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Unleashing the potential of the root hair cell as a single plant cell type model in root systems biology

机译:释放根毛细胞作为根系生物学中单一植物细胞类型模型的潜力

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摘要

Plant root is an organ composed of multiple cell types with different functions. This multicellular complexity limits our understanding of root biology because -omics studies performed at the level of the entire root reflect the average responses of all cells composing the organ. To overcome this difficulty and allow a more comprehensive understanding of root cell biology, an approach is needed that would focus on one single cell type in the plant root. Because of its biological functions (i.e., uptake of water and various nutrients; primary site of infection by nitrogen-fixing bacteria in legumes), the root hair cell is an attractive single cell model to study root cell response to various stresses and treatments. To fully study their biology, we have recently optimized procedures in obtaining root hair cell samples. We culture the plants using an ultrasound aeroponic system maximizing root hair cell density on the entire root systems and allowing the homogeneous treatment of the root system. We then isolate the root hair cells in liquid nitrogen. Isolated root hair yields could be up to 800 to 1000~mg of plant cells from 60 root systems. Using soybean as a model, the purity of the root hair was assessed by comparing the expression level of genes previously identified as soybean root hair specific between preparations of isolated root hair cells and stripped roots, roots devoid in root hairs. Enlarging our tests to include other plant species, our results support the isolation of large quantities of highly purified root hair cells which is compatible with a systems biology approach.
机译:植物根是由具有不同功能的多种细胞类型组成的器官。这种多细胞的复杂性限制了我们对根生物学的理解,因为在整个根水平进行的组学研究反映了组成器官的所有细胞的平均反应。为了克服这一困难并允许对根细胞生物学有更全面的了解,需要一种方法来关注植物根部中的一种单一细胞类型。由于其生物学功能(即吸收水分和各种营养素;豆类固氮细菌感染的主要部位),根毛细胞是一种有吸引力的单细胞模型,用于研究根细胞对各种压力和处理的反应。为了充分研究它们的生物学特性,我们最近优化了获取根毛细胞样品的程序。我们使用超声航空系统培养植物,以最大化整个根系上的根毛细胞密度,并允许对根系进行均匀处理。然后,我们在液氮中分离出根毛细胞。从60个根系中分离出的根毛产量可能高达800至1000 mg植物细胞。以大豆为模型,通过比较先前鉴定为大豆根毛的基因的表达水平来评估根毛的纯度,所述基因在分离的根毛细胞制剂和剥离的根(根毛中没有根)之间是特异性的。将我们的测试扩大到包括其他植物的物种,我们的结果支持分离大量与系统生物学方法兼容的高度纯化的根毛细胞。

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