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

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作者
Tian Tian
Shuhui Wang
Shiping Yang
Zhirui Yang
Shengxue Liu
Yijie Wang
Huajian Gao
Shuaisong Zhang
Xiaohong Yang
Caifu Jiang
Feng Qin
机构
[1] China Agricultural University,State Key Laboratory of Plant Environmental Resilience, College of Biological Science
[2] China Agricultural University,Center for Crop Functional Genomics and Molecular Breeding
[3] China Agricultural University,National Maize Improvement Center of China
[4] Shandong University of Technology,School of Life Sciences and Medicine
来源
Nature Genetics | 2023年 / 55卷
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摘要
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.
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页码:496 / 506
页数:10
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