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Advances in transcriptome-based analyses of cold response and signaling pathways of plants

机译:基于转录组的冷应激和植物信号通路的研究进展

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Low temperature is one of the most important environmental factors limiting plant growth, development, and distribution. Moreover, cold stress can always lead to impaired growth, mal-development, or even physiological imbalance in plants. On the brighter side, plants have evolved a number of adaptive mechanisms to resist cold depending upon the activation of molecular networks involved in stress perception, signal transcription and transduction, expression of specific stress-related genes, and physiological reaction of tolerance. Research related to plant cold response performed over the last few years has made significant achievements in the molecular, physiology, and phenology aspects. Genome-wide analyses have dramatically improved the efficiencyof gene discovery. With the development of omics-based technology, including transcriptome and protein mass spectrometry, large-scale transcriptome data has become available in both model and non-model species. This paper uses transcriptome-based analyses of cold response and signaling pathways in Lilium lancifolium as an example, in combination with the latest studies in other plants, focusing on the molecular aspects of cold stress adaptive mechanisms. It attempts to highlight the major findings in response to cold stress factors from transcriptome-based analyses, and provides a tentative signaling regulatory pathway.
机译:低温是限制植物生长,发展和分布的最重要的环境因素之一。此外,冷应激总始终导致植物中的生长,发动机发育甚至生理失衡损害。在更明亮的侧面,植物已经进化了许多自适应机制来抵抗抗寒,这取决于涉及应力感知,信号转录和转导,表达特异性应激相关基因的表达和耐受性的生理反应的分子网络的激活。在过去几年中进行的植物感冒反应有关的研究取得了重大成就,在分子,生理学和候选方面取得了重大成就。基因组分析大大提高了基因发现的效率。随着基于常规的技术的发展,包括转录组和蛋白质质谱,大规模转录组数据在模型和非模型物种中都可用。本文采用百年林甘草中的冷响应和信号通路的转录组分析,作为一个例子,与其他植物的最新研究相结合,重点是冷应激自适应机制的分子方面。它试图突出响应来自基于转录组的分析的冷应激因子的主要发现,并提供了暂定的信号调节途径。

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