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干旱及复水条件下油菜中某些干旱响应基因的蛋白质相互作用及调控网络评估

Evaluation of protein's interaction and the regulatory network of some drought-responsive genes in Canola under drought and re-watering conditions.

作者信息

Pasandideh Arjmand Maryam, Samizadeh Lahiji Habibollah, Mohsenzadeh Golfazani Mohammad, Biglouei Mohammad Hassan

机构信息

Department of Plant Biotechnology, Faculty of Agricultural Sciences, University of Guilan, Rasht, Iran.

Department of Water Engineering, Faculty of Agricultural Sciences, University of Guilan, Rasht, Iran.

出版信息

Physiol Mol Biol Plants. 2023 Aug;29(8):1085-1102. doi: 10.1007/s12298-023-01345-1. Epub 2023 Sep 1.

Abstract

UNLABELLED

Drought stress is one of the most important environmental stresses that severely limits the growth and yield of Canola. The re-watering can compensate for the damage caused by drought stress. Investigation of protein's interaction of genes involved in important drought-responsive pathways and their regulatory network by microRNAs (miRNAs) under drought and re-watering conditions are helpful approaches to discovering drought-stress tolerance and recovery mechanisms. In this study, the protein's interaction and functional enrichment analyses of glycolysis, pentose phosphate, glyoxylate cycle, fatty acid biosynthesis, heat shock factor main genes, and the regulatory network of key genes by miRNAs were investigated by in silico analysis. Then, the relative expression of key genes and their related miRNAs were investigated in tolerant and susceptible genotypes of Canola under drought and re-watering conditions by Real-time PCR technique. The bna-miR156b/c/g, bna-miR395d/e/f, bna-miR396a, and all the studied key genes except and showed changes in expression levels in one or both genotypes after re-watering. The and expression decreased, whereas the and expression increased in both genotypes under re-watering treatment after drought stress. It could cause the regulation of oxaloacetate production, the increase of the glyoxylate cycle, lipid biosynthesis, and the reduction of the negative regulation of HSFs under re-watering conditions. It seems that , , , , and were involved in the recovery mechanisms after drought stress of Canola. They were regulated by drought-responsive miRNAs to respond appropriately to drought stress. Therefore, regulating these genes could be important in plant recovery mechanisms.

SUPPLEMENTARY INFORMATION

The online version contains supplementary material available at 10.1007/s12298-023-01345-1.

摘要

未标注

干旱胁迫是最重要的环境胁迫之一,严重限制了油菜的生长和产量。复水可以补偿干旱胁迫造成的损害。通过对干旱和复水条件下参与重要干旱响应途径的基因及其调控网络与微小RNA(miRNA)之间蛋白质相互作用的研究,有助于发现干旱胁迫耐受性和恢复机制。在本研究中,通过计算机分析对糖酵解、磷酸戊糖、乙醛酸循环、脂肪酸生物合成、热休克因子主要基因的蛋白质相互作用和功能富集分析,以及miRNA对关键基因的调控网络进行了研究。然后,采用实时荧光定量PCR技术,研究了干旱和复水条件下油菜耐逆和敏感基因型中关键基因及其相关miRNA的相对表达。bna-miR156b/c/g、bna-miR395d/e/f、bna-miR396a以及除[具体基因1]和[具体基因2]之外的所有研究的关键基因在复水后在一种或两种基因型中的表达水平均发生了变化。在干旱胁迫后的复水处理下,两种基因型中[具体基因3]和[具体基因4]的表达下降,而[具体基因5]和[具体基因6]的表达增加。这可能导致在复水条件下草酰乙酸生成的调控、乙醛酸循环的增加、脂质生物合成以及热休克因子负调控的减少。似乎[具体基因3]、[具体基因4]、[具体基因5]、[具体基因6]和[具体基因7]参与了油菜干旱胁迫后的恢复机制。它们受干旱响应miRNA的调控,以对干旱胁迫做出适当反应。因此,调控这些基因在植物恢复机制中可能很重要。

补充信息

在线版本包含可在10.1007/s12298-023-01345-1获取的补充材料。

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