生物监测生态系统:与节肢动物的建模关系

J. Medhi, Jintu Dutta, M. Kalita
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引用次数: 3

摘要

节肢动物群落结构和组成提供了环境健康的多尺度信息。它们的繁殖和生长模型可有效评估生态系统在应对人为活动(气候变化)或自然(干旱)等压力时的影响。陆生和水生昆虫是潜在的生物指标。陆生昆虫是评估陆地生态系统质量的一个很好的模型。这些昆虫种类被用来检测金属污染和森林丰度。土壤和凋落物节肢动物用于检测土壤质量。蜜蜂死亡率和蜂蜜中重金属、杀菌剂、除草剂等残留是环境污染的良好指标。蜂群对食物和生境选择的特异性使其适合于生境质量评价。同样,蝴蝶的栖息地本身也标志着一个健康的生态系统,因为它们对最微小的变化都很敏感。不同的节肢动物是关键物种,这些关键的相互作用也揭示了生态系统质量的许多方面。类似地,亚博斯科果蝇(Drosophila subbobscura)等果蝇种群及其基因组成的变化表明全球气候变暖。以节肢动物为筛选平台,了解生态系统对干扰的恢复能力。这强调了节肢动物在环境影响和全球气候变化评估方面的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biomonitoring Ecosystem: Modelling Relationship with Arthropods
Arthropods community structure and composition provides multiscale information about an environment health. Their reproduction and growth model are effective to assess the impact on ecosystem in response to stress such as anthropogenic activities (climate change) or natural (drought). Terrestrial and aquatic insects are potential bio-indicators. Terrestrial insects are an excellent model to assess the quality of terrestrial ecosystem. These insect species are assayed to detect metallic pollution and forest abundance. Soil and litter arthropods are used for examining soil quality. Honey bee mortality rates and the residues such as heavy metals, fungicides and herbicides presence in honey are good indicator of environmental pollution. The specificity of food and habitat selection by wasp population make it suitable for assessing habitat quality. Similarly butterflies habitat itself signifies a healthy ecosystem because of their sensitivity to even slightest change. Different arthropods act as keystone species and these keystone interactions also reveal many facets of an ecosystem quality. Similarly fly population such as Drosophila subobscura and their shift in the genetic composition indicate the global climate warming. The arthropods are explored as screening platform to understand the ecosystem resilience to disturbances. These underscores arthropods potential for evaluation of environmental impact and global climate change.
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