Applications of cell- and tissue-specific 'omics to improve plant productivity.

IF 3.4 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Emerging Topics in Life Sciences Pub Date : 2022-04-15 DOI:10.1042/ETLS20210286
Bhavna Hurgobin, Mathew G Lewsey
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Abstract

The individual tissues and cell types of plants each have characteristic properties that contribute to the function of the plant as a whole. These are reflected by unique patterns of gene expression, protein and metabolite content, which enable cell-type-specific patterns of growth, development and physiology. Gene regulatory networks act within the cell types to govern the production and activity of these components. For the broader organism to grow and reproduce successfully, cell-type-specific activity must also function within the context of surrounding cell types, which is achieved by coordination of signalling pathways. We can investigate how gene regulatory networks are constructed and function using integrative 'omics technologies. Historically such experiments in plant biological research have been performed at the bulk tissue level, to organ resolution at best. In this review, we describe recent advances in cell- and tissue-specific 'omics technologies that allow investigation at much improved resolution. We discuss the advantages of these approaches for fundamental and translational plant biology, illustrated through the examples of specialised metabolism in medicinal plants and seed germination. We also discuss the challenges that must be overcome for such approaches to be adopted widely by the community.

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细胞和组织特异性组学在提高植物生产力中的应用
植物的各个组织和细胞类型都具有有助于植物整体功能的特征特性。基因表达、蛋白质和代谢产物含量的独特模式反映了这一点,从而实现了细胞类型特异性的生长、发育和生理模式。基因调控网络在细胞类型中起作用,控制这些成分的产生和活性。为了使更广泛的生物体成功生长和繁殖,细胞类型特异性活性也必须在周围细胞类型的背景下发挥作用,这是通过信号通路的协调来实现的。我们可以使用综合组学技术来研究基因调控网络是如何构建和发挥作用的。从历史上看,植物生物学研究中的这些实验都是在大块组织水平上进行的,充其量只能达到器官分辨率。在这篇综述中,我们描述了细胞和组织特异性组学技术的最新进展,这些技术使研究的分辨率大大提高。我们讨论了这些方法在基础和转化植物生物学方面的优势,并通过药用植物和种子发芽中的专门代谢实例进行了说明。我们还讨论了必须克服的挑战,以便社会广泛采用这些方法。
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来源期刊
CiteScore
7.70
自引率
0.00%
发文量
94
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