Examining the structure of plant-lemur interactions in the face of imperfect knowledge.

IF 5.2 1区 环境科学与生态学 Q1 BIODIVERSITY CONSERVATION Conservation Biology Pub Date : 2024-07-24 DOI:10.1111/cobi.14323
Jadelys Tonos, Bastien Papinot, Daniel S Park, Mihajatiana Raelison, Herilantonirina Ramaroson, Jessica Stubbs, Onja H Razafindratsima
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Abstract

Biotic interactions, such as plant-animal seed dispersal mutualisms, are essential for ecosystem function. Such interactions are threatened by the possible extinction of the animal partners. Using a data set that includes plant-lemur interactions across Madagascar, we studied the current state of knowledge of these interactions and their structure to determine which plant species are most at risk of losing dispersal services due to the loss of lemurs. We found substantial gaps in understanding of plant-lemur interactions; data were substantially skewed toward a few lemur species and locations. There was also a large gap in knowledge on the interactions of plants and small-bodied or nocturnal lemurs and lemurs outside a few highly studied locations. Of the recorded interactions, a significant portion occurred between lemurs and endemic plants, rather than native or introduced plants. We also found that lemur species tended to primarily consume closely related plant species. Such interaction patterns may indicate the threats to Malagasy endemic plants and highlight how lemur population loss or reductions could affect plant phylogenetic diversity. When examining the impacts of lemur extinction, losing critically endangered species left 164 plant species with no known lemur frugivore partners. Despite phylogenetic patterns in lemur diet, plants for which the only known lemur frugivore is critically endangered were not closely related. These results emphasize the need for further studies to complete our knowledge on these essential interactions and to inform conservation priorities.

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在知识不完善的情况下研究植物与小鼠的互动结构。
生物之间的相互作用,如植物与动物之间的种子传播互惠关系,对生态系统的功能至关重要。动物伙伴的灭绝可能会威胁到这种相互作用。利用马达加斯加各地植物与狐猴之间相互作用的数据集,我们研究了这些相互作用及其结构的知识现状,以确定哪些植物物种最有可能因狐猴的消失而失去传播服务。我们发现,对植物与狐猴之间相互作用的了解存在很大差距;数据严重偏向于少数狐猴物种和地点。对于植物与小体型狐猴或夜行狐猴以及少数研究较多的地点以外的狐猴之间的相互作用,我们的认识也存在很大差距。在已记录的相互作用中,很大一部分发生在狐猴与特有植物之间,而不是本地或引进植物之间。我们还发现,狐猴物种往往主要食用关系密切的植物物种。这种互动模式可能表明马达加斯加特有植物面临的威胁,并突出了狐猴种群的减少或消失对植物系统发育多样性的影响。在研究狐猴灭绝的影响时,失去极度濒危物种后,164 种植物物种没有了已知的狐猴食俭动物伙伴。尽管狐猴的食性存在系统发育模式,但唯一已知的狐猴食俭动物与极度濒危植物的关系并不密切。这些结果强调了进一步研究的必要性,以完善我们对这些重要相互作用的了解,并为保护优先事项提供信息。
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来源期刊
Conservation Biology
Conservation Biology 环境科学-环境科学
CiteScore
12.70
自引率
3.20%
发文量
175
审稿时长
2 months
期刊介绍: Conservation Biology welcomes submissions that address the science and practice of conserving Earth's biological diversity. We encourage submissions that emphasize issues germane to any of Earth''s ecosystems or geographic regions and that apply diverse approaches to analyses and problem solving. Nevertheless, manuscripts with relevance to conservation that transcend the particular ecosystem, species, or situation described will be prioritized for publication.
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