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水稻抗褐飞虱基因的分子机制与育种利用研究进展:综述

Recent Advances in Molecular Mechanism and Breeding Utilization of Brown Planthopper Resistance Genes in Rice: An Integrated Review.

作者信息

Yan Liuhui, Luo Tongping, Huang Dahui, Wei Minyi, Ma Zengfeng, Liu Chi, Qin Yuanyuan, Zhou Xiaolong, Lu Yingping, Li Rongbai, Qin Gang, Zhang Yuexiong

机构信息

Guangxi Key Laboratory of Rice Genetics and Breeding, Rice Research Institute, Guangxi Academy of Agricultural Sciences, Nanning 530007, China.

Liuzhou Branch, Guangxi Academy of Agricultural Sciences, Liuzhou Research Center of Agricultural Sciences, Liuzhou 545000, China.

出版信息

Int J Mol Sci. 2023 Jul 27;24(15):12061. doi: 10.3390/ijms241512061.

Abstract

Over half of the world's population relies on rice as their staple food. The brown planthopper ( Stål, BPH) is a significant insect pest that leads to global reductions in rice yields. Breeding rice varieties that are resistant to BPH has been acknowledged as the most cost-effective and efficient strategy to mitigate BPH infestation. Consequently, the exploration of BPH-resistant genes in rice and the development of resistant rice varieties have become focal points of interest and research for breeders. In this review, we summarized the latest advancements in the localization, cloning, molecular mechanisms, and breeding of BPH-resistant rice. Currently, a total of 70 BPH-resistant gene loci have been identified in rice, 64 out of 70 genes/QTLs were mapped on chromosomes 1, 2, 3, 4, 6, 8, 10, 11, and 12, respectively, with 17 of them successfully cloned. These genes primarily encode five types of proteins: lectin receptor kinase (LecRK), coiled-coil-nucleotide-binding-leucine-rich repeat (CC-NB-LRR), B3-DNA binding domain, leucine-rich repeat domain (LRD), and short consensus repeat (SCR). Through mediating plant hormone signaling, calcium ion signaling, protein kinase cascade activation of cell proliferation, transcription factors, and miRNA signaling pathways, these genes induce the deposition of callose and cell wall thickening in rice tissues, ultimately leading to the inhibition of BPH feeding and the formation of resistance mechanisms against BPH damage. Furthermore, we discussed the applications of these resistance genes in the genetic improvement and breeding of rice. Functional studies of these insect-resistant genes and the elucidation of their network mechanisms establish a strong theoretical foundation for investigating the interaction between rice and BPH. Furthermore, they provide ample genetic resources and technical support for achieving sustainable BPH control and developing innovative insect resistance strategies.

摘要

世界上超过一半的人口以大米为主食。褐飞虱(Stål,BPH)是一种重要的害虫,导致全球水稻产量下降。培育抗褐飞虱的水稻品种被认为是减轻褐飞虱侵害最具成本效益和效率的策略。因此,在水稻中探索抗褐飞虱基因以及培育抗性水稻品种已成为育种者关注和研究的焦点。在本综述中,我们总结了抗褐飞虱水稻在定位、克隆、分子机制和育种方面的最新进展。目前,水稻中总共已鉴定出70个抗褐飞虱基因位点,其中70个基因/数量性状位点中的64个分别定位在第1、2、3、4、6、8、10、11和12号染色体上,其中17个已成功克隆。这些基因主要编码五种类型的蛋白质:凝集素受体激酶(LecRK)、卷曲螺旋-核苷酸结合-富含亮氨酸重复序列(CC-NB-LRR)、B3-DNA结合结构域、富含亮氨酸重复结构域(LRD)和短共有重复序列(SCR)。通过介导植物激素信号传导、钙离子信号传导、蛋白激酶级联激活细胞增殖、转录因子和miRNA信号通路,这些基因诱导水稻组织中胼胝质的沉积和细胞壁增厚,最终导致抑制褐飞虱取食并形成抗褐飞虱危害的抗性机制。此外,我们还讨论了这些抗性基因在水稻遗传改良和育种中的应用。这些抗虫基因的功能研究及其网络机制的阐明为研究水稻与褐飞虱之间的相互作用奠定了坚实的理论基础。此外,它们为实现褐飞虱的可持续防治和开发创新的抗虫策略提供了丰富的遗传资源和技术支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/26e6/10419156/2ed5b9acc900/ijms-24-12061-g001.jpg

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