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首页> 外文期刊>The Plant Cell >ETOILE Regulates Developmental Patterning in the Filamentous Brown Alga Ectocarpus siliculosus
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ETOILE Regulates Developmental Patterning in the Filamentous Brown Alga Ectocarpus siliculosus

机译:ETOILE调节丝状褐藻Ectocarpus siliculosus的发育模式

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摘要

Brown algae are multicellular marine organisms evolutionarily distant from both metazoans and land plants. The molecular or cellular mechanisms that govern the developmental patterning in brown algae are poorly characterized. Here, we report the first morphogenetic mutant, etoile (etl), produced in the brown algal model Ectocarpus siliculosus. Genetic, cellular, and morphometric analyses showed that a single recessive locus, ETL, regulates cell differentiation: etl cells display thickening of the extracellular matrix (ECM), and the elongated, apical, and actively dividing E cells are underrepresented. As a result of this defect, the overrepresentation of round, branch-initiating R cells in the etl mutant leads to the rapid induction of the branching process at the expense of the uniaxial growth in the primary filament. Computational modeling allowed the simulation of the etl mutant phenotype by including a modified response to the neighborhood information in the division rules used to specify wild-type development. Microarray experiments supported the hypothesis of a defect in cell-cell communication, as primarily Lin-Notch-domain transmembrane proteins, which share similarities with metazoan Notch proteins involved in binary cell differentiation were repressed in etl. Thus, our study highlights the role of the ECM and of novel transmembrane proteins in cell-cell communication during the establishment of the developmental pattern in this brown alga.
机译:褐藻是进化远离后生动物和陆地植物的多细胞海洋生物。支配褐藻发育模式的分子或细胞机制知之甚少。在这里,我们报道了在棕色藻类模型Ectocarpus siliculosus中产生的第一个形态发生突变体etoile(etl)。遗传,细胞和形态计量学分析显示,单个隐性基因座ETL调节细胞分化:etl细胞显示出细胞外基质(ECM)的增厚,而细长的,顶端的和活跃分裂的E细胞则不足。这种缺陷的结果是,etl突变体中圆形的分支启动R细胞的过度表达导致分支过程的快速诱导,而主要的单丝却单轴生长。计算建模通过在用于指定野生型发育的划分规则中包括对邻域信息的修改响应,从而可以模拟etl突变体表型。微阵列实验支持细胞-细胞通讯缺陷的假说,因为主要是抑制了与参与二元细胞分化的后生Notch蛋白具有相似性的Lin-Notch域跨膜蛋白。因此,我们的研究强调了在这种褐藻的发育模式建立过程中,ECM和新型跨膜蛋白在细胞间通讯中的作用。

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