Department of Biology, University of York, York YO10 5DD, UK.
Ann Bot. 2010 Feb;105(2):277-89. doi: 10.1093/aob/mcp287. Epub 2009 Dec 1.
The root meristem of the Arabidopsis thaliana mature embryo is a highly organized structure in which individual cell shape and size must be regulated in co-ordination with the surrounding cells. The objective of this study was to determine the role of the AUX1 LAX family of auxin import carriers during the establishment of the embryonic root cell pattern.
The radicle apex of single and multiple aux1 lax mutant mature embryos was used to evaluate the effect of this gene family upon embryonic root organization and root cap size, cell number and cell size.
It was demonstrated here that mutations within the AUX1 LAX family are associated with changes in cell pattern establishment in the embryonic quiescent centre and columella. aux1 lax mutants have a larger radicle root cap than the wild type and this is associated with a significant increase in the root-cap cell number, average cell size, or both. Extreme disorganization of the radicle apex was observed among quadruple aux1 lax1 lax2 lax3 mutant embryos, but not in single aux1 null or in lax1, lax2 and lax3 single mutants, indicating redundancy within the AUX1 LAX family.
It was determined that the AUX1 LAX family of auxin influx facilitators participates in the establishment of cell pattern within the apex of the embryonic root in a gene-redundant fashion. It was demonstrated that aux1 lax mutants are affected in cell proliferation and cell growth within the radicle tip. Thus AUX1 LAX auxin importers emerge as new players in morphogenetic processes involved in patterning during embryonic root formation.
拟南芥成熟胚根分生组织是一个高度组织化的结构,其中每个细胞的形状和大小必须与周围细胞协调调节。本研究的目的是确定生长素输入载体 AUX1 LAX 家族在胚胎根细胞模式建立过程中的作用。
使用单个和多个 aux1 lax 突变体成熟胚根的根尖来评估该基因家族对胚胎根组织和根冠大小、细胞数量和细胞大小的影响。
本文证明,AUX1 LAX 家族内的突变与胚胎静止中心和柱状细胞模式建立的变化有关。aux1 lax 突变体的根冠比野生型大,这与根冠细胞数量、平均细胞大小或两者的显著增加有关。在四倍体 aux1 lax1 lax2 lax3 突变体胚胎中观察到根尖极度紊乱,但在单个 aux1 缺失或 lax1、lax2 和 lax3 单个突变体中则没有,表明 AUX1 LAX 家族内存在冗余性。
确定生长素输入促进剂 AUX1 LAX 家族以基因冗余的方式参与胚胎根根尖细胞模式的建立。证明 aux1 lax 突变体在根尖细胞增殖和细胞生长方面受到影响。因此,AUX1 LAX 生长素载体作为参与胚胎根形成过程中形态发生过程的新参与者出现。