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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >The SHOOTLESS2 and SHOOTLESS1 Genes Are Involved in Both Initiation and Maintenance of the Shoot Apical Meristem Through Regulating the Number of Indeterminate Cells
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The SHOOTLESS2 and SHOOTLESS1 Genes Are Involved in Both Initiation and Maintenance of the Shoot Apical Meristem Through Regulating the Number of Indeterminate Cells

机译:SHOOTLESS2和SHOOTLESS1基因通过调控不确定细胞的数目参与茎顶分生组织的启动和维持

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摘要

To characterize the SHL2 and SHL1 genes in detail, we analyzed three strains carrying weak alleles of SHL2, shl2-6, shl2-7 , and shl2-8 , and one weak allele of SHL1, shl1-3 . In contrast to strong alleles, which result in lack of shoot meristem, strains bearing these weak alleles formed shoot meristem frequently during embryogenesis. In shl2-6 and shl2-7 mutants, the meristem was lost during seed development. Only the shl2-8 mutant could survive after germination, but it showed abnormal initiation pattern and morphology of leaves. In strains bearing the weak alleles, the shoot meristem was composed of a small number of indeterminate cells and ultimately converted into leaf primordium. The shl1-3 mutant showed phenotypes similar to those of shl2-8 . Thus SHL2 and SHL1 are required for both initiation and maintenance of shoot meristem. In shl2 mutants, there was a positive correlation between the size of the expression domain of OSH1 representing the number of indeterminate cells, the frequency of shoot meristem initiation, and the duration of meristem survival. Thus the shoot meristem will not initiate in an “all-or-nothing” fashion, but is formed in various degrees depending on the strength of the alleles. Double-mutant analyses indicate that SHL2 functions upstream of SHO to establish proper organization of the shoot meristem.
机译:为了详细表征SHL2和SHL1基因,我们分析了三种携带SHL2,shl2-6,shl2-7和shl2-8弱等位基因的菌株,以及一个SHL1 shl1-3的弱等位基因。与导致缺乏分生组织的强等位基因相反,带有这些弱等位基因的菌株在胚胎发生期间经常形成分生组织。在shl2-6和shl2-7突变体中,分生组织在种子发育过程中丢失。萌发后只有shl2-8突变体可以存活,但是它显示出异常的起始模式和叶片形态。在带有弱等位基因的菌株中,分生组织由少量不确定的细胞组成,最终转化为叶片原基。 shl1-3突变体表现出与shl2-8相似的表型。因此,SHL2和SHL1是芽生生组织的引发和维持所必需的。在shl2突变体中,代表不确定细胞数量的OSH1表达域大小,芽分生组织萌发频率和分生组织存活时间之间存在正相关。因此,芽分生组织将不会以“全有或全无”的方式启动,而是根据等位基因的强度以不同程度形成。双突变分析表明,SHL2在SHO的上游起作用,以建立芽分生组织的适当组织。

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