Azotobacter inoculation can enhance the resistance of Bt cotton to cotton bollworm, Helicoverpa armigera
文献类型: 外文期刊
第一作者: Li, Zhuo
作者: Li, Zhuo;Li, Lei;Yuan, Yi-Yang;Ge, Feng;Li, Zhuo;Zhao, Ming;Chen, Fa-Jun;Parajulee, Megha N.;Ge, Feng
作者机构:
关键词: Azotobacter; Bt protein expression; development and fecundity; food utilization; nitrogen metabolism-related compounds; transgenic Bt cotton
期刊名称:INSECT SCIENCE ( 影响因子:4.0; 五年影响因子:3.6 )
ISSN: 1672-9609
年卷期: 2023 年
页码:
收录情况: SCI
摘要: The rising trend in the cultivation of Bacillus thuringiensis (Bt) transgenic crops may cause a destabilization of agroecosystems, thus increasing concerns about the sustainability of Bt crops as a valid pest management method. Azotobacter can be used as a biological regulator to increase environmental suitability and improve the soil nitrogen utilization efficiency of crops, especially Bt cotton. A laboratory test investigated effects on the development and food utilization of Helicoverpa armigera fed with different Cry1Ab/Cry1Ac proteins and nitrogen metabolism-related compounds from cotton (transgenic variety SCRC 37 vs non-Bt cotton cv. Yu 2067) inoculated with Azospirillum brasilense (Ab) and Azotobacter chroococcum (Ac). The findings indicate that inoculation with Azotobacter significantly decreased the partial development and food utilization indexes (pupal weight; pupation rate; adult longevity; fecundity; relative growth rate, RGR; efficiency of conversion of digested food, ECD; and efficiency of conversion of ingested food, ECI) of H. armigera fed on Bt cotton, but contrasting trends were found among these indexes in H. armigera fed on non-Bt cotton inoculated with Azotobacter, as a result of differences in Bt toxin production. Overall, the results showed that inoculation with Azotobacter had negative effects on the development and food utilization of H. armigera fed on Bt cotton, leading to enhanced target insect resistance. Presumably, Azotobacter inoculation can be used to stimulate plant soil nitrogen uptake to increase nitrogen metabolism-related compounds and promote plant growth for Bt and non-Bt cotton, simultaneously raising Bt protein expression and enhancing resistance efficacy against cotton bollworm in Bt cotton.
分类号:
- 相关文献
作者其他论文 更多>>
-
Cd Activation Mechanisms of High-Enriched Rapeseed (Brassica Napus L.) in Rhizosphere Soil
作者:Tian, Xiaoqin;Yang, Tingting;Li, Zhuo;Wu, Xiaoli;Li, Haojie;Tian, Xiaoqin;Li, Zhuo;Wu, Xiaoli;Tian, Xiaoqin;Li, Zhuo;Wu, Xiaoli;Liu, Dan;Liu, Yonghong;Li, Wei
关键词:Cadmium; Brassica napus; Root exudates; Bioaccumulation; Transportation
-
Identification and Genetic Diversity Analysis of the Pathogen of Anthracnose of Pepper in Guizhou
作者:Zhang, Aimin;Yu, Zhiguo;Zhang, Aimin;Li, Lei;Xie, Xuewen;Chai, Ali;Shi, Yanxia;Li, Baoju;Zhang, Aimin;Xing, Dan
关键词:pepper anthracnose; typical symptoms; morphological identification; polygenic phylogenetic analysis
-
Development and Application of the Novel Plant Growth Regulator Guvermectin: A Perspective
作者:Liu, Chongxi;Li, Lei;Wang, Xiangjing;Xiang, Wensheng;Zhang, Manman;Li, Lei;Li, Shanshan;Xiang, Wensheng
关键词:guvermectin; plant growth regulators; cropyield; rhizobacteria; Streptomyces
-
Nanobubbles for the Mitigation of Fouling in Wastewater Distribution Systems
作者:Xiao, Yang;Zhou, Bo;Tan, Siyuan;Muhammad, Tahir;Si, Buchun;Li, Yunkai;Xiao, Yang;Zhou, Bo;Li, Yunkai;Li, Lei;Ma, Changjian;Jiang, Sunny C.
关键词:Biofouling; Scaling; Colloidal fouling; Wastewater; Antifouling mechanism
-
Heterologous synthesis of ginsenoside F1 and its precursors in Nicotiana benthamiana
作者:Chen, Qin;Lei, Jun;Li, Xiaolei;Zhang, Jinyu;Cui, Xiuming;Ge, Feng;Li, Xiaolei;Zhang, Jinyu;Cui, Xiuming;Ge, Feng
关键词:Panax notoginseng; Synthetic biology; Metabolic engineering; Saponin
-
The MYB Transcription Factor GmMYB78 Negatively Regulates Phytophthora sojae Resistance in Soybean
作者:Gao, Hong;Ma, Jia;Zhao, Yuxin;Zhang, Chuanzhong;Zhao, Ming;He, Shengfu;Sun, Yan;Fang, Xin;Chen, Xiaoyu;Ma, Kexin;Pang, Yanjie;Gu, Yachang;Dongye, Yaqun;Xu, Pengfei;Zhang, Shuzhen;Wu, Junjiang
关键词:GmMYB78; soybean; Phytophthora sojae; jasmonic acid; GmbHLH122; GmbZIP25
-
A previously unidentified sugar transporter for engineering of high-yield Streptomyces
作者:Dong, Zhuoxu;Li, Lei;Wang, Xiangjing;Li, Shanshan;Xiang, Wensheng;Dong, Zhuoxu;Li, Lei;Du, Guozhong;Zhang, Yanyan;Li, Shanshan;Xiang, Wensheng
关键词:Sugar transporter; Transporter engineering; Streptomyces; Strain engineering; Titer improvement