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一个高温响应型UDP-葡萄糖基转移酶基因OsUGT72F1增强水稻和拟南芥的耐热性。

A high temperature responsive UDP-glucosyltransferase gene OsUGT72F1 enhances heat tolerance in rice and Arabidopsis.

作者信息

Ma Yuqing, Zhao Shuman, Ma Xinmei, Dong Guangrui, Liu Chonglin, Ding Yi, Hou Bingkai

机构信息

The Key Laboratory of Plant Development and Environmental Adaptation Biology, Ministry of Education, Shandong Key Laboratory of Precision Molecular Crop Design and Breeding, School of Life Sciences, Shandong University, Qingdao, 266237, China.

出版信息

Plant Cell Rep. 2025 Feb 3;44(2):48. doi: 10.1007/s00299-025-03438-5.

Abstract

OsUGT72F1 enhances heat tolerance in plants by improving ROS scavenging and modifying multiple metabolic pathways, under the regulation of transcription factors OsHSFA3 and OsHSFA4a. High temperature is one of the most critical environmental constraints affecting plant growth and development, ultimately leading to yield losses in crops such as rice (Oryza sativa L.). UDP (uridine diphosphate)-dependent glycosyltransferases (UGTs) are believed to play crucial roles in coping with environmental stresses. However, the functions for the vast majority of UGTs under high temperature stress remain largely unknown. In this study, we isolated and characterized a high temperature responsive UDP-glycosyltransferase gene OsUGT72F1 in rice. Our findings demonstrated that overexpression of OsUGT72F1 enhanced heat-stress tolerance, while the mutant plants displayed a sensitive phenotype under the same stress conditions. Ectopic expression of OsUGT72F1 in Arabidopsis thaliana also conferred improved heat tolerance to the plants. Further investigation revealed that OsUGT72F1 reduced the generation of reactive oxygen species (ROS) and boosted the activity of antioxidant enzymes, thereby alleviating oxidative damage under heat-stress conditions. Moreover, transcriptomic analysis indicated that the action of OsUGT72F1 leads to the upregulation of multiple metabolic pathways including phenylpropanoid biosynthesis, zeatin biosynthesis, and flavonoid biosynthesis. In addition, the upstream regulatory mechanism of the OsUGT72F1 gene has been identified. We found that the transcription factors OsHSFA3 and OsHSFA4a can bind to the OsUGT72F1 promoter and enhance its transcription level. Together, this study revealed that the glycosyltransferase gene OsUGT72F1 plays a vital role in the adaptive adjustment of high temperature stress in plants, revealing a new heat tolerance pathway and providing a promising gene candidate for the breeding of heat-resistant crop varieties.

摘要

在转录因子OsHSFA3和OsHSFA4a的调控下,OsUGT72F1通过改善活性氧清除和调节多种代谢途径来增强植物的耐热性。高温是影响植物生长发育的最关键环境限制因素之一,最终导致水稻(Oryza sativa L.)等作物减产。依赖尿苷二磷酸(UDP)的糖基转移酶(UGT)被认为在应对环境胁迫中起关键作用。然而,绝大多数UGT在高温胁迫下的功能仍 largely未知。在本研究中,我们分离并鉴定了水稻中一个对高温响应的UDP - 糖基转移酶基因OsUGT72F1。我们的研究结果表明,OsUGT72F1的过表达增强了耐热性,而突变体植株在相同胁迫条件下表现出敏感表型。OsUGT72F1在拟南芥中的异位表达也使植株的耐热性得到提高。进一步研究发现,OsUGT72F1减少了活性氧(ROS)的产生并提高了抗氧化酶的活性,从而减轻了热胁迫条件下的氧化损伤。此外,转录组分析表明,OsUGT72F1的作用导致包括苯丙烷生物合成、玉米素生物合成和类黄酮生物合成在内的多种代谢途径上调。此外,还鉴定了OsUGT72F1基因的上游调控机制。我们发现转录因子OsHSFA3和OsHSFA4a可以结合到OsUGT72F1启动子上并提高其转录水平。总之,本研究揭示了糖基转移酶基因OsUGT72F1在植物对高温胁迫的适应性调节中起着至关重要的作用,揭示了一条新的耐热途径,并为耐热作物品种的培育提供了一个有前景的基因候选。

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