Bryophyte species differ widely in their growth and N2-fixation responses to temperature

被引:4
|
作者
Rzepczynska, Agnieszka Marta [1 ]
Michelsen, Anders [1 ,2 ]
Olsen, Maya Anne Nissen [1 ]
Lett, Signe [1 ]
机构
[1] Univ Copenhagen, Dept Biol, Terr Ecol Sect, Univ Pk 15, DK-2100 Copenhagen, Denmark
[2] Univ Copenhagen, Ctr Permafrost, Dept Geosci & Nat Resource Management, Norregade 10, DK-1165 Copenhagen, Denmark
关键词
acetylene reduction assay; delta C-13; delta N-15; mosses; nitrogen cycling; subarctic tundra ecosystems; CARBON-ISOTOPE DISCRIMINATION; BIOLOGICAL NITROGEN-FIXATION; EXPERIMENTAL WARMING ALTERS; N-15; NATURAL-ABUNDANCE; SUB-ARCTIC BRYOPHYTE; ATMOSPHERIC NITROGEN; COMMUNITY COMPOSITION; LITTER DECOMPOSITION; DINITROGEN FIXATION; SEASONAL-VARIATION;
D O I
10.1139/AS-2021-0053
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Bryophytes are abundant in tundra ecosystems, where they affect carbon and nitrogen cycling through primary production and associations with N-2-fixing bacteria. Bryophyte responses to climate warming are inconclusive, likely because species-specific responses are poorly understood. Here we investigated how warming affects the growth and nitrogenase activity of 10 tundra bryophyte species in two tundra landscapes. Collected bryophyte samples were grown in temperature-controlled growth chambers for 12 weeks at five temperatures from 3 to 18 degrees C. We measured growth, N concentration, delta N-15, and delta C-13 after 3 months and nitrogenase activity after 5 and 12 weeks. Bryophyte growth and associated nitrogenase activity generally increased with temperature, but species differed in their optima. Bryophyte N concentration and delta N-15 indicated that, for some species, increased N-2-fixation could not compensate for growth-induced N limitation. High landscape coverage and large positive warming effects on feather mosses and Sphagnum species highlight their competitive advantages, confirm earlier field observations, and contribute to the mechanistic understanding of differential bryophyte growth in response to warming. We suggest that indirect effects of climate change, such as surface drying and shrub expansion, are likely main threats to slow-growing bryophytes across the Arctic, with consequences for biodiversity and C balance.
引用
收藏
页码:1236 / 1251
页数:16
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