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土壤易提取球囊霉素:一种在季节性、植被覆盖和野火影响下解析其分子组成的创新方法。

Soil-Easily Extractable Glomalin: An Innovative Approach to Deciphering Its Molecular Composition under the Influence of Seasonality, Vegetation Cover, and Wildfire.

作者信息

San-Emeterio Layla M, Lozano Elena, Arcenegui Victoria, Mataix-Solera Jorge, Jiménez-Morillo Nicasio T, González-Pérez José A

机构信息

Instituto Mediterrâneo para a Agricultura, Ambiente e Desenvolvimento (MED), University of Évora, Núcleo da Mitra, Ap. 94, Évora 7006-554, Portugal.

Grupo de Edafología y Tecnologías del Medio Ambiente GETECMA. Departamento de Agroquímica y Medio Ambiente, Universidad Miguel Hernández, Avenida de la Universidad s/n, 03202 Elche, Alicante Spain.

出版信息

Environ Sci Technol. 2024 Dec 24;58(51):22624-22634. doi: 10.1021/acs.est.4c10036. Epub 2024 Dec 9.

Abstract

Easily extractable glomalin (EEG) is a fraction of soil organic matter thought to contain mainly glomalin-related soil glycoproteins produced by mycorrhizal fungi. The EEG has an impact on various soil ecological functions, primarily related to soil aggregation formation and stability as well as water repellence. Here, analytical pyrolysis-gas chromatography/mass spectrometry (Py-GC/MS) was used for studying the molecular composition of soil EEG, and a detailed description of the chemical composition is reported. Samples extracted from Mediterranean soils under different vegetation covers ( and shrubland species, , and spp, predominantly), impacted or not by forest fires and collected at different times, were studied. A total of 139 compounds were identified and grouped based on their probable biogenic origin. The EEG chemical composition is dominated by lipids, aromatic compounds, steranes, and hydroaromatics with a remarkable abundance of compounds from plant origin. Significant EEG structural changes can indicate environmental disturbances such as those after a wildfire. The EEG soil organic fraction is found to be a stable and heat-resistant material in nature if soil temperatures remain below 200-250 °C. This study advances the understanding of EEG by providing a detailed molecular characterization and highlighting its role as a stable, heat-resistant component of soil organic matter in Mediterranean ecosystems. The main findings indicate that while EEG is structurally resilient and mostly originates from plant material, its composition is more similar to that of humic acids than to that of glycoproteins.

摘要

易提取球囊霉素(EEG)是土壤有机质的一部分,被认为主要包含菌根真菌产生的与球囊霉素相关的土壤糖蛋白。EEG对多种土壤生态功能有影响,主要与土壤团聚体的形成和稳定性以及疏水性有关。在此,采用分析热解-气相色谱/质谱联用技术(Py-GC/MS)研究土壤EEG的分子组成,并报告了其化学成分的详细描述。研究了从不同植被覆盖(主要是草地和灌木物种,如、和 spp)下的地中海土壤中提取的样本,这些样本受到或未受到森林火灾的影响,并在不同时间采集。共鉴定出139种化合物,并根据其可能的生物来源进行了分类。EEG的化学成分以脂质、芳香族化合物、甾烷和氢化芳香族化合物为主,其中来自植物来源的化合物含量显著。EEG的显著结构变化可能表明存在环境干扰,如野火后的干扰。如果土壤温度保持在200-250°C以下,EEG土壤有机部分在自然状态下是一种稳定且耐热的物质。本研究通过提供详细的分子特征描述并强调其在地中海生态系统中作为土壤有机质稳定、耐热成分的作用,增进了对EEG的理解。主要研究结果表明,虽然EEG在结构上具有弹性且大多源自植物材料,但其组成与腐殖酸更相似,而非糖蛋白。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f8a4/11673091/372a6f1ef98d/es4c10036_0001.jpg

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