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水稻(Oryza sativa L.)中一个新型独脚金内酯不敏感突变体——高分蘖矮化34(dhta-34)的鉴定与特征分析

Identification and Characterization of a Novel Strigolactone-Insensitive Mutant, Dwarfism with High Tillering Ability 34 (dhta-34) in Rice (Oryza sativa L.).

作者信息

Liang Rong, Qin Ran, Yang Chengcong, Zeng Dongdong, Jin Xiaoli, Shi Chunhai

机构信息

Department of Agronomy, Zhejiang University, Hangzhou, 310058, China.

出版信息

Biochem Genet. 2019 Jun;57(3):403-420. doi: 10.1007/s10528-018-9896-z. Epub 2019 Jan 1.

Abstract

Rice tillering ability and plant height are two of the important traits determining the grain yield. A novel rice (Oryza sativa L.) mutant dhta-34 from an Indica cultivar Zhenong 34 treated by ethyl methy1 sulfonate (EMS) was investigated in this study. The dhta-34 mutant significantly revealed thrifty tillers with reduced plant height, smaller panicles and lighter grains. It also exhibited late-maturing (19.80 days later than the wild type) and withered leaf tip during the mature stage. The length of each internode was reduced compared to the wild type, belonging to the dn type (each internode of the plant stem decreased in the same ratio). The longitudinal section of dhta-34 internodes showed that the length of cells was reduced leading to the dwarfism of the mutant. The F population derived from a cross between dhta-34 and an Japonica cultivar Zhenongda 104 were used for gene mapping by using the map-based cloning strategy. The gene DHTA-34 was fine mapped in 183.8kb region flanked by markers 3R-7 and 3R-10. The cloning and sequencing of the target region from the mutant revealed that there was a substitution of G to A in the second exon of LOC_Os03g10620, which resulted in an amino acid substitution arginine to histidine. DHTA-34 encoded a protein of the α/β-fold hydrolase superfamily, which could suppress the tillering ability of rice. DHTA-34 was a strong loss-of-function allele of the Arabidopsis thaliana D14 gene, which was involved in part of strigolactones (SLs) perception and signaling. Moreover, the relative expression of DHTA-34 gene in leaf was higher than that in bud, internode, root or sheath. This study revealed that DHTA-34 played an important role in inhabiting tiller development in rice and further identifying the function of D14.

摘要

水稻分蘖能力和株高是决定粮食产量的两个重要性状。本研究对一个来自籼稻品种浙农34经甲基磺酸乙酯(EMS)处理后的新型水稻(Oryza sativa L.)突变体dhta - 34进行了研究。dhta - 34突变体显著表现出分蘖节俭、株高降低、穗较小且谷粒较轻。它在成熟阶段还表现出晚熟(比野生型晚19.80天)和叶尖枯萎。与野生型相比,每个节间的长度都缩短了,属于dn型(植株茎的每个节间以相同比例缩短)。dhta - 34节间的纵切面显示细胞长度缩短导致了突变体的矮化。通过图位克隆策略,利用dhta - 34与粳稻品种浙农大104杂交产生的F群体进行基因定位。基因DHTA - 34被精细定位在标记3R - 7和3R - 10两侧的183.8kb区域。对突变体目标区域的克隆和测序表明,LOC_Os03g10620的第二个外显子中有一个G到A的替换,导致氨基酸从精氨酸替换为组氨酸。DHTA - 34编码一种α/β折叠水解酶超家族的蛋白质,它可以抑制水稻的分蘖能力。DHTA - 34是拟南芥D14基因的一个强功能缺失等位基因,该基因参与了部分独脚金内酯(SLs)的感知和信号传导。此外,DHTA - 34基因在叶中的相对表达高于芽、节间、根或叶鞘。本研究表明,DHTA - 34在抑制水稻分蘖发育中起重要作用,并进一步明确了D14的功能。

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