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马铃薯负调控 Cu/Zn-SOD 对干旱耐受性的响应。

Potato Negatively Regulates Cu/Zn-SOD Response to Drought Tolerance.

机构信息

College of Life Science and Technology, Gansu Agricultural University, Lanzhou 730070, China.

State Key Laboratory of Aridland Crop Science, Gansu Agricultural University, Lanzhou 730070, China.

出版信息

Int J Mol Sci. 2023 Jan 28;24(3):2525. doi: 10.3390/ijms24032525.

Abstract

One of the main impacts of drought stress on plants is an excessive buildup of reactive oxygen species (ROS). A large number of ·OH, highly toxic to cells, will be produced if too much ROS is not quickly cleared. At the heart of antioxidant enzymes is superoxide dismutase (SOD), which is the first antioxidant enzyme to function in the active oxygen scavenging system. To shield cells from oxidative injury, SOD dismutation superoxide anion free radicals generate hydrogen peroxide and molecule oxygen. Cu/Zn SOD is a kind of SOD antioxidant enzyme that is mostly found in higher plants' cytoplasm and chloroplasts. Other studies have demonstrated the significance of the miR398s family of miRNAs in the response of plants to environmental stress. The cleavage location of potato on Cu/Zn SOD mRNA was verified using RLM-5'RACE. Using the potato variety '', the overexpression mutant was created, and transgenic lines were raised. SOD activity in transgenic lines was discovered to be decreased during drought stress, although other antioxidant enzyme activities were mostly unaltered. Transgenic plants will wilt more quickly than wild-type plants without irrigation. Additionally, this demonstrates that the response of Cu/Zn SOD to drought stress is adversely regulated by potato .

摘要

干旱胁迫对植物的主要影响之一是活性氧(ROS)的过度积累。如果不能迅速清除过多的 ROS,就会产生大量对细胞具有高度毒性的·OH。抗氧化酶的核心是超氧化物歧化酶(SOD),它是活性氧清除系统中最早起作用的抗氧化酶。SOD 歧化超氧阴离子自由基生成过氧化氢和分子氧,以保护细胞免受氧化损伤。Cu/Zn SOD 是一种 SOD 抗氧化酶,主要存在于高等植物的细胞质和叶绿体中。其他研究表明,miR398s 家族的 miRNA 在植物对环境胁迫的反应中具有重要意义。通过 RLM-5'RACE 验证了马铃薯对 Cu/Zn SOD mRNA 的切割位置。利用马铃薯品种'',创建了过表达突变体,并培育了转基因系。在干旱胁迫下,发现转基因系中的 SOD 活性降低,尽管其他抗氧化酶活性大多没有改变。与没有灌溉的野生型植物相比,转基因植物会更快地枯萎。此外,这表明马铃薯对 Cu/Zn SOD 对干旱胁迫的反应受到负调控。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1dc0/9916884/f7087fa12138/ijms-24-02525-g001.jpg

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