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鉴定和功能表征来自 的两个与抗褐飞虱 () 相关的主基因座

Identification and Functional Characterization of Two Major Loci Associated with Resistance against Brown Planthoppers () Derived from .

机构信息

ICAR-Indian Institute of Rice Research, Hyderabad 500030, India.

International Crops Research Institute for the Semi-Arid Tropics (ICRISAT), Hyderabad 502324, India.

出版信息

Genes (Basel). 2023 Nov 11;14(11):2066. doi: 10.3390/genes14112066.

Abstract

The brown planthopper (BPH) is a highly destructive pest of rice, causing significant economic losses in various regions of South and Southeast Asia. Researchers have made promising strides in developing resistance against BPH in rice. Introgression line RPBio4918-230S, derived from , has shown consistent resistance to BPH at both the seedling and adult stages of rice plants. Segregation analysis has revealed that this resistance is governed by two recessive loci, known as and , contributing to 21% and 22% of the phenotypic variance, respectively. We later mapped the genes using a backcross population derived from a cross between Swarna and RPBio4918-230S. We identified specific marker loci, namely RM8213, RM5953, and R4M17, on chromosome 4, flanking the and loci. Furthermore, quantitative expression analysis of candidate genes situated between the RM8213 and R4M17 markers was conducted. It was observed that eight genes exhibited up-regulation in RPBio4918-230S and down-regulation in Swarna after BPH infestation. One gene of particular interest, a serine/threonine-protein kinase receptor (), showed significant up-regulation in RPBio4918-230S. In-depth sequencing of the susceptible and resistant alleles of from Swarna and RPBio4918-230S, respectively, revealed numerous single nucleotide polymorphisms (SNPs) and insertion-deletion (InDel) mutations, both in the coding and regulatory regions of the gene. Notably, six of these mutations resulted in amino acid substitutions in the coding region of (R5K, I38L, S120N, T319A, T320S, and F348S) when compared to Swarna and the reference sequence of . Further validation of these mutations in a set of highly resistant and susceptible backcross inbred lines confirmed the candidacy of the gene with respect to BPH resistance controlled by and . Functional markers specific for have been developed and validated and can be used for accelerated transfer of the resistant locus to elite rice cultivars.

摘要

褐飞虱(BPH)是水稻的一种极具破坏性的害虫,在南亚和东南亚的各个地区造成了重大的经济损失。研究人员在培育水稻抗褐飞虱方面取得了可喜的进展。源自 的导入系 RPBio4918-230S 在水稻植株的幼苗和成虫阶段均表现出对 BPH 的一致抗性。分离分析表明,这种抗性由两个隐性基因座 和 控制,分别贡献了 21%和 22%的表型方差。我们后来使用源自 Swarna 和 RPBio4918-230S 杂交的回交群体对基因进行了定位。我们在第 4 号染色体上确定了特定的标记基因 RM8213、RM5953 和 R4M17,它们位于 和 基因座的侧翼。此外,对位于 RM8213 和 R4M17 标记之间的候选基因进行了定量表达分析。观察到在 BPH 侵染后,8 个基因在 RPBio4918-230S 中上调表达,而在 Swarna 中下调表达。一个特别有趣的基因,丝氨酸/苏氨酸蛋白激酶受体(),在 RPBio4918-230S 中显著上调表达。对来自 Swarna 和 RPBio4918-230S 的 的敏感和抗性等位基因进行深度测序,分别在基因的编码和调控区域发现了大量的单核苷酸多态性(SNP)和插入缺失(InDel)突变。值得注意的是,与 Swarna 和 的参考序列相比,这些突变中有 6 个导致编码区的氨基酸替换(R5K、I38L、S120N、T319A、T320S 和 F348S)。在一组高度抗性和敏感性回交自交系中对这些突变的进一步验证证实了 基因候选性,该基因与 和 控制的 BPH 抗性有关。已经开发和验证了针对 的功能标记,可以用于加速将抗性基因座转移到优良水稻品种中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/345a/10671472/0e7b984549df/genes-14-02066-g001.jpg

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