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三螺旋转录因子在胚胎成熟中是否有作用?

Is there a role for trihelix transcription factors in embryo maturation?

机构信息

Kennard-Dale High School, Fawn Grove, PA, USA.

出版信息

Plant Signal Behav. 2012 Feb;7(2):205-9. doi: 10.4161/psb.18893. Epub 2012 Feb 1.

Abstract

The development of the angiosperm seed includes the accumulation of storage products, the loss of most of its water and the establishment of dormancy. While much is known about the pathways that initiate maturation during mid-embryogenesis or repress it after germination, only recently has it been shown that other mechanisms repress the program during early embryogenesis.Two recent reports have shown that microRNAs are critical regulators of maturation in Arabidopsis early embryogenesis. Two closely related trihelix transcription factors, ASIL1 and ASIL2, were identified as probable partially redundant repressors of early maturation downstream of the microRNA-synthesizing enzyme DICER-LIKE1. An overlap between the genes upregulated in asil1-1 and dcl1-15 mutants support this conclusion. ASIL2 orthologs are found across seed plants, indicating that their role in maturation might be conserved. ASIL1 arose from the ancestral ASIL2 clade by a gene duplication event in the Brassicaceae, although it is not clear whether its function has diverged.

摘要

被子植物种子的发育包括储存产物的积累、大部分水分的丧失和休眠的建立。虽然人们已经了解了在胚胎中期启动成熟的途径,或者在发芽后抑制成熟的途径,但直到最近才表明其他机制在胚胎早期抑制该程序。最近有两项研究表明,microRNAs 是拟南芥早期胚胎发生中成熟的关键调节因子。两个密切相关的三螺旋转录因子 ASIL1 和 ASIL2 被鉴定为可能的部分冗余抑制剂,位于 microRNA 合成酶 DICER-LIKE1 的下游,可抑制早期成熟。在 asil1-1 和 dcl1-15 突变体中上调的基因之间存在重叠,支持了这一结论。ASIL2 同源物存在于种子植物中,表明其在成熟过程中的作用可能是保守的。ASIL1 是由拟南芥科的基因复制事件从祖先 ASIL2 分支中产生的,尽管尚不清楚其功能是否已经分化。

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