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编码丝裂原活化蛋白激酶的水稻细菌性条斑病抗性基因1赋予水稻对细菌性条斑病的抗性。

Bacterial leaf streak 1 encoding a mitogen-activated protein kinase confers resistance to bacterial leaf streak in rice.

作者信息

Ma Zengfeng, Qin Gang, Zhang Yuexiong, Liu Chi, Wei Minyi, Cen Zhenlu, Yan Yong, Luo Tongping, Li Zhenjing, Liang Haifu, Huang Dahui, Deng Guofu

机构信息

Guangxi Key Laboratory of Rice Genetics and Breeding, Guangxi Crop Genetic Improvement and Biotechnology Lab, Rice Research Institute, Guangxi Academy of Agricultural Sciences, Nanning, 530007, China.

Plant Protection Research Institute, Guangxi Academy of Agricultural Sciences, Nanning, China.

出版信息

Plant J. 2021 Aug;107(4):1084-1101. doi: 10.1111/tpj.15368. Epub 2021 Jul 19.

Abstract

Bacterial leaf streak (BLS) is a major bacterial disease of rice. Utilization of host genetic resistance has become one of the most important strategies for controlling BLS. However, only a few resistance genes have been characterized. Previously, a recessive BLS resistance gene bls1 was roughly mapped on chromosome 6. Here, we further delineated bls1 to a 21 kb region spanning four genes. Genetic analysis confirmed that the gene encoding a mitogen-activated protein kinase (OsMAPK6) is the target of the allelic genes BLS1 and bls1. Overexpression of BLS1 weakened resistance to the specific Xanthomonas oryzae pv. oryzicola (Xoc) strain JZ-8, while low expression of bls1 increased resistance. However, both overexpression of BLS1 and low expression of bls1 could increase no-race-specific broad-spectrum resistance. These results indicate that BLS1 and bls1 negatively regulate race-specific resistance to Xoc strain JZ-8 but positively and negatively control broad-spectrum resistance, respectively. Subcellular localization demonstrated that OsMAPK6 was localized in the nucleus. RGA4, which is known to mediate resistance to Xoc, is the potential target of OsMAPK6. Overexpression of BLS1 and low expression of bls1 showed increase in salicylic acid and induced expression of defense-related genes, simultaneously increasing broad-spectrum resistance. Moreover, low expression of bls1 showed increase an in jasmonic acid and abscisic acid, in company with an increase in resistance to Xoc strain JZ-8. Collectively, our study provides new insights into the understanding of BLS resistance and facilitates the development of rice host-resistant cultivars.

摘要

细菌性条斑病(BLS)是水稻的一种主要细菌性病害。利用寄主遗传抗性已成为控制BLS最重要的策略之一。然而,仅有少数抗性基因得到了鉴定。此前,一个隐性BLS抗性基因bls1被粗略定位在6号染色体上。在此,我们进一步将bls1定位到一个跨越四个基因的21 kb区域。遗传分析证实,编码丝裂原活化蛋白激酶(OsMAPK6)的基因是等位基因BLS1和bls1的作用靶点。BLS1的过表达削弱了对特定水稻条斑病菌(Xoc)菌株JZ - 8的抗性,而bls1的低表达则增强了抗性。然而,BLS1的过表达和bls1的低表达均可增强非小种特异性的广谱抗性。这些结果表明,BLS1和bls1分别对Xoc菌株JZ - 8的小种特异性抗性起负调控作用,但分别对广谱抗性起正调控和负调控作用。亚细胞定位表明,OsMAPK6定位于细胞核。已知介导对Xoc抗性的RGA4是OsMAPK6的潜在作用靶点。BLS1的过表达和bls1的低表达均导致水杨酸含量增加并诱导防御相关基因的表达,同时增强了广谱抗性。此外,bls1的低表达还导致茉莉酸和脱落酸含量增加,同时增强了对Xoc菌株JZ - 8的抗性。总体而言,我们的研究为理解BLS抗性提供了新的见解,并有助于水稻寄主抗性品种的培育。

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