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Ring the BELL and tie the KNOX: roles for TALEs in gynoecium development

机译:敲响钟声并绑住诺克斯:TALE在妇科发育中的作用

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摘要

Carpels are leaf-like structures that bear ovules, and thus play a crucial role in the plant life cycle. In angiosperms, carpels are the last organs produced by the floral meristem and they differentiate a specialized meristematic tissue from which ovules develop. Members of the three-amino-acid-loop-extension (TALE) class of homeoproteins constitute major regulators of meristematic activity. This family contains KNOTTED-like (KNOX) and BEL1-like (BLH or BELL) homeodomain proteins, which function as heterodimers. KNOX proteins can have different BELL partners, leading to multiple combinations with distinct activities, and thus regulate many aspects of plant morphogenesis, including gynoecium development. TALE proteins act primarily through direct regulation of hormonal pathways and key transcriptional regulators. This review focuses on the contribution of TALE proteins to gynoecium development and connects TALE transcription factors to carpel gene regulatory networks.
机译:心皮是具有胚珠的叶状结构,因此在植物生命周期中起着至关重要的作用。在被子植物中,心皮是花分生组织产生的最后器官,它们分化了形成胚珠的专门分生组织。三氨基酸环延伸(TALE)类同源蛋白的成员构成分生组织活性的主要调节剂。该家族包含类似异二聚体的KNOTTED样(KNOX)和BEL1样(BLH或BELL)同源结构域蛋白。 KNOX蛋白可以具有不同的BELL伴侣,从而导致具有不同活性的多种组合,从而调节植物形态发生的许多方面,包括妇科发育。 TALE蛋白主要通过直接调节激素途径和关键转录调节子发挥作用。这篇评论集中在TALE蛋白对妇科发育的贡献,并将TALE转录因子连接到心皮基因调控网络。

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