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首页> 外文期刊>Journal of Turbulence >Transcription Factors and Their Roles in Signal Transduction in Plants under Abiotic Stresses
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Transcription Factors and Their Roles in Signal Transduction in Plants under Abiotic Stresses

机译:非生物胁迫下植物信号转导的转录因子及其作用

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摘要

In agricultural production, abiotic stresses are known as the main disturbance leading to negative impacts on crop performance. Research on elucidating plant defense mechanisms against the stresses at molecular level has been addressed for years in order to identify the major contributors in boosting the plant tolerance ability. From literature, numerous genes from different species, and from both functional and regulatory gene categories, have been suggested to be on the list of potential candidates for genetic engineering. Noticeably, enhancement of plant stress tolerance by manipulating expression of Transcription Factors (TFs) encoding genes has emerged as a popular approach since most of them are early stress-responsive genes and control the expression of a set of downstream target genes. Consequently, there is a higher chance to generate novel cultivars with better tolerance to either single or multiple stresses. Perhaps, the difficult task when deploying this approach is selecting appropriate gene(s) for manipulation. In this review, on the basis of the current findings from molecular and post-genomic studies, our interest is to highlight the current understanding of the roles of TFs in signal transduction and mediating plant responses towards abiotic stressors. Furthermore, interactions among TFs within the stress-responsive network will be discussed. The last section will be reserved for discussing the potential applications of TFs for stress tolerance improvement in plants.
机译:在农业生产中,非生物胁迫被认为是对作物生产造成负面影响的主要干扰。多年来,人们一直致力于在分子水平上阐明植物对逆境的防御机制,以确定提高植物耐受能力的主要因素。从文献来看,许多来自不同物种的基因,以及来自功能性和调节性基因类别的基因被认为是基因工程的潜在候选基因。值得注意的是,通过操纵转录因子(Transcription Factors,TFs)编码基因的表达来增强植物的抗逆性已成为一种流行的方法,因为它们大多数是早期胁迫响应基因,并控制一组下游靶基因的表达。因此,有更高的机会产生对单一或多重胁迫具有更好耐受性的新品种。也许,采用这种方法的困难任务是选择合适的基因进行操作。在这篇综述中,基于分子和后基因组研究的最新发现,我们的兴趣是强调目前对TFs在信号转导和介导植物对非生物胁迫源反应中的作用的理解。此外,还将讨论压力响应网络中TF之间的相互作用。最后一节将讨论TFs在提高植物耐逆性方面的潜在应用。

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