I n ‐N‐O ut: A hierarchical framework to understand and predict soil carbon storage and nitrogen recycling

I n ‐N‐O ut: A hierarchical framework to understand and predict soil carbon storage and nitrogen recycling
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In –N – O out:理解和预测土壤碳储存和氮循环的分层框架

DOI:
10.1111/gcb.15782
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发表时间:
2021
影响因子:
11.6
通讯作者:
Wallenstein, Matthew D.
Wallenstein, Matthew D.
中科院分区:
环境科学与生态学1区
文献类型:
--
作者:
Francesca Cotrufo, M.;Lavallee, Jocelyn M.;Zhang, Yao;Hansen, Paige M.;Paustian, Keith H.;Schipanski, Meagan;Wallenstein, Matthew D.

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因此,土壤有机碳储量与氮的有效性,并可能导致N固定在SOM与反馈植物生产力。In-N-Out:理解和预测土壤碳储存和氮循环的层次框架相反,当氮的可用性超过植物和微生物的需求时,C和N循环解耦,N从系统中丢失。我们进一步假设,C输入有限的系统有N的需求过剩,导致脱钩的N和C的循环,和开放的N循环从土壤中的损失。[摘自文章]全球变化生物学的版权是威利-布莱克威尔的财产,其内容不得复制或通过电子邮件发送到多个网站或未经版权保持器的明确书面许可发布到列表服务器。但是,用户可以打印,下载或电子邮件的文章供个人使用。这篇摘要可以删节。不保证副本的准确性。用户应参考原始出版版本的材料的完整摘要。版权适用于所有摘要。
Thus, soil organic C storage is linked to N availability and can result in N immobilization in SOM with feedbacks to plant productivity. In-N-Out: A hierarchical framework to understand and predict soil carbon storage and nitrogen recycling Conversely, when N is available in excess of plant and microbial demand, the C and N cycles decouple, and N is lost from the system. We further hypothesize that C input-limited systems have N in excess of demand, resulting in decoupling of the N and C cycles, and the opening of N cycle to losses from the soil.[Extracted from the article]Copyright of Global Change Biology is the property of Wiley-Blackwell and its content may not be copied or emailed to multiple sites or posted to a listserv without the copyright holder's express written permission. However, users may print, download, or email articles for individual use. This abstract may be abridged. No warranty is given about the accuracy of the copy. Users should refer to the original published version of the material for the full abstract. Copyright applies to all Abstracts.