High-altitude ecosystems are found in mountain chains and plateaus worldwide. These areas tend to be underrepresented in insect biodiversity assessments because of the challenges related to systematic survey at these elevations, such as extreme climatic and geographic conditions. Nonetheless, high-altitude ecosystems are of paramount importance because they have been seen to be species pumps for other geographic areas, such as adjacent locations, functioning as buffers for population declines. Moreover, these ecosystems and their biodiversity have been proposed to be fast-responding indicators of the impacts caused by global climate change. Bees have been highlighted among the insect groups that have been affected by these problems. This work used bees as a proxy to demonstrate and reinforce the importance of systematic surveys of high-altitude ecosystems. Here, field collections were undertaken and an updated review was conducted for the native bee biodiversity of the high-altitude ecosystem found at the Andes system of central Chile, including the phenological trends of these insects during the flowering season. Of the 58 species that have been described for this location, we were able to confirm the occurrence of 46 of these species as a result of our sampling. In addition, thanks to these recent collections, a new species of Xeromelissa Cockerell is described in the present work. These findings highlight the need for further high-altitude insect surveys of this biome, which include both temporal and spatial complexity in their design, to allow for accurate assessment of bee species diversity and compositional changes in these mountain regions.

译文

高海拔生态系统遍布世界各地的山脉和高原。由于与这些海拔的系统调查有关的挑战,例如极端气候和地理条件,这些地区在昆虫生物多样性评估中的代表性往往不足。尽管如此,高海拔生态系统至关重要,因为它们被视为其他地理区域 (例如相邻位置) 的物种泵,充当人口减少的缓冲。此外,这些生态系统及其生物多样性被提议作为全球气候变化造成的影响的快速反应指标。在受这些问题影响的昆虫群体中,蜜蜂得到了强调。这项工作以蜜蜂为代表,以证明和加强对高海拔生态系统进行系统调查的重要性。在这里,对智利中部安第斯山脉系统发现的高海拔生态系统的本地蜜蜂生物多样性进行了实地收集,并进行了最新的审查,包括这些昆虫在开花季节的物候趋势。在此位置描述的58种物种中,由于我们的采样,我们能够确认其中46种物种的出现。此外,由于这些最近的收藏,本工作还描述了一种新的xeromerissa Cockerell物种。这些发现突显了对该生物群落进行进一步的高海拔昆虫调查的必要性,其中包括其设计的时空复杂性,以便准确评估这些山区的蜜蜂物种多样性和成分变化。

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