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Antisense transcription represses Arabidopsis seed dormancy QTL DOG1 to regulate drought tolerance

机译:反义转录抑制拟南芥种子休眠QTLDOG1调节抗旱性

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摘要

Plants have developed multiple strategies to sense the external environment and to adapt growth accordingly. Delay of germination 1 (DOG1) is a major quantitative trait locus (QTL) for seed dormancy strength in Arabidopsis thaliana that is reported to be expressed exclusively in seeds. DOG1 is extensively regulated, with an antisense transcript (asDOG1) suppressing its expression in seeds. Here, we show that asDOG1 shows high levels in mature plants where it suppresses DOG1 expression under standard growth conditions. Suppression is released by shutting down antisense transcription, which is induced by the plant hormone abscisic acid (ABA) and drought. Loss of asDOG1 results in constitutive high‐level DOG1 expression, conferring increased drought tolerance, while inactivation of DOG1 causes enhanced drought sensitivity. The unexpected role of DOG1 in environmental adaptation of mature plants is separate from its function in seed dormancy regulation. The requirement of asDOG1 to respond to ABA and drought demonstrates that antisense transcription is important for sensing and responding to environmental changes in plants.
机译:植物已经开发出多种策略来感知外部环境并相应地适应生长。延迟发芽1(DOG1)是拟南芥种子休眠强度的主要定量性状位点(QTL),据报道仅在种子中表达。 DOG1受到广泛调控,其反义转录本(asDOG1)抑制其在种子中的表达。在这里,我们显示asDOG1在成熟植物中显示高水平,在标准生长条件下它会抑制DOG1表达。通过关闭反义转录来释放抑制作用,而反义转录是由植物激素脱落酸(ABA)和干旱引起的。 asDOG1的缺失导致组成型高水平DOG1表达,赋予抗旱性,而DOG1的失活导致干旱敏感性增强。 DOG1在成熟植物的环境适应中的意想不到的作用与其在种子休眠调节中的功能是分开的。 asDOG1对ABA和干旱的响应需求表明,反义转录对于感测和响应植物的环境变化非常重要。

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