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Developmentally non-redundant SET domain proteins SUVH2 and SUVH9 are required for transcriptional gene silencing in Arabidopsis thaliana

机译:拟南芥转录基因沉默需要发育上非冗余的SET结构域蛋白SUVH2和SUVH9

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摘要

In plants, RNA-directed DNA methylation (RdDM) and related transcriptional gene silencing (TGS) involve members of the suppressor of variegation 3-9-homologous (SUVH) group of putative histone methyltransferases. Utilizing a reverse genetic approach in Arabidopsis thaliana, we demonstrate that two closely related SUVH members, SUVH2 and SUVH9, act partially non-redundant in RdDM. DNA methylation, transcript accumulation and association with histone modifications were analyzed at the endogenous RdDM target AtSN1 (a SINE-like retroelement) in suvh2 and suvh9 single as well as suvh2 suvh9 double mutants. SUVH2 was found to be required for full DNA methylation at AtSN1 in early seed development and was also higher expressed in seeds than at later developmental stages. SUVH9 had its impact on RdDM later during vegetative development of the plant and was also higher expressed during that stage than at earlier developmental stages. The strongest reduction of RdDM at AtSN1 was found in suvh2 suvh9 double mutant plants. Histone 3-lysine 9-dimethylation (H3K9me2) associated with AtSN1 was reduced only in the simultaneous absence of functional SUVH2 and SUVH9. Thus, SUVH2 and SUVH9 functions in RdDM and TGS are overlapping in spite of some developmental specialization. Pol V specific transcripts were reduced in suvh2 suvh9 plants. This might indicate a role of these SUVH proteins in Pol V complex recruitment.
机译:在植物中,RNA定向的DNA甲基化(RdDM)和相关的转录基因沉默(TGS)涉及假定的组蛋白甲基转移酶的3-9同源变异(SUVH)抑制子成员。利用拟南芥中的反向遗传方法,我们证明了两个密切相关的SUVH成员SUVH2和SUVH9在RdDM中部分非冗余。在suvh2和suvh9单个以及suvh2 suvh9双重突变体的内源RdDM目标AtSN1(类似于SINE的逆向元件)上分析了DNA甲基化,转录物积累以及与组蛋白修饰的关联。发现SUVH2是种子早期发育中AtSN1的完整DNA甲基化所必需的,并且在种子中的表达也高于后期发育阶段。 SUVH9在植物的营养发育后期对RdDM产生了影响,并且在该阶段的表达也高于早期发育阶段。在suvh2 suvh9双重突变植物中发现了AtSN1处RdDM的最强还原。仅在同时不存在功能性SUVH2和SUVH9的情况下,与AtSN1相关的组蛋白3-赖氨酸9-二甲基化(H3K9me2)才会减少。因此,尽管有一些发展的专业化,但RdDM和TGS中的SUVH2和SUVH9功能是重叠的。 suvh2 suvh9植物中的Pol V特定转录本减少了。这可能表明这些SUVH蛋白在Pol V复合物募集中的作用。

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