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基因组重测序揭示同源四倍体水稻及其近缘种的丰富遗传多样性和在水稻育种中的巨大应用潜力。

Genome Resequencing for Autotetraploid Rice and Its Closest Relatives Reveals Abundant Variation and High Potential in Rice Breeding.

机构信息

Chengdu Institute of Biology, Chinese Academy of Sciences, Chengdu 610213, China.

State Key Laboratory of Biocatalysis and Enzyme Engineering, School of Life Sciences, Hubei University, Wuhan 430062, China.

出版信息

Int J Mol Sci. 2024 Aug 19;25(16):9012. doi: 10.3390/ijms25169012.

Abstract

Polyploid rice and its reverted diploid show rich phenotypic variation and strong heterosis, showing great breeding value. However, the genomic differences among tetraploids, counterpart common diploids, tetraploid-revertant diploids, and hybrid descendants are unclear. In this work, we bred a new excellent two-line hybrid rice variety, (HTRM12), using Haitian tetraploid self-reverted diploid (HTRM2). Furthermore, we comparatively analyzed the important agronomic traits and genome-wide variations of those closest relatives, Haitian diploid (HT2), Haitian tetraploid (HT4), HTRM2, and HTRM12 in detail, based on multiple phenotypic investigations, genome resequencing, and bioinformatics analysis. The results of agronomic traits analysis and genome-wide variation analysis of single nucleotide polymorphism (SNP), insertion-deletion (InDel), and copy number variation (CNV) show that HT4 and HTRM2 had abundant phenotypic and genomic variations compared to HT2. HTRM2 can inherit important traits and variations from HT4. This implies that tetraploid self-reverted diploid has high potential in creating excellent breeding materials and in breeding breakthrough hybrid rice varieties. Our study verifies the feasibility that polyploid rice could be used as a mutation carrier for creating variations and provides genomic information, new breeding materials, and a new way of application for tetraploid rice breeding.

摘要

多倍体水稻及其回复的二倍体表现出丰富的表型变异和强大的杂种优势,具有巨大的育种价值。然而,四倍体、相应的普通二倍体、四倍体回复二倍体和杂种后代之间的基因组差异尚不清楚。在这项工作中,我们利用海地四倍体自回复二倍体(HTRM2)育成了一个新的优良两系杂交稻品种(HTRM12)。此外,我们还基于多个性状调查、基因组重测序和生物信息学分析,详细比较分析了这些近亲(HT2、HT4、HTRM2 和 HTRM12)的重要农艺性状和全基因组变异。单核苷酸多态性(SNP)、插入缺失(InDel)和拷贝数变异(CNV)的农艺性状分析和全基因组变异分析结果表明,HT4 和 HTRM2 与 HT2 相比具有丰富的表型和基因组变异。HTRM2 可以从 HT4 中继承重要的性状和变异。这意味着四倍体自回复二倍体在创造优良的育种材料和培育突破性杂交稻品种方面具有很高的潜力。我们的研究验证了多倍体水稻可作为创造变异的突变载体的可行性,为四倍体水稻的育种提供了基因组信息、新的育种材料和新的应用途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb4a/11354466/47b20dac095b/ijms-25-09012-g001.jpg

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