数字农科院2.0

Heat wave event facilitates defensive responses in invasive C3 plant Ambrosia artemisiifolia L. under elevated CO2 concentration to the detriment of Ophraella communa

文献类型: 外文期刊

作者: Tian, Zhenya;Ma, Chao;Zhao, Chenchen;Zhang, Yan;Gao, Xuyuan;Tian, Zhenqi;Chen, Hongsong;Guo, Jianying;Zhou, Zhongshi

作者机构:

关键词: common ragweed;invasive plant;biological invasions;climate change;secondary metabolite;herbivore;Ophraella communa

期刊名称: FRONTIERS IN PLANT SCIENCE

ISSN: 1664-462X

年卷期: 2022 年 13.0 卷

页码:

收录情况: SCIE(2022版)

摘要: To predict and mitigate the effects of climate change on communities and ecosystems, the joint effects of extreme climatic events on species interactions need to be understood. Using the common ragweed (Ambrosia artemisiifolia L.)-leaf beetle (Ophraella communa) system, we investigated the effects of heat wave and elevated CO2 on common ragweed growth, secondary metabolism, and the consequent impacts on the beetle. The results showed that elevated CO2 and heat wave facilitated A. artemisiifolia growth;;further, A. artemisiifolia accumulated large amounts of defensive secondary metabolites. Being fed on A. artemisiifolia grown under elevated CO2 and heat wave conditions resulted in the poor performance of O. communa (high mortality, long development period, and low reproduction). Overall, under elevated CO2, heat wave improved the defensive ability of A. artemisiifolia against herbivores. On the other hand, enhanced adaptability to climatic changes may aggravate invasive plant distribution, posing a challenge to the control of invasive plants in the future. Key message Being fed on A. artemisiifolia grown under elevated CO2 and heat wave conditions resulted in the poor performance of O. communa (high mortality, long development period, and low reproduction). Elevated CO2 and heat waves resulted in the accumulation of secondary metabolites in A. artemisiifolia. After feeding on the secondary metabolites accumulated by A. artemisiifolia, the mortality of O. communa increased.

分类号:

  • 相关文献

[1]Rapid cold-hardening response in Ophraella communa LeSage (Coleoptera: Chrysomelidae), a biological control agent of Ambrosia artemisiifolia L.. Zhou, Zhong-Shi,Guo, Jian-Ying,Wan, Fang-Hao,Ai, Hong-Mu,Li, Min,Li, Min. 2011

[2]The maize transcription factor EREB58 mediates the jasmonate-induced production of sesquiterpene volatiles. Wang, Hai,Chen, Zhongliang,Li, Xiuying,Zhu, Li,Huang, Dafang,Lang, Zhihong,Li, Shengyan,Yu, Jingjuan,Li, Fengqi,Wang, Guirong.

[3]Calmodulin and calmodulin-like protein-mediated plant responses to biotic stresses. Zeng, Houqing,Zhu, Qiuqing,Yuan, Peiguo,Yan, Yan,Yi, Keke,Du, Liqun. 2023

[4]Field application of silicate suppresses rice insect pest populations and damage in association with defense-related chemicals. Yu, Jing,Zhong, Yuqi,Dai, Changgeng,Cheng, Yiyu,Gong, Youhui,Hou, Maolin. 2025

[5]Seasonal changes in cold hardiness of Ophraella communa. Guo, Jian-Ying,Li, Min,Wan, Fang-Hao,Li, Min,Ai, Hong-Mu. 2011

[6]Control of the invasive weed Ambrosia artemisiifolia with Ophraella communa and Epiblema strenuana. Chen, Hong-Song,Zheng, Xing-Wen,Guo, Jian-Ying,Guo, Wei,Li, Min,Luo, Min,Wan, Fang-Hao,Chen, Hong-Song,Zheng, Xing-Wen,Li, Min. 2014

[7]Mating frequency positively associates with fitness in Ophraella communa. Zheng, Hai-Yan,Guo, Jian-Ying,Wan, Fang-Hao,Rasmann, Sergio,Zheng, Hai-Yan,Wang, Jian-Guo,Watson, Alan.

[8]Risk Assessment Approaches for Ophraella communa as a Biological Control Agent for Ambrosia artemisiifolia in Agricultural Landscapes of Southeastern Central Europe: A Review. Nduwayo, Patrice,Schaffner, Urs,Tarigan, Sri Ita,Dorner, Zita,Kiss, Jozsef,Desneux, Nicolas,Lesieur, Vincent,Rousset, Zoe,Muller-Scharer, Heinz,Toepfer, Stefan. 2025

[9]Assessing potential biological control of the invasive plant, tree-of-heaven, Ailanthus altissima. Ding, Jianqing,Wu, Yun,Zheng, Hao,Fu, Weidong,Reardon, Richard,Liu, Min. 2006

[10]Plant Interactions Modulate Root Litter D.ecomposition And Negative Plant-Soil F eedback With An Invasive Plant. Huangfu, CH, Hui, DF, Qi, XX, Li, KL. 2019

[11]Invasive plants detection and distribution patterns analysis through self-attention enhanced semantic segmentation in UAV imagery and Moran's index. Chao, Jun,Wang, Kaiwen,Xu, Beibei,Harty, Mary,Wang, Wensheng,Mcdonnell, Kevin. 2025

[12]Intraspecific differentiation and phenotypic plasticity help the invasive success of Xanthium italicum. Zhao, Zhilong,Yu, Jinyang,Zhao, Wenxuan,Ma, Miao,Tang, Jieshi. 2025

[13]Fungal-mediated home-field advantage in litter decomposition of Solidago canadensis across soil depths. Zhang, Zhen,He, Mengying,Xie, Qingsong,Liu, Tingting,Zhang, Dandan,Jiang, Wenyu,Zhu, Xurui. 2025

[14]Different thermal tolerance and hsp gene expression in invasive and indigenous sibling species of Bemisia tabaci. Yu, Hao,Wan, Fang Hao,Guo, Jan Ying,Yu, Hao.

[15]A decade of leafminer invasion in China: lessons learned. Gao, Yulin,Xing, Zhenlong,Lei, Zhongren,Reitz, Stuart,Ferguson, Scott.

[16]Insecticides promote viral outbreaks by altering herbivore competition. Pan, Huipeng,Wang, Shaoli,Wu, Qingjun,Zhang, Youjun,Preisser, Evan L.,Chu, Dong,Carriere, Yves,Pan, Huipeng,Zhou, Xuguo.

[17]Genome-wide SNPs of vegetable leafminer, Liriomyza sativae: Insights into the recent Australian invasion. Xu, Xuefen,Schmidt, Thomas L.,Liang, Jiaxin,Ridland, Peter M.,Chung, Jessica,Yang, Qiong,Jasper, Moshe E.,Umina, Paul A.,Liu, Wanxue,Hoffmann, Ary A.. 2022

[18]A Whole-Genome Scan For Association With Invasion Success In The Fruit Fly Drosophila Suzukii Using Contrasts Of Allele Frequencies Corrected For Population Structure. Olazcuaga, L, Loiseau, A, Parrinello, H, Paris, M, Fraimout, A, Guedot, C, Diepenbrock, LM, Kenis, M, Zhang, JP, Chen, X, Borowiec, N, Facon, B, Vogt, H, Price, DK, Vogel, H, Prud'homme, B, Estoup, A, Gautier, M. 2020

[19]Biology, invasion and management of the agricultural invader: Fall armyworm, Spodoptera frugiperda (Lepidoptera: Noctuidae). WAN Jing,HUANG Cong,LI Chang-you,ZHOU Hong-xu,REN Yong-lin,LI Zai-yuan,XING Long-sheng,ZHANG Bin,QIAO Xi,LIU Bo,LIU Cong-hui,XI Yu,LIU Wan-xue,WANG Wen-kai,QIAN Wan-qiang,MCKIRDY Simon,WAN Fang-hao. 2021

[20]Biology, invasion and management of the agricultural invader: Fall armyworm, Spodoptera frugiperda (Lepidoptera: Noctuidae). WAN Jing,HUANG Cong,LI Chang-you,ZHOU Hong-xu,REN Yong-lin,LI Zai-yuan,XING Long-sheng,ZHANG Bin,QIAO Xi,LIU Bo,LIU Cong-hui,XI Yu,LIU Wan-xue,WANG Wen-kai,QIAN Wan-qiang,MCKIRDY Simon,WAN Fang-hao. 2021

作者其他论文 更多>>