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DOI10.1111/ele.13209
Melanin mitigates the accelerated decay of mycorrhizal necromass with peatland warming
Fernandez, Christopher W.; Heckman, Katherine; Kolka, Randall; Kennedy, Peter G.
发表日期2019-03-01
ISSN1461-023X
EISSN1461-0248
卷号22期号:3页码:498-505
英文摘要Despite being a significant input into soil carbon pools of many high-latitude ecosystems, little is known about the effects of climate change on the turnover of mycorrhizal fungal necromass. Here, we present results from the first experiment examining th
关键词Bog microtopographycarbon cyclingdecompositionmicrobial residuesnitrogen cycling
学科领域Ecology
语种英语
WOS记录号WOS:000457829800008
来源期刊ECOLOGY LETTERS
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/81801
作者单位Univ Minnesota, Dept Plant & Microbial Biol, St Paul, MN 55108 USA
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Fernandez, Christopher W.,Heckman, Katherine,Kolka, Randall,et al. Melanin mitigates the accelerated decay of mycorrhizal necromass with peatland warming[J],2019,22(3):498-505.
APA Fernandez, Christopher W.,Heckman, Katherine,Kolka, Randall,&Kennedy, Peter G..(2019).Melanin mitigates the accelerated decay of mycorrhizal necromass with peatland warming.ECOLOGY LETTERS,22(3),498-505.
MLA Fernandez, Christopher W.,et al."Melanin mitigates the accelerated decay of mycorrhizal necromass with peatland warming".ECOLOGY LETTERS 22.3(2019):498-505.
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