对小麦主要创始亲本周8425b的基因组分析揭示了其对小麦优良农艺性状的遗传贡献。

IF 9.4 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Guangwei Li, Yan Ren, Yuxin Yang, Shulin Chen, Jizhou Zheng, Xiaoqing Zhang, Junlong Li, Mengen Chen, Xiaonan Sun, Chunlei Lv, Xiaode Li, Bingbing Zhang, Xiao Sun, Yujia Li, Mingtian Zhao, Chunhao Dong, Jianwei Tang, Zhenpu Huang, Yanyan Peng, Dengbin Gu, Zhiyong Wang, Hongyuan Zheng, Cuilan Shi, Guozhang Kang, Tiancun Zheng, Feng Chen, Daowen Wang, Kunpu Zhang, Guihong Yin
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引用次数: 0

摘要

高质量的基因组信息对于有效地破译和改善作物性状至关重要。本文报道了小麦关键育种亲本周8425b的高度连续和精确的六倍体基因组组装。周8425b是一种具有黄锈病抗性(APR)的优良1BL/1RS易位系。通过整合HiFi和Hi-C测序reads,获得了14.75 Gb的周8425b基因组组装,其中contig N50和scaffold N50分别达到70.94和735.11 Mb。通过与已测序的普通小麦品种的比较,揭示了在小麦改良中广泛应用的1RS染色体臂的结构变化。有趣的是,在迄今测序的四种小麦和黑麦基因型中,周8425b 1RS携带的AP2/ERF-ERF或B3转录因子(tf)基因比其对应基因多。Zhou8425B基因组的组装有助于精确定位一个新的APR位点(YrZH3BS),该位点在田间条件下显著降低了YR病的严重程度,提高了粮食产量。值得注意的是,将YrZH3BS与两个已知的APR位点(YrZH22和YrZH84)结合,可以进一步降低YR的严重程度,提高粮食产量,其中三联配(YrZH3B+YrZH22+YrZH84)效果最好。最后,利用公开的基因组重测序数据探讨了周8425b的创始基因型效应,发现了其衍生品种中重要的周8425b基因组片段。本研究结果为进一步研究小麦1RS的结构和功能特征、小麦抗病的遗传基础以及小麦育种中的创始人基因型效应提供了价值。我们的资源将通过基因组辅助育种促进优质小麦品种的发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Genomic analysis of Zhou8425B, a key founder parent, reveals its genetic contributions to elite agronomic traits in wheat breeding.

High-quality genome information is essential for efficiently deciphering and improving crop traits. Here, we report a highly contiguous and accurate hexaploid genome assembly for the key wheat breeding parent Zhou8425B, an elite 1BL/1RS translocation line with durable adult plant resistance (APR) against yellow rust (YR) disease. By integrating HiFi and Hi-C sequencing reads, we have generated a 14.75-Gb genome assembly for Zhou8425B with a contig N50 of 70.94 and a scaffold N50 of 735.11 Mb. Comparisons with previously sequenced common wheat cultivars shed light on structural changes in the 1RS chromosome arm, which has been extensively used in wheat improvement. Interestingly, Zhou8425B 1RS carries more genes encoding AP2/ERF-ERF or B3 transcription factors than its counterparts in four previously sequenced wheat and rye genotypes. The Zhou8425B genome assembly aided in the fine mapping of a new APR locus (YrZH3BS) that confers resistance to YR disease and promotes grain yield under field conditions. Notably, pyramiding YrZH3BS with two previously characterized APR loci (YrZH22 and YrZH84) can further reduce YR severity and enhance grain yield, with the triple combination (YrZH3B + YrZH22 + YrZH84) having the greatest effect. Finally, the founder genotype effects of Zhou8425B were explored using publicly available genome resequencing data, which reveals the presence of important Zhou8425B genomic blocks in its derivative cultivars. Our data demonstrate the value of the Zhou8425B genome assembly for further study of the structural and functional characteristics of 1RS, the genetic basis of durable YR resistance, and founder genotype effects in wheat breeding. Our resources will facilitate the development of elite wheat cultivars through genomics-assisted breeding.

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来源期刊
Plant Communications
Plant Communications Agricultural and Biological Sciences-Plant Science
CiteScore
15.70
自引率
5.70%
发文量
105
审稿时长
6 weeks
期刊介绍: Plant Communications is an open access publishing platform that supports the global plant science community. It publishes original research, review articles, technical advances, and research resources in various areas of plant sciences. The scope of topics includes evolution, ecology, physiology, biochemistry, development, reproduction, metabolism, molecular and cellular biology, genetics, genomics, environmental interactions, biotechnology, breeding of higher and lower plants, and their interactions with other organisms. The goal of Plant Communications is to provide a high-quality platform for the dissemination of plant science research.
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