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首页> 外文期刊>Plant Physiology and Biochemistry >Response to drought and salt stress in leaves of poplar (Populus alba × Populus glandulosa): Expression profiling by oligonucleotide microarray analysis
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Response to drought and salt stress in leaves of poplar (Populus alba × Populus glandulosa): Expression profiling by oligonucleotide microarray analysis

机译:杨树(Populus alba×Populus glandulosa)叶片对干旱和盐胁迫的响应:寡核苷酸芯片分析表达谱

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摘要

Drought and salt stresses are major environmental constraints on forest productivity. To identify genes responsible for stress tolerance, we conducted a genome-wide analysis in poplar (Populus alba × Populus glandulosa) leaves exposed to drought and salt (NaCl) stresses. We investigated gene expression at the mRNA level using oligonucleotide microarrays containing 44,718 genes from Populus trichocarpa. A total of 1604 and 1042 genes were up-regulated (≥2-fold; P value < 0.05) by drought and salt stresses, respectively, and 765 genes were up-regulated by both stresses. In addition, 2742 and 1685 genes were down-regulated by drought and salt stresses, respectively, and 1564 genes were down-regulated by both stresses. The large number of genes regulated by both stresses suggests that crosstalk occurs between the drought and salt stress responses. Most up-regulated genes were involved in functions such as subcellular localization, signal transduction, metabolism, and transcription. Among the up-regulated genes, we identified 47 signaling proteins, 65 transcription factors, and 43 abiotic stress-related genes. Several genes were modulated by only one of the two stresses. About 25% of the genes significantly regulated by these stresses are of unknown function, suggesting that poplar may provide an opportunity to discover novel stress-related genes.
机译:干旱和盐胁迫是森林生产力的主要环境制约因素。为了鉴定引起胁迫耐受性的基因,我们在暴露于干旱和盐胁迫(NaCl)的杨树(Populus alba×Populus glandulosa)叶片中进行了全基因组分析。我们使用包含来自毛果杨的44,718个基因的寡核苷酸微阵列研究了mRNA水平的基因表达。干旱和盐胁迫分别共上调了1604和1042个基因(≥2倍; P值<0.05),并且两种胁迫上调了765个基因。另外,干旱和盐胁迫分别下调了2742和1685个基因,两种胁迫下均下调了1564个基因。受两种胁迫调节的大量基因表明,干旱和盐胁迫响应之间发生串扰。大多数上调的基因都参与了诸如亚细胞定位,信号转导,代谢和转录等功能。在上调的基因中,我们鉴定出47种信号蛋白,65种转录因子和43种非生物胁迫相关基因。几种基因仅受两种胁迫之一的调节。这些应激显着调节的基因中约有25%的功能未知,这表明白杨可能为发现与应激相关的新基因提供了机会。

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