Engstrom Eric M, Andersen Carl M, Gumulak-Smith Juliann, Hu John, Orlova Evguenia, Sozzani Rosangela, Bowman John L
Biology Department, College of William and Mary, Williamsburg, Virginia 23187-8795, USA.
Plant Physiol. 2011 Feb;155(2):735-50. doi: 10.1104/pp.110.168757. Epub 2010 Dec 20.
Maintenance of indeterminacy is fundamental to the generation of plant architecture and a central component of the plant life strategy. Indeterminacy in plants is a characteristic of shoot and root meristems, which must balance maintenance of indeterminacy with organogenesis. The Petunia hybrida HAIRY MERISTEM (HAM) gene, a member of the GRAS family of transcriptional regulators, promotes shoot indeterminacy by an undefined non-cell-autonomous signaling mechanism(s). Here, we report that Arabidopsis (Arabidopsis thaliana) mutants triply homozygous for knockout alleles in three Arabidopsis HAM orthologs (Atham1,2,3 mutants) exhibit loss of indeterminacy in both the shoot and root. In the shoot, the degree of penetrance of the loss-of-indeterminacy phenotype of Atham1,2,3 mutants varies among shoot systems, with arrest of the primary vegetative shoot meristem occurring rarely or never, secondary shoot meristems typically arresting prior to initiating organogenesis, and inflorescence and flower meristems exhibiting a phenotypic range extending from wild type (flowers) to meristem arrest preempting organogenesis (flowers and inflorescence). Atham1,2,3 mutants also exhibit aberrant shoot phyllotaxis, lateral organ abnormalities, and altered meristem morphology in functioning meristems of both rosette and inflorescence. Root meristems of Atham1,2,3 mutants are significantly smaller than in the wild type in both longitudinal and radial axes, a consequence of reduced rates of meristem cell division that culminate in root meristem arrest. Atham1,2,3 phenotypes are unlikely to reflect complete loss of HAM function, as a fourth, more distantly related Arabidopsis HAM homolog, AtHAM4, exhibits overlapping function with AtHAM1 and AtHAM2 in promoting shoot indeterminacy.
维持 indeterminacy 对于植物形态建成的产生至关重要,并且是植物生命策略的核心组成部分。植物中的 indeterminacy 是茎尖和根尖分生组织的一个特征,这些分生组织必须在维持 indeterminacy 与器官发生之间取得平衡。矮牵牛的 HAIRY MERISTEM(HAM)基因是转录调节因子 GRAS 家族的成员,通过一种未明确的非细胞自主信号传导机制促进茎尖的 indeterminacy。在这里,我们报告说,在三个拟南芥 HAM 直系同源基因中敲除等位基因的三重纯合拟南芥(Arabidopsis thaliana)突变体(Atham1,2,3 突变体)在茎尖和根尖中均表现出 indeterminacy 的丧失。在茎尖中,Atham1,2,3 突变体丧失 indeterminacy 表型的外显率程度在不同的茎尖系统中有所不同,初级营养茎尖的停滞很少或从不发生,二级茎尖通常在开始器官发生之前停滞,而花序和花分生组织表现出从野生型(花)到在器官发生之前分生组织停滞(花和花序)的一系列表型。Atham1,2,3 突变体还表现出异常的茎尖叶序、侧生器官异常以及莲座叶和花序的功能分生组织中分生组织形态的改变。Atham1,2,3 突变体的根分生组织在纵向和径向轴上均明显小于野生型,这是分生组织细胞分裂速率降低的结果,最终导致根分生组织停滞。Atham1,2,3 的表型不太可能反映 HAM 功能的完全丧失,因为第四个与拟南芥 HAM 同源性更远的 AtHAM4 在促进茎尖 indeterminacy 方面与 AtHAM1 和 AtHAM2 具有重叠功能。 (注:“indeterminacy”在植物学领域可能有特定专业含义,这里直接保留英文未翻译,以便读者结合专业知识理解,若有更准确中文术语需求,可根据实际情况调整。)