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Titlebook: Ecosystem Ecology and Geochemistry of Cuatro Cienegas; How to Survive in an Felipe García-Oliva,James Elser,Valeria Souza Book 2018 Springe

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發(fā)表于 2025-3-21 16:37:03 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
書目名稱Ecosystem Ecology and Geochemistry of Cuatro Cienegas
副標(biāo)題How to Survive in an
編輯Felipe García-Oliva,James Elser,Valeria Souza
視頻videohttp://file.papertrans.cn/303/302138/302138.mp4
概述Investigates the environmental variables, nutrients and biodiversity in an extremely oligotrophic site.Describes each of the key elements and its cycling in relation to the unique conditions in Cuatro
叢書名稱Cuatro Ciénegas Basin: An Endangered Hyperdiverse Oasis
圖書封面Titlebook: Ecosystem Ecology and Geochemistry of Cuatro Cienegas; How to Survive in an Felipe García-Oliva,James Elser,Valeria Souza Book 2018 Springe
描述Carbon (C), Nitrogen (N) and Phosphorus (P) are three of the most important elements used to build living beings, and their uptake from the environment is consequently essential for all organisms. Photosynthesis is the process in which plants absorb atmospheric C as they grow and convert it to biomass. However, plants acquire N and P only when these are available in the soil solution, which makes these elements the most limiting nutrients in plant growth and productivity in most ecosystems. When plant residues and roots decompose, the C, N and P they contain is transformed primarily into soil organic matter (SOM) or C and N can release to the atmosphere. Recent interest on the global C, N and P cycles has focused attention on the different proportion of terrestrial C, N and P stored in different ecosystem pools. Cuatro Cienegas represents an exceptional place, since the plants are not the base of the food web, they are the microbial community, that recycle the elements essential for life. In this book we describe how this is an analog of early Earth.
出版日期Book 2018
關(guān)鍵詞autotrophy; photosynthesis; oligotrophic environments; extreme environments; carbon cycling; nitrogen cyc
版次1
doihttps://doi.org/10.1007/978-3-319-95855-2
isbn_softcover978-3-030-07106-6
isbn_ebook978-3-319-95855-2Series ISSN 2523-7284 Series E-ISSN 2523-7292
issn_series 2523-7284
copyrightSpringer International Publishing AG, part of Springer Nature 2018
The information of publication is updating

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P. Bannasch,H. Enzmann,H. Zerban higher soil total organic C and organic P at Churince, and higher N concentration in the aboveground grass biomass at Pozas Azules. Nutrient contents showed different patterns between sites. Total carbon, N, and P contents were all higher in Churince than Pozas Azules. At the ecosystem level, organ
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Lu Deng,Jiahui Xu,Dong Wang,Suling Liumeostasis remain scarce. Herein, we analyzed the C:N:P stoichiometry of mycelia in ten aquatic microfungi isolated from three hydrological systems with different nutrient conditions within Cuatro Cienegas Basin (CCB). Our hypotheses were (a) variations in C:N:P ratios reflect divergent life history
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Introduction to Cancer Stem Cells,rtilization. Surprisingly, P fertilization stimulated snail performance when C:P was reduced moderately but inhibited growth and increased mortality when C:P was strongly reduced, leading us to propose a “stoichiometric knife edge” for snails, with both high and low C:P being detrimental. Finally, s
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Tyler R. Simpson,James P. Allisonumber of . operon copies despite the extreme phosphorus limitation in this environment. In addition, these bacilli showed different ecological responses reflected in the heterogeneity of their growth dynamics. This heterogeneity seems to be a response to the low availability of nutrients and the com
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Ezra A. Bernstein,Yvonne Saengerining bacterial hydroxamate siderophore-mediated iron acquisition in . and provide an example to illustrate a proposed evolutionary conceptual frameworkuseful for molecular functional and ecological analyses. The example presented includes genomic analysis of novel actinobacteria that were isolated
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