Molecular, Cellular and Developmental Biology Program, The Ohio State University, 500 Aronoff Laboratory, 318 W 12th Ave, Columbus OH 43210, USA.
J Exp Bot. 2011 Jan;62(3):1271-84. doi: 10.1093/jxb/erq363. Epub 2010 Dec 13.
The radical-induced cell death1 and similar to RCD ONE1 genes of Arabidopsis thaliana encode members of the poly(ADP-ribose) polymerase (PARP) superfamily and have pleiotropic functions in development and abiotic stress response. In order to begin to understand the developmental and molecular bases of the defects seen in rcd1-3; sro1-1 plants, this study used the root as a model. Double mutant roots are short and display abnormally organized root apical meristems. However, acquisition of most cell fates within the root is not significantly disrupted. The identity of the quiescent centre is compromised, the zone of cell division is smaller than in wild-type roots and abnormal divisions are common, suggesting that RCD1 and SRO1 are necessary to maintain cells in a division-competent state and to regulate division plane placement. In addition, differentiation of several cell types is disrupted in rcd1-3; sro1-1 roots and shoots, demonstrating that RCD1 and SRO1 are also necessary for proper cell differentiation. Based on the data shown in this article and previous work, we hypothesize that RCD1 and SRO1 are involved in redox control and, in their absence, an altered redox balance leads to abnormal development.
拟南芥的自由基诱导细胞死亡 1 型和类似 RCD ONE 1 基因编码多聚(ADP-核糖)聚合酶(PARP)超家族的成员,并在发育和非生物胁迫反应中具有多种功能。为了开始理解 rcd1-3;sro1-1 植物中观察到的缺陷的发育和分子基础,本研究使用根作为模型。双突变体根短,显示出异常组织的根尖分生组织。然而,根内大多数细胞命运的获得并没有被显著破坏。静止中心的身份受到损害,分裂区小于野生型根,异常分裂很常见,这表明 RCD1 和 SRO1 有必要维持细胞处于分裂能力状态,并调节分裂平面的放置。此外,rcd1-3;sro1-1 根和茎中的几种细胞类型的分化被打乱,表明 RCD1 和 SRO1 也需要正确的细胞分化。基于本文和以前工作中的数据,我们假设 RCD1 和 SRO1 参与氧化还原控制,在它们缺失的情况下,改变的氧化还原平衡导致异常发育。