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首页> 外文期刊>Hydrobiologia >Do biogeographic parameters matter? Plant species richness and distribution of macrophytes in relation to area and isolation of ponds in NW Polish agricultural landscape
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Do biogeographic parameters matter? Plant species richness and distribution of macrophytes in relation to area and isolation of ponds in NW Polish agricultural landscape

机译:生物地理参数重要吗?波兰西北农业景观中植物种类的丰富度和大型植物的分布与池塘面积和池塘隔离的关系

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摘要

Effects of pond size and isolation on total vascular plant species richness and number of obligate wetland species were compared. Subsequently, the potential for the presence of spatial patterns in wetland species distribution among ponds in an agricultural landscape was explored. Relationships between species richness and two main biogeographic parameters were analysed using simple and multiple linearised regression models. Spatial patterns were looked for by means of analyses carried out with the R CRAN software (join-count statistics). Simple regression analyses performed on the regional scale (n = 50) revealed the significance of the effect of pond size only (r = 0.46 for total plant species richness and r = 0.28 for wetland species richness vs. pond area). Further analyses conducted on the local scale identified the best multiple regression models in the largest pond cluster (n = 20); the models showed statistical significance of relationships between the species richness and both independent variables (r = 0.80 for total plant species richness and r = 0.70 for wetland species richness vs. pond area and isolation, including mean distance to the nearest ten ponds). Spatial analyses were performed for 26 obligate wetland species selected from 149 species recorded in all the 50 ponds. Exploratory spatial data analysis revealed the presence of significant positive spatial autocorrelation in the distribution of 8 species. In such cases, it is possible to reject the random distribution hypothesis, which justifies exploration of spatial regimes. In practice, correct spatial model specifications may have implications for predicting species occurrences under changing environmental conditions, e.g. changes in the number of ponds.
机译:比较了池塘大小和隔离对维管植物总物种丰富度和专性湿地物种数量的影响。随后,探讨了在农业景观池塘中湿地物种分布中存在空间格局的可能性。使用简单和多个线性回归模型分析了物种丰富度与两个主要生物地理参数之间的关系。通过使用R CRAN软件(联合计数统计)进行分析来寻找空间格局。在区域规模(n = 50)上进行的简单回归分析显示,只有池塘大小的影响才有意义(对于总植物物种丰富度r = 0.46,对于湿地物种丰富度vs池塘面积r = 0.28)。在当地范围内进行的进一步分析确定了最大池塘群(n = 20)中最好的多元回归模型;模型显示了物种丰富度与两个自变量之间关系的统计学意义(总植物物种丰富度r = 0.80,湿地物种丰富度r = 0.70对池塘面积和隔离度,包括到最近的十个池塘的平均距离)。对从全部50个池塘中记录的149种物种中选择的26种专性湿地物种进行了空间分析。探索性空间数据分析显示,在8个物种的分布中存在显着的正空间自相关。在这种情况下,可以拒绝随机分布假设,这证明了探索空间体制的合理性。在实践中,正确的空间模型规范可能会对在不断变化的环境条件(例如环境变化)下预测物种发生产生影响。池塘数量的变化。

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