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比较转录组分析揭示了软枣猕猴桃响应水淹胁迫的机制。

Comparative transcriptome provides insight into responding mechanism of waterlogging stress in Actinidia valvata Dunn.

机构信息

College of Horticulture Science, Key Laboratory of Quality and Safety Control for Subtropical Fruit and Vegetable, Ministry of Agriculture and Rural Affairs, Zhejiang A & F University, Hangzhou 311300, China.

College of Horticulture Science, Key Laboratory of Quality and Safety Control for Subtropical Fruit and Vegetable, Ministry of Agriculture and Rural Affairs, Zhejiang A & F University, Hangzhou 311300, China.

出版信息

Gene. 2022 Dec 15;845:146843. doi: 10.1016/j.gene.2022.146843. Epub 2022 Aug 27.

Abstract

Kiwifruit is one of the most popular fruits, and the area of its cultivation in China has grown rapidly over the last decade. However, kiwifruit vines are vulnerable to waterlogging, especially in the extensive areas of south China where it is grown. This has become an important factor limiting yields. Therefore, it is necessary to clarify the responses of kiwifruit to waterlogging. Here, we have selected Actinidia valvata Dunn which is able to withstand waterlogging conditions and the waterlogging-susceptible Actinidia deliciosa to perform the RNA-seq of roots under waterlogging stress. Seedling roots of Actinidia valvata Dunn and Actinidia deliciosa presented distinct root phenotypes after waterlogging treatments. Genome mapping showed a large genome difference between Actinidia valvata Dunn and Actinidia deliciosa. Transcription factors MYB, MYB-related, AP2-EREBP, bHLH, WRKY, and NAC were identified as the key genes involved in the response to waterlogging stress of kiwifruit. Meanwhile, the MAPK signaling pathway and the glycolysis/gluconeogenesis pathway were identified as the vital pathways involved in the response to waterlogging, and key genes were identified from these two pathways. These results will broaden our understanding of transcriptional response of waterlogging stress and will provide new insights into the molecular mechanisms associated with waterlogging stress. Furthermore, identification of the genes responsible will assist in the breeding of kiwifruit tolerant of waterlogging.

摘要

猕猴桃是最受欢迎的水果之一,在中国,其种植面积在过去十年中迅速增长。然而,猕猴桃藤容易受到水淹的影响,尤其是在中国南方广泛种植的地区。这已成为限制产量的一个重要因素。因此,有必要阐明猕猴桃对水淹的反应。在这里,我们选择了能够耐受水淹条件的中华猕猴桃和水淹敏感的美味猕猴桃来进行水淹胁迫下根系的 RNA-seq。中华猕猴桃和美味猕猴桃的幼苗根系在水淹处理后表现出明显的根表型。基因组图谱显示中华猕猴桃和美味猕猴桃之间存在很大的基因组差异。鉴定出转录因子 MYB、MYB 相关、AP2-EREBP、bHLH、WRKY 和 NAC 是猕猴桃对水淹胁迫反应的关键基因。同时,鉴定出 MAPK 信号通路和糖酵解/糖异生途径是猕猴桃对水淹反应的重要途径,并从这两个途径中鉴定出关键基因。这些结果将拓宽我们对水淹胁迫转录反应的理解,并为与水淹胁迫相关的分子机制提供新的见解。此外,鉴定出负责的基因将有助于培育耐水淹的猕猴桃。

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