首页> 外文期刊>Journal of Experimental Botany >MUM ENHANCERS are important for seed coat mucilage production and mucilage secretory cell differentiation in Arabidopsis thaliana
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MUM ENHANCERS are important for seed coat mucilage production and mucilage secretory cell differentiation in Arabidopsis thaliana

机译:妈妈增强剂对于拟南芥种皮粘液的产生和粘液分泌细胞的分化很重要

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Pollination triggers not only embryo development but also the differentiation of the ovule integuments to form a specialized seed coat. The mucilage secretory cells of the Arabidopsis thaliana seed coat undergo a complex differentiation process in which cell growth is followed by the synthesis and secretion of pectinaceous mucilage. A number of genes have been identified affecting mucilage secretory cell differentiation, including MUCILAGE-MODIFIED4 (MUM4). mum4 mutants produce a reduced amount of mucilage and cloning of MUM4 revealed that it encodes a UDP-L-rhamnose synthase that is developmentally up-regulated to provide rhamnose for mucilage pectin synthesis. To identify additional genes acting in mucilage synthesis and secretion, a screen for enhancers of the mum4 phenotype was performed. Eight mum enhancers (men) have been identified, two of which result from defects in known mucilage secretory cell genes (MUM2 and MYB61). Our results show that, in a mum4 background, mutations in MEN1, MEN4, and MEN5 lead to further reductions in mucilage compared to mum4 single mutants, suggesting that they are involved in mucilage synthesis or secretion. Conversely, mutations in MEN2 and MEN6 appear to affect mucilage release rather than quantity. With the exception of men4, whose single mutant exhibits reduced mucilage, none of these genes have a single mutant phenotype, suggesting that they would not have been identified outside the compromised mum4 background.
机译:授粉不仅触发胚胎发育,而且触发胚珠外皮的分化以形成专门的种皮。拟南芥种皮的粘液分泌细胞经历了复杂的分化过程,在该过程中,细胞生长之后是果胶粘液的合成和分泌。已经鉴定出许多影响粘液分泌细胞分化的基因,包括MUCILAGE-MODIFIED4(MUM4)。 mum4突变体产生的粘液数量减少,MUM4的克隆表明它编码了一种UDP-L-鼠李糖合酶,该酶在发育中被上调以提供鼠李糖用于粘胶果胶合成。为了鉴定在粘液合成和分泌中起作用的其他基因,进行了mum4表型增强子的筛选。已鉴定出八种增强子(男性),其中两种是已知的粘液分泌细胞基因(MUM2和MYB61)的缺陷导致的。我们的结果表明,在mum4背景下,与mum4单个突变体相比,MEN1,MEN4和MEN5中的突变导致粘液的进一步减少,表明它们参与了粘液的合成或分泌。相反,MEN2和MEN6中的突变似乎影响粘液释放而不是数量。除了men4(其单个突变体的粘液减少)外,这些基因均没有单个突变体的表型,这表明在受损的mum4背景之外无法鉴定出它们。

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