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Sugar signaling is involved in histone deacetylase-mediated repression of embryonic characteristics after germination

机译:糖信号参与发芽后组蛋白脱乙酰基酶介导的胚胎特性抑制

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Sugars are important regulators of germination and seedling development, and sugar signaling is thought to be involved in the repression of embryonic characteristics after germination. In contrast, chromatin remodeling induced by histone modification plays an important role in the control of plant development. We found that HDA6 and HDA19 redundantly repress embryo-specific gene expression during germination in Arabidopsis. We analyzed the effects of sucrose-containing or sucrose-free medium on post-germination growth arrest in an HDA6/19 double repression line (HDA6/19: RNAi). Although HDA6/19: RNAi seeds showed post-germination growth arrest when grown in sucrose-containing medium, sucrose-free medium relieved growth arrest, indicating the suppression of embryo-specific genes. Thus, sugar signaling may prevent the HDAC-mediated repression of embryonic characteristics after germination. Based on expression analyses of VSP2 in HDA6/19: RNAi seedlings, the repression of HDA6 and HDA19 may not affect sugar signaling. During germination, HDA6 and HDA19 repress embryonic properties via regulation of embryo-specific transcription factors. Sugar signaling may also contribute to this repression of embryonic properties.
机译:糖是发芽和幼苗发育的重要调节剂,并且糖信号被认为与发芽后胚胎特性的抑制有关。相反,由组蛋白修饰诱导的染色质重塑在控制植物发育中起重要作用。我们发现,在拟南芥的发芽过程中,HDA6和HDA19冗余地抑制了胚胎特异性基因的表达。我们分析了含蔗糖或无蔗糖的培养基对HDA6 / 19双阻遏系(HDA6 / 19:RNAi)萌发后生长停滞的影响。尽管HDA6 / 19:RNAi种子在含蔗糖的培养基中生长时显示出发芽后生长停滞,但无蔗糖的培养基可缓解生长停滞,表明抑制了胚胎特异性基因。因此,糖信号传导可防止发芽后HDAC介导的胚胎特性抑制。根据VSP2在HDA6 / 19:RNAi幼苗中的表达分析,对HDA6和HDA19的抑制可能不会影响糖信号传导。在发芽过程中,HDA6和HDA19通过调节胚胎特异性转录因子来抑制胚胎特性。糖信号传导也可能有助于抑制胚胎特性。

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