HyPRP1 performs a role in negatively regulating cotton resistance to V. dahliae via the thickening of cell walls and ROS accumulation

大丽花黄萎病 生物 棉属 黄萎病 巴巴多斯棉 基因沉默 拟南芥 基因表达 转基因作物 细胞生物学 胼胝质 RNA干扰 基因 木质部 基因表达调控 园艺 转基因 植物 活性氧 次生细胞壁 多糖 细胞壁 突变体 遗传学 核糖核酸
作者
Jun Yang,Yan Zhang,Xingfen Wang,Weiqiao Wang,Zhikun Li,Wu Jinhua,Wang Guoning,Liqiang Wu,Guiyin Zhang,Zhiying Ma
出处
期刊:BMC Plant Biology [Springer Nature]
卷期号:18 (1) 被引量:28
标识
DOI:10.1186/s12870-018-1565-1
摘要

Developing tolerant cultivars by incorporating resistant genes is regarded as a potential strategy for controlling Verticillium wilt that causes severe losses in the yield and fiber quality of cotton.Here, we identified the gene GbHyPRP1 in Gossypium barbadense, which encodes a protein containing both proline-rich repetitive and Pollen Ole e I domains. GbHyPRP1 is located in the cell wall. The transcription of this gene mainly occurs in cotton roots and stems, and is drastically down-regulated upon infection with Verticillium dahliae. Silencing HyPRP1 dramatically enhanced cotton resistance to V. dahliae. Over-expression of HyPRP1 significantly compromised the resistance of transgenic Arabidopsis plants to V. dahliae. The GbHyPRP1 promoter region contained several putative phytohormone-responsive elements, of which SA was associated with gene down-regulation. We compared the mRNA expression patterns of HyPRP1-silenced plants and the control at the global level by RNA-Seq. A total of 1735 unique genes exhibited significant differential expression. Of these, 79 DEGs involved in cell wall biogenesis and 43 DEGs associated with the production of ROS were identified. Further, we observed a dramatic thickening of interfascicular fibers and vessel walls and an increase in lignin in the HyPRP1-silenced cotton plants compared with the control after inoculation with V. dahliae. Additionally, silencing of HyPRP1 markedly enhanced ROS accumulation in the root tips of cotton inoculated with V. dahliae.Taken together, our results suggest that HyPRP1 performs a role in the negative regulation of cotton resistance to V. dahliae via the thickening of cell walls and ROS accumulation.
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