内陆高盐湖和卤虾蒿作为种群水平生物多样性分析的简单模型。

Gonzalo M Gajardo, Patrick Sorgeloos, John A Beardmore
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引用次数: 17

摘要

生物多样性可以在不同的等级水平上衡量,从物种内部的遗传多样性到生态系统的多样性,尽管决策者倾向于使用物种丰富度。2010年《生物多样性公约》签署国达成的减少生物多样性丧失的目标需要简单可靠的协议来评估特定生态系统中任何层面的生物多样性。利益相关者,特别是决策者,需要了解生态系统组成部分如何相互作用以产生长期的社会和经济效益,而科学家则需要通过测试和模拟理想的简单(低多样性)生态系统以及监测关键物种来满足这一需求。这项工作强调内陆、孤立的盐湖和卤虾蒿(Artemia)提供了独特的机会,作为了解和监测生物多样性的简单模型,并评估其与生态系统稳定性的预测正相关。除了已经很好地识别了物种和菌株,甚至克隆,允许测试生殖效应(有性与无性),Artemia还受益于在实验室规模和室外池塘系统中建立实验测试的可能性,因此可以获得来自世界各地的足够数量的样本的综合囊肿库。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Inland hypersaline lakes and the brine shrimp Artemia as simple models for biodiversity analysis at the population level.

Biodiversity can be measured at different hierarchical levels, from genetic diversity within species to diversity of ecosystems, though policy-makers tend to use species richness. The 2010 goal of reducing biodiversity loss, agreed by the subscribers to the Convention on Biological Diversity, requires simple and reliable protocols to evaluate biodiversity at any level in a given ecosystem. Stakeholders, particularly policy makers, need to understand how ecosystem components interact to produce social and economic benefits on the long run, whilst scientists are expected to fulfil this demand by testing and modelling ideally simple (low diversity) ecosystems, and by monitoring key species. This work emphasizes the unique opportunity offered by inland, isolated salt lakes and the brine shrimp Artemia, an example of biodiversity contained at the intra-specific level, as simple models to understand and monitor biodiversity, as well as to assess its predicted positive association with ecosystem stability. In addition to having well identified species and strains and even clones, that allow to test reproductive effects (sexual versus asexual), Artemia benefits from the possibility to set up experimental testing at both laboratory scale and outdoor pond systems, for which a comprehensive cyst bank with sufficient amount of samples from all over the world is available.

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