首页> 美国卫生研究院文献>Genes >Knockdown of Cytochrome P450 Genes Gh_D07G1197 and Gh_A13G2057 on Chromosomes D07 and A13 Reveals Their Putative Role in Enhancing Drought and Salt Stress Tolerance in Gossypium hirsutum
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Knockdown of Cytochrome P450 Genes Gh_D07G1197 and Gh_A13G2057 on Chromosomes D07 and A13 Reveals Their Putative Role in Enhancing Drought and Salt Stress Tolerance in Gossypium hirsutum

机译:击倒染色体D07和A13上的细胞色素P450基因Gh_D07G1197和Gh_A13G2057揭示了它们在增强陆地棉抗旱和耐盐胁迫方面的推定作用

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摘要

We identified 672, 374, and 379 CYPs proteins encoded by the CYPs genes in Gossypium hirsutum, Gossypium raimondii, and Gossypium arboreum, respectively. The genes were found to be distributed in all 26 chromosomes of the tetraploid cotton, with chrA05, chrA12, and their homeolog chromosomes harboring the highest number of genes. The physiochemical properties of the proteins encoded by the CYP450 genes varied in terms of their protein lengths, molecular weight, isoelectric points (pI), and even grand hydropathy values (GRAVY). However, over 99% of the cotton proteins had GRAVY values below 0, which indicated that the majority of the proteins encoded by the CYP450 genes were hydrophilic in nature, a common property of proteins encoded by stress-responsive genes. Moreover, through the RNA interference (RNAi) technique, the expression levels of Gh_D07G1197 and Gh_A13G2057 were suppressed, and the silenced plants showed a higher concentration of hydrogen peroxide (H2O2) with a significant reduction in the concentration levels of glutathione (GSH), ascorbate peroxidase (APX), and proline compared to the wild types under drought and salt stress conditions. Furthermore, the stress-responsive genes 1-Pyrroline–5-Carboxylate Synthetase (GhP5CS), superoxide dismutase (GhSOD), and myeloblastosis (GhMYB) were downregulated in VIGS plants, but showed upregulation in the leaf tissues of the wild types under drought and salt stress conditions. In addition, CYP450-silenced cotton plants exhibited a high level of oxidative injury due to high levels of oxidant enzymes, in addition to negative effects on CMS, ELWL, RLWC, and chlorophyll content The results provide the basic foundation for future exploration of the proteins encoded by the CYP450 genes in order to understand the physiological and biochemical mechanisms in enhancing drought and salt stress tolerance in plants.
机译:我们分别在陆地棉,雷蒙氏棉和植物棉中鉴定了由CYPs基因编码的672、374和379种CYPs蛋白。发现这些基因分布在四倍体棉花的所有26条染色体中,其中chrA05,chrA12及其同源染色体的基因数量最多。 CYP450基因编码的蛋白质的物理化学特性在其蛋白质长度,分子量,等电点(pI)甚至是大水合值(GRAVY)方面都各不相同。但是,超过99%的棉蛋白的GRAVY值低于0,这表明CYP450基因编码的大多数蛋白质本质上都是亲水的,这是应激反应基因编码的蛋白质的共同特性。此外,通过RNA干扰(RNAi)技术,Gh_D07G1197和Gh_A13G2057的表达水平受到抑制,而沉默的植物显示出更高的过氧化氢(H2O2)浓度,而谷胱甘肽(GSH),抗坏血酸的浓度则明显降低。过氧化物酶(APX)和脯氨酸与干旱和盐胁迫条件下的野生型相比。此外,在VIGS植物中,胁迫响应基因1-Pyrroline–5-羧酸合成酶(GhP5CS),超氧化物歧化酶(GhSOD)和成肌细胞病(GhMYB)均下调,但在干旱和干旱下野生型叶片组织中却表达上调。盐胁迫条件。此外,CYP450沉默的棉花植株由于高水平的氧化酶而表现出高水平的氧化损伤,此外还对CMS,ELWL,RLWC和叶绿素含量产生负面影响。结果为蛋白质的未来开发提供了基础为了了解增强植物对干旱和盐胁迫的耐受性的生理和生化机制,这些酶由CYP450基因编码。

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