Graduate School of Agricultural and Life Sciences, University of Tokyo, Tokyo, 113-8657, Japan.
Plant J. 2014 Jun;78(6):927-36. doi: 10.1111/tpj.12517. Epub 2014 Jun 5.
Auxin is a fundamental plant hormone and its localization within organs plays pivotal roles in plant growth and development. Analysis of many Arabidopsis mutants that were defective in auxin biosynthesis revealed that the indole-3-pyruvic acid (IPA) pathway, catalyzed by the TRYPTOPHAN AMINOTRANSFERASE OF ARABIDOPSIS (TAA) and YUCCA (YUC) families, is the major biosynthetic pathway of indole-3-acetic acid (IAA). In contrast, little information is known about the molecular mechanisms of auxin biosynthesis in rice. In this study, we identified a auxin-related rice mutant, fish bone (fib). FIB encodes an orthologue of TAA genes and loss of FIB function resulted in pleiotropic abnormal phenotypes, such as small leaves with large lamina joint angles, abnormal vascular development, small panicles, abnormal organ identity and defects in root development, together with a reduction in internal IAA levels. Moreover, we found that auxin sensitivity and polar transport activity were altered in the fib mutant. From these results, we suggest that FIB plays a pivotal role in IAA biosynthesis in rice and that auxin biosynthesis, transport and sensitivity are closely interrelated.
生长素是一种基本的植物激素,其在器官内的定位在植物生长和发育中起着关键作用。对许多生长素生物合成缺陷的拟南芥突变体的分析表明,色氨酸氨基转移酶的吲哚-3-丙酮酸(IPA)途径(由TRYPTOPHAN AMINOTRANSFERASE OF ARABIDOPSIS(TAA)和 YUCCA(YUC)家族催化)是吲哚-3-乙酸(IAA)的主要生物合成途径。相比之下,关于水稻中生长素生物合成的分子机制知之甚少。在这项研究中,我们鉴定了一个与生长素相关的水稻突变体,鱼骨(fib)。FIB 编码 TAA 基因的同源物,FIB 功能丧失导致多种异常表型,如小叶片具有大的叶片关节角度、异常的血管发育、小穗、异常器官身份和根发育缺陷,以及内部 IAA 水平降低。此外,我们发现纤维突变体中的生长素敏感性和极性运输活性发生了改变。根据这些结果,我们认为 FIB 在水稻中 IAA 的生物合成中起着关键作用,并且生长素的生物合成、运输和敏感性密切相关。