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Trophic structure and the role of predation in shaoins hot desert communities

机译:邵因斯热沙漠社区的营养结构和捕食作用

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Low precipitation and high temperatures in deserts limit primary productivity, and reduce rates of herbivory and microbial decomposition. As a result, the small amount of plant tissue produced in deserts dies unconsumed and turns to litter that is consumed by macrodetritivorous arthropods, which are preyed upon by small ectothermic arthropods and reptiles. This ectotherm-based food chain is energetically efficient and, despite the low productivity of the desert habitat, is able to support a fourth trophic level of endothermic predators, i.e. mammals and birds, that forage over large areas and locate their prey visually from a distance. This four-link chain results in trophic interactions that run from the large endothermic predators through the ectothermic ones to the macrodetritivores. Thus, macrodetritivores are released from predation and becomei food-limited. However, the full expression of these interactions occurs only in low productivity habitats with low plant cover. In productive habitats, plant cover blocks the vision of endothermic predators and provides refuge to small ectothermic ones. This results in ectothermic predators becoming abundant in habitats with high plant cover and controlling their prey, the macrodetritivores. Thus, the increase in productivity in deserts decreases the amount of energy that reaches top predators as it has a mainly structural effect: to increase plant cover and mediate predation interactions.
机译:沙漠中的低降水量和高温限制了初级生产力,并降低了草食和微生物分解的速度。结果,在沙漠中产生的少量植物组织死于未食用,变成凋落物,被大量有害的节肢动物节肢动物和爬行动物捕食,被大量有害的节肢动物消耗。这种以外热为基础的食物链在能量上是有效的,尽管沙漠栖息地的生产力低下,它仍能够支持吸热性掠食性动物(即哺乳动物和鸟类)的第四营养级,它们在大面积上觅食并从远处目视定位猎物。这条四链链导致营养相互作用,从大的吸热捕食者到吸热的掠食者,再到大的破坏者。因此,大型破坏者从捕食中释放出来,成为食物的限制。但是,这些相互作用的完整表达仅发生在植物覆盖率较低的低产生境中。在生产性生境中,植物覆盖物会阻止吸热捕食者的视线,并为小型吸热性捕食者提供庇护。这导致在具有高植物覆盖率的栖息地中吸热的捕食者变得丰富,并控制了它们的猎物,大型破坏者。因此,沙漠生产力的提高减少了到达顶级捕食者的能量,因为它具有主要的结构性作用:增加植物覆盖并介导捕食相互作用。

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