根系球和肠道微生物群中的适应性和代谢融合
Diana Ilyaskina1, Safaa Altveş1, Lemeng Dong2
1Department of Microbiome Engineering, Swammerdam Institute for Life Sciences, University of Amsterdam, Amsterdam, Netherlands.
Microbiome
|July 27, 2025
概括
人的肠道微生物群和植物根球共享进化原理. 将这些微生物生态系统进行比较,可以了解医疗和农业的宿主微生物群沟通.
科学领域:
- 微生物学 微生物学
- 生态生态学 生态生态学
- 主体-微生物组的相互作用
背景情况:
- 微生物生态系统,如植物根球和人类肠道微生物群,对宿主健康至关重要.
- 这些生态系统表现出由农业,生活方式和营养选择驱动的共同进化原则.
- 环境压力塑造了植物和人类相关微生物群落的弹性.
研究的目的:
- 提出人类结肠作为一个"内外"的根球,突出功能和生态的平行.
- 探索植物根球和人类肠道微生物群之间的类比.
- 识别关键的代谢物和受体参与宿主微生物群的通信在这些系统.
主要方法:
- 微生物生态系统原则的比较分析.
- 文献评论专注于功能和生态的平行.
- 整合来自植物和人类微生物组研究的见解.
主要成果:
- 在根系球和肠道微生物群之间发现了功能和生态相似之处.
- 阐明了介导宿主微生物群通信的关键代谢物和受体.
- 结肠作为一个"内外"根球的概念提供了一个新的框架.
结论:
- 了解树根圈和肠道微生物群之间的相似之处可以弥合知识差距.
- 综合这些领域的跨学科方法可以解决全球健康和可持续性挑战.
- 对宿主微生物群通信的进一步研究有可能带来农业和医学方面的进步.
相关概念视频
The Roles of Bacteria and Fungi in Plant Nutrition
41.1K
Plants have the impressive ability to create their own food through photosynthesis. However, plants often require assistance from organisms in the soil to acquire the nutrients they need to function correctly. Both bacteria and fungi have evolved symbiotic relationships with plants that help the species to thrive in a wide variety of environments.
41.1K
Microbial Nutrition
304
Organisms exhibit remarkable metabolic diversity, categorized based on how they acquire energy and carbon. These strategies enable survival in various ecological niches and are essential for maintaining energy flow and nutrient cycling within ecosystems.Energy and Carbon SourcesOrganisms are classified as phototrophs or chemotrophs based on energy acquisition. Phototrophs use light as their energy source, while chemotrophs rely on oxidizing chemical compounds. Further differentiation arises...
304
Transduction
116
Among the three main modes of HGT—transformation, conjugation, and transduction—transduction is unique in that it is mediated by bacteriophages, or bacterial viruses.Transduction occurs in two ways. Generalized transduction occurs during the lytic cycle of a bacteriophage infection. In this process, bacteriophages infect bacterial cells, replicate within them, and ultimately cause cell lysis, releasing newly assembled virions. Occasionally, random fragments of the bacterial genome...
116
Carbon-dioxide Fixation
86
Carbon dioxide fixation in prokaryotes enables the assimilation of inorganic carbon into organic molecules, supporting biosynthetic pathways, sustaining ecosystems, and contributing to the global carbon cycle. It also has industrial applications in carbon capture and bioproduct synthesis. Autotrophic organisms rely on this process to utilize CO₂ as a carbon source in diverse environments.The Calvin CycleThe Calvin cycle is the most widespread carbon fixation mechanism, primarily used by...
86
Overview of Metabolism
32.0K
Living cells constantly carry out various chemical reactions which are necessary for their proper functioning. These reactions are interlinked to one another via multiple pathways. The collection of these chemical reactions is known as metabolism.
Plant Metabolism
Sunlight, the primary source of energy in plants, is first absorbed by the chlorophyll pigments present in their leaves. Plants then use this energy to carry out photosynthesis, where water is oxidized into oxygen and carbon dioxide...
Plant Metabolism
Sunlight, the primary source of energy in plants, is first absorbed by the chlorophyll pigments present in their leaves. Plants then use this energy to carry out photosynthesis, where water is oxidized into oxygen and carbon dioxide...
32.0K
Metabolism of Chemolithotrophs
176
Chemolithotrophs are microorganisms that obtain energy by oxidizing inorganic molecules such as hydrogen gas (H₂), ammonia (NH₃), reduced sulfur compounds (H₂S, S²⁻), and ferrous iron (Fe²⁺). Unlike heterotrophic organisms that rely on organic carbon, chemolithotrophs transfer electrons from these inorganic donors to the electron transport chain (ETC), generating a proton motive force (PMF) that drives ATP synthesis through oxidative phosphorylation.
176


