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SCARECROW-LIKE15 interacts with HISTONE DEACETYLASE19 and is essential for repressing the seed maturation programme

机译:SCARECROW-LIKE15与HISTONE DEACETYLASE19相互作用,对于抑制种子成熟程序至关重要

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Epigenetic regulation of gene expression is critical for controlling embryonic properties during the embryo-to-seedling phase transition. Here we report that a HISTONE DEACETYLASE19 (HDA19)-associated regulator, SCARECROW-LIKE15 (SCL15), is essential for repressing the seed maturation programme in vegetative tissues. SCL15 is expressed in and GFP-tagged SCL15 predominantly localizes to, the vascular bundles particularly in the phloem companion cells and neighbouring specialized cells. Mutation of SCL15 leads to a global shift in gene expression in seedlings to a profile resembling late embryogenesis in seeds. In scl15 seedlings, many genes involved in seed maturation are markedly derepressed with concomitant accumulation of seed 12S globulin; this is correlated with elevated levels of histone acetylation at a subset of seed-specific loci. SCL15 physically interacts with HDA19 and direct targets of HDA19–SCL15 association are identified. These studies reveal that SCL15 acts as an HDA19-associated regulator to repress embryonic traits in seedlings.
机译:基因表达的表观遗传调控对于在胚胎到幼苗阶段的过渡过程中控制胚胎特性至关重要。在这里,我们报道了与组蛋白DEACETYLASE19(HDA19)相关的调节剂SCARECROW-LIKE15(SCL15),对于抑制营养组织中的种子成熟程序至关重要。 SCL15在血管束中表达,并带有GFP标签的SCL15主要位于血管束中,尤其是在韧皮部陪伴细胞和邻近的特化细胞中。 SCL15的突变导致幼苗中基因表达的整体变化,类似于种子后期胚胎发生的过程。在scl15幼苗中,许多与种子成熟有关的基因被种子12S球蛋白的伴随积累显着抑制。这与在种子特异性基因座的亚组中组蛋白乙酰化水平升高有关。 SCL15与HDA19进行物理交互,并确定了HDA19–SCL15关联的直接目标。这些研究表明,SCL15充当与HDA19相关的调节因子,以抑制幼苗的胚胎性状。

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