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Changes in traits of shrub canopies across an aridity gradient in northern Patagonia, Argentina.

机译:阿根廷北部巴塔哥尼亚北部干旱梯度上灌木冠层性状的变化。

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Low and highly variable precipitation pulses exert a strong selective pressure on plant traits and this might provide axes of ecological differentiation among plant species in arid ecosystems. We asked whether aridity contributes to maintain high diversity of species and morphotypes in shrub canopies. We selected eleven study sites evenly distributed across a 400-km transect in northern Patagonia, Argentina. Precipitation is low and highly variable within and between years but almost homogeneous across the transect (125-150 mm). Mean annual temperature varied, however, ranging from 8 degrees C (west) to 13.5 degrees C (east) creating a west-east gradient of aridity (aridity index from 3.7 to 7.3, respectively). Sheep grazing commenced in the early 1900s at a similar intensity across the transect. We recorded the richness and cover of shrubs by species and by morphotypes (drought deciduous tall shrubs, evergreen tall shrubs, medium shrubs, and dwarf shrubs), and further calculated the species and morphotype Shannon diversity index at each site. We assessed the presence of spiny leaves, leaf pubescence, thorny stems, and photosynthetic stems in shrub species of all morphotypes and collected green leaves of the dominant shrub species (more than 80% of the total shrub cover) to assess the leaf area, leaf mass per unit area, N-, lignin- and soluble phenolic-concentrations per species at each site. Richness and diversity of shrub species and morphotypes were positively associated with aridity. The richness and diversity of shrub species with pubescent leaves and thorny stems, and nitrogen concentration in green leaves of dominant shrubs increased with increasing aridity. We conclude that our findings on increased diversification in life history traits, species and morhotypes in shrub canopies with increasing aridity support the hypothesis that variability in aridity provides axes of ecological differentiation among shrub species facilitating their coexistence.
机译:低且高度变化的降水脉冲对植物性状施加强大的选择压力,这可能为干旱生态系统中的植物物种提供生态分化轴。我们询问干旱是否有助于维持灌木冠层物种和形态的高度多样性。我们选择了11个研究地点,这些研究地点平均分布在阿根廷巴塔哥尼亚北部400公里的样带中。几年内和几年之间,降水量低,变化很大,但整个样带(125-150 mm)几乎均匀。但是,年平均温度在8摄氏度(西)至13.5摄氏度(东)之间变化,造成了东西向的干旱梯度(干旱指数分别为3.7至7.3)。绵羊放牧始于1900年代初,横断面的强度相似。我们按物种和形态类型(干旱落叶高灌木,常绿高灌木,中型灌木和矮灌木)记录了灌木的丰富度和覆盖率,并进一步计算了每个地点的物种和形态型香农多样性指数。我们评估了所有形态类型的灌木物种中棘叶,叶片短柔毛,棘刺茎和光合茎的存在,并收集了主要灌木物种的绿叶(占总灌木覆盖率的80%以上)以评估叶面积,叶片每个位置上每个物种的单位面积质量,N-,木质素和可溶性酚浓度。灌木种类和形态类型的丰富性和多样性与干旱呈正相关。随着干旱程度的增加,具短柔毛叶和多刺茎的灌木物种的丰富性和多样性以及优势灌木绿叶中的氮含量增加。我们得出的结论是,关于干旱增加的灌木冠层的生活史特征,物种和形态上的多样性增加的发现,支持了干旱变异性为灌木物种之间的生态分化轴提供便利的共生这一假说。

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