数字农科院2.0

Bt maize can provide non-chemical pest control and enhance food safety in China

文献类型: 外文期刊

作者: Yang, Xianming;Zhao, Shengyuan;Liu, Bing;Gao, Yu;Hu, Chaoxing;Li, Wenjing;Yang, Yizhong;Li, Guoping;Wang, Lili;Yang, Xueqing;Yuan, Haibin;Liu, Jian;Liu, Dazhong;Shen, Xiujing;Wyckhuys, Kris A. G.;Lu, Yanhui;Wu, Kongming

作者机构:

关键词: Bt maize;lepidopteran pest pressure;seed mixtures;block refuge;crop yield;mycotoxin contamination

期刊名称: PLANT BIOTECHNOLOGY JOURNAL

ISSN: 1467-7644

年卷期: 2022 年

页码:

收录情况: SCIE(2022版)

摘要: China is the world's second-largest maize producer and consumer. In recent years, the invasive fall armyworm Spodoptera frugiperda (J.E. Smith) has adversely affected maize productivity and compromised food security. To mitigate pest-inflicted food shortages, China's Government issued biosafety certificates for two genetically modified (GM) Bt maize hybrids, Bt-Cry1Ab DBN9936 and Bt-Cry1Ab/Cry2Aj Ruifeng 125, in 2019. Here, we quantitatively assess the impact of both Bt maize hybrids on pest feeding damage, crop yield and food safety throughout China's maize belt. Without a need to resort to synthetic insecticides, Bt maize could mitigate lepidopteran pest pressure by 61.9-97.3%, avoid yield loss by 16.4-21.3% (range -11.9-99.2%) and lower mycotoxin contamination by 85.5-95.5% as compared to the prevailing non-Bt hybrids. Yield loss avoidance varied considerably between experimental sites and years, as mediated by on-site infestation pressure and pest identity. For either seed mixtures or block refuge arrangements, pest pressure was kept below established thresholds at 90% Bt maize coverage in Yunnan (where S. frugiperda was the dominant species) and 70% Bt maize coverage in other sites dominated by Helicoverpa armigera (Hubner) and Ostrinia furnacalis (Guenee). Drawing on experiences from other crop/pest systems, Bt maize in se can provide area-wide pest management and thus, contribute to a progressive phase-down of chemical pesticide use. Hence, when consciously paired with agroecological and biodiversity-based measures, GM insecticidal crops can ensure food and nutrition security, contribute to the sustainable intensification of China's agriculture and reduce food systems' environmental footprint.

分类号:

  • 相关文献

[1]Contamination and Control of Mycotoxins in Grain and Oil Crops. Chenchen Zhang,Zheng Qu,Jie Hou,Yanpo Yao. 2024

[2]Ovipositional responses of Spodoptera frugiperda on host plants provide a basis for using Bt-transgenic maize as trap crop in China. HE Li-mei,ZHAO Sheng-yuan,GAO Xi-wu,WU Kong-ming. 2021

[3]Consumption Of Bt Maize Pollen C.ontaining Cry1Ie Does Not N egatively Affect Propylea Japonica (Thunberg) (Coleoptera: Coccinellidae). Romeis, Joerg,Peng, Yufa,Romeis, Joerg,Yin, Xinming,Song, Xinyuan,Liu, Yanmin,Geng, Lili,Chen, Xiuping,Li, Yonghui,Li, Yunhe,Li, Yonghui. 2017

[4]Unintended changes in transgenic maize cause no nontarget effects. Wang, Yuanyuan,Liu, Qingsong,Song, Xinyuan,Yang, Xiaowei,Han, Lanzhi,Romeis, Joerg,Li, Yunhe. 2022

[5]Ovipositional responses of Spodoptera frugiperda on host plants provide a basis for using Bt-transgenic maize as trap crop in China. HE Li-mei,ZHAO Sheng-yuan,GAO Xi-wu,WU Kong-ming. 2021

[6]Insecticidal Effects of Transgenic Maize Bt-Cry1Ab, Bt-Vip3Aa, and Bt-Cry1Ab+Vip3Aa against the Oriental Armyworm, Mythimna separata (Walker) in Southwest China. Zhenghao Zhang,Xianming Yang,Wenhui Wang,Kongming Wu. 2024

[7]Insect resistant and glyphosate tolerant maize, Bt11 x MIR162 x GA21, can enhance management of fall armyworm and weeds in tropical Asia. Yang, Xianming,Chen, Shuang,Liu, Dazhong,Zhao, Shengyuan,Kang, Guodong,Song, Cheng,Tian, Zhenwei,Li, Haitao,Chen, Jingchao,Li, Xiangju,Wu, Kongming. 2024

[8]Evaluation of the Control Efficacy of Bt Maize Expressing Cry1Ab and Vip3Aa Proteins Against Agrotis ypsilon (Rottemberg). Wenhui Wang,Yuting He,Huan Yu,Xianming Yang,Kongming Wu. 2025

[9]Synergistic effect of Bt (Cry1Ab+Vip3Aa) maize with emamectin benzoate and chlorantraniliprole against the fall armyworm, Spodoptera frugiperda. Wang, Wenhui,Kang, Guodong,Chen, Shuang,Zhang, Dandan,Zhao, Shengyuan,Li, Haitao,Yang, Xianming,Xiao, Yutao,Liang, Gemei,Wu, Kongming. 2025

[10]Selection Behavior of the Beet Armyworm, Spodoptera exigua (Hübner) Between Bt Maize and Conventional Maize Plants. Song, Cheng,Yang, Xianming,Kang, Guodong,He, Limei,Wang, Wenhui,Han, Xiang,Xie, Yujiao,Wu, Kongming. 2025

[11]Greenhouse gas emissions and stocks of soil carbon and nitrogen from a 20-year fertilised wheat -maize intercropping system: A model approach. Zhang, Xubo,Xu, Minggang,Sun, Nan,Wang, Boren,Zhang, Xubo,Wu, Lianhai,Liu, Jian.

[12]A Cotton BURP Domain Protein Interacts With -Expansin and Their Co-Expression Promotes Plant Growth and Fruit Production. Bing Xu,Jin-Ying Gou,Fu-Guang Li,Xiao-Xia Shangguan,Bo Zhao,Chang-Qing Yang,LingJian Wang,Sheng Yuan,Chang-Jun Liu,Xiao-Ya Chen. 2013

[13]Past, present, and future use of phosphorus in Chinese agriculture and its influence on phosphorus losses. Li, Haigang,Li, Guohua,Shen, Jianbo,Zhang, Fusuo,Liu, Jian,Liu, Jian,Bergstrom, Lars. 2015

[14]The Methodology of Monitoring Crops with Remote Sensing at the National Scale. Wu, Quan,Sun, Li,He, Yajuan,Wang, Fei,Wang, Danqiong,Jiao, Weijie,Wang, Haijun,Han, Xue. 2016

[15]Estimation of regional crop yield by assimilating multi-temporal TM images into crop growth model. Yang, Peng,Zhou, Qingbo,Chen, Zhongxin,Zha, Yan,Wu, Wenbin,Shibasaki, Ryosuke. 2006

[16]Impacts of Fertilization Alternatives and Crop Straw Incorporation on N2O Emissions from a Spring Maize Field in Northeastern China. Yang Li,Wang Li-gang,Li Hu,Qiu Jian-jun,Liu Hui-ying. 2014

[17]Crop Model Data Assimilation with Particle Filter for Yield Prediction Using Leaf Area Index of Different Temporal Scales. Li, He,Chen, Zhongxin,Wu, Wenbin,Liu, Bin,Hasi, Tuya,Li, He,Chen, Zhongxin,Wu, Wenbin,Liu, Bin,Hasi, Tuya. 2015

[18]Crop yield and soil organic matter after long-term straw return to soil in China. Wang, Jinzhou,Xu, Minggang,Zhang, Wenju,Lu, Chang'ai,Wang, Jinzhou,Feng, Gu,Wang, Jinzhou,Wang, Xiujun,Wang, Xiujun.

[19]Assessing crop yield and crop water productivity and optimizing irrigation scheduling of winter wheat and summer maize in the Haihe plain using SWAT model. Sun, Chen,Sun, Chen,Ren, Li.

[20]Long-term phosphorus accumulation and agronomic and environmtal critical phosphorus levels in Haplic Luvisol soil, northern China. Xi Bin,Zhai Li-mei,Liu Jian,Liu Shen,Wang Hong-yuan,Luo Chun-yan,Liu Hong-bin,Liu Jian,Ren Tian-zhi.

作者其他论文 更多>>