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Animal foraging pit soil enhances the performance of a native grassTI Animal foraging pit soil enhances the performance of a native grass under stressful conditions

机译:动物觅食坑土增强了天然草的性能TI动物觅食坑土增强了天然草在压力条件下的性能

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Background and Aims In line with the Stress Gradient Hypothesis, studies of facilitation have tended to focus on plant-plant interactions (biotic nurses), while the relative role of abiotic nurses has been little studied. We assessed the role of biotic and abiotic nurses, and their interaction, on soil enhancement and the consequential performance of a native annual grass, Dactyloctenium radulans. Methods We used a growth chamber study with two levels of water application to compare the performance of D. radulans growing in soil from foraging pits of the Short-beaked echidna (Tachyglossus aculeatus; abiotic nurse) and non-pit soil from either under tree canopies (biotic nurse) or surrounding open areas. Results All measures of plant performance were more pronounced under the high than the low water treatment. The greatest differences between pit and surface Microsites occurred under the low water application, reinforcing our view that facilitatory effects are greater in resource-limited environments. Despite tree canopy soil having greater N, there was no significant effect on plant performance, nor any significant interaction with Microsite. Conclusions Our study provides strong evidence that foraging pits enhance soil properties and this soil, in turn, facilitates plant growth; and supports previous work documenting the positive effect of nurse-protege interactions under greater levels of abiotic stress.
机译:背景和目的与压力梯度假说相一致,促进的研究倾向于集中于植物与植物之间的相互作用(生物护士),而对非生物护士的相对作用则鲜有研究。我们评估了生物和非生物护士的作用,以及它们在土壤改良和土生一年生草(Dactyloctenium radulans)的结果上的相互作用。方法我们使用生长水箱研究,对两种水平的水进行了比较,比较了短喙针(Tachyglossus aculeatus;非生物护士)的觅食坑和非冠层树冠下的无坑土壤在土壤中生长的D. radulans的性能。 (生物护士)或周围的空地。结果在高水处理下,所有植物性能指标均高于低水处理。矿坑和地面微型站点之间的最大差异发生在低水量的情况下,这进一步增强了我们的观点,即在资源有限的环境中,促进作用更大。尽管树冠层土壤的氮含量较高,但对植物性能没有显着影响,与Microsite的相互作用也没有任何显着影响。结论我们的研究提供了有力的证据,表明觅食坑增强了土壤特性,而这种土壤反过来又促进了植物的生长。并支持以前的工作,这些工作记录了在更大程度的非生物压力下护士与蛋白质相互作用的积极作用。

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