诱导生物土壤结壳不同演替阶段的肥力中光养分的贡献

IF 5.1 1区 农林科学 Q1 SOIL SCIENCE Biology and Fertility of Soils Pub Date : 2024-07-05 DOI:10.1007/s00374-024-01840-x
Gianmarco Mugnai, Sonia Chamizo, Giacomo Certini, Hua Li, Federico Rossi, Alessandra Adessi
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摘要

蓝藻接种是促进土壤稳定和肥沃以及抵御贫瘠土壤侵蚀的一种重要方法。接种蓝藻的结果之一是形成生物土壤结壳或生物簇,这是一种复杂的土壤群落,在旱地提供基本生态系统服务方面发挥着关键作用。虽然许多研究都探讨了不同生物结壳属性对生态系统功能的影响,但很少有研究关注生物结壳演替阶段在土壤中的分布及其与土壤肥力特性的联系。在这项工作中,我们研究了生物菌壳类型(藻类菌壳、藻类/苔藓菌壳和苔藓菌壳)的分布与土壤养分状况的关系。我们在中国霍普克沙漠的一个实验区评估了不同生物结壳类型的光营养丰度、外多糖产量和养分含量。此外,我们还研究了这些变量之间的相关性。在生物簇成熟阶段,光合色素含量、总碳水化合物、外多糖、有机碳和总氮都有所增加。我们发现有机碳、总碳水化合物和总氮的含量与重氮蓝藻的丰度之间存在明显的相关性。有机氮在蓝藻/苔藓结壳中含量较高,而可利用的磷则主要在蓝藻结壳中积累。这三种生物结壳类型是相互依存的,因为每种类型都代表了储存不同养分的阶段。这项研究补充了以往的研究,更全面地揭示了蓝藻或苔藓主导的生物结壳分布中的光营养变化如何与营养物质含量和生物结壳的发展密切相关。
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The contribution of the phototrophic fraction in the fertility of different successional stages of induced biological soil crusts

Inoculation of cyanobacteria has been studied as a valuable approach to promote soil stabilization and fertilization and counteract the erosion of marginal soils. One of the results of the inoculation of cyanobacteria is the formation of biological soil crusts, or biocrusts, which are complex soil communities playing a pivotal role in providing essential ecosystem services in drylands. While numerous studies have addressed the effects of different biocrust attributes on ecosystem functions, few studies have focused on the distribution of biocrust successional stages in the soil and their link with soil fertility properties. In this work, we investigated how the distribution of biocrust types (cyano-crust; cyano/moss crust, and moss crust) is related to soil nutrient status. We evaluated phototrophic abundance, exopolysaccharide production, and nutrient content in distinct biocrust types in an experimental area in the Hopq Desert, China, where their occurrence had been induced by cyanobacteria inoculation. In addition, we investigated the correlation between these variables. Photosynthetic pigment content, total carbohydrates, exopolysaccharides, organic C, and total N increased during the biocrust maturation stages. We found significant correlations between the levels of organic C, total carbohydrates, and total N with the abundance of diazotrophic cyanobacteria. Organic N was greater in the cyano/moss crust, while available P accumulated mainly in the cyano-crust. The three biocrust types are essential to each other as each represents a stage in which distinct nutrients are stored. This study complements previous studies by offering a more comprehensive view of how phototrophic variability in the distribution of biocrusts dominated by cyanobacteria or by mosses is closely interconnected with nutrient content and biocrust development.

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来源期刊
Biology and Fertility of Soils
Biology and Fertility of Soils 农林科学-土壤科学
CiteScore
11.80
自引率
10.80%
发文量
62
审稿时长
2.2 months
期刊介绍: Biology and Fertility of Soils publishes in English original papers, reviews and short communications on all fundamental and applied aspects of biology – microflora and microfauna - and fertility of soils. It offers a forum for research aimed at broadening the understanding of biological functions, processes and interactions in soils, particularly concerning the increasing demands of agriculture, deforestation and industrialization. The journal includes articles on techniques and methods that evaluate processes, biogeochemical interactions and ecological stresses, and sometimes presents special issues on relevant topics.
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