Taylor S, Hofer J, Murfet I
School of Plant Science, University of Tasmania, Hobart, Tasmania, 7001, Australia.
Plant Cell. 2001 Jan;13(1):31-46. doi: 10.1105/tpc.13.1.31.
Isolation and characterization of two severe alleles at the Stamina pistilloida (Stp) locus reveals that Stp is involved in a wide range of developmental processes in the garden pea. The most severe allele, stp-4, results in flowers consisting almost entirely of sepals and carpels. Production of ectopic secondary flowers in stp-4 plants suggests that Stp is involved in specifying floral meristem identity in pea. The stp mutations also reduce the complexity of the compound pea leaf, and primary inflorescences often terminate prematurely in an aberrant sepaloid flower. In addition, stp mutants were shorter than their wild-type siblings due to a reduction in cell number in their internodes. Fewer cells were also found in the epidermis of the leaf rachis of stp mutants. Examination of the effects of stp-4 in double mutant combinations with af, tl, det, and veg2-2-mutations known to influence leaf, inflorescence, and flower development in pea-suggests that Stp function is independent of these genes. A synergistic interaction between weak mutant alleles at Stp and Uni indicated that these two genes act together, possibly to regulate primordial growth. Molecular analysis revealed that Stp is the pea homolog of the Antirrhinum gene Fimbriata (Fim) and of UNUSUAL FLORAL ORGANS (UFO) from Arabidopsis. Differences between Fim/UFO and Stp mutant phenotypes and expression patterns suggest that expansion of Stp activity into the leaf was an important step during evolution of the compound leaf in the garden pea.
在豌豆的雌蕊育性基因座(Stamina pistilloida,Stp)上分离和鉴定出两个严重等位基因,这表明Stp参与了豌豆广泛的发育过程。最严重的等位基因stp - 4导致花朵几乎完全由萼片和心皮组成。stp - 4植株中异位次生花的产生表明Stp参与了豌豆花分生组织身份的确定。stp突变还降低了复叶豌豆叶的复杂性,初级花序通常在异常的萼片状花中过早终止。此外,由于节间细胞数量减少,stp突变体比其野生型同胞更矮。在stp突变体叶轴的表皮中也发现较少的细胞。研究stp - 4与已知影响豌豆叶、花序和花发育的af、tl、det和veg2 - 2突变体的双突变组合的效应,表明Stp功能独立于这些基因。Stp和Uni弱突变等位基因之间的协同相互作用表明这两个基因共同作用,可能调节原基生长。分子分析表明,Stp是金鱼草基因Fimbriata(Fim)和拟南芥异常花器官(UNUSUAL FLORAL ORGANS,UFO)的豌豆同源物。Fim/UFO和Stp突变体表型及表达模式的差异表明,Stp活性向叶片的扩展是豌豆复叶进化过程中的重要一步。