis, Frederic,Haubruge, Eric,Liu, Yong,Bragard, Claude.

[13]Ecology, invasion history and biodiversity-driven management of the coconut black-headed caterpillar Opisina arenosella in Asia. Hui Lu,Baoqian Lyu,Jihong Tang,Qiqi Wu,Kris A.G. Wyckhuys,Khac Hoang Le,Patchareewan Chongchitmate,Haiyan Qiu,Qikai Zhang. 2023

[14]Tritrophic Interactions among Arthropod Natural Enemies, Herbivores and Plants Considering Volatile Blends at Different Scale Levels. Ali M.Y.,Naseem T.,Holopainen J.K.,Liu T.,Zhang J.,Zhang F.. 2023

[15]Assessing Artemisia lavandulaefolia as a trap plant for managing Apolygus lucorum in tea plantations. Tian, Yueyue,Ping, Sun,Zhang, Xinzhe,Li, Bingqian,Zhang, Zhengqun,Cai, Xiaoming. 2023

[16]Analysis of the bacterial communities of four predatory natural enemies collected from a Northern China Bt cotton field. Fangmei Hu,Lingen Du,Xueke Gao,Jinjie Cui,Xingmiao Zhou. 2022

[17]Integrating biogeographic approach into classical biological control: Assessing the climate matching and ecological niche overlap of two natural enemies against common ragweed in China. Haoxiang Zhao,Nianwan Yang,Hongkun Huang,Juan Shi,Xiaoqing Xian,Fanghao Wan,Wan xue Liu. 2023

[18]Influence of Floral Strip Width on Spider and Carabid Beetle Communities in Maize Fields. Jia Lu Li,Lan Mei Huang,Zi Yi Xiang,Jian Ning Zhao,Dian Lin Yang,Hui Wang,Yan Jun Zhang. 2025

[19]Intercropping cotton with wheat or maize enhances biological pest control but only intercropping with wheat improves cotton yield. Shuangshuang Jia,Enjing Hu,Minlong Li,Bing Liu,Long Yang,Wopke van der Werf,Felix J.J.A. Bianchi,Yanhui Lu. 2026

[20]Effects of inorganic fertilizer inputs on grain yields and soil properties in a long-term wheat-corn cropping system in south China. Zhang, Huimin,Wang, Boren,Xu, Minggang,Zhang, Huimin,Wang, Boren,Xu, Minggang,Zhang, Huimin. 2008

作者其他论文 更多>>