南极洲乔治王岛巴顿半岛与企鹅腐肉有关的土壤化学特性

IF 1.5 4区 环境科学与生态学 Q3 BIODIVERSITY CONSERVATION Polar Biology Pub Date : 2024-05-24 DOI:10.1007/s00300-024-03264-7
Nur Adilla Zaini, Siti Sofo Ismail, Van Lun Low, Mohd Hafizi Mahmud, Jamal Houssaini, Won Young Lee, Chong Chin Heo
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引用次数: 0

摘要

腐肉分解对土壤化学成分有重大影响。然而,与南极洲动物尸体相关的土壤养分研究相对较少,企鹅腐肉分解对土壤化学成分的影响在很大程度上也是未知的。我们的目标是确定南极洲与企鹅腐肉相关的土壤化学成分。土壤样本采集自南极洲乔治王岛巴顿半岛世宗国王站附近的企鹅栖息地。土壤氮和硫采用干燃烧法测定,氨、硝酸盐和磷酸盐采用分光光度计比色法测定。此外,还测定了总碳量、pH 值、导电率、土壤湿度和土壤孔隙度。总体而言,不同分解阶段和采样地点的土壤化学性质没有明显差异。这些研究结果表明,企鹅腐肉中的营养物质分散和渗入土壤的数量有限,这可能是由于脊椎动物食腐动物的积极清扫活动和南极地区寒冷气温导致的较慢分解速度造成的。
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Soil chemical properties associated with penguin carrion in Barton Peninsula, King George Island, Antarctica

Carrion decomposition has a significant impact on soil chemical profiles. However, soil nutrient research associated with animal carcasses in Antarctica has been relatively scarce, and the effect of penguin carrion decomposition on soil chemical composition is largely unknown. We aimed to determine Antarctica’s soil chemistry profiles associated with penguin carrion. Soil samples were collected from a penguin rookery near King Sejong Station, Barton Peninsula, King George Island, Antarctica. Dry combustion methods were used to identify soil nitrogen and sulfur, while ammonia, nitrate, and phosphate were determined colorimetrically using a spectrophotometer. In addition, total carbon, pH, electrical conductivity, soil moisture, and soil porosity were also determined. Overall, soil chemical properties were not significantly different between the stages of decomposition and the sampling locations. These findings suggest that nutrients from penguin carrion disperse and leach in limited quantities into the soil, probably due to the active scavenging activities by vertebrate scavengers and the slower decomposition rate resulting from cold temperatures in the Antarctic region.

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来源期刊
Polar Biology
Polar Biology 生物-生态学
CiteScore
3.60
自引率
11.80%
发文量
116
审稿时长
3-8 weeks
期刊介绍: Polar Biology publishes Original Papers, Reviews, and Short Notes and is the focal point for biologists working in polar regions. It is also of interest to scientists working in biology in general, ecology and physiology, as well as in oceanography and climatology related to polar life. Polar Biology presents results of studies in plants, animals, and micro-organisms of marine, limnic and terrestrial habitats in polar and subpolar regions of both hemispheres. Taxonomy/ Biogeography Life History Spatio-temporal Patterns in Abundance and Diversity Ecological Interactions Trophic Ecology Ecophysiology/ Biochemistry of Adaptation Biogeochemical Pathways and Cycles Ecological Models Human Impact/ Climate Change/ Conservation
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