气候变化和植物-微生物的相互作用:水分有效性影响真菌病原体的有效特化

IF 1.9 3区 环境科学与生态学 Q3 ECOLOGY Fungal Ecology Pub Date : 2023-11-16 DOI:10.1016/j.funeco.2023.101286
Jakob Joachin , Camryn Kritzell, Elliot Lagueux, Noah C. Luecke , Kerri M. Crawford
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引用次数: 0

摘要

通过对植物的物种特异性作用,病原体在植物群落的构建中起着关键作用。非生物环境的变化,如由气候变化介导的变化,可能通过改变植物与病原体相互作用的特异性来改变植物群落。为了测试水分有效性如何影响植物-病原体相互作用的特异性,我们在低、平均和高水分处理下,培养了三种本地和三种非本地沿海草原植物物种的配对同源物,其中有或没有致病性土壤真菌,镰刀菌-马属植物复合体6b。在所有被测试的植物物种中,镰刀菌处理在高水分有效度下比低水分有效度下对植物生物量有更强的负性和物种特异性影响。如果可以推广,我们的研究结果表明,在湿润条件下,更强的物种特异性病原体效应可以驱动植物群落组成的变化,但在干燥条件下,植物-病原体相互作用对植物群落结构的影响可能不那么重要。
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Climate change and plant-microbe interactions: Water-availability influences the effective specialization of a fungal pathogen

Through species-specific effects on plants, pathogens play a key role in structuring plant communities. A change in abiotic context, such as those mediated by climate change, may alter plant communities through changes in the specificity of plant-pathogen interactions. To test how water availability influenced the specificity of plant-pathogen interactions, we grew paired congeners of three native and three nonnative coastal prairie plant species with or without a pathogenic soil fungus, Fusarium incarnatum-equiseti species complex 6 b, under low, average, and high water treatments. Across the plant species tested, the Fusarium treatment had stronger negative and species-specific effects on plant biomass at high water availability than low water availability. If generalizable, our results suggest that stronger and more species-specific pathogen effects could drive changes in plant community composition in wetter conditions, but plant-pathogen interactions may be less important for plant community structure in drier conditions.

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来源期刊
Fungal Ecology
Fungal Ecology 环境科学-生态学
CiteScore
5.80
自引率
3.40%
发文量
51
审稿时长
3 months
期刊介绍: Fungal Ecology publishes investigations into all aspects of fungal ecology, including the following (not exclusive): population dynamics; adaptation; evolution; role in ecosystem functioning, nutrient cycling, decomposition, carbon allocation; ecophysiology; intra- and inter-specific mycelial interactions, fungus-plant (pathogens, mycorrhizas, lichens, endophytes), fungus-invertebrate and fungus-microbe interaction; genomics and (evolutionary) genetics; conservation and biodiversity; remote sensing; bioremediation and biodegradation; quantitative and computational aspects - modelling, indicators, complexity, informatics. The usual prerequisites for publication will be originality, clarity, and significance as relevant to a better understanding of the ecology of fungi.
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