微生物群对跨地带自然-人为湿度变化的响应:以东欧平原南部为例

IF 0.4 Q4 SOIL SCIENCE Soil & Environment Pub Date : 2019-05-29 DOI:10.25252/SE/19/71769
F. Lisetskii, D. Vladimirov
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引用次数: 1

摘要

在半干旱地区,灌溉不仅会改变土壤的化学和物理性质,还会改变微生物群的活动。我们对跨地带的藻类区系和酶进行了研究:从森林草原到干旱草原,那里缺乏降水,地表灌溉被广泛使用。本研究的目的是揭示在东欧平原南部(乌克兰、摩尔多瓦)灌溉影响下,五种土壤酶的活性和藻类的丰度,并确定生物因素对提高灌溉土壤抗风蚀和抗水蚀能力的贡献。灌溉期间藻类的活性在秋季最有利(3-4.2万/g土壤),这得益于最佳土壤湿度(21-24%)。与非灌溉土壤相比,春季和夏季灌溉条件下的土壤具有更高的脱氢酶含量(41%)和多酚氧化酶含量(34%)。灌溉土壤的脲酶含量(17%)也高于非灌溉土壤,春季差异高达50%。对这一现象的解释与灌溉作用有关,灌溉作用增加了基本土壤颗粒的腐殖质凝结作用,风化产物<0.001mm的颗粒比例增加,细菌来源的水泥增加。
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Microbiota's response to natural-anthropogenic changes in moisture in a trans-zonal aspect: A case study for the south part of East European Plain
In semi-arid areas, irrigation changes not only the chemically and physical properties of soil, but also the activity of microbiota. We undertook a study of algal flora and enzyme in the trans-zonal range: from the forest-steppe to the dry-steppe, which is lacking precipitation and where surface irrigation is widely used. The aims of the study were to reveal the activity of five soil enzymes and abundance of algae under the influence of irrigation on the south of the East European Plain (Ukraine, Moldova) and to determine the contribution of the biological factor to the increase of wind and water erosion resistance of irrigated soils. The activity of algae during irrigation had the most favourable conditions in the fall (3-42 thousand / g of soil), which was facilitated by optimal soil moisture (21-24%). Soils in irrigated conditions in spring and summer featured a higher content of dehydrogenase (on 41%) and polyphenol oxidase (on 34%) compared to non-irrigated soils. Irrigated soils also differed by higher urease content (on 17%) than on non-irrigated soils and in spring these differences were up to 50%. The explanation for this phenomenon is associated with the action of irrigation in respect of increasing the role of humus coagulation of elementary soil particles, the increase in the proportion of particles <0.001 mm as products of weathering and the increase of bacterial origin cement.
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来源期刊
Soil & Environment
Soil & Environment SOIL SCIENCE-
CiteScore
1.10
自引率
0.00%
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审稿时长
4 weeks
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