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Coral reef development drives molluscan diversity increase at local and regional scales in the late Neogene and Quaternary of the southwestern Caribbean

机译:珊瑚礁的发展驱使新近纪晚期和西南加勒比海第四纪的软体动物多样性在地方和区域范围内增加

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The late Neogene was a time of major environmental change in Tropical America. Global cooling and associated oceanographic reorganization and the onset and intensification of glaciation in the Northern Hemisphere during the past ten million years coincided with the uplift of the Central American isthmus and resulting changes in regional oceanographic conditions. Previous analyses of patterns of taxonomic turnover and the shifting abundances of major ecological guilds indicated that the regional shallow-water marine biota responded to these environmental changes through extinction and via a restructuring of local benthic food webs, but it is not clear whether this ecological response had an effect on the diversity of molluscan assemblages in the region. Changes in regional and local diversity are often used as proxies for similar ecological response to environmental change in large-scale paleontological studies, but a clear relationship between diversity and ecological function has rarely been demonstrated in marine systems dominated by mollusks. To explore this relationship, we have compiled a data set of the stratigraphic and environmental distribution of genera of mollusks in large new collections of fossil specimens from the late Neogene and Recent of the southwestern Caribbean. Analysis of a selection of ecological diversity measures indicates that within shelf depths, assemblages from deeper water (51-200 m) were more diverse than shallow-water (< 50 m) assemblages in the Pliocene. Lower diversity for shallow-water assemblages is caused by increased dominance of a few superabundant taxa in each assemblage. This implies that studies of diversity of shelf benthos need to control for relatively fine scaled environmental conditions if they are to avoid interpreting artifacts of uneven sampling as true change of diversity. For shallow-water assemblages only, there was significant increase in local and regional diversity of bivalve assemblages after the late Pliocene. No parallel increase in gastropods could be detected, but this likely is because sample size was inadequate for documenting the diversity of gastropod assemblages following a steep post-Pliocene decline of average gastropod abundance. Both the increasing bivalve diversity and the decrease in average abundance of gastropod taxa correspond to an interval of increasing carbonate deposition and reef building in the region, and are likely a result of increased fine-scale habitat heterogeneity controlled by the local distribution of carbonate buildups. Each of these results demonstrates that documenting the ecological response of tropical marine ecosystems to regional environmental change requires a large volume of fine-scaled samples with detailed paleoenvironmental control. Such data sets are rarely available from the fossil record.
机译:新近发生的晚期是热带美洲发生重大环境变化的时期。在过去的一千万年中,全球降温和相关的海洋学重组以及北半球的冰河活动开始和加剧,恰逢中美洲地峡隆起并导致区域海洋学状况发生变化。先前对分类学周转模式和主要生态行会转移数量的分析表明,该区域浅水海洋生物区系通过灭绝和当地底栖食物网的重组对这些环境变化作出了反应,但尚不清楚这种生态反应是否影响了该地区软体动物组合的多样性。在大规模古生物学研究中,经常将区域和地方多样性的变化作为对环境变化的类似生态响应的代理,但是在以软体动物为主的海洋系统中,多样性和生态功能之间的明确关系很少得到证实。为了探索这种关系,我们收集了新近晚期和西南加勒比海近来新发现的大型化石标本集合中的软体动物属的地层和环境分布的数据集。对一系列生态多样性措施的分析表明,在上新世,在陆架深度内,深水(51-200 m)的组合比浅水(<50 m)的组合更具多样性。浅水组合的多样性较低是由于每个组合中一些超丰盛的类群的支配性增加。这意味着,如果要避免将棚架底栖生物的多样性研究解释为真正的多样性变化,就需要控制规模相对较小的环境条件。仅对于浅水组合,上新世晚期以后,双壳类组合的局部和区域多样性显着增加。没有检测到腹足动物平行增加,但这可能是因为样本量不足以记录上新世后平均腹足动物数量急剧下降后腹足动物的多样性。双足类动物多样性的增加和腹足类群的平均丰度的降低都对应于该地区碳酸盐沉积和礁石建造增加的间隔,这很可能是由于碳酸盐堆积的局部分布所控制的精细尺度生境异质性增加的结果。所有这些结果都表明,要记录热带海洋生态系统对区域环境变化的生态响应,就需要大量精细规模的样本,并进行详细的古环境控制。这些数据集很少能从化石记录中获得。

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