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Legacy of pre‐eruption vegetation affects ground‐dwelling arthropod communities after different types of volcanic disturbance

机译:在不同类型的火山扰动后爆发预喷发植被的遗产影响了地面居住节肢动物社区

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摘要

Volcanic eruptions are one of the largest natural disturbances and are followed by the establishment of novel plant and animal communities in terrestrial ecosystems. However, the role of pre‐eruption vegetation in the establishment of arthropod communities after volcanic disturbances is currently unknown. Here, we asked whether the legacy of pre‐eruption vegetation mediates the community structure of ground‐dwelling arthropods after volcanic disturbances. The 2015 eruption in Kuchinoerabu‐jima Island, southwest Japan, caused two types of disturbances [a pyroclastic flow and a lahar (i.e., mudflow)] in three types of forests (broad‐leaved, black pine, and cedar). We hypothesized that pre‐eruption vegetation would influence the community structure of ground‐dwelling arthropods after the disturbance, and we expected that these effects from vegetation would be more prevalent for the less severe disturbances. The total abundance of ground‐dwelling arthropods decreased more in the lahar than the pyroclastic flow, and arthropod species composition showed a greater change after the lahar. These findings suggest that the lahar disturbance was more severe than the pyroclastic disturbance. Contrary to expectations, the difference in the arthropod species composition among the vegetation types was greatest after the lahar. After the pyroclastic flow, leaf litter remained to some degree with all the vegetation types. After the lahar disturbance, however, although the litter in the cedar forests remained, the litter disappeared completely from broad‐leaved and black pine forests. The disappearance of litter from these two forest types after the lahar may be responsible for the greater difference in arthropod species composition among the vegetation types. This study shows that the legacy effects of pre‐eruption vegetation on terrestrial arthropod communities after volcanic disturbance were different depending on the type of disturbance. Focusing on the role of pre‐eruption biotic factors would contribute to a better understanding of the recovery processes of terrestrial ecosystems after large natural disturbances.
机译:火山爆发是最大的自然障碍之一,随后在陆地生态系统中建立新型植物和动物社区。然而,在火山干扰后,预发植被预喷发植被在火山紊乱后的作用是未知的。在这里,我们询问喷发前植被的遗产是否在火山紊乱后调解了地面居住节肢动物的社区结构。 2015年日本西南吉马岛的2015年爆发引发了两种紊乱[三种森林(阔叶,黑松和雪松)中的扰动[Pyroclastic流程和一个Lahar(即泥浆)]。我们假设预喷发植被会影响扰动后地下居住节肢动物的社区结构,我们预计植被的这些影响对于较小的严重紊乱将更为普遍。在骆驼杆菌的地下居住节肢动物的总丰度比Pyroclastic流量更多地降低,并且节肢动物物种组合物在拉哈尔后显示出更大的变化。这些研究结果表明,拉哈尔扰动比Pyroclastic扰动更严重。与期望相反,在拉哈尔后,植被类型中的节肢动物物种组成的差异是最大的。在吡焦流过后,叶子垫料留在一定程度上,所有植被类型都有一定程度。然而,在拉哈尔干扰之后,虽然雪松森林的垃圾仍然存在,但垃圾完全从阔叶和黑色的松树林中消失。在拉哈尔后,这两个森林类型的垃圾消失可能是植被类型中的节肢动物物种组成的较大差异。本研究表明,在火山扰动后陆地节肢动物植被预喷发植被的遗产效应取决于干扰类型。专注于喷发前的生物因素的作用将有助于更好地了解大型自然扰动后陆地生态系统的恢复过程。

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