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Role of way of life, latitude, elevation and climate on the richness and distribution of orchid species

机译:生命方式,纬度,海拔和气候对兰花种类的丰富和分布的作用

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We are experiencing climate warming that is likely to affect all regions worldwide, although in a different manner, when its consequences (e.g. increase of temperature, lower seasonality, lower environmental stochasticity) are considered. Thus, our prediction of how global change will affect distribution and survival of species can be estimated by using our knowledge, how species richness and distribution is related with latitude and elevation. We used 193 terrestrial orchid species and subspecies as an example and we classified them according to their root system. This trait represents the evolution of strategies for underground storage of resources and resource acquisition as well as a characteristics that can be described as a life history trait. Classification of orchid life history traits that focus on belowground strategies has never been examined in a macroecological study. We then explored the associations between species richness, mean niche breadth and mean distribution on one hand and selected predictors on the other hand, using regression techniques for all orchids, and then for their subsets with different root systems. The predictive power, as well as the significance of the predictors, was also tested using polynomial second order generalized linear models. Species richness for the three belowground strategies was significantly affected by the predictors, whereas their mean niche breadth and mean distribution were largely dependent on their evolutionary history. The correlations of mean niche breadth and mean distribution with maximum elevation, latitude and longitude were significant for all orchid taxa and their subsets. All the variables together accounted for almost 50% or more of the variance in each of the subsets. The maximum elevation was the most significant factor for rhizomatous and intermediate orchids, whereas minimum temperature in the coldest month was highly significant for the tuberous orchids. Spatial distribution of Greek orchids is associated with a combination of elevation, latitude and climate. The distributions of rhizomatous and intermediate orchids are mainly associated with the orographic configuration of Greece, whereas the tuberous orchids are widely distributed in the southern, central and north-western areas of Greece, where most of them are limited by the harsh winter climate.
机译:我们正在经历气候变暖很可能影响到全球所有地区,虽然以不同的方式,当它的后果(如温度升高,降低季节性,降低对环境的随机性)被认为。因此,我们对如何改变全球将影响物种的分布和生存的预测可以利用我们的知识,物种如何丰富度和分布与纬度和海拔高度相关的估计。我们使用193个陆地兰花种和亚种作为一个例子,我们根据自己的根系分类它们。这个特点代表的战略资源和资源获取的地下储存,以及可以描述为一个生活史性状的特征演化。兰花生活史特征的分类,专注于地下的战略从未在macroecological研究调查。然后,我们探讨了物种丰富度,平均生态位宽度和一方面平均分布和选择的预测之间的关联,另一方面,利用回归技术对所有的兰花,然后他们用不同的根系统的子集。的预测能力,以及作为预测值的意义,是使用多项式二阶广义线性模型也进行测试。物种丰富度三个地下策略是显著受预测,而他们的平均生态位宽度和平均分配在很大程度上依赖于它们的进化史。平均位宽度和最大高度,经度和纬度平均分布的相关性是所有兰花类群及其子集显著。所有的变量合计占更多的每个子集的方差的50%以上。最高海拔是为根茎和中间兰花最显著的因素,而在最冷月最低温度是为结节兰花高度显著。希腊兰花的空间分布与海拔,纬度和气候的组合有关。根茎和中间兰花的分布主要与希腊的地形配置相关联,而结节兰花广泛分布在希腊,其中大部分都是由严酷的冬季气候限制的南部,中部和西北地区。

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