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Plant stress responses and phenotypic plasticity in the epigenomics era: perspectives on the grapevine scenario, a model for perennial crop plants

机译:表观基因组学时代的植物胁迫响应和表型可塑性:关于葡萄情景的观点,多年生作物的模型

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摘要

Epigenetic marks include Histone Post-Translational Modifications and DNA methylation which are known to participate in the programming of gene expression in plants and animals. These epigenetic marks may be subjected to dynamic changes in response to endogenous and/or external stimuli and can have an impact on phenotypic plasticity. Studying how plant genomes can be epigenetically shaped under stressed conditions has become an essential issue in order to better understand the molecular mechanisms underlying plant stress responses and enabling epigenetic in addition to genetic factors to be considered when breeding crop plants. In this perspective, we discuss the contribution of epigenetic mechanisms to our understanding of plant responses to biotic and abiotic stresses. This regulation of gene expression in response to environment raises important biological questions for perennial species such as grapevine which is asexually propagated and grown worldwide in contrasting terroirs and environmental conditions. However, most species used for epigenomic studies are annual herbaceous plants, and epigenome dynamics has been poorly investigated in perennial woody plants, including grapevine. In this context, we propose grape as an essential model for epigenetic and epigenomic studies in perennial woody plants of agricultural importance.
机译:表观遗传标记包括组蛋白翻译后修饰和DNA甲基化,已知它们参与动植物基因表达的编程。这些表观遗传标记可能会响应于内源性和/或外部刺激而发生动态变化,并且可能会对表型可塑性产生影响。为了更好地理解植物胁迫反应的分子机制,并在培育作物植物时考虑遗传因素,除了表观遗传因素外,研究植物基因组在胁迫条件下如何进行表观遗传形成已成为一个基本问题。从这个角度出发,我们讨论了表观遗传机制对理解植物对生物和非生物胁迫的反应的贡献。基因表达对环境响应的调节对于多年生物种(如葡萄)提出了重要的生物学问题,这些葡萄在不同的风土和环境条件下在世界范围内无性繁殖和生长。但是,用于表观基因组研究的大多数物种是一年生草本植物,并且在多年生木本植物(包括葡萄树)中对表观基因组动力学的研究很少。在这种情况下,我们建议葡萄作为农业重要多年生木本植物表观遗传和表观基因组研究的基本模型。

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