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混合分组分析法揭示了木本油料作物蓖麻中导致矮化形成的候选基因。

Bulked segregant analysis reveals candidate genes responsible for dwarf formation in woody oilseed crop castor bean.

作者信息

Wang Zaiqing, Yu Anmin, Li Fei, Xu Wei, Han Bing, Cheng Xiaomao, Liu Aizhong

机构信息

Department of Economic Plants and Biotechnology, Yunnan Key Laboratory for Wild Plant Resources, Kunming Institute of Botany, Chinese Academy of Sciences, Kunming, 650204, China.

University of the Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

Sci Rep. 2021 Mar 18;11(1):6277. doi: 10.1038/s41598-021-85644-1.

Abstract

Plant dwarfism is a desirable agronomic trait in non-timber trees, but little is known about the physiological and molecular mechanism underlying dwarfism in woody plants. Castor bean (Ricinus communis) is a typical woody oilseed crop. We performed cytological observations within xylem, phloem and cambia tissues, revealing that divergent cell growth in all tissues might play a role in the dwarf phenotype in cultivated castor bean. Based on bulked segregant analyses for a F population generated from the crossing of a tall and a dwarf accession, we identified two QTLs associated with plant height, covering 325 candidate genes. One of these, Rc5NG4-1 encoding a putative IAA transport protein localized in the tonoplast was functionally characterized. A non-synonymous SNP (altering the amino acid sequence from Y to C at position 218) differentiated the tall and dwarf plants and we confirmed, through heterologous yeast transformation, that the IAA uptake capacities of Rc5NG4-1Y and Rc5NG4-1C were significantly different. This study provides insights into the physiological and molecular mechanisms of dwarfing in woody non-timber economically important plants, with potential to aid in the genetic breeding of castor bean and other related crops.

摘要

植株矮化是木本非用材树种中一种理想的农艺性状,但对于木本植物矮化背后的生理和分子机制知之甚少。蓖麻(Ricinus communis)是一种典型的木本油料作物。我们对木质部、韧皮部和形成层组织进行了细胞学观察,发现所有组织中不同的细胞生长可能在栽培蓖麻的矮化表型中起作用。基于对由一个高株和一个矮株品系杂交产生的F群体进行的混合分离分析,我们鉴定出两个与株高相关的QTL,涵盖325个候选基因。其中一个基因Rc5NG4-1编码一种定位于液泡膜的假定生长素运输蛋白,并对其进行了功能表征。一个非同义SNP(在第218位将氨基酸序列从Y改变为C)区分了高株和矮株植物,并且我们通过异源酵母转化证实,Rc5NG4-1Y和Rc5NG4-1C的生长素吸收能力存在显著差异。本研究为木本非用材经济重要植物矮化的生理和分子机制提供了见解,具有辅助蓖麻及其他相关作物遗传育种的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8eb4/7973431/a0ab58491cd7/41598_2021_85644_Fig1_HTML.jpg

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