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Multiscale spatial patterns of species diversity and biomass together with their correlations along geographical gradients in subalpine meadows

机译:亚高山草甸物种多样性和生物量的多尺度空间格局及其沿地理梯度的相关性

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摘要

Researchers frequently discuss spatial distribution patterns of species diversity and biomass together with their correlations along geographical gradients. Typical subalpine meadows occur widely on the east of the Loess Plateau, China; here, we selected nine mountains belonging to four mountain systems from north to south on the east of the plateau. We analyzed five latitudinal and longitudinal gradients together with six elevational gradients to study the spatial distribution patterns of species diversity (including α, β, and γ diversity) and biomass plus with their relationships at various scales. Results showed that (1) for diversity, α-Diversity manifested unimodal variation patterns in horizontal spaces, peaking at high latitude and low longitude. However, α-diversity was not sensitive to elevation in vertical spaces and tended to decrease with increasing elevation. With increased latitude, longitude, and elevation, β-Diversity diminished; meanwhile, the rate of species turnover decreased and the similarity of community composition enlarged. γ-Diversity demonstrated quadratic function changes that were initially incremental and then decreased with increasing longitude, elevation, and latitude from 37.5° to 40°. In general, β-diversity had positive correlation with γ-diversity and negative correlation with α-diversity, which conformed to the function of β = γ/α. (2) For biomass, changes of aboveground biomass (AB) were more obvious along latitudinal gradients, whereas variations of belowground biomass (BB) had smaller differences along longitudinal and latitudinal gradients. More biomass was allocated to BB toward the north and east, whereas root-to-shoot ratio (R/S) was more evident at greater latitude than greater longitude. With increased elevation, more biomass was also allocated to BB, and the relationship of biomass to elevation was closer in AB. In short, the relation of biomass allocation tended to belowground plant parts with different geographical scales. (3) Species diversity had the strongest positive influence on AB. The Patrick and Shannon indices had correlations of power functions with AB and R/S, respectively, indicating that an allometric model could be used to model relationships between species diversity and biomass. In conclusion, the unique geomorphological structures with a series of basins between mountain systems on the east of the Loess Plateau, meant that subalpine meadows were mostly distributed along latitudinal directions, so the spatial distribution of species diversity and biomass was more evident along latitudinal gradients, and thus the response of aboveground biomass was more sensitive to variations of spatial gradients and species diversity.
机译:研究人员经常讨论物种多样性和生物量的空间分布模式,以及它们沿地理梯度的相关性。典型的亚高山草甸广泛分布于中国黄土高原东部。在这里,我们选择了高原东部从北到南的九个山脉,分别属于四个山脉。我们分析了五个纬度和纵向梯度以及六个海拔梯度,以研究物种多样性(包括α,β和γ多样性)和生物量的空间分布模式,以及它们在不同尺度下的关系。结果表明:(1)对于多样性,α-多样性在水平空间表现出单峰变化模式,在高纬度和低经度时达到峰值。但是,α多样性对垂直空间的高度不敏感,并且随着高度的增加而趋于减小。随着纬度,经度和海拔的增加,β多样性减少;同时,物种周转率下降,群落组成相似度增大。 γ多样性表明二次函数变化​​最初是递增的,然后随着经度,海拔和纬度从37.5°升高到40°而减小。一般而言,β多样性与γ多样性呈正相关,与α多样性呈负相关,符合β=γ/α的函数。 (2)对于生物量,地上生物量(AB)的变化沿纬度梯度更明显,而地下生物量(BB)的变化沿纵向和纬度梯度的变化较小。 BB向北和向东分配了更多的生物量,而纬向大于经度时,根茎比(R / S)更明显。随着海拔的升高,BB中也分配了更多的生物量,AB中生物量与海拔的关系更加紧密。简而言之,生物量分配的关系倾向于具有不同地理尺度的地下植物部分。 (3)物种多样性对AB的影响最大。帕特里克(Patrick)和香农(Shannon)指数分别具有幂函数与AB和R / S的相关性,这表明可以使用异速计模型对物种多样性与生物量之间的关系进行建模。总之,在黄土高原东部山区系统之间具有一系列盆地的独特地貌结构,这意味着亚高山草甸大多沿纬度方向分布,因此物种多样性和生物量的空间分布沿纬度梯度更为明显,因此,地上生物量的响应对空间梯度和物种多样性的变化更为敏感。

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