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烟草连作后溶解有机物的微生物降解与转化

Micro-biological degradation and transformation of dissolved organic matter following continuous cropping of tobacco.

作者信息

Chen Peng, Wang Lei, Li Wei-Hua, Zhang Xiu-Xia, Gao Huan-Huan, Zhou Xian-Hong, Zhuang Qian-Ying, Li Jian, Li Xing-Yue, Zhang An-Sheng

机构信息

Key Laboratory of Natural Enemies Insects, Ministry of Agriculture and Rural Affairs, Shandong Provincial Engineering Technology Research Center on Biocontrol of Crop Diseases and Insect Pest, Institute of Plant Protection, Shandong Academy of Agricultural Sciences, Jinan, China.

College of Plant Protection, Shandong Agricultural University, Tai'an, China.

出版信息

Front Microbiol. 2024 Jan 26;15:1319895. doi: 10.3389/fmicb.2024.1319895. eCollection 2024.

Abstract

In recent years, the problems associated with continuous cropping (CC) that cause soil degradation have become increasingly serious. As a key soil quality property, dissolved organic matter (DOM) affects the circulation of carbon and nutrients and the composition of bacterial communities in soil. However, research on the changes in the molecular composition of DOM after CC is limited. In this study, the soil chemical properties, DOM chemical diversity, bacterial community structure, and their interactions are explored in the soil samples from different CC years (CC1Y, CC3Y, CC5Y, and CC7Y) of tobacco. With increasing CC year of tobacco, most of the soil chemical properties, such as total carbon, total nitrogen and organic matter, decreased significantly, while dissolved organic carbon first decreased and then increased. Likewise, the trends of DOM composition differed with changing duration of CC, such as the tannin compounds decreased from 18.13 to 13.95%, aliphatic/proteins increased from 2.73 to 8.85%. After 7 years of CC, the soil preferentially produced compounds with either high H/C ratios (H/C > 1.5), including carbohydrates, lipids, and aliphatic/proteins, or low O/C ratios (O/C < 0.1), such as unsaturated hydrocarbons. Furthermore, core microorganisms, including , , , , and , were identified. Network analysis further indicated that in response to CC, and were correlated with the microbial degradation and transformation of DOM. These findings will improve our understanding of the interactions between microbial community and DOM in continuous cropping soil.

摘要

近年来,与连作(CC)相关的导致土壤退化的问题日益严重。作为关键的土壤质量属性,溶解有机 matter(DOM)影响土壤中碳和养分的循环以及细菌群落的组成。然而,关于连作后DOM分子组成变化的研究有限。在本研究中,对来自不同连作年限(CC1Y、CC3Y、CC5Y和CC7Y)烟草土壤样品的土壤化学性质、DOM化学多样性、细菌群落结构及其相互作用进行了探究。随着烟草连作年限的增加,大部分土壤化学性质,如总碳、总氮和有机质显著下降,而溶解有机碳先下降后上升。同样,DOM组成的趋势也随连作持续时间的变化而不同,例如单宁类化合物从18.13%降至13.95%,脂肪族/蛋白质从2.73%增至8.85%。连作7年后,土壤优先产生具有高H/C比(H/C>1.5)的化合物,包括碳水化合物、脂质和脂肪族/蛋白质,或低O/C比(O/C<0.1)的化合物,如不饱和烃。此外,还鉴定出了核心微生物,包括 、 、 、 和 。网络分析进一步表明,响应连作, 和 与DOM的微生物降解和转化相关。这些发现将增进我们对连作土壤中微生物群落与DOM之间相互作用的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f09/10853430/9b39799c2ee9/fmicb-15-1319895-g001.jpg

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