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Domestication and microbiome succession may drive pathogen spillover
Péter Apari1, Gábor Földvári1,2
1Institute of Evolution, Centre for Ecological Research, Budapest, Hungary.
Domestication, horizontal gene transfer, and microbiome succession are key drivers of emerging infectious diseases. Understanding these molecular mechanisms is crucial for preventing future pandemics.
Area of Science:
- Ecology
- Molecular Biology
- Evolutionary Biology
Background:
- Emerging infectious diseases pose significant global threats.
- Current understanding struggles to reconcile ecological observations of frequent pathogen spillovers with molecular-level host-pathogen interactions.
- Existing molecular data often predict limited spillover events, creating a knowledge gap.
Purpose of the Study:
- To provide a synthetic explanation for pathogen spillover events by integrating ecological and molecular perspectives.
- To propose that domestication, horizontal gene transfer, and microbiome succession are critical factors in host switching.
- To offer a new molecular-level framework explaining frequent ecological spillover observations.
Main Methods:
- Literature review and synthesis of evidence from peer-reviewed studies.
- Development of a theoretical framework integrating domestication, horizontal gene transfer (HGT), and microbiome succession.
- Analysis of molecular and ecological data to support the proposed mechanisms.
Main Results:
- Domestication, HGT (even between superkingdoms), and microbiome succession are identified as essential processes in pathogen spillover.
- A novel molecular perspective is presented that reconciles frequent spillover events observed at the ecological level.
- The proposed mechanisms offer a comprehensive explanation for the emergence and spread of infectious diseases.
Conclusions:
- Domestication, horizontal gene transfer, and microbial succession are likely significant mechanisms driving pathogen spillover events.
- These processes are accelerated by anthropogenic factors like climate change, biodiversity loss, and globalization.
- Systematic monitoring of virulence genes across the biosphere is essential for pandemic prevention.
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