以亚马尔地区中部(西西伯利亚)为例,探讨低温生态系统中的农耕发生以及土壤形态、肥力和微生物组多样性的相关变化

IF 5.6 1区 农林科学 Q1 SOIL SCIENCE
Timur Nizamutdinov , Darya Zhemchueva , Aleksei Zverev , Evgeny Andronov , Alexandr Pechkin , Evgeny Abakumov
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引用次数: 0

摘要

北方地区的农业发展导致这些生态系统的土壤发生根本性转变。以俄罗斯亚马尔-涅涅茨自治区的纳定姆地区(北纬 65.5;东经 72.6)为例,可以看出参考豆荚土的农化过程类似于普拉根土壤的形成过程,这种土壤在北欧和其他地区屡见不鲜(普拉根炭质土--普拉根管理的结果)。由于施用了大量有机基质(普拉根材料),表层的厚度大大增加(在某些情况下从 3 厘米增加到 30 厘米以上)。这些土壤处于从参考土壤到高度转化土壤 - Hortic/Plaggic Podzols 的中间位置。Hortic 和 Plaggic 地层的特点是酸度降低(pH 值为 HO 5-6,pH 值为 CaCl 4-5),有机碳的含量和存量增加(5.4-14.5%)。农业生产者和后农业生产者生态系统土壤的特点是基本养分(P-PO 达 386 毫克/千克,K-KO 达 239.0 毫克/千克)和粘土(达 20.9%)含量相对较高,与纳定姆地区的 Podzols 相比,其微观结构程度也有所提高。在土壤的农业发展过程中,土壤微生物群的分类组成也发生了很大变化。在参考坡壤土中, 和 占主导地位。总的来说,农化土壤和农化后土壤中的微生物群落向着增加、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、、(废弃土地)和使用中的土壤转变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Agropedogenesis and related changes in morphology, fertility and microbiome diversity of soils in cryogenic ecosystems on the example of the central part of Yamal region (West Siberia)

Agropedogenesis and related changes in morphology, fertility and microbiome diversity of soils in cryogenic ecosystems on the example of the central part of Yamal region (West Siberia)

Agro-development of northern territories results in radical transformation of soils of these ecosystems. On the example of Nadym district (N 65.5; E 72.6) of Yamal-Nenets Autonomous Okrug (Russia) it is shown that the process of agrogenic transformation of reference podzols is similar to the process of formation of Plaggen soils, which were repeatedly found in Northern Europe and other regions (Plaggen Anthrosols – result of Plaggen Management). As a result of the application of large amounts of organic substrate (Plaggen Material), the thickness of the surface horizons increases considerably (from 3 cm to more than 30 cm in some cases). These soils occupy an intermediate position from reference soils to highly transformed − Hortic/Plaggic Podzols. Hortic and Plaggic horizons are characterized by reduced acidity (pH H2O 5–6, pH CaCl2 4–5), increased content and stock of organic carbon (5.4–14.5 %). Soils of agrogenic and postagrogenic ecosystems are characterized by relatively high content of basic nutrients (P-P2O5 up to 386 mg kg−1, K-K2O up to 239.0 mg kg−1) and clay (up to 20.9 %), also the degree of their microstructure increases in comparison with reference Podzols of Nadym district. The taxonomic composition of soil microbiome also changes greatly in the process of agricultural development of soils. In reference Podzols Proteobacteria, Actinobacteria and Bacteroidetes dominate. In general the microbiological profile in the of agrogenic and postagrogenic soils shifts towards the increase of the phyla Proteobacteria, Acidobacteria, Planctomycetes, Nitrospirae, Verrucomicrobia (for abandoned lands) and Actinobacteria, Bacteroides, Firmicutes, Euryarchaeota (for soil in use).

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来源期刊
Geoderma
Geoderma 农林科学-土壤科学
CiteScore
11.80
自引率
6.60%
发文量
597
审稿时长
58 days
期刊介绍: Geoderma - the global journal of soil science - welcomes authors, readers and soil research from all parts of the world, encourages worldwide soil studies, and embraces all aspects of soil science and its associated pedagogy. The journal particularly welcomes interdisciplinary work focusing on dynamic soil processes and functions across space and time.
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