🌱 Interested in crop microbiomes, plant pathogens, and climate-resilient agriculture? We are recruiting a PhD student at University of Western Australia to investigate how climate extremes influence crop microbiomes, pathogen invasion, and plant health. researchdegrees.uwa.edu.au/scholarships...
Chao Xiong
@chaoxiong.bsky.social
Research Fellow/ARC DECRA Fellow at the University of Western Australia. Interested in soil and plant microbiomes, environmental pathogens, and soil health.
🌱 Interested in crop microbiomes, plant pathogens, and climate-resilient agriculture? We are recruiting a PhD student at University of Western Australia to investigate how climate extremes influence crop microbiomes, pathogen invasion, and plant health. researchdegrees.uwa.edu.au/scholarships...
Great opportunity to work with an amazing team and explore exciting research topics!!
2 X Scholarships in microbial ecology, soil health and crop disease management are available in our lab @uwanews The University of Western Australia. Both domestic and international candidates can apply More details & how to apply - visit web-link below researchdegrees.uwa.edu.au/scholarships...
Featured Article: Unearthing importance of soil microbial diversity Global atlas & biogeography of human pathogens in soils reveals negative association w/soil microbial diversity. Global pathogen mortality + linked w/soil prevalence @prof-braj-singh.bsky.social www.cell.com/cell-host-mi...
Soil microbial diversity associates with lower prevalence of human bacterial pathogens across global soils
Xiong et al. report the most dominant human bacterial pathogens and their environmental drivers in global soils. Many dominant pathogens show negative associations with soil microbial diversity and po...
cell.com
Microbial diversity creates a global firewall against pathogens in soil Bickel & Berg Preview @prof-braj-singh.bsky.social work revealing human pathogens linked to disease(TB, melioidosis, sepsis) are widespread in agricultural soils w/reduced microbial diversity www.cell.com/cell-host-mi...
Microbial diversity creates a global firewall against pathogens in soil
Soil is a critical ecological contributor to plant and animal health. In this issue of Cell Host & Microbe, Xiong et al. use global metagenomic data to show that human pathogens linked to diseases lik...
cell.com
Thank you Samuel Bickel & Berg Gabriele for highlighting our findings of @cellhostmicrobe article -Microbial diversity creates a global firewall against pathogens in soil. lnkd.in/eQiZd5ST @global-ecology.bsky.social Original paper can be found below www.cell.com/cell-host-mi...
Now officially published in @natureportfolio.nature.com Nature Communications. Here We provide first global atlas of bacterial plant pathogens and demonstrates that high microbial diversity is associated with decline in plant pathogen prevalence at the globe scale. www.nature.com/articles/s41...
Dominance and natural suppression of bacterial plant pathogens across global soils - Nature Communications
A global study of 1602 soil samples identifies dominant bacterial plant pathogens and reveals microbial traits, soil carbon and climate that promote natural suppression, while climate change may incre...
nature.com
Unearthing importance of soil microbial diversity Global atlas & biogeography of human bacterial pathogens in soils reveals pathogens negatively associate w/soil microbial diversity. Global mortality assoc. w/pathogens positively linked w/soil prevalence www.cell.com/cell-host-mi...
Soil microbial diversity associates with lower prevalence of human bacterial pathogens across global soils
Xiong et al. report the most dominant human bacterial pathogens and their environmental drivers in global soils. Many dominant pathogens show negative associations with soil microbial diversity and po...
cell.com
Higher soil biodiversity, lower human pathogen prevalence! Soil is far more than the ground beneath our feet — it is a living system influencing food safety and human disease risk. Our new paper @cp-cellhostmicrobe.bsky.social authors.elsevier.com/a/1msNK6t8JE... www.uwa.edu.au/news/article...
Our new paper in @cellhostmicrobe Soil microbial diversity associates with lower prevalence of human bacterial pathogens across global soils authors.elsevier.com/a/1msNK6t8JE... Soil biodiversity linked to lower human infectious disease risk University press release uwa.edu.au/news/article...
Higher soil biodiversity, lower human pathogen prevalence! Soil is far more than the ground beneath our feet — it is a living system influencing food safety and human disease risk. Our new paper @cp-cellhostmicrobe.bsky.social authors.elsevier.com/a/1msNK6t8JE... www.uwa.edu.au/news/article...
Our new paper in @cp-cellhostmicrobe.bsky.social includes 1. Global atlas of human pathogens in soils 2. Soil biodiversity negatively linked with human pathogens 3. Many pathogens to increase in future climates 4. Positive link between pathogens & mortality authors.elsevier.com/a/1msNK6t8JE...
New online! Microbial phosphorus cycling in terrestrial ecosystems
Microbial phosphorus cycling in terrestrial ecosystems
Nature Reviews Microbiology, Published online: 24 March 2026; doi:10.1038/s41579-026-01296-wIn this Review, the authors describe current knowledge of microbial phosphorus cycling in terrestrial ecosystems and discuss how microbial communities respond to environmental and anthropogenic pressures. They also propose the Microbial Phosphorus Adaptive Evolution Theory (MPAET) — a mechanistic framework linking persistent phosphorus limitation to evolutionary adaptations across cellular, genomic and community scales.
dlvr.it
“Climate scientists at World Weather Attribution published an analysis Friday that found this heat wave would be ‘virtually impossible for this time of year in a world without human-induced climate change.’”
The US is on the verge of an all-time heat record for March. Yes, it’s climate change. | CNN
The impending US heat record is an alarming signal of how hot the planet is getting and how fast it’s happening.
cnn.com
🌎🧪
Heatwaves. Droughts. Floods. As climate extremes become more frequent, they may be silently increasing the risk of plant disease outbreaks by reshaping plant pathogens, beneficial microbiomes and host immunity. Check out our latest Review in dlvr.it/TRR2wT
What a fantastic review by @westsyduhie.bsky.social researchers on the impacts of climate extremes on plant pathogens, microbiomes and plant health. www.nature.com/articles/s41... @prof-braj-singh.bsky.social @chaoxiong.bsky.social @mingao.bsky.social
Impacts of climate extremes on plant pathogens, microbiomes and plant health - Nature Reviews Microbiology
In this Review, Singh and colleagues discuss the impacts of key climate extremes on soil-borne pathogens, plant microbiomes and host physiology that ultimately determine disease outcomes, as well as t...
nature.com
Heatwaves. Droughts. Floods. As climate extremes become more frequent, they may be silently increasing the risk of plant disease outbreaks by reshaping plant pathogens, beneficial microbiomes and host immunity. Check out our latest Review in dlvr.it/TRR2wT
Impacts of #climate extremes on plant #pathogens, #microbiomes and plant #health www.nature.com/articles/s41... #PlantScience @natrevmicro.nature.com @chaoxiong.bsky.social @prof-braj-singh.bsky.social @harkanwalpalsingh.bsky.social @plantmicrobiol.bsky.social @pci-microbiol.bsky.social
Impacts of climate extremes on plant pathogens, microbiomes and plant health - Nature Reviews Microbiology
In this Review, Singh and colleagues discuss the impacts of key climate extremes on soil-borne pathogens, plant microbiomes and host physiology that ultimately determine disease outcomes, as well as t...
nature.com
Eco-evolutionary dynamics sustain a potent yet rare antibiotic gene cluster in Streptomyces -in #ISMEJournal academic.oup.com/ismej/advanc...
Eco-evolutionary dynamics sustain a potent yet rare antibiotic gene cluster in Streptomyces
Abstract. Microbial secondary metabolites have been recognized and utilized for nearly a century. Nevertheless, the eco-evolutionary mechanisms governing t
academic.oup.com
Climate extremes are changing the rules of plant disease. A must‑read review on pathogens, microbiomes and plant health in a warming world: www.nature.com/articles/s41... [nature.com]
Impacts of climate extremes on plant pathogens, microbiomes and plant health - Nature Reviews Microbiology
In this Review, Singh and colleagues discuss the impacts of key climate extremes on soil-borne pathogens, plant microbiomes and host physiology that ultimately determine disease outcomes, as well as t...
nature.com
In @natrevmicro.nature.com , we examine 1. climate extreme impacts on plant pathogens, microbiomes, host physiology & disease outcomes 2. different responses of pathosystems to extreme from climate change 3. integrated pathway to support climate-resilient ecosystems www.nature.com/articles/s41...
Great review from @prof-braj-singh.bsky.social -> Impacts of climate extremes on plant pathogens, microbiomes and plant health | Nature Reviews Microbiology
Impacts of climate extremes on plant pathogens, microbiomes and plant health | Nature Reviews Microbiology
Plant diseases pose a great risk to global food security, and recent research indicates that pathogen pressures on plant productivity will substantially increase under ongoing climate change (that is, increasing CO2 levels and global warming). However, our mechanistic and predictive knowledge of the impacts of climate extremes, such as heatwaves and prolonged droughts, and their interaction with other climatic factors, on plant pathogens, hosts and microbiomes, remains largely unknown. This is an important knowledge gap that limits our ability to develop effective strategies to mitigate the socioeconomic impacts of climate change-induced plant disease outbreaks. This Review examines the impacts of key climate extremes on soil-borne pathogens, plant microbiomes and host physiology that ultimately determine disease outcomes. We explore evidence that suggests that the responses of pathogen–host–microbiome interactions to climate extremes may differ in many ways from those to long-term climate change. Climate extremes may increase the virulence and distribution of many pathogens, suppress certain plant immune responses, and weaken the core functions of host microbiomes within the disease triangle, thereby facilitating disease outbreaks. We propose an integrated pathway for harnessing microbiomes to address the critical challenges posed by climate extremes. These insights offer new approaches to mitigate disease risks by harnessing microbiomes and metabolites under climate extremes, with the potential to support climate-resilient and sustainable agricultural and natural ecosystems.
sco.lt
Thank you @jeanmichelane.bsky.social for your kind words. We hope this article will prompt new line of research.
Great review from @prof-braj-singh.bsky.social -> Impacts of climate extremes on plant pathogens, microbiomes and plant health | Nature Reviews Microbiology
In a new paper in Nature Communications - we 1. provide first global map of dominant bacterial plant pathogens 2. show microbial diversity, SOC, some Streptomyces, AM fungi linked to low pathogen prevalence 3. Many pathogens to increase under future climates www.nature.com/articles/s41...
New @NatureComm @BioFunLab Dominance & natural suppression of bacterial plant pathogens across global soils @Dr_MinGao nature.com/articles/s41... Pathogen hotspots in warm & agricultural soils. High microbial diversity -> less pathogens @irnase.bsky.social @csicandalextrem.bsky.social @csic
Excited to share our Review by @prof-braj-singh.bsky.social @natrevmicro.nature.com Impacts of climate extremes on plant pathogens, microbiomes and plant health. We propose an integrated pathway for harnessing microbiomes to address the critical challenges posed by climate extremes. dlvr.it/TRR2wT
New paper from lab-Impacts of climate extremes on plant pathogens, microbiomes and plant health in @natrevmicro.nature.com nature.com/articles/s41... led by @chaoxiong.bsky.social 'New approaches to mitigate plant disease risks by harnessing microbiomes and metabolites under climate extremes'.
New online! Impacts of climate extremes on plant pathogens, microbiomes and plant health
Impacts of climate extremes on plant pathogens, microbiomes and plant health
Nature Reviews Microbiology, Published online: 11 March 2026; doi:10.1038/s41579-026-01290-2In this Review, Singh and colleagues discuss the impacts of key climate extremes on soil-borne pathogens, plant microbiomes and host physiology that ultimately determine disease outcomes, as well as the eco-evolutionary mechanisms by which pathogens, hosts and microbiomes may adapt to climate extremes. Finally, they propose an integrated pathway for harnessing microbiomes to address the critical challenges posed by climate extremes.
dlvr.it
Excited to share our Review by @prof-braj-singh.bsky.social @natrevmicro.nature.com Impacts of climate extremes on plant pathogens, microbiomes and plant health. We propose an integrated pathway for harnessing microbiomes to address the critical challenges posed by climate extremes. dlvr.it/TRR2wT
Impacts of climate extremes on plant pathogens, microbiomes and plant health @natrevmicro.nature.com by @chaoxiong.bsky.social et al from @prof-braj-singh.bsky.social www.nature.com/articles/s41...
Impacts of climate extremes on plant pathogens, microbiomes and plant health - Nature Reviews Microbiology
In this Review, Singh and colleagues discuss the impacts of key climate extremes on soil-borne pathogens, plant microbiomes and host physiology that ultimately determine disease outcomes, as well as t...
nature.com