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作物凋落物类型决定了酸雨条件下凋落物分解微生物群落的结构和功能。

Crop-litter type determines the structure and function of litter-decomposing microbial communities under acid rain conditions.

机构信息

Department of Ecology, College of Natural Resources and Environment, South China Agricultural University, Guangzhou 510642, China; Guangdong Provincial Key Laboratory of Eco-circular Agriculture, Guangzhou 510642, China; Key Laboratory of Agro-Environment in the Tropics, Ministry of Agriculture, South China Agricultural University, Guangzhou 510642, China.

Department of Ecology, College of Natural Resources and Environment, South China Agricultural University, Guangzhou 510642, China.

出版信息

Sci Total Environ. 2020 Apr 15;713:136600. doi: 10.1016/j.scitotenv.2020.136600. Epub 2020 Jan 9.

Abstract

Acid rain has been one of the major environmental problems in industrial countries. While it may affect the litter decomposition, a highly important microbial-driven biogeochemical process, knowledge about the impact of acid rain on litter-decomposing microbial communities and their functions remains unclear. Therefore, this experiment was conducted to investigate how acid rain treatments would alter microbial communities and their functions during litter decomposition of three major commodity crops (maize, rice, and soybean) for six months from June to December 2018. We used litterbag method to determine litter decomposition,while the phospholipid fatty acid (PLFA) and fluorometric methods were used to reveal changes in the litter-adhering microbial community parameters and activities of enzymes involved in the litter decomposition and nutrient release (including carbon [C], nitrogen [N], and phosphorus [P]), respectively. Our results showed that microbial community composition and functions were significantly different among litter types, but not significantly altered by acid rain treatments during the experimental period. The enzyme activities significantly correlated with each other, thus suggesting that microbial requirements for C, N, and P were coupled together during litter decomposition. Moreover, the enzyme activities, at large, did not correlate to microbial community composition, thus indicating the asymmetric relationship between microbial community structure and functions. Our results imply that crop litter type and substrate availability determined the microbial community composition and functions, while litter-inhabiting microbial communities demonstrated substantial resilience under acid rain pressure throughout the experimental period. These results also predict that litter (crop residues) decomposition may not be altered by acid rains in the subtropical agroecosystem, due to relatively high resilience of litter-decomposing microbial communities.

摘要

酸雨是工业化国家的主要环境问题之一。尽管它可能会影响到非常重要的微生物驱动的生物地球化学过程——凋落物分解,但有关酸雨对凋落物分解微生物群落及其功能的影响的知识仍不清楚。因此,本实验于 2018 年 6 月至 12 月的六个月期间,研究了酸雨处理如何改变三种主要商品作物(玉米、水稻和大豆)凋落物分解过程中的微生物群落及其功能。我们使用凋落物袋法来确定凋落物分解,而磷脂脂肪酸(PLFA)和荧光法分别用于揭示凋落物附着微生物群落参数和参与凋落物分解和养分释放的酶活性(包括碳 [C]、氮 [N] 和磷 [P])的变化。结果表明,微生物群落组成和功能在凋落物类型之间存在显著差异,但在实验期间酸雨处理并没有显著改变它们。酶活性之间存在显著相关性,因此表明在凋落物分解过程中微生物对 C、N 和 P 的需求是耦合在一起的。此外,酶活性与微生物群落组成之间并没有相关性,这表明微生物群落结构和功能之间存在不对称关系。本研究结果表明,作物凋落物类型和基质可用性决定了微生物群落组成和功能,而在整个实验期间,在酸雨压力下,凋落物栖息的微生物群落表现出了很强的恢复力。这些结果还预测,在亚热带农业生态系统中,由于凋落物分解微生物群落具有较高的恢复力,因此凋落物(作物残体)分解可能不会受到酸雨的影响。

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