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在胁迫条件和生殖发育下,大麦中 Hsp70、Hsp90 和 Hsp100 热休克蛋白基因的全基因组鉴定和表达分析。

Genome-wide identification and expression analysis of Hsp70, Hsp90, and Hsp100 heat shock protein genes in barley under stress conditions and reproductive development.

机构信息

Department of Biotechnology, Indian Institute of Technology, Roorkee, Roorkee, 247667, India.

Swami Devanand Post Graduate College, Math-Lar, Deoria, U.P, India.

出版信息

Funct Integr Genomics. 2019 Nov;19(6):1007-1022. doi: 10.1007/s10142-019-00695-y. Epub 2019 Jun 27.

DOI:10.1007/s10142-019-00695-y
PMID:31359217
Abstract

Abiotic stress including extreme temperature disturbs the plant cellular homeostasis consequently limiting the yield potential of crop plants. Heat shock proteins (Hsps) are part of major rescue machinery of plants which aid to combat these stressed conditions by re-establishing protein homeostasis. Hsps with their chaperone and co-chaperone mechanisms regulate the activity of their substrate proteins in an ATP-dependent manner. In the present investigation, a genome-wide identification, evolutionary relationship, and comprehensive expression analysis of Hsp70, Hsp90, and Hsp100 gene families have been done in barley. The barley genome possesses 13 members of the Hsp70 gene family, along with 4 members of the Hsp110 subfamily, and 6 members of Hsp90 and 8 members of the Hsp100 gene family. Hsp genes are distributed on all 7 chromosomes of barley, and their encoded protein members are predicted to be localized to cell organelles such as cytosol, mitochondria, chloroplast, and ER. Despite a larger genome size, there are lesser members of these Hsp genes in barley, owing to less duplication events. The variable expression pattern obtained for genes encoding proteins localized to the same subcellular compartment suggests their diverse roles and involvement in different cellular responses. Expression profiling of these genes was performed by qRT-PCR in an array of 32 tissues, which showed a differential and tissue-specific expression of various members of Hsp gene families. We found the upregulation of HvHspc70-4, HvHsp70Mt70-2, HvHspc70-5a, HvHspc70-5b, HvHspc70-N1, HvHspc70-N2, HvHsp110-3, HvHsp90-1, HvHsp100-1, and HvHsp100-2 upon exposure to heat stress during reproductive development. Furthermore, their higher expression during heat stress, heavy metal stress, drought, and salinity stress was also observed in a tissue-specific manner.

摘要

非生物胁迫,包括极端温度,扰乱了植物细胞的内稳态,从而限制了作物的产量潜力。热休克蛋白(Hsps)是植物主要救援机制的一部分,通过重新建立蛋白质的内稳态来帮助对抗这些应激条件。Hsps 及其伴侣蛋白和共伴侣蛋白机制以 ATP 依赖的方式调节其底物蛋白的活性。在本研究中,对大麦中的 Hsp70、Hsp90 和 Hsp100 基因家族进行了全基因组鉴定、进化关系和综合表达分析。大麦基因组拥有 13 个 Hsp70 基因家族成员,4 个 Hsp110 亚家族成员,6 个 Hsp90 成员和 8 个 Hsp100 基因家族成员。Hsp 基因分布在大麦的 7 条染色体上,其编码的蛋白成员预计定位于细胞细胞器,如细胞质、线粒体、叶绿体和内质网。尽管大麦的基因组较大,但这些 Hsp 基因的成员较少,这是由于较少的重复事件。对定位于同一亚细胞区室的蛋白编码基因的可变表达模式表明,它们具有不同的作用,并参与不同的细胞反应。通过 qRT-PCR 在 32 种组织的阵列中对这些基因进行了表达谱分析,结果表明各种 Hsp 基因家族成员的表达存在差异和组织特异性。我们发现,HvHspc70-4、HvHsp70Mt70-2、HvHspc70-5a、HvHspc70-5b、HvHspc70-N1、HvHspc70-N2、HvHsp110-3、HvHsp90-1、HvHsp100-1 和 HvHsp100-2 在生殖发育过程中受到热胁迫时上调。此外,还观察到它们在组织特异性方式下在热胁迫、重金属胁迫、干旱和盐胁迫下的更高表达。

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