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蘑菇造雨:孢子如何成为雨滴的凝结核

Mushrooms as Rainmakers: How Spores Act as Nuclei for Raindrops.

作者信息

Hassett Maribeth O, Fischer Mark W F, Money Nicholas P

机构信息

Department of Biology, Miami University, Oxford, Ohio 45056, United States of America.

Department of Chemistry and Physical Science, Mount St. Joseph University, Cincinnati, Ohio 45233, United States of America.

出版信息

PLoS One. 2015 Oct 28;10(10):e0140407. doi: 10.1371/journal.pone.0140407. eCollection 2015.

Abstract

Millions of tons of fungal spores are dispersed in the atmosphere every year. These living cells, along with plant spores and pollen grains, may act as nuclei for condensation of water in clouds. Basidiospores released by mushrooms form a significant proportion of these aerosols, particularly above tropical forests. Mushroom spores are discharged from gills by the rapid displacement of a droplet of fluid on the cell surface. This droplet is formed by the condensation of water on the spore surface stimulated by the secretion of mannitol and other hygroscopic sugars. This fluid is carried with the spore during discharge, but evaporates once the spore is airborne. Using environmental electron microscopy, we have demonstrated that droplets reform on spores in humid air. The kinetics of this process suggest that basidiospores are especially effective as nuclei for the formation of large water drops in clouds. Through this mechanism, mushroom spores may promote rainfall in ecosystems that support large populations of ectomycorrhizal and saprotrophic basidiomycetes. Our research heightens interest in the global significance of the fungi and raises additional concerns about the sustainability of forests that depend on heavy precipitation.

摘要

每年有数百万吨真菌孢子散布在大气中。这些活细胞与植物孢子和花粉粒一起,可能充当云层中水分凝结的核心。蘑菇释放的担孢子在这些气溶胶中占很大比例,尤其是在热带森林上空。蘑菇孢子通过细胞表面一滴液体的快速位移从菌褶中释放出来。这滴液体是由甘露醇和其他吸湿糖的分泌刺激孢子表面水分凝结形成的。这滴液体在孢子释放过程中随孢子一起携带,但一旦孢子 airborne(此处疑有误,可能是“airborne”,意为“在空中”)就会蒸发。利用环境电子显微镜,我们已经证明在潮湿空气中孢子上会重新形成液滴。这个过程的动力学表明担孢子作为云层中形成大水滴的核心特别有效。通过这种机制,蘑菇孢子可能会促进那些支持大量外生菌根和腐生担子菌的生态系统中的降雨。我们的研究提高了对真菌全球重要性的关注,并引发了对依赖大量降水的森林可持续性的更多担忧。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0f1a/4624964/5a558149b444/pone.0140407.g001.jpg

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