Terrestrial crustaceans (Arthropoda, Crustacea): taxonomic diversity, terrestrial adaptations, and ecological functions.

Q1 Engineering Journal of The Institution of Engineers (India): Series A Pub Date : 2023-07-13 eCollection Date: 2023-01-01 DOI:10.3897/zookeys.1169.97812
Ivan N Marin, Alexei V Tiunov
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Abstract

Terrestrial crustaceans are represented by approximately 4,900 species from six main lineages. The diversity of terrestrial taxa ranges from a few genera in Cladocera and Ostracoda to about a third of the known species in Isopoda. Crustaceans are among the smallest as well as the largest terrestrial arthropods. Tiny microcrustaceans (Branchiopoda, Ostracoda, Copepoda) are always associated with water films, while adult stages of macrocrustaceans (Isopoda, Amphipoda, Decapoda) spend most of their lives in terrestrial habitats, being independent of liquid water. Various adaptations in morphology, physiology, reproduction, and behavior allow them to thrive in virtually all geographic areas, including extremely arid habitats. The most derived terrestrial crustaceans have acquired highly developed visual and olfactory systems. The density of soil copepods is sometimes comparable to that of mites and springtails, while the total biomass of decapods on tropical islands can exceed that of mammals in tropical rainforests. During migrations, land crabs create record-breaking aggregations and biomass flows for terrestrial invertebrates. The ecological role of terrestrial microcrustaceans remains poorly studied, while omnivorous macrocrustaceans are important litter transformers and soil bioturbators, occasionally occupying the position of the top predators. Notably, crustaceans are the only group among terrestrial saprotrophic animals widely used by humans as food. Despite the great diversity and ecological impact, terrestrial crustaceans, except for woodlice, are often neglected by terrestrial ecologists. This review aims to narrow this gap discussing the diversity, abundance, adaptations to terrestrial lifestyle, trophic relationships and ecological functions, as well as the main methods used for sampling terrestrial crustaceans.

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陆生甲壳动物(节肢动物门,甲壳纲):分类多样性、陆生适应性和生态功能。
陆生甲壳类有六大类群约 4,900 个物种。陆生类群的种类繁多,从栉水母纲(Cladocera)和梭口纲(Ostracoda)的几个属到异足纲(Isopoda)约三分之一的已知物种。甲壳类既是最小的陆生节肢动物,也是最大的陆生节肢动物。微小的甲壳动物(鳞翅目、梭口纲、桡足目)总是与水膜有关,而大型甲壳动物(等足目、两足目、十足目)的成体阶段则大部分时间生活在陆地栖息地,与液态水无关。甲壳动物在形态、生理、繁殖和行为方面的各种适应性使它们能够在几乎所有地理区域(包括极其干旱的栖息地)繁衍生息。大多数陆生甲壳类都拥有高度发达的视觉和嗅觉系统。土壤中桡足类的密度有时可与螨类和春蜱相媲美,而热带岛屿上十足类的总生物量可超过热带雨林中哺乳动物的生物量。在迁徙过程中,陆蟹为陆生无脊椎动物创造了破纪录的聚集和生物量流。人们对陆生微型甲壳动物的生态作用研究甚少,而杂食性大型甲壳动物则是重要的垃圾转化者和土壤生物扰动者,有时还占据顶级捕食者的位置。值得注意的是,甲壳类是陆生食腐动物中唯一被人类广泛用作食物的类群。尽管陆生甲壳动物种类繁多,对生态影响巨大,但除了木虱之外,陆生甲壳动物往往被陆生生态学家所忽视。本综述旨在缩小这一差距,讨论陆生甲壳动物的多样性、丰度、对陆生生活方式的适应性、营养关系和生态功能,以及陆生甲壳动物采样的主要方法。
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CiteScore
2.20
自引率
0.00%
发文量
104
期刊介绍: Series-A publishes research findings and opinions of various scientists and engineers related to the field of Civil, Architectural, Environmental and Agricultural. It covers different kinds of technological researches on the latest developmental domain of highly specialized fields like, earthquake engineering, geo-technical engineering, ocean engineering, structural engineering, traffic & highway engineering, industrial waste treatment, climate change, environmental pollutions, irrigation, water management, soil conservation practices, farm power & machineries, dairy & food engineering, post-harvest technology, and so on. It also serves the researchers and practitioners for performing a variety of analyses in the arena of green buildings, Energy Efficient Buildings, pollution related measures, food security and many more. The academicians and professionals have made efforts to find out the probable solutions to the issues as derived from natural, geographical, socio-economical and cultural conditions of the globe. Their achievements have contributed a lot to the evolution of research findings. Especially, the achievements in structural engineering have contributed to the world by developing technologies to ensure safety of buildings in earthquake-prone zones. This journal aims to contribute to resolve or mitigate the global as well as national problems by bringing together the new ideas, achievements and developments being taking place in this field. The editors welcome good quality contributions from all over the world. This Series covers the following areas:·         Construction Planning & Management, Earthquake Engineering·         Geo-technical Engineering           ·         Hydrology and Hydraulic Engineering·         Ocean Engineering·         Structural Engineering, Traffic & Highway Engineering·         Green Building·         Energy Efficient Building·         Town Planning·         Infrastructure Development·         Environment impact of Agricultural Engineering Development Activities·         Water Supply Engineering·         Sewage Treatment, Disposal and Solid Waste Management·         Industrial Waste Treatment, Rural Water Supply and Sanitation and Hygiene·         Irrigation, Drainage, Water Management, Soil Conservation Practices·         Surface Irrigation, Integrated Watershed Development, Percolation Tank, Ground Water Recharge etc.·         Sprinkler and Micro Irrigation, Well Technology, Irrigation Pumps·         Farm Power and Machineries·         Processing of Food Products·         Post-harvest Technology and Agriculture Process EngineeringPeer Review Information: This journal follows a Double blind peer review process.
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A Comparative Study Between Conventional Outrigger System and Hybrid Outrigger System considering Performance Index Criterion Study of Leaf Straightening Parameters in the Hot Compression Rolling Process Spatial and Temporal Variations in Peak Flood Events over the Markanda River Basin of North Western India Development of Benchmarks for First and Last Mile Connectivity of a Metro Rail System Through Performance Evaluation: A Case Study of Mumbai Metro Line 1 Enhancing Monsoon Predictions for the Upper Chambal Catchment Through Temporal and Spatial Downscaling of Predicted Future Precipitation
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