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System approaches to study root hairs as a single cell plant model: current status and future perspectives

机译:研究根毛作为单细胞植物模型的系统方法:现状和未来展望

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Our current understanding of plant functional genomics derives primarily from measurements of gene, protein and/or metabolite levels averaged over the whole plant or multicellular tissues. These approaches risk diluting the response of specific cells that might respond strongly to the treatment but whose signal is diluted by the larger proportion of non-responding cells. For example, if a gene is expressed at a low level, does this mean that it is indeed lowly expressed or is it highly expressed, but only in a few cells? In order to avoid these issues, we adopted the soybean root hair cell, derived from a single, differentiated root epidermal cell, as a single-cell model for functional genomics. Root hair cells are intrinsically interesting since they are major conduits for root water and nutrient uptake and are also the preferred site of infection by nitrogen-fixing rhizobium bacteria. Although a variety of other approaches have been used to study single plant cells or single cell types, the root hair system is perhaps unique in allowing application of the full repertoire of functional genomic and biochemical approaches. In this mini review, we summarize our published work and place this within the broader context of root biology, with a significant focus on understanding the initial events in the soybean-rhizobium interaction.
机译:我们目前对植物功能基因组学的了解主要来自对整个植物或多细胞组织中基因,蛋白质和/或代谢产物水平的平均测量。这些方法可能会稀释可能对治疗产生强烈反应但特定信号被较大比例的无反应细胞稀释的特定细胞的反应。例如,如果一个基因以低水平表达,这是否意味着它确实是低表达或高表达,但仅在少数细胞中表达?为了避免这些问题,我们采用源自单个分化根表皮细胞的大豆根毛细胞作为功能基因组学的单细胞模型。根毛细胞本质上很有趣,因为它们是根水和养分吸收的主要渠道,并且也是固氮根瘤菌感染的首选部位。尽管已使用多种其他方法来研究单个植物细胞或单个细胞类型,但根毛系统在允许应用功能基因组和生化方法的全部方法方面也许是独特的。在这个小型综述中,我们总结了已发表的工作并将其放在更广泛的根生物学中,重点是理解大豆-根瘤菌相互作用中的初始事件。

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