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Exploring an Emerging Issue: Crop Epigenetics

机译:探索新出现的问题:作物表观遗传学

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In epigenetics, non-coding sequences are the primary matter. Transponible elements (TEs) are epigenetically marked in order to determine subsequent expression or inhibition, a process that occasionally generates the overexpression of major transcription factors (MTFs). Take this into consideration is fundamental to understanding those underlying epigenetic mechanisms and biological processes involved in the manifestation of variability (so far considered genetic variability), since this process might lead to conspicuous phenotype transformations in only one generation, which is still more noticeable in species subject to continuous selection procedures. This article reviews recent discoveries related to the genetics and epigenetics nature of tb1 and Rht loci, which are essentials in the development of maize (Zea mays) and wheat bread (Triticum aestivum) crops, respectively. In addition, an attempt is made to understand the epigenetic (paramutation, genomic imprinting) as well as environmental (hormonal) processes whose function might be related to these loci.
机译:在表观遗传学中,非编码序列是主要问题。为了确定随后的表达或抑制作用,在表观遗传学上标记了可传递元件(TE),该过程有时会导致主要转录因子(MTF)的过表达。考虑到这一点对于理解变异性(迄今为止被认为是遗传变异性)表现形式的潜在表观遗传机制和生物学过程至关重要,因为该过程可能仅在一代中导致明显的表型转化,而这在物种中仍然更加明显需遵守连续选择程序。本文回顾了与tb1和Rht基因座的遗传和表观遗传学性质有关的最新发现,它们分别是玉米(Zea mays)和小麦面包(Triticum aestivum)作物发展的基础。此外,尝试了解其功能可能与这些基因座有关的表观遗传(突变,基因组印迹)以及环境(激素)过程。

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