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土壤物理性质影响栓皮栎林的食草动物行为。

Soil Physical Properties Affect Herbivory of in a Cork Oak Forest.

作者信息

Shao Xinliang, Zhou Xinjuan, Wang Lin, Tan Ruxue, Lu Can, Zhang Qin, Xu Kedong

机构信息

Key Laboratory of Plant Genetics and Molecular Breeding Zhoukou Normal University Zhoukou People's Republic of China.

College of Life Sciences and Agronomy Zhoukou Normal University Zhoukou People's Republic of China.

出版信息

Ecol Evol. 2024 Nov 18;14(11):e70613. doi: 10.1002/ece3.70613. eCollection 2024 Nov.

Abstract

Studies have reported the important role of soil properties in regulating insect herbivory under controlled conditions or at relatively large scales. However, whether fine-scale variation of soil properties affects insect herbivory under natural conditions in forests is still unclear. We selected a 300 ha forest area where the leaf damage was mainly caused by (Lepidoptera: Notodontidae) and set 200 10 × 10 m plots within the area. We examined insect herbivory (percent leaf area damaged) on and correlated it to soil properties and tree characteristics. Insect herbivory decreased with soil sand percentage and bulk density and increased with DBH and tree height. Effects of soil sand percentage and bulk density on insect herbivory were partly mediated by DBH and tree height. Our results indicated that soil physical properties may have significant effects on insect herbivory by directly influencing insect herbivores that need to complete their life cycle in the soil, or by indirectly affecting insect herbivores through influencing DBH and tree height which reflects the total leaf biomass available to the insect herbivore. This study may help to understand the complex relationship between soil and plant-insect interactions in forest ecosystems.

摘要

研究报告了土壤性质在控制条件下或相对大尺度上对调节昆虫食草作用的重要作用。然而,在森林自然条件下,土壤性质的小尺度变化是否会影响昆虫食草作用仍不清楚。我们选择了一个300公顷的森林区域,该区域的叶片损伤主要由(鳞翅目:舟蛾科)造成,并在该区域内设置了200个10×10米的样地。我们研究了(某种昆虫)的昆虫食草作用(叶片面积受损百分比),并将其与土壤性质和树木特征相关联。昆虫食草作用随土壤砂含量和容重的增加而降低,随胸径和树高的增加而增加。土壤砂含量和容重对昆虫食草作用的影响部分由胸径和树高介导。我们的结果表明,土壤物理性质可能通过直接影响需要在土壤中完成其生命周期的昆虫食草动物,或通过影响胸径和树高间接影响昆虫食草动物,从而对昆虫食草作用产生显著影响,而胸径和树高反映了昆虫食草动物可利用的总叶片生物量。这项研究可能有助于理解森林生态系统中土壤与植物 - 昆虫相互作用之间的复杂关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ac43/11573440/a30ea1c63379/ECE3-14-e70613-g001.jpg

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