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敲低拟南芥 ROOT UVB SENSITIVE4 通过抑制绒毡层的次生加厚来破坏花粉囊开裂。

Knockdown of Arabidopsis ROOT UVB SENSITIVE4 Disrupts Anther Dehiscence by Suppressing Secondary Thickening in the Endothecium.

机构信息

Key Laboratory of Chemical Biology and Molecular Engineering of Ministry of Education, Institute of Biotechnology, Shanxi University, Taiyuan, China.

School of Biosciences, University of Nottingham, Sutton Bonington Campus, Loughborough, Leicestershire, UK.

出版信息

Plant Cell Physiol. 2019 Oct 1;60(10):2293-2306. doi: 10.1093/pcp/pcz127.

Abstract

ROOT UV-B SENSITIVE4 (RUS4) encodes a protein with no known function that contains a conserved Domain of Unknown Function 647 (DUF647). The DUF647-containing proteins RUS1 and RUS2 have previously been associated with root UV-B-sensing pathway that plays a major role in Arabidopsis early seedling morphogenesis and development. Here, we show that RUS4 knockdown Arabidopsis plants, referred to as amiR-RUS4, were severely reduced in male fertility with indehiscent anthers. Light microscopy of anther sections revealed a significantly reduced secondary wall thickening in the endothecium of amiR-RUS4 anthers. We further show that the transcript abundance of the NAC domain genes NAC SECONDARY WALL THICKENING PROMOTING FACTOR1 (NST1) and NST2, which have been shown to regulate the secondary cell wall thickenings in the anther endothecium, were dramatically reduced in the amiR-RUS4 floral buds. Expression of the secondary cell wall-associated MYB transcription factor genes MYB103 and MYB85 were also strongly reduced in floral buds of the amiR-RUS4 plants. Overexpression of RUS4 led to increased secondary thickening in the endothecium. However, the rus4-2 mutant exhibited no obvious phenotype. Promoter-GUS analysis revealed that the RUS4 promoter was highly active in the anthers, supporting its role in anther development. Taken together, these results suggest that RUS4, probably functions redundantly with other genes, may play an important role in the secondary thickening formation in the anther endothecium by indirectly affecting the expression of secondary cell wall biosynthetic genes.

摘要

RUS4 基因编码一种未知功能的蛋白,该蛋白含有保守的未知功能结构域 647(DUF647)。先前已将含有 DUF647 的蛋白 RUS1 和 RUS2 与根 UV-B 感应途径相关联,该途径在拟南芥早期幼苗形态发生和发育中起主要作用。在这里,我们表明 RUS4 敲低的拟南芥植物,称为 amiR-RUS4,其雄性育性严重降低,花粉囊不开裂。花粉囊切片的光镜观察显示 amiR-RUS4 花粉囊中,内皮层的次生壁加厚明显减少。我们进一步表明,已显示调节花粉囊内皮层次生细胞壁加厚的 NAC 结构域基因 NAC SECONDARY WALL THICKENING PROMOTING FACTOR1 (NST1) 和 NST2 的转录丰度在 amiR-RUS4 花蕾中显著降低。次生细胞壁相关的 MYB 转录因子基因 MYB103 和 MYB85 的表达在 amiR-RUS4 植物的花蕾中也强烈降低。RUS4 的过表达导致内皮层的次生加厚增加。然而,rus4-2 突变体没有表现出明显的表型。启动子-GUS 分析表明,RUS4 启动子在花药中高度活跃,支持其在花药发育中的作用。综上所述,这些结果表明 RUS4 可能与其他基因冗余发挥作用,可能通过间接影响次生细胞壁生物合成基因的表达,在花药内皮层的次生加厚形成中发挥重要作用。

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