首页> 外文期刊>The New Phytologist >Microgenomic analysis reveals cell type-specific gene expression patterns between ray and fusiform initials within the cambial meristem of Populus.
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Microgenomic analysis reveals cell type-specific gene expression patterns between ray and fusiform initials within the cambial meristem of Populus.

机译:微基因组学分析揭示了杨树的股状分生组织内射线和梭形首字母之间的细胞类型特异性基因表达模式。

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摘要

The vascular cambium is the meristem in trees that produce wood. This meristem consists of two types of neighbouring initials: fusiform cambial cells (FCCs), which give rise to the axial cell system (i.e. fibres and vessel elements), and ray cambial cells (RCCs), which give rise to rays. There is little molecular information on the mechanisms whereby the differing characteristics of these neighbouring cells are maintained. A microgenomic approach was adopted in which the transcriptomes of FCCs and RCCs dissected out from the cambial meristem of poplar (Populus trichocarpa x Populus deltoides var. Boelare) were analysed, and a transcriptional database for these two cell types established. Photosynthesis genes were overrepresented in RCCs, providing molecular support for the presence of photosynthetic systems in rays. Genes that putatively encode transporters (vesicle, lipid and metal ion transporters and aquaporins) in RCCs were also identified. In addition, many cell wall-related genes showed cell type-specific expression patterns. Notably, genes involved in pectin metabolism and xyloglucan metabolism were overrepresented in RCCs and FCCs, respectively. The results demonstrate the use of microgenomics to reveal differences in biological processes in neighbouring meristematic cells, and to identify key genes involved in these processes.
机译:血管形成层是产生木材的树木中的分生组织。该分生组织由两种类型的相邻首字母组成:梭状冈比亚细胞(FCCs)产生轴状细胞系统(即纤维和血管元件)和射线冈比亚细胞(RCCs)产生射线。关于维持这些相邻细胞的不同特征的机理的分子信息很少。采用微基因组学方法,分析了从杨树的分生组织中分离出的FCC和RCC的转录组(Populus trichocarpa x Populus deltoides var。Boelare),并建立了这两种细胞类型的转录数据库。 RCC中的光合作用基因过多,为射线中光合作用系统的存在提供了分子支持。还确定了在RCC中编码转运蛋白(囊泡,脂质和金属离子转运蛋白和水通道蛋白)的基因。另外,许多细胞壁相关基因显示出细胞类型特异性表达模式。值得注意的是,参与果胶代谢和木葡聚糖代谢的基因分别在RCC和FCC中过分表达。结果证明了使用微基因组学揭示邻近分生细胞中生物学过程的差异,并鉴定参与这些过程的关键基因。

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