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DNA 损伤和活性氧导致高光强和高温下水稻局部病变 1 突变体细胞死亡。

DNA damage and reactive oxygen species cause cell death in the rice local lesions 1 mutant under high light and high temperature.

机构信息

State Key Laboratory of Rice Biology, China, National Rice Research Institute, Hangzhou, 310006, China.

出版信息

New Phytol. 2019 Apr;222(1):349-365. doi: 10.1111/nph.15597. Epub 2019 Jan 23.

Abstract

High light and high temperature (HLHT) stress may become more frequent and severe as the climate changes, affecting crop growth and resulting in reduced production. However, the mechanism of the response to HLHT stress in rice is not yet fully understood. In the present study, we screened a rice mutant library using HLHT conditions and isolated an HLHT-sensitive mutant, local lesions 1 (ls1), which showed decreased pigment contents, defective stomata and chloroplasts, and a local lesions phenotype under HLHT. We characterized and cloned LS1 by map-based cloning and genetic complementation. LS1 encodes the A subunit of the RNase H2 complex (RNASEH2A). Terminal deoxynucleotidyl transferase dUTP nick-end labeling (TUNEL) and comet assays indicated that mutation of LS1 led to severe DNA damage under HLHT stress. Furthermore, we found excessive reactive oxygen species (ROS) accumulation in the ls1 mutant under HLHT stress. Exogenous antioxidants eased the local lesions phenotype of the ls1 mutant under HLHT. DNA damage caused by HLHT stress induces ROS accumulation, which causes the injury and apoptosis of leaf cells in the ls1 mutant. These results enhance our understanding of the regulatory mechanism in the response to HLHT stress in higher plants.

摘要

高光强和高温(HLHT)胁迫随着气候变化可能变得更加频繁和严重,影响作物生长,导致产量降低。然而,水稻对 HLHT 胁迫的响应机制尚不完全清楚。本研究通过 HLHT 条件筛选了一个水稻突变体文库,分离出一个 HLHT 敏感突变体 local lesions 1(ls1),该突变体在 HLHT 下表现出色素含量降低、气孔和叶绿体缺陷以及局部损伤表型。我们通过图谱定位克隆和遗传互补对 LS1 进行了特征和克隆。LS1 编码 RNA 酶 H2 复合物的 A 亚基(RNASEH2A)。末端脱氧核苷酸转移酶 dUTP 缺口末端标记(TUNEL)和彗星试验表明,LS1 的突变导致 HLHT 胁迫下严重的 DNA 损伤。此外,我们发现 LS1 突变体在 HLHT 胁迫下积累过多的活性氧(ROS)。外源抗氧化剂缓解了 LS1 突变体在 HLHT 下的局部损伤表型。HLHT 胁迫引起的 DNA 损伤诱导 ROS 积累,导致 LS1 突变体中叶细胞的损伤和凋亡。这些结果增强了我们对高等植物响应 HLHT 胁迫的调控机制的理解。

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