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首页> 外文期刊>The Plant Cell >MYB107 and MYB9 Homologs Regulate Suberin Deposition in Angiosperms
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MYB107 and MYB9 Homologs Regulate Suberin Deposition in Angiosperms

机译:MyB107和MyB9同源物调节在Agiospers中的Suberin沉积

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摘要

Suberin, a polymer composed of both aliphatic and aromatic domains, is deposited as a rough matrix upon plant surface damage and during normal growth in the root endodermis, bark, specialized organs (e.g., potato [Solanum tuberosum] tubers), and seed coats. To identify genes associated with the developmental control of suberin deposition, we investigated the chemical composition and transcriptomes of suberized tomato (Solanum lycopersicum) and russet apple (Malus x domestica) fruit surfaces. Consequently, a gene expression signature for suberin polymer assembly was revealed that is highly conserved in angiosperms. Seed permeability assays of knockout mutants corresponding to signature genes revealed regulatory proteins (i.e., AtMYB9 and AtMYB107) required for suberin assembly in the Arabidopsis thaliana seed coat. Seeds of myb107 and myb9 Arabidopsis mutants displayed a significant reduction in suberin monomers and altered levels of other seed coat-associated metabolites. They also exhibited increased permeability, and lower germination capacities under osmotic and salt stress. AtMYB9 and AtMYB107 appear to synchronize the transcriptional induction of aliphatic and aromatic monomer biosynthesis and transport and suberin polymerization in the seed outer integument layer. Collectively, our findings establish a regulatory system controlling developmentally deposited suberin, which likely differs from the one of stress-induced polymer assembly recognized to date.
机译:Suberin是一种由脂族和芳族结构域组成的聚合物,在植物表面损伤时沉积为粗糙基质,并且在根内胚层的正常生长期间,树皮,专用器官(例如,马铃薯乳酸块块茎)和种子涂层。为了鉴定与Suberin沉积的发育控制相关的基因,我们研究了番茄(Solanum Lycopersicum)和赤褐色苹果(Malus X Dibustoma)果实表面的化学成分和转录组。因此,揭示了Suberin聚合物组件的基因表达特征,其在血管植物中具有高度保守。对应于签名基因的敲除突变体的种子渗透性测定显示Suberin组装在拟南芥种子涂层中所需的调节蛋白(即,ATMYB9和ATMYB107)。 MyB107和MyB9拟南芥突变体的种子显示出Suberin单体的显着降低,并改变了其他种子涂层相关代谢物的水平。它们还具有提高的渗透性,渗透性和盐胁迫下的萌发能力增加。 ATMYB9和ATMYB107似乎同步脂族和芳族单体生物合成和转运和Suberin聚合在种子外形层中的转录诱导。集体,我们的调查结果建立了一个监管系统,控制了发展沉积的Suberin,这可能与迄今为止认可的应力诱导的聚合物组件之一不同。

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    《The Plant Cell》 |2016年第9期|共20页
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  • 正文语种 eng
  • 中图分类 植物细胞学;
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