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花生蔗糖转化酶基因的鉴定、表征及表达分析揭示了它们在应对非生物胁迫中的重要作用。

Identification, characterisation and expression analysis of peanut sugar invertase genes reveal their vital roles in response to abiotic stress.

作者信息

Mao Tingting, Zhang Yaru, Xue Wenwen, Jin Yu, Zhao Hongfei, Wang Yibo, Wang Shengnan, Zhuo Shengjie, Gao Feifei, Su Yanping, Yu Chunyan, Guo Xiaotong, Sheng Yuting, Zhang Juan, Zhang Hongxia

机构信息

The Engineering Research Institute of Agriculture and Forestry, Ludong University, 186 Hongqizhong Road, Yantai, 264025, Shandong Province, China.

College of Agriculture, Ludong University, 186 Hongqizhong Road, Yantai, 264025, Shandong Province, China.

出版信息

Plant Cell Rep. 2024 Jan 10;43(2):30. doi: 10.1007/s00299-023-03123-5.

Abstract

Sucrose invertase activity is positively related to osmotic and salt stress resistance in peanut. Sucrose invertases (INVs) have important functions in plant growth and response to environmental stresses. However, their biological roles in peanut are still not fully revealed. In this research, we identified 42 AhINV genes in the peanut genome. They were highly conserved and clustered into three groups with 24 segmental duplication events occurred under purifying selection. Transcriptional expression analysis exhibited that they were all ubiquitously expressed, and most of them were up-regulated by osmotic and salt stresses, with AhINV09, AhINV23 and AhINV19 showed the most significant up-regulation. Further physiochemical analysis showed that the resistance of peanut to osmotic and salt stress was positively related to the high sugar content and sucrose invertase activity. Our results provided fundamental information on the structure and evolutionary relationship of INV gene family in peanut and gave theoretical guideline for further functional study of AhINV genes in response to abiotic stress.

摘要

蔗糖转化酶活性与花生的渗透胁迫和盐胁迫抗性呈正相关。蔗糖转化酶(INVs)在植物生长和对环境胁迫的响应中具有重要功能。然而,它们在花生中的生物学作用仍未完全揭示。在本研究中,我们在花生基因组中鉴定出42个AhINV基因。它们高度保守,聚为三组,在纯化选择下发生了24次片段重复事件。转录表达分析表明,它们均广泛表达,且大多数在渗透胁迫和盐胁迫下上调,其中AhINV09、AhINV23和AhINV19上调最为显著。进一步的生理化学分析表明,花生对渗透胁迫和盐胁迫的抗性与高糖含量和蔗糖转化酶活性呈正相关。我们的结果为花生INV基因家族的结构和进化关系提供了基础信息,并为进一步研究AhINV基因响应非生物胁迫的功能提供了理论指导。

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