首页> 外文期刊>Plant and Soil >Back to the basics: The need for ecophysiological insights to enhance our understanding of microbial behaviour in the rhizosphere
【24h】

Back to the basics: The need for ecophysiological insights to enhance our understanding of microbial behaviour in the rhizosphere

机译:回到基础:需要生态生理学见识以增进我们对根际微生物行为的理解

获取原文
获取原文并翻译 | 示例
           

摘要

Microorganisms exhibit an astonishing diversity and wide genetic variability even within species, in particular with respect to their metabolic pathways and host-interactive capabilities. The mosaic genomes that encode these capacities are accountable for the abilities of environmental microbes to survive and thrive in highly complex systems such as soil and the rhizosphere. Whereas credits are to be given to traditional microbiology studies, e.g. with rhizobia and their interaction with the plant, an explosive enhancement of our understanding of the plant-microorganism interactive system has been recently achieved by the broad application of the molecular toolbox, in particular high-throughput sequencing (HTS) technologies. The latter have allowed to access thousands to millions of microbial phylotypes and functions at relatively low cost and effort. While such techniques have improved the accessibility of the taxonomic and functional diversity of rhizosphere and soil microbial communities, detailed insights into organismal ecology and physiology (reflecting the behaviour of populations of cells) within the community in the natural environment are still required. In this review, we first examine the current 'state-of-the-art' of rhizosphere ecology studies and what HTS strategies have added to our understanding of the system. We posit that our capacity to develop and test refined ecological hypotheses is hindered if we solely depend on deep-sequencing methods. Plant-soil-microorganism systems represent one of the most intriguing 'playgrounds' for assessments of ecological theories, since they offer a myriad of ways to investigate ecological interactions (i.e. intra- and inter-specifically), physiological and behavioural traits. In addition, the evolutionary processes that lead to innovation in the microbiota are likely prominent in the rhizosphere. Thus, there is a perceived need to shift our attention from the HTS studies, that extensively map the local microbiota in an overall fashion, to studies focusing on as-yet-unaddressed fundamental questions about the plant-soil microbiota system. Such a paradigm shift will certainly assist us in the unravelling of the building blocks of rhizosphere (and soil) microbial communities, as well as form a basis for targeted manipulation of these in their natural settings.
机译:甚至在物种内部,微生物也表现出惊人的多样性和广泛的遗传变异性,特别是在它们的代谢途径和宿主互动能力方面。编码这些能力的镶嵌基因组可解释环境微生物在高度复杂的系统(例如土壤和根际)中生存和繁衍的能力。鉴于传统的微生物学研究,例如根瘤菌及其与植物的相互作用,最近通过分子工具箱的广泛应用,尤其是高通量测序(HTS)技术,使我们对植物-微生物相互作用系统的理解有了爆炸性的增强。后者允许以相对较低的成本和精力获得成千上万的微生物系统型和功能。尽管这样的技术改善了根际和土壤微生物群落的分类学和功能多样性的可及性,但是仍然需要对自然环境中群落内的生物生态学和生理学(反映细胞种群行为)的详细见解。在这篇综述中,我们首先研究了当前的根际生态研究的“最新技术”,以及哪些HTS策略为我们对该系统的理解增加了内容。我们认为,如果仅依靠深度测序方法,就会阻碍我们开发和检验精细生态假设的能力。植物-土壤-微生物系统代表了生态理论评估中最引人入胜的``游乐场''之一,因为它们提供了多种方法来研究生态相互作用(即种内和种间),生理和行为特征。另外,导致微生物群创新的进化过程可能在根际中突出。因此,人们认为有必要将我们的注意力从以整体方式广泛绘制当地微生物群的HTS研究转移到侧重于尚未解决的关于植物-土壤微生物群系统的基本问题的研究上。这种范式的转变无疑将帮助我们揭开根际(和土壤)微生物群落的基础,并为在自然环境中有针对性地操纵这些微生物奠定基础。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号