Mélanie Jean, Hannah Holland-Moritz, April M Melvin, Jill F Johnstone, Michelle C Mack
Journal: The New phytologist 2021;227(5):1335-1349
PMID: 32299141
Nitrogen (N )-fixing moss microbial communities play key roles in nitrogen cycling of boreal forests. Forest type and leaf litter inputs regulate moss abundance, but how they control moss microbiomes and N -fixation remains understudied. We examined the impacts of forest type and broadleaf litter on microbial community composition and N -fixation rates of Hylocomium splendens and Pleurozium schreberi. We conducted a moss transplant and leaf litter manipulation experiment at three sites with paired paper birch (Betula neoalaskana) and black spruce (Picea mariana) stands in Alaska. We characterized bacterial communities using marker gene sequencing, determined N -fixation rates using stable isotopes ( N ) and measured environmental covariates. Mosses native to and transplanted into spruce stands supported generally higher N -fixation and distinct microbial communities compared to similar treatments in birch stands. High leaf litter inputs shifted microbial community composition for both moss species and reduced N -fixation rates for H. splendens, which had the highest rates. N -fixation was positively associated with several bacterial taxa, including cyanobacteria. The moss microbiome and environmental conditions controlled N -fixation at the stand and transplant scales. Predicted shifts from spruce- to deciduous-dominated stands will interact with the relative abundances of mosses supporting different microbiomes and N -fixation rates, which could affect stand-level N inputs.
© 2020 The Authors. New Phytologist © 2020 New Phytologist Trust.
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