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DNA甲基化参与水稻(Oryza sativa)响应渗透胁迫时脯氨酸的积累。

DNA methylation involved in proline accumulation in response to osmotic stress in rice (Oryza sativa).

作者信息

Zhang C Y, Wang N N, Zhang Y H, Feng Q Z, Yang C W, Liu B

机构信息

Key Laboratory of Molecular Epigenetics of the Ministry of Education, Northeast Normal University, Changchun, China.

出版信息

Genet Mol Res. 2013 Apr 17;12(2):1269-77. doi: 10.4238/2013.April.17.5.

Abstract

Proline accumulation is involved in plant osmotic stress tolerance. Given that DNA methylation is related to almost all metabolic processes through regulation of gene expression, we suspected that this epigenetic modification and proline biosynthesis are probably related. To test this, we investigated whether osmotic stress-induced proline accumulation is associated with DNA methylation modifications in rice. We assessed DNA methylation and expression of 3 key genes (P5CR, P5CS, and δ-OAT) involved in proline biosynthesis, and measured proline content under both osmotic stress (15% polyethylene glycol) and control conditions. After osmotic stress, selfed progenies of osmotic-stressed plants accumulated higher concentrations of proline in leaves under both normal conditions and under osmotic stress than the unstressed control plants. Concomitantly, under osmotic stress, the selfed progeny plants showed higher expression levels of P5CS and δ-OAT than the control. This up-regulated expression was stably inherited by the subsequent generation. Methylation-sensitive Southern blotting indicated that 2 of the 3 genes, P5CS and δ-OAT, had greater DNA demethylation in the selfed progenies than in the control. Apparently DNA demethylation facilitated proline accumulation by up-regulating expression of the P5CS and δ-OAT genes in response to osmotic stress.

摘要

脯氨酸积累与植物的渗透胁迫耐受性有关。鉴于DNA甲基化通过基因表达调控几乎涉及所有代谢过程,我们推测这种表观遗传修饰与脯氨酸生物合成可能相关。为了验证这一点,我们研究了水稻中渗透胁迫诱导的脯氨酸积累是否与DNA甲基化修饰有关。我们评估了参与脯氨酸生物合成的3个关键基因(P5CR、P5CS和δ-OAT)的DNA甲基化和表达情况,并在渗透胁迫(15%聚乙二醇)和对照条件下测量了脯氨酸含量。渗透胁迫后,渗透胁迫植株的自交后代在正常条件和渗透胁迫下,叶片中脯氨酸的积累浓度均高于未受胁迫的对照植株。同时,在渗透胁迫下,自交后代植株中P5CS和δ-OAT的表达水平高于对照。这种上调表达能稳定地遗传给下一代。甲基化敏感的Southern杂交表明,在自交后代中,3个基因中的2个,即P5CS和δ-OAT,其DNA去甲基化程度高于对照。显然,DNA去甲基化通过上调P5CS和δ-OAT基因的表达促进了脯氨酸在渗透胁迫下的积累。

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