Laboratory of Biochemistry, Wageningen University, The Netherlands.
Graduate School of Biostudies, Kyoto University, Japan.
J Exp Bot. 2018 Jan 4;69(2):291-301. doi: 10.1093/jxb/erx267.
Auxin plays critical roles in growth and development through the regulation of cell differentiation, cell expansion, and pattern formation. The auxin signal is mainly conveyed through a so-called nuclear auxin pathway involving the receptor TIR1/AFB, the transcriptional co-repressor AUX/IAA, and the transcription factor ARF with direct DNA-binding ability. Recent progress in sequence information and molecular genetics in basal plants has provided many insights into the evolutionary origin of the nuclear auxin pathway and its pleiotropic roles in land plant development. In this review, we summarize the latest knowledge of the nuclear auxin pathway gained from studies using basal plants, including charophycean green algae and two major model bryophytes, Marchantia polymorpha and Physcomitrella patens. In addition, we discuss the functional implication of the increase in genetic complexity of the nuclear auxin pathway during land plant evolution.
生长素通过调节细胞分化、细胞扩张和形态形成在生长和发育中发挥关键作用。生长素信号主要通过一种所谓的核生长素途径传递,该途径涉及受体 TIR1/AFB、转录共阻遏物 AUX/IAA 和具有直接 DNA 结合能力的转录因子 ARF。基础植物在序列信息和分子遗传学方面的最新进展为核生长素途径的进化起源及其在陆地植物发育中的多效性作用提供了许多启示。在这篇综述中,我们总结了使用基础植物(包括绿藻纲绿藻和两种主要的模式苔藓植物,Marchantia polymorpha 和 Physcomitrella patens)研究获得的核生长素途径的最新知识。此外,我们还讨论了核生长素途径遗传复杂性在陆地植物进化过程中增加的功能意义。