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Functional genomics of plant transporters in legume nodules.

机译:豆类结节中植物转运蛋白的功能基因组学。

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摘要

Over the past few decades, a combination of physiology, biochemistry, molecular and cell biology, and genetics has given us a basic understanding of some of the key transport processes at work in nitrogen-fixing legume nodules, especially those involved in nutrient exchange between infected plant cells and their endosymbiotic rhizobia. However, our knowledge in this area remains patchy and dispersed over numerous legume species. Recent progress in the areas of genomics and functional genomics of the two model legumes, Medicago truncatula and Lotus japonicus is rapidly filling the gap in knowledge about which plant transporter genes are expressed constitutively in nodules and other organs, and which are induced or expressed specifically in nodules. The latter class in particular is the focus of current efforts to understand specialised, nodule-specific roles of transporters. This article briefly reviews past work on the biochemistry and molecular biology of plant transporters in nodules, before describing recent work in the areas of transcriptomics and bioinformatics. Finally, we consider where functional genomics together with more classical approaches are likely to lead us in this area of research in the future..
机译:在过去的几十年中,生理学,生物化学,分子和细胞生物学以及遗传学相结合,使我们对固氮豆类结核中一些关键的转运过程有了基本的了解,尤其是那些涉及被感染者之间进行营养交换的过程。植物细胞及其内生共生根瘤菌。但是,我们在这一领域的知识仍然很少,并且散布在许多豆科物种上。两个模型豆科植物苜蓿和日本莲花的基因组学和功能基因组学领域的最新进展迅速填补了关于哪些植物转运蛋白基因在结节和其他器官中组成性表达以及在哪些器官中被诱导或特异性表达的知识的空白。结节。后一类尤其是当前努力的重点,以了解转运蛋白的特殊,根瘤特定作用。在简要介绍转录组学和生物信息学领域的最新工作之前,本文简要回顾了结节中植物转运蛋白的生物化学和分子生物学方面的以往工作。最后,我们考虑功能基因组学以及更经典的方法在将来可能会引领我们进入这一研究领域的地方。

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