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鉴定与大豆株高和藤蔓生长相关的基因组区域。

Identification of Genomic Regions Associated with Vine Growth and Plant Height of Soybean.

机构信息

National Key Facility for Crop Gene Resources and Genetic Improvement, Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing 100081, China.

出版信息

Int J Mol Sci. 2022 May 22;23(10):5823. doi: 10.3390/ijms23105823.

Abstract

Vining growth (VG) and high plant height (PH) are the physiological traits of wild soybean that preclude their utilization for domesticated soybean breeding and improvement. To identify VG- and PH-related quantitative trait loci (QTLs) in different genetic resources, two populations of recombinant inbred lines (RILs) were developed by crossing a cultivated soybean, Zhonghuang39 (ZH39), with two wild soybean accessions, NY27-38 and NY36-87. Each line from the two crosses was evaluated for VG and PH. Three QTLs for VG and three for PH, detected in the ZH39 × NY27-38 population of the RILs, co-located on chromosomes 2, 17 and 19. The VG- and PH-related QTL in the ZH39 × NY36-87 population co-located on chromosome 19. A common QTL shared by the two populations was located on chromosome 19, suggesting that this major QTL was consistently selected for in different genetic backgrounds. The results suggest that different loci are involved in the domestication or adaptations of soybean of various genetic backgrounds. The molecular markers presented here would benefit the fine mapping and cloning of candidate genes underlying the VG and PH co-localized regions and thus facilitate the utilization of wild resources in breeding by avoiding undesirable traits.

摘要

卷曲生长 (VG) 和高株高 (PH) 是野生大豆的生理特性,这使得它们无法用于驯化大豆的培育和改良。为了鉴定不同遗传资源中与 VG 和 PH 相关的数量性状基因座 (QTL),我们通过杂交栽培大豆中黄 39 号 (ZH39) 与两个野生大豆品系 NY27-38 和 NY36-87,开发了两个重组自交系 (RIL) 群体。来自这两个杂交的每条系都进行了 VG 和 PH 的评估。在 ZH39 × NY27-38 RIL 群体中检测到三个与 VG 相关的 QTL 和三个与 PH 相关的 QTL,它们共同位于染色体 2、17 和 19 上。在 ZH39 × NY36-87 群体中,与 VG 和 PH 相关的 QTL 位于染色体 19 上。两个群体共有的一个 QTL 位于染色体 19 上,这表明该主要 QTL 在不同遗传背景下一直被选择。结果表明,不同的基因座参与了不同遗传背景下大豆的驯化或适应。本研究提供的分子标记将有助于 VG 和 PH 共定位区域候选基因的精细定位和克隆,从而避免不良性状,促进野生资源在育种中的利用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e679/9146324/dce5cf8d05e0/ijms-23-05823-g001.jpg

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