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Identification and functional validation of a unique set of drought induced genes preferentially expressed in response to gradual water stress in peanut

机译:鉴定和响应干旱胁迫下花生中优先表达的一组独特干旱诱导基因的功能验证

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摘要

Peanut, found to be relatively drought tolerant crop, has been the choice of study to characterize the genes expressed under gradual water deficit stress. Nearly 700 genes were identified to be enriched in subtractive cDNA library from gradual process of drought stress adaptation. Further, expression of the drought inducible genes related to various signaling components and gene sets involved in protecting cellular function has been described based on dot blot experiments. Fifty genes (25 regulators and 25 functional related genes) selected based on dot blot experiments were tested for their stress responsiveness using northern blot analysis and confirmed their nature of differential regulation under different field capacity of drought stress treatments. ESTs generated from this subtracted cDNA library offered a rich source of stress-related genes including signaling components. Additional 50% uncharacterized sequences are noteworthy. Insights gained from this study would provide the foundation for further studies to understand the question of how peanut plants are able to adapt to naturally occurring harsh drought conditions. At present functional validation cannot be deemed in peanut, hence as a proof of concept seven orthologues of drought induced genes of peanut have been silenced in heterologous N. benthamiana system, using virus induced gene silencing method. These results point out the functional importance for HSP70 gene and key regulators such as Jumonji in drought stress response.Electronic supplementary materialThe online version of this article (doi:10.1007/s00438-009-0432-z) contains supplementary material, which is available to authorized users.
机译:花生,被认为是相对耐旱的作物,已经成为表征逐渐缺水胁迫下表达的基因的研究的选择。从干旱胁迫适应的逐步过程中,鉴定出将近700个基因富集在减性cDNA文库中。此外,基于斑点印迹实验已经描述了与各种信号传导成分和涉及保护细胞功能的基因集有关的干旱诱导基因的表达。基于点印迹实验选择的五十个基因(25个调节子和25个功能相关基因)使用Northern印迹分析测试了它们的胁迫响应能力,并确认了它们在干旱胁迫处理的不同田间能力下的差异调节性质。从减去的cDNA文库中产生的EST提供了与压力相关基因(包括信号传导成分)的丰富来源。值得注意的是,另外50%的未表征序列。从这项研究中获得的见识将为进一步研究奠定基础,以了解花生植物如何能够适应自然发生的严酷干旱条件的问题。目前尚不能在花生中进行功能验证,因此,作为概念的证明,已经使用病毒诱导的基因沉默方法在异源烟草本氏烟草系统中沉默了七个干旱诱导的花生直向同源基因。这些结果指出了HSP70基因和Jumonji等关键调控因子在干旱胁迫响应中的功能重要性。电子补充材料本文的在线版本(doi:10.1007 / s00438-009-0432-z)包含补充材料,可用于授权用户。

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