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Gastropods slow down succession and maintain diversity in cryptogam communities

机译:腹足动物减慢了继承速度并保持了隐球菌群落的多样性

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Herbivore effects on diversity and succession were often studied in plants, but not in cryptogams. Besides direct herbivore effects on cryptogams, we expected indirect effects by changes in competitive interactions among cryptogams. Therefore, we conducted a long-term gastropod exclusion experiment testing for grazing effects on epiphytic cryptogam communities. We estimated the grazing damage, cover and diversity of cryptogams before gastropods were excluded and three and six years thereafter. Gastropod herbivory pronouncedly affected cryptogams, except for bryophytes, strongly depending on host tree species and duration of gastropod exclusion. On control trees, gastropod grazing regulated the growth of algae and non-lichenized fungi and thereby maintained a high lichen diversity and cover. On European beech, the release from gastropod grazing temporarily increased lichen vitality, cover, and species richness, but later caused rapid succession where algae and fungi overgrew lichens and thereby reduced their cover and diversity compared with the control. On Norway spruce, without gastropods lichen richness decreased and lichen cover increased compared with the control. Our findings highlight the importance of long-term exclusion experiments to disentangle short-term, direct effects from longer-term, indirect effects via changes in competitive relationships between taxa. We further demonstrated that gastropod feeding maintains the diversity of cryptogam communities.
机译:食草动物对多样性和演替的影响通常在植物中进行了研究,但在隐密动物中却没有。除了对草食类动物的直接食草动物影响之外,我们还期望通过草食类动物之间竞争性相互作用的变化产生间接影响。因此,我们进行了长期腹足类动物排斥实验测试,以研究放牧对附生隐球菌群落的影响。我们估计了在排除腹足动物之前以及之后三年和六年的放牧危害,隐球菌的覆盖和多样性。除苔藓植物外,腹足类食草动物明显影响隐孢子虫,这在很大程度上取决于寄主树的种类和腹足类动物的排斥时间。在对照树上,腹足类动物放牧调节藻类和非地衣真菌的生长,从而保持高度的地衣多样性和覆盖度。在欧洲山毛榉上,从腹足类动物放牧中释放出来暂时增加了地衣的活力,覆盖度和物种丰富度,但后来引起藻类和真菌使地衣长满的快速演替,从而与对照相比减少了其覆盖度和多样性。与对照相比,在挪威云杉上,没​​有腹足类动物的地衣丰富度降低,地衣覆盖率增加。我们的发现凸显了长期排除实验的重要性,即通过分类单元之间竞争关系的变化来区分短期,直接的影响与长期,间接的影响是很重要的。我们进一步证明腹足动物饲养维持了隐球菌群落的多样性。

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