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一种优良抗旱玉米种质的基因组组装与遗传解析

Genome assembly and genetic dissection of a prominent drought-resistant maize germplasm.

作者信息

Tian Tian, Wang Shuhui, Yang Shiping, Yang Zhirui, Liu Shengxue, Wang Yijie, Gao Huajian, Zhang Shuaisong, Yang Xiaohong, Jiang Caifu, Qin Feng

机构信息

State Key Laboratory of Plant Environmental Resilience, College of Biological Science, China Agricultural University, Beijing, China.

School of Life Sciences and Medicine, Shandong University of Technology, Zibo, China.

出版信息

Nat Genet. 2023 Mar;55(3):496-506. doi: 10.1038/s41588-023-01297-y. Epub 2023 Feb 20.

Abstract

In the context of climate change, drought is one of the most limiting factors that influence crop production. Maize, as a major crop, is highly vulnerable to water deficit, which causes significant yield loss. Thus, identification and utilization of drought-resistant germplasm are crucial for the genetic improvement of the trait. Here we report on a high-quality genome assembly of a prominent drought-resistant genotype, CIMBL55. Genomic and genetic variation analyses revealed that 65 favorable alleles of 108 previously identified drought-resistant candidate genes were found in CIMBL55, which may constitute the genetic basis for its excellent drought resistance. Notably, ZmRtn16, encoding a reticulon-like protein, was found to contribute to drought resistance by facilitating the vacuole H-ATPase activity, which highlights the role of vacuole proton pumps in maize drought resistance. The assembled CIMBL55 genome provided a basis for genetic dissection and improvement of plant drought resistance, in support of global food security.

摘要

在气候变化的背景下,干旱是影响作物产量的最限制因素之一。玉米作为主要作物,对水分亏缺高度敏感,会导致显著的产量损失。因此,抗旱种质的鉴定与利用对于该性状的遗传改良至关重要。在此,我们报告了一个突出的抗旱基因型CIMBL55的高质量基因组组装。基因组和遗传变异分析表明,在CIMBL55中发现了108个先前鉴定的抗旱候选基因中的65个有利等位基因,这可能构成了其优异抗旱性的遗传基础。值得注意的是,编码类网织蛋白的ZmRtn16被发现通过促进液泡H-ATP酶活性来增强抗旱性,这突出了液泡质子泵在玉米抗旱中的作用。组装的CIMBL55基因组为植物抗旱性的遗传解析和改良提供了基础,以支持全球粮食安全。

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