功能类型介导了根屑驱动的启动效应和新碳形成对气候变暖的反应。

IF 8.2 1区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES Science of the Total Environment Pub Date : 2024-07-15 Epub Date: 2024-05-14 DOI:10.1016/j.scitotenv.2024.173203
Dongmei Wu, Xiaohong Wang, Xiaodong Yao, Ailian Fan, Weiwei Wang, Jianfen Guo, Zhijie Yang, Yusheng Yang, Guangshui Chen
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引用次数: 0

摘要

根屑的输入可以改变土壤有机碳(SOC)的动态,对原生 SOC 的分解和新 SOC 的形成产生启动效应(PE)。然而,功能类型如何介导根屑驱动的PE和新碳形成,以及它们对气候变暖的响应,这些对土壤碳预算至关重要,目前尚不清楚。我们将冷杉(Cunninghamia lanceolata)种植园中吸收根和运输根的枯落物部分混合到同位素不同的土壤中,并在 19°C(当地年平均温度)和 23°C(升温 4°C)条件下培养 210 天。通过对培养过程中的瞬时 PE 率进行积分,计算出累积 PE。新形成的根屑衍生 SOC(SOCrl)是通过使用双源混合模型测量培养结束时土壤的 δ13C 值计算得出的。我们发现,吸收根的分解速度更快,造成的累积 PE 和 SOCrl 明显高于运输根。在吸收根添加处理中,参与C、N和P获取的微生物生物量和酶活性明显高于运输根添加处理,这表明吸收根引起了更高水平的微生物活化。虽然升温明显增加了两种功能类型根系的枯落物分解量,但只是明显增加了运输根系的PE,这表明PE对升温的敏感性取决于根系的功能类型。然而,升温对吸收根和运输根的SOCrl均无明显影响。因此,在运输根添加处理中,气候变暖相对降低了净 SOC 平衡(PE 与 SOCrl 之差)。总之,我们的研究首次强调了功能类型主要介导根屑驱动的PE对气候变暖的响应,而不是新C的形成,这可能会促进我们对气候变化下冷杉种植园SOC动态的理解。
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Functional type mediates the responses of root litter-driven priming effect and new carbon formation to warming.

Input of root litter can alter soil organic carbon (SOC) dynamics via causing priming effect (PE) on native SOC decomposition and forming new SOC. However, it is unknown how functional type mediates the root litter-driven PE and new C formation as well as their response to warming, which are of pivotal for soil C budget. We mixed litter segments of absorptive roots and transport roots from a Chinese fir (Cunninghamia lanceolata) plantation into isotopically distinct soil and incubated at 19°C (local mean annual temperature) and 23°C (warming by 4°C) for 210 days. Cumulative PE was calculated via integrating the instantaneous PE rates during the incubation. And the newly formed root litter-derived SOC (SOCrl) was calculated by measuring the δ13C value of soil at the end of incubation using a two-source mixed model. We found that absorptive roots with faster decomposition rates, caused significantly higher cumulative PE and SOCrl than transport roots. The microbial biomass and enzyme activities involved in C, N and P acquisition were significantly higher in the absorptive- than the transport roots addition treatment, indicating a higher level of microbial activation caused by absorptive roots. Although warming significantly increased the litter decomposition for both of functional types, while just significantly increased the PE of transport roots, indicating a root functional type dependent sensitivity of PE to warming. However, warming had no significant effect on SOCrl either for absorptive roots or for transport roots. As a consequence, warming relatively decreased the net SOC balance (difference between PE and SOCrl) in the transport roots addition treatment. Overall, our study highlights, for the first time, that functional type primarily mediates the response of root litter-driven PE to climate warming but not the new C formation, which may advance our understanding of SOC dynamics in Chinese fir plantation under climate change.

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来源期刊
Science of the Total Environment
Science of the Total Environment 环境科学-环境科学
CiteScore
17.60
自引率
10.20%
发文量
8726
审稿时长
2.4 months
期刊介绍: The Science of the Total Environment is an international journal dedicated to scientific research on the environment and its interaction with humanity. It covers a wide range of disciplines and seeks to publish innovative, hypothesis-driven, and impactful research that explores the entire environment, including the atmosphere, lithosphere, hydrosphere, biosphere, and anthroposphere. The journal's updated Aims & Scope emphasizes the importance of interdisciplinary environmental research with broad impact. Priority is given to studies that advance fundamental understanding and explore the interconnectedness of multiple environmental spheres. Field studies are preferred, while laboratory experiments must demonstrate significant methodological advancements or mechanistic insights with direct relevance to the environment.
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