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Space-time decoupling in the branching process in the mutant étoile of the filamentous brown alga Ectocarpus siliculosus

机译:丝状褐藻Ectocarpus siliculosus突变体étoile分支过程中的时空解耦

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摘要

Ectocarpus siliculosus is being developed as a model organism for brown algal genetics and genomics.1,2 Brown algae are phylogenetically distant from the other multicellular phyla (green lineage, red algae, fungi and metazoan)3 and therefore might offer the opportunity to study novel and alternative developmental processes that lead to the establishment of multicellularity. E. siliculosus develops as uniseriate filaments, thereby displaying one of the simplest architectures among multicellular organisms.4 The young sporophyte grows as a primary filament and then branching occurs, preferentially at the center of the filament. We recently described the first morphogenetic mutant étoile (etl) in a brown alga, produced by UVB mutagenesis in E. siliculosus.5 We showed that a single recessive mutation was responsible for a defect in both cell differentiation and the very early branching pattern (first and second branch emergences). Here, we supplement this study by reporting the branching defects observed subsequently, i.e. for the later stages corresponding to the emergence of up to the first six secondary filaments, and we show that the branching process is composed of at least two distinct components: time and position.
机译:Ectocarpus siliculosus被开发为褐藻遗传学和基因组学的模型生物。1,2褐藻在系统发育上与其他多细胞系(绿系,红藻,真菌和后生动物)距离较远,因此可能为研究新颖的藻类提供机会。以及导致建立多细胞性的替代发展过程。 E. siliculosus发育成单端的细丝,从而显示出多细胞生物中最简单的结构之一。4年轻的孢子体生长为初级细丝,然后发生分支,优先出现在细丝的中心。我们最近描述了褐藻中的第一个形态发生突变体étoile(etl),该突变体是由E. siliculosus中的UVB诱变产生的。5我们显示,单个隐性突变是造成细胞分化和早期分支模式缺陷的原因(第一个和第二个分支的出现)。在这里,我们通过报告随后观察到的分支缺陷来补充这项研究,即在随后的阶段对应于最多出现前六个次要细丝,并且表明分支过程至少由两个不同的组成:时间和位置。

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