Cardiff School of Biosciences, Cardiff University, Museum Avenue, Cardiff CF10 3AX, United Kingdom.
Proc Natl Acad Sci U S A. 2009 Dec 29;106(52):22528-33. doi: 10.1073/pnas.0906354106. Epub 2009 Dec 15.
Root cell division occurs primarily in the apical meristem, from which cells are displaced into the basal meristem, where division decreases and cell length increases before the final differentiation zone. The organization of the root in concentric files implies coordinated division and differentiation of cell types, including the xylem pole pericycle cells, which uniquely can resume division to initiate lateral roots (LR). Here, we show that D-type cyclin CYCD4;1 is expressed in meristematic pericycle protoxylem poles and is required for normal LR density. Cycd4;1 mutants also show a displacement of the apical/basal meristem boundary in the pericycle and longer pericycle basal meristem cells, whereas other cell layers and overall meristem size and root growth are unaffected. Auxin is proposed to separately prepattern and stimulate LR initiation. Stimulation is unimpaired in cycd4;1, suggesting CYCD4;1 requirement for normal spacing but not initiation. Both pericycle cell length and LR density phenotypes of cycd4;1 are rescued by low concentrations of applied auxin, suggesting that the basal meristem has a role in determining LR density. We further show CYCD4;1 is rate-limiting for sucrose-dependent LR formation, since CYCD4;1 expression is sucrose-dependent and wild-type roots fully phenocopy cycd4;1 in sucrose absence. We conclude that CYCD4;1 links meristem pericycle cell behavior to LR density consistent with a basal meristem prepatterning model and that D-type cyclins can confer division potential of defined cell types through cell-specific expression patterns.
根细胞分裂主要发生在顶端分生组织中,细胞从这里被推向基部分生组织,在最终的分化区之前,细胞分裂减少,细胞长度增加。根的同心文件组织暗示细胞类型的协调分裂和分化,包括木质部中柱鞘细胞,这些细胞唯一可以重新分裂启动侧根(LR)。在这里,我们表明 D 型细胞周期蛋白 CYCD4;1 在分生组织中柱鞘原木质部极点表达,并且是正常 LR 密度所必需的。Cycd4;1 突变体也表现出中柱鞘顶端/基部分生组织边界的位移和更长的中柱鞘基部分生组织细胞,而其他细胞层和整个分生组织大小和根生长不受影响。生长素被提议分别预图案化和刺激 LR 起始。在 cycd4;1 中刺激不受影响,这表明 CYCD4;1 需要正常的间隔但不需要起始。cycd4;1 的中柱鞘细胞长度和 LR 密度表型都可以通过施加低浓度的生长素来挽救,这表明基部分生组织在决定 LR 密度方面具有作用。我们进一步表明,CYCD4;1 是蔗糖依赖的 LR 形成的限速因子,因为 CYCD4;1 的表达是蔗糖依赖的,并且在蔗糖不存在的情况下,野生型根完全表现出 cycd4;1 的表型。我们得出结论,CYCD4;1 将分生组织中柱鞘细胞行为与 LR 密度联系起来,与基部分生组织预图案模型一致,并且 D 型细胞周期蛋白可以通过细胞特异性表达模式赋予特定细胞类型的分裂潜力。