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贵州新元古代到寒武纪早期特异埋藏后生生物群及其研究意义 被引量:20
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作者 赵元龙 杨洪 +6 位作者 李勇 彭进 杨兴莲 李锋军 伍孟银 程心 李丙霞 《古生物学报》 CAS CSCD 北大核心 2008年第4期405-418,共14页
贵州化石丰富,素有古生物王国之称,其中早期特异埋藏后生生物十分发育,由老至新有埃迪卡拉系的瓮安生物群、江口庙河生物群,寒武系第1统的小壳动物群、第2统下部的牛蹄塘生物群及中上部的杷榔动物群、第3统底部的凯里生物群。这些特异... 贵州化石丰富,素有古生物王国之称,其中早期特异埋藏后生生物十分发育,由老至新有埃迪卡拉系的瓮安生物群、江口庙河生物群,寒武系第1统的小壳动物群、第2统下部的牛蹄塘生物群及中上部的杷榔动物群、第3统底部的凯里生物群。这些特异埋藏生物群与云南寒武系的澄江动物群、关山生物群及陕南埃迪卡拉系高家山生物群构成了我国早期后生生物的演化链,反映了从动物起源(瓮安生物群)、可疑多门类动物出现(江口庙河生物群)、动物骨骼化(高家山生物群)、生物矿化质和量的变化或骨骼动物爆发性辐射(小壳动物群)及海绵动物辐射(牛蹄塘生物群)再到动物主要门类出现的寒武纪大爆发(澄江动物群)、海洋生物多样化及生态复杂化(凯里生物群)的演化过程。 展开更多
关键词 早期后生生物 演化序列 动物起源 海洋生物多样化 贵州
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Potential effects of climate change on a marine invasion: The importance of current context 被引量:1
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《Current Zoology》 SCIE CAS CSCD 2012年第1期1-8,共8页
Species invasions threaten marine biodiversity globally. There is a concern that climate change is exacerbating this problem. Here, we examined some of the potential effects of warming water temperatures on the invasi... Species invasions threaten marine biodiversity globally. There is a concern that climate change is exacerbating this problem. Here, we examined some of the potential effects of warming water temperatures on the invasion of Western Atlantic habitats by a marine predator, the Indo-Pacific lionfish (Pterois volitans and P. miles). We focussed on two temperature-dependent aspects of lionfish life-history and behaviour: pelagic larval duration, because of its link to dispersal potential, and prey consump- tion rate, because it is an important determinant of the impacts of lionfish on native prey. Using models derived from fundamental metabolic theory, we predict that the length of time spent by lionfish in the plankton in early life should decrease with warming temperatures, with a concomitant reduction in potential dispersal distance. Although the uncertainty around change in dispersal distances is large, predicted reductions are, on average, more than an order of magnitude smaller than the current rate of range expansion of lionfisli in the Caribbean. Nevertheless, because shorter pelagic larval duration has the potential to increase local re- tention of larvae, local lionfish management will become increasingly important under projected climate change. Increasing tem- perature is also expected to worsen the current imbalance between rates of prey consumption by lionfish and biomass production by their prey, leading to a heightened decline in native reef fish biomass. However, the magnitude of climate-induced decline is predicted to be minor compared to the effect of current rates of lionfish population increases (and hence overall prey consumption rates) on invaded reefs. Placing the predicted effects of climate change in the current context thus reveals that, at least for the lionfish invasion, the threat is clear and present, rather than future [Current Zoology 58 (1): 1-8, 2012]. 展开更多
关键词 Non-indigenous species Coral reefs Dispersal Ecological impacts of invasion
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