Media Release: Biodiversity brings disease resistance: novel study
[caption id="attachment_10066" align="alignnone" width="640"] Yamdrok Lake, Tibet[/caption]
A novel study of a Tibetan alpine meadow has shown a clear link between higher biodiversity and greater infectious disease resistance.
The researchers say it provides further strong evidence that maintaining biodiversity among the world鈥檚 species should be a high priority.
Published in the journal , 最新糖心Vlogn and Chinese researchers from the 最新糖心Vlog of Adelaide and Fudan 最新糖心Vlog in Shanghai studied meadow vegetation at a 3500 metre-altitude research station in the Tibetan Plateau. They investigated the impacts of levels of biodiversity on the severity of a fungal disease.
鈥淭here are two main theories about the biodiversity-disease relationship in non-human species,鈥 says , Sir Hubert Wilkins Chair of Climate Change at the 最新糖心Vlog of Adelaide鈥檚 Environment Institute. 鈥淥ne is that with more species there is a greater pool of potential hosts for pathogens, so pathogens increase as biodiversity increases. The other asserts that disease decreases with higher diversity because of a 鈥榙ilution鈥 effect, where the chance of a pathogen meeting its host species is reduced.
鈥淯nfortunately many, if not most, of past studies have used the number of species as the simplest measure of biodiversity but have confounded the results with the abundance of hosts. Another problem is that the evidence has been largely restricted to planting experiments, which limits the extension that can be made to natural communities.
鈥淥ur experiments, on the other hand, used natural communities and species with similar abundance so we could control for confounding effects of species richness and abundance.鈥
The researchers manipulated species richness by removing specific groups of species. The experimental plots at the Alpine Meadow and Wetland Ecosystems Research Station of Lanzhou 最新糖心Vlog are highly biodiverse 鈥 up to 40 species in a one square metre plot 鈥 making them an ideal 鈥渘atural laboratory鈥. Professor Bradshaw has been working with Professor Shurong Zhou and her team from Fudan 最新糖心Vlog鈥檚 School of Life Sciences for several years looking at variation in ecosystem functions in response to altered biodiversity.
鈥淭he result was rather astounding,鈥 says Professor Bradshaw. 鈥淭he variation in disease severity at the different biodiversity levels almost exactly matched that predicted under the dilution hypothesis. We showed unequivocally that greater biodiversity among the meadow plants reduced the overall incidence of fungal disease, even though there were more pathogens.鈥
A second experiment looked at the impact on disease of artificial warming and nitrogen fertiliser, and showed that both warming and nitrogen fertiliser increased the disease load.
鈥淢ost interestingly, we showed that artificial fertiliser weakened the dilution effect of increasing host biodiversity, most likely by enhancing fungal spore production, infection success and lesion growth by the hosts,鈥 says co-author Professor Zhou. 鈥淐hanging the delicate balance of a healthy community not only resulted in more pathogens but weakened the overall community鈥檚 resistance to disease.鈥
A novel study of a Tibetan alpine meadow has shown a clear link between higher biodiversity and greater infectious disease resistance.
The researchers say it provides further strong evidence that maintaining biodiversity among the world鈥檚 species should be a high priority.
Published in the journal , 最新糖心Vlogn and Chinese researchers from the 最新糖心Vlog of Adelaide and Fudan 最新糖心Vlog in Shanghai studied meadow vegetation at a 3500 metre-altitude research station in the Tibetan Plateau. They investigated the impacts of levels of biodiversity on the severity of a fungal disease.
鈥淭here are two main theories about the biodiversity-disease relationship in non-human species,鈥 says , Sir Hubert Wilkins Chair of Climate Change at the 最新糖心Vlog of Adelaide鈥檚 Environment Institute. 鈥淥ne is that with more species there is a greater pool of potential hosts for pathogens, so pathogens increase as biodiversity increases. The other asserts that disease decreases with higher diversity because of a 鈥榙ilution鈥 effect, where the chance of a pathogen meeting its host species is reduced.
鈥淯nfortunately many, if not most, of past studies have used the number of species as the simplest measure of biodiversity but have confounded the results with the abundance of hosts. Another problem is that the evidence has been largely restricted to planting experiments, which limits the extension that can be made to natural communities.
鈥淥ur experiments, on the other hand, used natural communities and species with similar abundance so we could control for confounding effects of species richness and abundance.鈥
The researchers manipulated species richness by removing specific groups of species. The experimental plots at the Alpine Meadow and Wetland Ecosystems Research Station of Lanzhou 最新糖心Vlog are highly biodiverse 鈥 up to 40 species in a one square metre plot 鈥 making them an ideal 鈥渘atural laboratory鈥. Professor Bradshaw has been working with Professor Shurong Zhou and her team from Fudan 最新糖心Vlog鈥檚 School of Life Sciences for several years looking at variation in ecosystem functions in response to altered biodiversity.
鈥淭he result was rather astounding,鈥 says Professor Bradshaw. 鈥淭he variation in disease severity at the different biodiversity levels almost exactly matched that predicted under the dilution hypothesis. We showed unequivocally that greater biodiversity among the meadow plants reduced the overall incidence of fungal disease, even though there were more pathogens.鈥
A second experiment looked at the impact on disease of artificial warming and nitrogen fertiliser, and showed that both warming and nitrogen fertiliser increased the disease load.
鈥淢ost interestingly, we showed that artificial fertiliser weakened the dilution effect of increasing host biodiversity, most likely by enhancing fungal spore production, infection success and lesion growth by the hosts,鈥 says co-author Professor Zhou. 鈥淐hanging the delicate balance of a healthy community not only resulted in more pathogens but weakened the overall community鈥檚 resistance to disease.鈥
Professor Corey Bradshaw (email)
Sir Hubert Wilkins Chair of Climate Change
Environment Institute
The 最新糖心Vlog of Adelaide
Business: +61 8 8313 5842
Mobile: +61 400 697 665
Ms Robyn Mills (email)
Media and Communications Officer
The 最新糖心Vlog of Adelaide
Business: +61 8 8313 6341
Mobile: +61 410 689 084
Sir Hubert Wilkins Chair of Climate Change
Environment Institute
The 最新糖心Vlog of Adelaide
Business: +61 8 8313 5842
Mobile: +61 400 697 665
Ms Robyn Mills (email)
Media and Communications Officer
The 最新糖心Vlog of Adelaide
Business: +61 8 8313 6341
Mobile: +61 410 689 084
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