A DIRIGENT Gene GmDIR26 Regulates Pod Dehiscence in Soybean

Zheng Wang, Xiaofang Zhang, Rui Hou, Huiying Zhang, Xu Guo, Xiaofei Ma, Aiqin Xu, Hong Zhu, Shuai Li
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Abstract

Pod dehiscence brings much loss for modern agricultural production, and multiple pod dehiscence components have been identified in many plant species. However, the pod dehiscence regulation factors in soybean are limited. In this study, we investigate the function of GmDIR26, a close homologues gene of pod dehiscence genes GmPdh1, PvPdh1, and CaPdh1, in the regulation of pod dehiscence in soybean. The secondary and tertiary structure analysis reveals that GmDIR26 protein has a similar structure with GmPdh1, PvPdh1, and CaPdh1 proteins. Synteny analysis of soybean and chickpea genomes shows that the genomic region surrounding GmDIR26 and CaPdh1 might be evolved from the same ancestor, and these two genes might have similar function. GmDIR26 shows an increased expression pattern during pod development and reaches a peak at beginning seed stage. Meanwhile, GmDIR26 exhibits high expression levels in dorsal suture and pod wall, but low expression pattern in ventral suture. In addition, GmDIR26 shows higher expression levels in pod dehiscence genotype than that in pod indehiscence accessions. Overexpression of GmDIR26 in soybean increases pod dehiscence in transgenic plants, of which the lignin layer in inner sclerenchyma pods is thicker and looser. The expression levels of several pod dehiscence genes are altered. Our study provides important information for further modification of pod dehiscence resistance soybean and characterization of soybean pod dehiscence regulation network.

Abstract Image

DIRIGENT 基因 GmDIR26 调控大豆的荚果开裂
豆荚开裂给现代农业生产带来了巨大损失,在许多植物物种中都发现了多种豆荚开裂成分。然而,大豆中的豆荚开裂调控因子却很有限。本研究探讨了豆荚开裂基因 GmPdh1、PvPdh1 和 CaPdh1 的近源同源基因 GmDIR26 在大豆豆荚开裂调控中的功能。二级和三级结构分析表明,GmDIR26 蛋白与 GmPdh1、PvPdh1 和 CaPdh1 蛋白具有相似的结构。对大豆和鹰嘴豆基因组的合成分析表明,围绕 GmDIR26 和 CaPdh1 的基因组区域可能是从同一个祖先进化而来,这两个基因可能具有相似的功能。GmDIR26 在豆荚发育过程中表现出增加的表达模式,并在种子初期达到峰值。同时,GmDIR26 在背缝线和豆荚壁表现出高表达水平,但在腹缝线表现出低表达模式。此外,GmDIR26 在豆荚开裂基因型中的表达水平高于豆荚不开裂基因型。在大豆中过表达 GmDIR26 会增加转基因植株的豆荚开裂率,其中豆荚内侧壁的木质素层更厚、更松散。多个豆荚开裂基因的表达水平发生了改变。我们的研究为进一步改造豆荚开裂抗性大豆和表征大豆豆荚开裂调控网络提供了重要信息。
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来源期刊
Comparative and Functional Genomics
Comparative and Functional Genomics 生物-生化与分子生物学
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