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全基因组关联研究与上位性分析相结合揭示亚洲栽培稻株高的多方面遗传结构。

Combined genome-wide association study and epistasis analysis reveal multifaceted genetic architectures of plant height in Asian cultivated rice.

作者信息

Hong Jun, Su Su, Wang Li, Bai Shaoxing, Xu Jianlong, Li Zhikang, Betts Natalie, Liang Wanqi, Wang Wensheng, Shi Jianxin, Zhang Dabing

机构信息

Joint International Research Laboratory of Metabolic and Developmental Sciences, State Key Laboratory of Hybrid Rice, School of Life Sciences and Biotechnology, Yazhou Bay Institute of Deepsea Sci-Tech, Shanghai Jiao Tong University, Shanghai, China.

Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing, China.

出版信息

Plant Cell Environ. 2023 Apr;46(4):1295-1311. doi: 10.1111/pce.14557. Epub 2023 Feb 9.

Abstract

Plant height (PH) in rice (Oryza sativa) is an important trait for its adaptation and agricultural performance. Discovery of the semi-dwarf1 (SD1) mutation initiated the Green Revolution, boosting rice yield and fitness, but the underlying genetic regulation of PH in rice remains largely unknown. Here, we performed genome-wide association study (GWAS) and identified 12 non-repetitive QTL/genes regulating PH variation in 619 Asian cultivated rice accessions. One of these was an SD1 structural variant, not normally detected in standard GWAS analyses. Given the strong effect of SD1 on PH, we also divided 619 accessions into subgroups harbouring distinct SD1 haplotypes, and found a further 85 QTL/genes for PH, revealing genetic heterogeneity that may be missed by analysing a broad, diverse population. Moreover, we uncovered two epistatic interaction networks of PH-associated QTL/genes in the japonica (Geng)-dominant SD1 subgroup. In one of them, the hub QTL/gene qphSN1.4/GAMYB interacted with qphSN3.1/OsINO80, qphSN3.4/HD16/EL1, qphSN6.2/LOC_Os06g11130, and qphSN10.2/MADS56. Sequence variations in GAMYB and MADS56 were associated with their expression levels and PH variations, and MADS56 was shown to physically interact with MADS57 to coregulate expression of gibberellin (GA) metabolic genes OsGA2ox3 and Elongated Uppermost Internode1 (EUI1). Our study uncovered the multifaceted genetic architectures of rice PH, and provided novel and abundant genetic resources for breeding semi-dwarf rice and new candidates for further mechanistic studies on regulation of PH in rice.

摘要

水稻(Oryza sativa)的株高(PH)是其适应性和农业生产性能的一个重要性状。半矮秆1(SD1)突变的发现引发了绿色革命,提高了水稻产量和适应性,但水稻株高潜在的遗传调控机制仍 largely未知。在此,我们进行了全基因组关联研究(GWAS),并在619份亚洲栽培稻种质中鉴定出12个调控株高变异的非重复数量性状位点/基因。其中之一是一个SD1结构变异体,在标准GWAS分析中通常检测不到。鉴于SD1对株高的强烈影响,我们还将619份种质分为携带不同SD1单倍型的亚组,并发现了另外85个株高相关的数量性状位点/基因,揭示了通过分析广泛多样的群体可能遗漏的遗传异质性。此外,我们在粳稻(Geng)主导的SD1亚组中发现了两个株高相关数量性状位点/基因的上位性相互作用网络。在其中一个网络中,核心数量性状位点/基因qphSN1.4/GAMYB与qphSN3.1/OsINO80、qphSN3.4/HD16/EL1、qphSN6.2/LOC_Os06g11130和qphSN10.2/MADS56相互作用。GAMYB和MADS56中的序列变异与其表达水平和株高变异相关,并且MADS56被证明与MADS57发生物理相互作用,以共同调控赤霉素(GA)代谢基因OsGA2ox3和最上节间伸长基因1(EUI1)的表达。我们的研究揭示了水稻株高多方面的遗传结构,并为培育半矮秆水稻提供了新的丰富遗传资源,以及为进一步开展水稻株高调控机制研究提供了新的候选基因。

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