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Large trees are surrounded by more heterospecific neighboring trees in Korean pine broad-leaved natural forests

机译:在红松阔叶天然林中,大树被更多种异质性的相邻树木所包围

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Negative conspecific density dependence is one of the principal mechanisms affecting plant performance and community spatial patterns. Although many studies identified the prevalence of density dependent effects in various vegetation types by analyzing conspecific spatial dispersal patterns (spatial patterning) of forest trees, interactions between individuals and heterospecific neighboring trees caused by density-dependent effects are often neglected. The effects of negative density dependence lead us to expect that neighbourhood species segregation would increase with increasing tree size and that larger trees would be surrounded by more heterospecific neighbours than would smaller trees. We studied four mapped 1-Ha plots on Changbaishan Mountain in North-eastern China and used marked point pattern analysis to explore whether trees of different sizes exhibited differences in neighbourhood species segregation; we also determined whether larger trees were more likely to have heterospecific neighbours than smaller trees were. Our results show that bigger trees generally have higher species mingling levels. Neighborhood species segregation ranged from lower than expected levels to random or nearly random patterns at small scales as tree size classes increased under heterogeneous Poisson null model tests. This study provides some evidence in support of negative density dependent effects in temperate forests.
机译:负的同种密度依赖性是影响植物生长和群落空间格局的主要机制之一。尽管许多研究通过分析林木的特定空间散布模式(空间格局)确定了各种植被类型中依赖密度的效应的普遍性,但人们常常忽略了密度依赖效应引起的个体与异种邻近树木之间的相互作用。负密度依赖性的影响使我们预期,随着树尺寸的增加,邻域物种隔离将增加,并且与较小的树相比,较大的树将被更多的异种邻居包围。我们研究了中国东北长白山上的四幅1-Ha样地,并使用标记点模式分析来探索不同大小的树木是否在邻域物种隔离方面表现出差异。我们还确定了较大的树木是否比较小的树木更有可能具有异种邻居。我们的结果表明,较大的树木通常具有较高的物种混合水平。在异质泊松无效模型测试中,随着树大小类别的增加,邻域物种隔离的范围从低于预期的水平到小规模的随机或近乎随机的模式。这项研究提供了支持温带森林负密度依赖效应的一些证据。

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