亚热带尾叶桉人工林土壤对类异戊二烯的吸收

IF 2.7 3区 农林科学 Q2 ECOLOGY Frontiers in Forests and Global Change Pub Date : 2023-10-12 DOI:10.3389/ffgc.2023.1260327
Zhaobin Mu, Jianqiang Zeng, Yanli Zhang, Wei Song, Weihua Pang, Zhigang Yi, Dolores Asensio, Joan Llusià, Josep Peñuelas, Xinming Wang
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引用次数: 0

摘要

类异戊二烯包括异戊二烯、单萜和倍半萜,它们在生态系统土壤和大气之间的交换在土壤生态学和大气化学中起着重要的作用。然而,由于以往的研究主要集中在温带和北方环境,对亚热带生态系统通量交换率的研究还很有限。在本研究中,我们旨在量化亚热带尾叶桉人工林在雨季白天土壤(有或没有地表凋落物)与大气之间的类异戊二烯交换。此外,我们还研究了土壤和凋落物变量对类异戊二烯通量的影响。我们的研究结果揭示了异戊二烯和17种萜类化合物,包括11种单萜类和6种倍半萜类,在所研究的土壤和大气之间的交换。有趣的是,无论地表是否存在凋落物,所研究的土壤都是类异戊二烯的净汇,其中异戊二烯是吸收最多的化合物(- 71.84±8.26 μg m - 2 h - 1)。表面凋落物的去除对两种单萜(α-蒎烯和β-蒎烯)的交换速率有显著影响,导致通量降低。异戊二烯交换速率与凋落物干重呈正相关,与土壤温度负相关。单萜类和倍半萜类的较高交换速率与土壤呼吸水平和凋落叶丰度的增加有关。这些发现表明,在预估的全球变暖情景下,中国亚热带土壤作为类异戊二烯汇的能力预计会增加。这些汇容量的变化可能对区域尺度的大气化学和生态系统功能产生影响。
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Soil uptake of isoprenoids in a Eucalyptus urophylla plantation forest in subtropical China
The exchange of isoprenoids, which includes isoprene, monoterpenes, and sesquiterpenes, between ecosystem soils and the atmosphere plays a significant role in soil ecology and atmospheric chemistry. However, research on flux exchange rates in subtropical ecosystems has been limited, as previous studies have mainly focused on temperate and boreal environments. In this study, we aimed to quantify the exchange of isoprenoids between the soil (with or without surface litter) and the atmosphere in a subtropical Eucalyptus urophylla plantation forest during the daytime in the wet season of subtropical China. Additionally, we investigated the influence of soil and litter variables on the fluxes of isoprenoids. Our results unveiled the exchange of isoprene and 17 terpenoid compounds, comprising 11 monoterpenes and 6 sesquiterpenes, between the studied soils and the atmosphere. Interestingly, regardless of the presence of surface litter, the studied soils acted as net sinks for isoprenoids, with isoprene being the most absorbed compound (−71.84 ± 8.26 μg m −2 h −1 ). The removal of surface litter had a significant impact on the exchange rates of two monoterpenes (α-pinene and β-pinene), resulting in decreased fluxes. Furthermore, the exchange rates of isoprene were positively correlated with litter dry weight and negatively correlated with soil temperature. The higher exchange rates of monoterpenes and sesquiterpenes were associated with increased levels of soil respiration and the abundance of leaf litter. These findings suggest that, in the context of projected global warming scenarios, the capacity of subtropical soils to act as sinks for isoprenoids is expected to increase in subtropical China. These changes in sink capacity may have implications for regional-scale atmospheric chemistry and ecosystem functioning.
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来源期刊
CiteScore
4.50
自引率
6.20%
发文量
256
审稿时长
12 weeks
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