Roudier François, Schindelman Gary, DeSalle Rob, Benfey Philip N
Department of Biology, New York University, New York, NY 10003, USA.
Plant Physiol. 2002 Oct;130(2):538-48. doi: 10.1104/pp.007468.
Identification of regulatory molecules that determine the extent and direction of expansion is necessary to understand how cell morphogenesis is controlled in plants. We recently identified COB (COBRA) as a key regulator of the orientation of cell expansion in the root. Analysis of the Arabidopsis genome sequence indicated that COB belongs to a multigene family consisting of 12 members, all predicted to encode glycosylphosphatidylinositol-anchored proteins. All but two of the COBL (COB-like) genes are expressed in most organs examined, suggesting possible redundancy. Sequence comparisons, phylogenetic analyses, and exon-intron positions revealed that the COB family is composed of two main subgroups sharing a common architecture, one subgroup being characterized by an additional N-terminal domain. Identification of expressed sequence tags corresponding to potential orthologs in other plant species suggested that COB-related functions are required in all vascular plants. Together, these results indicate that COB family members are likely to be important new players at the plasma membrane-cell wall interface.
识别决定细胞扩张程度和方向的调控分子,对于理解植物细胞形态发生如何被控制是必要的。我们最近鉴定出COB(COBRA)是根中细胞扩张方向的关键调节因子。对拟南芥基因组序列的分析表明,COB属于一个由12个成员组成的多基因家族,所有成员都预测编码糖基磷脂酰肌醇锚定蛋白。除了两个COBL(COB样)基因外,其余基因在大多数检测的器官中都有表达,这表明可能存在功能冗余。序列比较、系统发育分析和外显子-内含子位置显示,COB家族由两个具有共同结构的主要亚组组成,其中一个亚组的特征是有一个额外的N端结构域。鉴定与其他植物物种中潜在直系同源物相对应的表达序列标签表明,所有维管植物都需要COB相关功能。这些结果共同表明,COB家族成员可能是质膜-细胞壁界面重要的新参与者。