Bark microbiota modulate climate-active gas fluxes in Australian forests · P. M. Leung et al.
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Pok Man Leung*†, Luke C. Jeffrey*†, Sean K. Bay, Paula Gomez-Alvarez, Montgomery Hall, Scott G. Johnston, Johannes Dittmann, Elisabeth Deschaseaux, Billie Hopkins, Jasmine Haskell, Thanavit Jirapanjawat, Tess F. Hutchinson, Nicholas V. Coleman, Xiyang Dong, Damien T. Maher, Chris Greening* INTRODUCTION: The global surface area of tree bark is similar to that of terrestrial Earth. These substantial tree surfaces are increasingly recognized for mediating the exchange of atmospheric gases along the soil-tree-atmosphere continuum. They also represent a potential habitat for microorganisms, with recent metabarcoding studies indicating a possible role for bark microbes in the cycling of methane (CH4). However, a general understanding of the metabolism and ecosystem roles of these potentially globally pervasive microbiota remains lacking. …
摘自《科学》(Science)第391卷 第6781期 · 2026年1月8日,P. M. Leung et al.。仅引用开头一小段供了解文章,版权归原刊所有,全文请阅读原刊。