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Transcriptional Reprogramming of Legume Genomes: Perspective and Challenges Associated With Single-Cell and Single Cell-Type Approaches During Nodule Development

机译:豆科植物基因组的转录重编程:结节发育过程中与单细胞和单细胞类型方法相关的观点和挑战

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摘要

Transcriptomic approaches revealed thousands of genes differentially or specifically expressed during nodulation, a biological process resulting from the symbiosis between leguminous plant roots and rhizobia, atmospheric nitrogen-fixing symbiotic bacteria. Ultimately, nodulation will lead to the development of a new root organ, the nodule. Through functional genomic studies, plant transcriptomes have been used by scientists to reveal plant genes potentially controlling nodulation. However, it is important to acknowledge that the physiology, transcriptomic programs, and biochemical properties of the plant cells involved in nodulation are continuously regulated. They also differ between the different cell-types composing the nodules. To generate a more accurate picture of the transcriptome, epigenome, proteome, and metabolome of the cells infected by rhizobia and cells composing the nodule, there is a need to implement plant single-cell and single cell-types strategies and methods. Accessing such information would allow a better understanding of the infection of plant cells by rhizobia and will help understanding the complex interactions existing between rhizobia and the plant cells. In this mini-review, we are reporting the current knowledge on legume nodulation gained by plant scientists at the level of single cell-types, and provide perspectives on single cell/single cell-type approaches when applied to legume nodulation.
机译:转录组学方法揭示了成瘤过程中成千上万个差异表达或特异表达的基因,这是豆科植物根系与根瘤菌,固氮共生细菌之间的共生所产生的生物学过程。结瘤最终将导致新的根器官结节的发展。通过功能基因组研究,科学家已使用植物转录组揭示潜在控制结瘤的植物基因。但是,重要的是要认识到,与结瘤有关的植物细胞的生理学,转录组程序和生化特性是不断调节的。它们在组成结节的不同细胞类型之间也不同。为了产生由根瘤菌感染的细胞和组成结节的细胞的转录组,表观基因组,蛋白质组和代谢组的更准确的图片,需要实现植物单细胞和单细胞类型的策略和方法。访问此类信息将使人们更好地了解根瘤菌对植物细胞的感染,并有助于理解根瘤菌与植物细胞之间存在的复杂相互作用。在此小型审查中,我们报告了植物科学家在单细胞类型水平上获得的有关豆类植物结节的最新知识,并提供了在应用于豆类植物结节中的单细胞/单细胞类型方法的观点。

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