Van Elsas Jan Dirk, Turner Sarah, Bailey Mark J
Plant Research International, PO Box 16, 6700 AA Wageningen, The Netherlands.
CEH-NERC Mansfield Road, Oxford, UK.
New Phytol. 2003 Mar;157(3):525-537. doi: 10.1046/j.1469-8137.2003.00697.x.
Here, the ecological aspects of gene transfer processes between bacteria in the phytosphere are examined in the context of emerging evidence for the dominant role that horizontal gene transfer (HGT) has played in the evolutionary shaping of bacterial communities. Moreover, the impact of the putative capture of genetic material by bacteria from plants is discussed. Examples are provided that illustrate how mobile genetic elements (MGEs) influence the behaviour of bacteria in their natural habitat, especially in structured communities such as biofilms on plant surfaces. This community behaviour is used as a framework to pose questions on the evolutionary role and significance of gene transfer processes in plant-associated habitats. Selection within the highly structured phytosphere is likely to represent a dominant force shaping the genetic make-up of plant-associated bacterial communities. Current understanding of the triggering and impact of horizontal gene transfer, however, remains limited by our lack of understanding of the nature of the selective forces that act on bacteria in situ. The individual, colony, population and community level selection benefits imposed by the ability to use specific carbon sources or survive selective compounds are clear, but it is not always possible to assess what drives gene transfer and persistence. The role of HGT in the adaptation of host bacteria to their environmental niche is still not fully understood.
在此,鉴于水平基因转移(HGT)在细菌群落进化形成过程中发挥的主导作用这一最新证据,我们探讨了植物圈中细菌间基因转移过程的生态学方面。此外,还讨论了细菌从植物中获取遗传物质这一假定情况的影响。文中给出了一些例子,说明移动遗传元件(MGEs)如何影响细菌在其自然栖息地中的行为,尤其是在植物表面生物膜等结构化群落中的行为。这种群落行为被用作一个框架,以提出关于植物相关栖息地中基因转移过程的进化作用和意义的问题。在高度结构化的植物圈中的选择可能是塑造植物相关细菌群落基因组成的主要力量。然而,由于我们对原位作用于细菌的选择力的性质缺乏了解,目前对水平基因转移的触发因素和影响的认识仍然有限。利用特定碳源或在选择性化合物中存活的能力所带来的个体、菌落、种群和群落水平的选择优势是显而易见的,但并不总是能够评估是什么驱动了基因转移和持久性。HGT在宿主细菌适应其环境生态位中的作用仍未完全了解。