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A reevaluation of the role of the ASIL trihelix transcription factors as repressors of the seed maturation program

机译:重新评估ASIL Trihelix转录因子作为种子成熟程序的阻遏物

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Developmental transitions are typically tightly controlled at the transcriptional level. Two of these transitions involve the induction of the embryo maturation program midway through seed development and its repression during the vegetative phase of plant growth. Very little is known about the factors responsible for this regulation during early embryogenesis, and only a couple of transcription factors have been characterized as repressors during the postgerminative phase. Arabidopsis 6b-INTERACTING PROTEIN-LIKE1 (ASIL1), a trihelix transcription factor, has been proposed to repress maturation both embryonically and postembryonically. Preliminary data also suggested that its closest paralog, ASIL2, might play a role as well. We used a transcriptomic approach, coupled with phenotypical observations, to test the hypothesis that ASIL1 and ASIL2 redundantly turn off maturation during both phases of growth. Our results indicate that, contrary to what was previously published, neither of the ASIL genes plays a role in the regulation of maturation, at any point during plant development. Analyses of gene ontology (GO)-enriched terms and published transcriptomic datasets suggest that these genes might be involved in responses during the vegetative phase to certain biotic and abiotic stresses.
机译:发育转变通常在转录水平上紧密控制。这些过渡中的两个涉及通过种子发育中途的胚胎成熟程序诱导及其在植物生长营养期期间的镇压。很少是关于在早期胚胎发生期间对该调节负责的因素的众所周知的因素,并且在后动阶段只有几种转录因子被称为阻遏物。已经提出了拟南芥6B-相互作用的蛋白质样1(ASIL1),三次转录因子,以抑制胚胎和后术后的成熟。初步数据还建议它最接近的帕拉洛,ASIL2也可能发挥作用。我们使用转录组方法,再加上表型观察,以测试ASIL1和ASIL2在生长的两相期间冗余地关闭成熟的假设。我们的结果表明,与以前发表的内容相反,ASIL基因两者都不在植物发育过程中的任何时候都在成熟的调节中发挥作用。基因本体学(GO) - 烯丙基术语和公开的转录组数据集表明这些基因可能参与营养阶段期间的响应,以某些生物和非生物应激。

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