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Effects of Forest Regeneration on Crickets: Evaluating Environmental Drivers in a 300-Year Chronosequence

机译:森林更新对Cri的影响:评估300年时序中的环境驱动因素

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We evaluated the relation of cricket species richness and composition with forest regeneration time, evaluating canopy and litter depth as environmental drivers. Effects of forest patch area, nearest distance to the 300-year patch, cricket abundance,sampling sufficiency, and nestedness were also evaluated. We collected 1174 individuals (five families, 19 species). Species richness increased asymptotically with regeneration time and linearly with canopy cover and litter depth. Canopy cover increasedlinearly, while litter depth increased asymptotically. Richness was not affected by patch area and nearest distance to the 300-year patch. Richness increased with cricket abundance, and this explanation could not be distinguished from regeneration time,evidencing collinearity of these two explanatory variables. Rarefaction curve slopes increased with regeneration time. Species composition differed among patches, with no nested pattern. We suggest that regeneration and consequent increases in canopy andlitter promote recovery of cricket biodiversity, abundance, and changes in species composition. We conclude that the recovery of cricket diversity involves an increase along the spatial scale of complementarity, together with a change in species composition.
机译:我们评估了species物种丰富度和组成与森林更新时间的关系,评估了冠层和凋落物深度作为环境驱动因素。还评估了森林斑块面积,距300年斑块最近的距离,的丰度,采样的充足性和巢度的影响。我们收集了1174个个体(5个科目,19种)。物种丰富度随着再生时间的增加而渐近增加,并随着冠层的覆盖和凋落物的深度线性增加。冠层覆盖率线性增加,而凋落物深度渐近增加。丰富度不受补丁区域和距300年补丁最近距离的影响。丰富度随着板球的丰度增加而增加,无法与再生时间区分开来,这避免了这两个解释变量的共线性。反射曲线斜率随再生时间的增加而增加。斑块之间的物种组成有所不同,没有嵌套模式。我们建议,再生和冠层凋落物的增加会促进recovery生物多样性的恢复,丰富度以及物种组成的变化。我们得出的结论是,of的多样性恢复涉及沿互补性的空间尺度的增加,以及物种组成的变化。

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