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首页> 外文期刊>BMC Plant Biology >ESKIMO1 is a key gene involved in water economy as well as cold acclimation and salt tolerance
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ESKIMO1 is a key gene involved in water economy as well as cold acclimation and salt tolerance

机译:ESKIMO1是参与节水,抗寒和耐盐的关键基因

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Background Drought is a major social and economic problem resulting in huge yield reduction in the field. Today's challenge is to develop plants with reduced water requirements and stable yields in fluctuating environmental conditions. Arabidopsis thaliana is an excellent model for identifying potential targets for plant breeding. Drought tolerance in the field was successfully conferred to crops by transferring genes from this model species. While involved in a plant genomics programme, which aims to identify new genes responsible for plant response to abiotic stress, we identified ESKIMO1 as a key gene involved in plant water economy as well as cold acclimation and salt tolerance. Results All esk1 mutants were more tolerant to freezing, after acclimation, than their wild type counterpart. esk1 mutants also showed increased tolerance to mild water deficit for all traits measured. The mutant's improved tolerance to reduced water supply may be explained by its lower transpiration rate and better water use efficiency (WUE), which was assessed by carbon isotope discrimination and gas exchange measurements. esk1 alleles were also shown to be more tolerant to salt stress. Transcriptomic analysis of one mutant line and its wild-type background was carried out. Under control watering conditions a number of genes were differentially expressed between the mutant and the wild type whereas under mild drought stress this list of genes was reduced. Among the genes that were differentially expressed between the wild type and mutant, two functional categories related to the response to stress or biotic and abiotic stimulus were over-represented. Under salt stress conditions, all gene functional categories were represented equally in both the mutant and wild type. Based on this transcriptome analysis we hypothesise that in control conditions the esk1 mutant behaves as if it was exposed to drought stress. Conclusion Overall our findings suggest that the ESKIMO1 gene plays a major role in plant response to water shortage and in whole plant water economy. Further experiments are being undertaken to elucidate the function of the ESKIMO1 protein and the way it modulates plant water uptake.
机译:背景技术干旱是一个重大的社会和经济问题,导致该领域的单产大幅下降。当今的挑战是要开发出在不断变化的环境条件下减少需水量和稳定产量的植物。拟南芥是识别植物育种潜在目标的极佳模型。通过转移该模型物种的基因,成功地将农作物的耐旱性赋予了农作物。在参与旨在确定负责植物应对非生物胁迫的新基因的植物基因组计划的同时,我们将ESKIMO1确定为参与植物节水以及耐寒驯化和耐盐性的关键基因。结果适应后,所有esk1突变体均比野生型更耐冰冻。 esk1突变体还显示出对所测所有性状的轻度水分缺乏耐受性增强。该突变体对减少水供应的提高的耐受性可以用其较低的蒸腾速率和更好的用水效率(WUE)来解释,这通过碳同位素鉴别和气体交换测量进行评估。 esk1等位基因还显示出更耐盐胁迫。对一个突变株及其野生型背景进行了转录组学分析。在控制浇水条件下,突变体和野生型之间许多基因差异表达,而在轻度干旱胁迫下,该基因列表减少了。在野生型和突变型之间差异表达的基因中,与应激反应或生物和非生物刺激相关的两个功能类别被过度代表。在盐胁迫条件下,所有基因功能类别在突变型和野生型中均均代表。基于此转录组分析,我们假设esk1突变体在对照条件下的行为就像暴露在干旱胁迫下一样。结论总的来说,我们的发现表明ESKIMO1基因在植物对缺水的反应和整个植物的用水经济中起着重要作用。为了阐明ESKIMO1蛋白的功能及其调节植物水分吸收的方式,正在进行进一步的实验。

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