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A Multilevel Study of Melon Fruit Reticulation Provides Insight into Skin Ligno-Suberization Hallmarks

机译:甜瓜果子网状化的多级研究提供了对皮肤的洞察力的洞察力

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摘要

The skin of fleshy fruit is typically covered by a thick cuticle. Some fruit species develop different forms of layers directly above their skin. Reticulation, for example, is a specialized suberin-based coating that ornaments some commercially important melon (Cucumis melo) fruit and is an important quality trait. Despite its importance, the structural, molecular, and biochemical features associated with reticulation are not fully understood. Here, we performed a multilevel investigation of structural attributes, chemical composition, and gene expression profiles on a set of reticulated and smooth skin melons. High-resolution microscopy, surface profiling, and histochemical staining assays show that reticulation comprises cells with heavily suberized walls accumulating large amounts of typical suberin monomers, as well as lignified cells localized underneath the specialized suberized cell layer. Reticulated skin was characterized by induced expression of biosynthetic genes acting in the core phenylpropanoid, suberin, lignin, and lignan pathways. Transcripts of genes associated with lipid polymer assembly, cell wall organization, and loosening were highly enriched in reticulated skin tissue. These signatures were exclusive to reticulated structures and absent in both the smooth surfaces observed in between reticulated regions and in the skin of smooth fruit. Our data provide important insights into the molecular and metabolic bases of reticulation and its tight association with skin ligno-suberization during melon fruit development. Moreover, these insights are likely to contribute to melon breeding programs aimed at improving postharvest qualities associated with fleshy fruit surface layers.
机译:肉质果实的皮肤通常被厚角型覆盖。一些果实物种直接在皮肤上方发展不同的层。例如,标注物是一种专用的Suberin基涂料,其饰有一些商业上重要的甜瓜(Cucumis Melo)果实,是一种重要的品质性状。尽管重要的是,与网状化相关的结构,分子和生化特征也没有完全理解。在这里,我们对一组网状和光滑的皮肤膜进行了对结构属性,化学成分和基因表达谱的多级研究。高分辨率显微镜,表面分析和组织化学染色测定结果表明,网状调节包括具有累积大量典型的Suberin单体的细胞的细胞,以及所在专用芬化细胞层下方的番荔枝细胞。特征在于特征的皮肤,其表达在核心苯基丙醇,Suberin,木质素和木兰途径中作用的生物合成基因的表达。与脂质聚合物组件,细胞壁组织和松动相关的基因的转录物高度富集在网状皮肤组织中。这些签名是独家网状结构,并且在网状区域之间观察到的光滑表面和光滑的果实皮肤中,不存在。我们的数据为甜瓜果实发育期间的分子和代谢基础及其与皮肤木质纤维化的紧密关联提供了重要的见解。此外,这些见解可能导致甜瓜育种计划,旨在改善与肉质果实层相关的后开水素质。

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