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Tissue-specific transcriptome profiling of the citrus fruit epidermis and subepidermis using laser capture microdissection

机译:激光捕获显微切割法对柑橘类水果表皮和表皮下组织进行转录组分析

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摘要

Most studies of the biochemical and regulatory pathways that are associated with, and control, fruit expansion and ripening are based on homogenized bulk tissues, and do not take into consideration the multiplicity of different cell types from which the analytes, be they transcripts, proteins or metabolites, are extracted. Consequently, potentially valuable spatial information is lost and the lower abundance cellular components that are expressed only in certain cell types can be diluted below the level of detection. In this study, laser microdissection (LMD) was used to isolate epidermal and subepidermal cells from green, expanding Citrus clementina fruit and their transcriptomes were compared using a 20k citrus cDNA microarray and quantitative real-time PCR. The results show striking differences in gene expression profiles between the two cell types, revealing specific metabolic pathways that can be related to their respective organelle composition and cell wall specialization. Microscopy provided additional evidence of tissue specialization that could be associated with the transcript profiles with distinct differences in organelle and metabolite accumulation. Subepidermis predominant genes are primarily involved in photosynthesis- and energy-related processes, as well as cell wall biosynthesis and restructuring. By contrast, the most epidermis predominant genes are related to the biosynthesis of the cuticle, flavonoids, and defence responses. Furthermore, the epidermis transcript profile showed a high proportion of genes with no known function, supporting the original hypothesis that analysis at the tissue/cell specific levels can promote gene discovery and lead to a better understanding of the specialized contribution of each tissue to fruit physiology.
机译:与水果生长和成熟相关并对其进行控制的生化和调控途径的大多数研究都是基于均质的大块组织,并且没有考虑分析物的不同细胞类型的多样性,无论它们是转录本,蛋白质还是代谢物被提取。因此,潜在的有价值的空间信息会丢失,并且仅在某些细胞类型中表达的较低丰度的细胞成分可以被稀释到检测水平以下。在这项研究中,使用激光显微切割(LMD)从绿色的,正在扩展的柑桔类水果中分离表皮和表皮下细胞,并使用20k柑橘cDNA微阵列和定量实时PCR比较它们的转录组。结果显示了两种细胞类型之间基因表达谱的显着差异,揭示了可能与它们各自细胞器组成和细胞壁特化有关的特定代谢途径。显微镜检查提供了组织专一化的其他证据,其可能与转录物谱相关,细胞器和代谢物积累存在明显差异。表皮下的主要基因主要参与光合作用和能量相关的过程,以及细胞壁的生物合成和重组。相比之下,最表皮的主要基因与角质层的生物合成,类黄酮和防御反应有关。此外,表皮转录物谱显示出大量未知功能的基因,支持最初的假设,即在组织/细胞特定水平上进行分析可以促进基因发现并更好地理解每种组织对果实生理的特殊贡献。 。

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