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棉花NBS-LRR基因的异源表达增强了对黄萎病的抗性。 (原文句末不完整,推测补充完整后的翻译)

Heterologous Expression of the Cotton NBS-LRR Gene Enhances Verticillium Wilt Resistance in .

作者信息

Li Nan-Yang, Zhou Lei, Zhang Dan-Dan, Klosterman Steven J, Li Ting-Gang, Gui Yue-Jing, Kong Zhi-Qiang, Ma Xue-Feng, Short Dylan P G, Zhang Wen-Qi, Li Jun-Jiao, Subbarao Krishna V, Chen Jie-Yin, Dai Xiao-Feng

机构信息

Laboratory of Cotton Disease, Institute of Food Science and Technology, Chinese Academy of Agricultural Sciences, c/o Key Laboratory of Agro-products Quality and Safety Control in Storage and Transport Process, Ministry of Agriculture, Beijing, China.

Crop Improvement and Protection Research Unit, United States Department of Agriculture, Agricultural Research Service, Salinas, CA, United States.

出版信息

Front Plant Sci. 2018 Feb 6;9:119. doi: 10.3389/fpls.2018.00119. eCollection 2018.

Abstract

Verticillium wilt caused by results in severe losses in cotton, and is economically the most destructive disease of this crop. Improving genetic resistance is the cleanest and least expensive option to manage Verticillium wilt. Previously, we identified the island cotton NBS-LRR-encoding gene that confers resistance to the highly virulent isolate Vd991. In this study, we expressed cotton in the heterologous system of and investigated the defense response mediated by GbaNA1 following inoculations with . Heterologous expression of conferred Verticillium wilt resistance in . Moreover, overexpression of enabled recovery of the resistance phenotype of mutants that had lost the function of ortholog gene. Investigations of the defense response in showed that the reactive oxygen species (ROS) production and the expression of genes associated with the ethylene signaling pathway were enhanced significantly following overexpression of . Intriguingly, overexpression of the ortholog from () in did not induce the defense response of ROS production due to the premature termination of , which lacks the encoded NB-ARC and LRR motifs. therefore confers Verticillium wilt resistance in by the activation of ROS production and ethylene signaling. These results demonstrate the functional conservation of the NBS-LRR-encoding in a heterologous system, and the mechanism of this resistance, both of which may prove valuable in incorporating -mediated resistance into other plant species.

摘要

由……引起的棉花黄萎病会导致棉花严重减产,在经济上是这种作物最具毁灭性的病害。提高遗传抗性是防治棉花黄萎病最清洁且成本最低的选择。此前,我们鉴定出海岛棉中一个编码NBS-LRR的基因,它对高毒力的……分离株Vd991具有抗性。在本研究中,我们在……的异源系统中表达棉花……,并在接种……后研究了GbaNA1介导的防御反应。……的异源表达赋予了……对黄萎病的抗性。此外,……的过表达使失去……直系同源基因功能的……突变体恢复了抗性表型。对……中防御反应的研究表明,……过表达后,活性氧(ROS)的产生以及与乙烯信号通路相关基因的表达显著增强。有趣的是,在……中过表达来自……的……直系同源基因(……)并未诱导ROS产生的防御反应,因为……由于缺少编码的NB-ARC和LRR基序而提前终止。因此,……通过激活ROS产生和乙烯信号赋予了……对黄萎病的抗性。这些结果证明了编码……的NBS-LRR在异源系统中的功能保守性以及这种抗性的机制,这两者对于将……介导的抗性整合到其他植物物种中可能具有重要价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc7e/5808209/5f5967dce1c7/fpls-09-00119-g001.jpg

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