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OsSCL30 的过表达降低了水稻幼苗对低温、干旱和盐的耐受性。

OsSCL30 overexpression reduces the tolerance of rice seedlings to low temperature, drought and salt.

机构信息

Crop Ecophysiology and Cultivation Key Laboratory of Sichuan Province, Rice Research Institute of Sichuan Agricultural University, Chengdu, 611130, Sichuan, China.

出版信息

Sci Rep. 2022 May 19;12(1):8385. doi: 10.1038/s41598-022-12438-4.

Abstract

Rice is one of the main food crops for the world population. Various abiotic stresses, such as low temperature, drought, and high salinity, affect rice during the entire growth period, determining its yield and quality, and even leading to plant death. In this study, by constructing overexpression vectors D-163 + 1300:OsSCL30 and D-163 + 1300-AcGFP:OsSCL30-GFP, the mechanism of action of OsSCL30 in various abiotic stresses was explored. Bioinformatics analysis showed that OsSCL30 was located on the chromosome 12 of rice Nipponbare, belonging to the plant-specific SCL subfamily of the SR protein family. The 1500 bp section upstream of the open reading frame start site contains stress-related cis-acting elements such as ABRE, MYC, and MYB. Under normal conditions, the expression of OsSCL30 was higher in leaves and leaf sheaths. The results of reverse transcription polymerase chain reaction showed that the expression of OsSCL30 decreased after low temperature, drought and salt treatment. In root cells OsSCL30 was localized in the nuclei. The results of the rice seedling tolerance and recovery tests showed that overexpression of OsSCL30 diminished the resistance to low temperature, drought and salt stresses in transgenic rice and resulted in larger accumulation of reactive oxygen species. This study is of great significance for exploring the response mechanisms of SR proteins under abiotic stresses.

摘要

水稻是世界人口的主要粮食作物之一。各种非生物胁迫,如低温、干旱和高盐度,在整个生长期间影响水稻,决定其产量和质量,甚至导致植物死亡。在这项研究中,通过构建过表达载体 D-163+1300:OsSCL30 和 D-163+1300-AcGFP:OsSCL30-GFP,探索了 OsSCL30 在各种非生物胁迫下的作用机制。生物信息学分析表明,OsSCL30 位于水稻 Nipponbare 第 12 号染色体上,属于 SR 蛋白家族中植物特异性 SCL 亚家族。开放阅读框起始位点上游的 1500bp 区段包含与应激相关的顺式作用元件,如 ABRE、MYC 和 MYB。在正常条件下,OsSCL30 在叶片和叶鞘中的表达较高。逆转录聚合酶链反应的结果表明,低温、干旱和盐处理后 OsSCL30 的表达降低。在根细胞中,OsSCL30 定位于细胞核中。水稻幼苗耐盐和恢复试验的结果表明,过表达 OsSCL30 降低了转基因水稻对低温、干旱和盐胁迫的抗性,并导致活性氧的大量积累。这项研究对于探索 SR 蛋白在非生物胁迫下的响应机制具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce4d/9120446/15650506cdf2/41598_2022_12438_Fig1_HTML.jpg

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