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通过粳稻和籼稻亚种基因组加倍的F1杂种快速形成稳定的同源四倍体水稻。

Rapid formation of stable autotetraploid rice from genome-doubled F1 hybrids of japonica-indica subspecies.

作者信息

Han Xu, Li Jiahao, Li Guo, Zhang Zhibin, Lian Taotao, Zhang Bingqi, Luo Ting, Lv Ruili, Cai Xiaojing, Lin Xiuyun, Xu Chunming, Wu Ying, Gong Lei, Wendel Jonathan F, Liu Bao

机构信息

Key Laboratory of Molecular Epigenetics of the Ministry of Education (MOE), Northeast Normal University, Changchun, China.

Department of Ecology, Evolution and Organismal Biology, Iowa State University, Ames, IA, USA.

出版信息

Nat Plants. 2025 Apr;11(4):743-760. doi: 10.1038/s41477-025-01966-2. Epub 2025 Mar 31.

Abstract

Theory predicts that in the absence of selection, a newly formed segmental allopolyploid will become 'autopolyploidized' if homoeologous exchanges (HEs) occur freely. Moreover, because selection against meiotic abnormalities is expected to be strong in the initial generations, we anticipate HEs to be uncommon in evolved segmental allopolyploids. Here we analysed the whole-genome composition of 202 phenotypically homogeneous and stable rice tetraploid recombinant inbred lines (TRILs) derived from Oryza sativa subsp. japonica subsp. indica hybridization/whole-genome doubling. We measured functional traits related to growth, development and reproductive fitness, and analysed meiotic chromosomal behaviour of the TRILs. We uncover factors that constrain the genomic composition of the TRILs, including asymmetric parental contribution and exclusive uniparental segment retention. Intriguingly, some TRILs that have high fertility and abiotic stress resilience co-occur with largely stabilized meiosis. Our findings comprise evidence supporting the evolutionary possibility of HE-catalysed 'allo-to-auto' polyploidy transitions in nature, with implications for creating new polyploid crops.

摘要

理论预测,在没有选择作用的情况下,如果同源交换(HEs)能够自由发生,那么新形成的节段异源多倍体将“自体多倍体化”。此外,由于预计在最初几代中对减数分裂异常的选择作用会很强,我们预计在进化的节段异源多倍体中同源交换并不常见。在此,我们分析了202个表型均一且稳定的水稻四倍体重组自交系(TRILs)的全基因组组成,这些重组自交系源自粳稻亚种与籼稻亚种杂交/全基因组加倍。我们测量了与生长、发育和生殖适合度相关的功能性状,并分析了TRILs的减数分裂染色体行为。我们发现了限制TRILs基因组组成的因素,包括不对称的亲本贡献和单亲片段的排他性保留。有趣的是,一些具有高育性和非生物胁迫抗性的TRILs同时伴随着减数分裂的大幅稳定。我们的研究结果为自然条件下由同源交换催化的“异源到同源”多倍体转变的进化可能性提供了证据,这对培育新的多倍体作物具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a3cc/12015120/068dc2c95c30/41477_2025_1966_Fig1_HTML.jpg

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