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拟南芥KLU同源基因GmCYP78A72调控大豆种子大小。

Arabidopsis KLU homologue GmCYP78A72 regulates seed size in soybean.

作者信息

Zhao Baotian, Dai Aihua, Wei Haichao, Yang Suxin, Wang Baoshan, Jiang Ning, Feng Xianzhong

机构信息

College of Life Science, Shandong Normal University, Jinan, 250014, Shandong, People's Republic of China.

Key Laboratory of Soybean Molecular Design Breeding, Northeast Institute of Geography and Agroecology, Chinese Academy of Sciences, 4888 Shengbei Street, Changchun, 130102, Jilin, People's Republic of China.

出版信息

Plant Mol Biol. 2016 Jan;90(1-2):33-47. doi: 10.1007/s11103-015-0392-0. Epub 2015 Oct 19.

Abstract

Soybean (Glycine max) is one of the most important crops in the world, and its yield is largely determined by grain weight and grain size. However, the genes that regulate soybean seed size have not been identified. CYP78A, which is highly conserved within terrestrial plants, regulates organ development. In Arabidopsis, AtCYP78A5/KLU has been shown to determine seed size. In the present study, soybean CYP78A72 (GmCYP78A72), one of the orthologs of KLU, was over-expressed in both Arabidopsis and soybean to examine its function in plant development. GmCYP78A72 heterologous expression in Arabidopsis resulted in enlarged sepals, petals, seeds and carpel. Over-expression of GmCYP78A72 in soybean resulted in increased pea size, which is an extremely desirable trait for enhancing productivity. Moreover, knock-down of GmCYP78A72 does not reduce grain size. However, silencing of GmCYP78A57, GmCYP78A70 and GmCYP78A72 genes in triplet reduces the seed size significantly indicating functional redundancy of these three GmCYP78A genes. In conclusion, we investigated the role of CYP78A in soybean seed regulation, and our strategy can be effectively used to engineer large seed traits in soybean varieties as well as other crops.

摘要

大豆(Glycine max)是世界上最重要的作物之一,其产量在很大程度上由粒重和籽粒大小决定。然而,调控大豆种子大小的基因尚未被鉴定出来。CYP78A在陆生植物中高度保守,调控器官发育。在拟南芥中,AtCYP78A5/KLU已被证明可决定种子大小。在本研究中,KLU的直系同源基因之一大豆CYP78A72(GmCYP78A72)在拟南芥和大豆中均过表达,以研究其在植物发育中的功能。GmCYP78A72在拟南芥中的异源表达导致萼片、花瓣、种子和心皮增大。GmCYP78A72在大豆中的过表达导致豆粒大小增加,这是提高产量的一个非常理想的性状。此外,敲低GmCYP78A72并不会减小籽粒大小。然而,三联体中GmCYP78A57、GmCYP78A70和GmCYP78A72基因的沉默显著减小了种子大小,表明这三个GmCYP78A基因具有功能冗余。总之,我们研究了CYP78A在大豆种子调控中的作用,我们的策略可有效地用于培育具有大粒性状的大豆品种以及其他作物。

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