Peters Akira F, Scornet Delphine, Ratin Morgane, Charrier Bénédicte, Monnier Annabelle, Merrien Yves, Corre Erwan, Coelho Susana M, Cock J Mark
UPMC Université Paris 06, The Marine Plants and Biomolecules Laboratory, UMR 7139, Station Biologique de Roscoff, Place Georges Teissier, BP74, 29682 Roscoff Cedex, France.
Development. 2008 Apr;135(8):1503-12. doi: 10.1242/dev.016303. Epub 2008 Mar 13.
Development of the sporophyte and gametophyte generations of the brown alga E. siliculosus involves two different patterns of early development, which begin with either a symmetric or an asymmetric division of the initial cell, respectively. A mutant, immediate upright (imm), was isolated that exhibited several characteristics typical of the gametophyte during the early development of the sporophyte generation. Genetic analyses showed that imm is a recessive, single-locus Mendelian factor and analysis of gene expression in this mutant indicated that the regulation of a number of life-cycle-regulated genes is specifically modified in imm mutant sporophytes. Thus, IMM appears to be a regulatory locus that controls part of the sporophyte-specific developmental programme, the mutant exhibiting partial homeotic conversion of the sporophyte into the gametophyte, a phenomenon that has not been described previously.
褐藻E. siliculosus的孢子体和配子体世代的发育涉及两种不同的早期发育模式,分别始于初始细胞的对称或不对称分裂。分离出一个突变体,即立即直立型(imm),它在孢子体世代的早期发育过程中表现出配子体的几个典型特征。遗传分析表明,imm是一个隐性单基因孟德尔因子,对该突变体基因表达的分析表明,许多生命周期调控基因的调控在imm突变体孢子体中被特异性改变。因此,IMM似乎是一个调控位点,控制着部分孢子体特异性发育程序,该突变体表现出孢子体向配子体的部分同源异型转化,这是一种以前未被描述过的现象。