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Diversity and function of leaf litter ants in Colombian coffee agroecosystems.

机译:哥伦比亚咖啡农业生态系统中凋落物蚂蚁的多样性和功能。

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The loss of biodiversity and associated functions in managed ecosystems is one of the most critical issues for conservation because it affects the long-term sustainability of the planet. This dissertation investigates causes and effects of agricultural intensification on the structure and function of ant assemblages in coffee plantations and forest patches of Andean Colombia. Coffee intensification significantly reduced vegetation complexity and increased management index values, as measured from 14 habitat variables. Using a leaf-litter sampling protocol I found that less intensified coffee farms harboured significantly higher ant species richness. Ant communities in polygeneric shaded coffee were significantly more similar to forest patches than any other management type. Additionally, significant positive associations among ant communities and the number of species involved in ant mosaics dropped sharply with intensification. I carried out nesting resource augmentation experiments to examine how the quantity and quality of nesting resources affect ant biodiversity. Ants responded quickly to the addition of nesting resources across the intensification gradient. In the quality resources experiment, the diversity of ants nesting in multi-species groups of twigs was significantly higher than in monoespecific groups across all scales. These results suggest that bottom-up mechanisms are important for ant species loss throughout the technification process although other biotic and abiotic factors such as microhabitat and competition might also play a role. Finally, ant predation in shaded vs. unshaded coffee plantations was studied in the field and laboratory. Exclosure experiments demonstrated that ant communities prey on the coffee berry borer (Hypothenemus hampei) in both shaded and unshaded coffee plantations, but this function increased with shade in the wet season, when most infestation takes place. Ants were more effective predators in laboratory conditions than in the field. Predation in the field fluctuated between 2%–27% of borer adults. My studies strongly support the conclusion that the structure and function of ant biodiversity are negatively affected by intensification of coffee agriculture. I recommend that immediate action be taken to stop the destruction of traditional coffee practices and prevent further biodiversity loss in hotspots of tropical biodiversity.
机译:受管理的生态系统中生物多样性的丧失和相关功能是保护的最关键问题之一,因为它影响着地球的长期可持续性。本文研究了农业集约化对安第斯哥伦比亚咖啡种植园和森林斑块中蚂蚁组合的结构和功能的成因和影响。根据14个生境变量测算,咖啡的集约化显着降低了植被的复杂性并增加了管理指数值。通过使用叶子凋落物采样​​协议,我发现集约化程度较低的咖啡农场的蚂蚁物种丰富度明显更高。与任何其他管理类型相比,多基因阴影咖啡中的蚂蚁群落与森林斑块的相似性明显更高。此外,随着集约化的加剧,蚂蚁群落之间的显着正相关以及与蚂蚁镶嵌相关的物种数量急剧下降。我进行了嵌套资源增加实验,以研究嵌套资源的数量和质量如何影响蚂蚁生物多样性。蚂蚁对集约化梯度上嵌套资源的添加做出了快速反应。在优质资源实验中,在所有尺度上,多物种小树枝组中蚂蚁筑巢的多样性均显着高于单物种。这些结果表明,自下而上的机制对于整个技术过程中的蚂蚁物种流失很重要,尽管其他生物和非生物因素(如微生境和竞争)也可能起作用。最后,在野外和实验室研究了有阴影和无阴影咖啡种植园中的蚂蚁捕食。亲密实验表明,在有阴影和无阴影的咖啡种植园中,蚂蚁群落都会捕食咖啡浆果蛀虫( Hypothenemus hampei ),但是在雨季,大多数侵染发生时,这种功能会随着阴影的增加而增加。蚂蚁在实验室条件下比在现场更有效。在野外,捕食者的捕食率在2%–27%之间波动。我的研究强有力地支持了以下观点:蚂蚁生物多样性的结构和功能受到咖啡农业集约化的不利影响。我建议立即采取行动,阻止破坏传统的咖啡做法,并防止热带生物多样性热点地区生物多样性进一步丧失。

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