Laux T, Mayer K F, Berger J, Jürgens G
Lehrstuhl für Genetik, Ludwig-Maximilian-Universität München, Germany.
Development. 1996 Jan;122(1):87-96. doi: 10.1242/dev.122.1.87.
Self perpetuation of the shoot meristem is essential for the repetitive initiation of shoot structures during plant development. In Arabidopsis shoot meristem maintenance is disrupted by recessive mutations in the WUSCHEL (WUS) gene. The defect is evident at all developmental stages and is restricted to shoot and floral meristems, whereas the root meristem is not affected. wus mutants fail to properly organize a shoot meristem in the embryo. Postembryonically, defective shoot meristems are initiated repetitively but terminate prematurely in aberrant flat structures. In contrast to wild-type shoot meristems, primordia initiation occurs ectopically across mutant apices, including the center, and often new shoot meristems instead of organs are initiated. The cells of wus shoot apices are larger and more vacuolated than wild-type shoot meristem cells. wus floral meristems terminate prematurely in a central stamen. Double mutant studies indicate that the number of organ primordia in the center of wus flowers is limited, irrespective of organ identity and we propose that meristem cells are allocated into floral whorl domains in a sequential manner. WUS activity also appears to be required for the formation of supernumerary organs in the center of agamous, superman or clavata1 flowers, suggesting that the WUS gene acts upstream of the corresponding genes. Our results suggest that the WUS gene is specifically required for central meristem identity of shoot and floral meristems to maintain their structural and functional integrity.
茎尖分生组织的自我维持对于植物发育过程中茎结构的重复起始至关重要。在拟南芥中,茎尖分生组织的维持会因WUSCHEL(WUS)基因的隐性突变而受到破坏。这种缺陷在所有发育阶段都很明显,并且仅限于茎尖和花分生组织,而根分生组织不受影响。wus突变体在胚胎中无法正确组织茎尖分生组织。胚胎后期,有缺陷的茎尖分生组织会重复起始,但会在异常的扁平结构中过早终止。与野生型茎尖分生组织不同,原基起始在突变体顶端异位发生,包括中心部位,并且常常起始形成新的茎尖分生组织而非器官。wus茎尖的细胞比野生型茎尖分生组织的细胞更大且液泡化程度更高。wus花分生组织会在中央雄蕊处过早终止。双突变体研究表明,wus花中心的器官原基数量有限,与器官身份无关,并且我们提出分生组织细胞是以顺序方式分配到花轮区域的。WUS活性似乎也是形成无花瓣、超级雄性或clavata1花中心的额外器官所必需的,这表明WUS基因在相应基因的上游起作用。我们的结果表明,WUS基因是茎尖和花分生组织中央分生组织身份维持其结构和功能完整性所特需的。