首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Conserving evolutionary history does not result in greater diversity over geological time scales
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Conserving evolutionary history does not result in greater diversity over geological time scales

机译:保存进化史不会导致地质时间尺度上更大的多样性

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摘要

Alternative prioritization strategies have been proposed to safeguard biodiversity over macroevolutionary time scales. The first prioritizes the most distantly related species—maximizing phylogenetic diversity (PD)—in the hopes of capturing at least some lineages that will successfully diversify into the future. The second prioritizes lineages that are currently speciating, in the hopes that successful lineages will continue to generate species into the future. These contrasting schemes also map onto contrasting predictions about the role of slow diversifiers in the production of biodiversity over palaeontological time scales. We consider the performance of the two schemes across 10 dated species-level palaeo-phylogenetic trees ranging from Foraminifera to dinosaurs. We find that prioritizing PD for conservation generally led to fewer subsequent lineages, while prioritizing diversifiers led to modestly more subsequent diversity, compared with random sets of lineages. Importantly for conservation, the tree shape when decisions are made cannot predict which scheme will be most successful. These patterns are inconsistent with the notion that long-lived lineages are the source of new species. While there may be sound reasons for prioritizing PD for conservation, long-term species production might not be one of them.
机译:已经提出了替代性的优先排序策略,以在宏观进化的时间尺度上保护生物多样性。第一个优先考虑最亲近的物种,即最大程度地发展系统发育多样性(PD),以期捕获至少一些能够成功实现未来多样化的世系。第二种方法将当前指定的血统优先化,希望成功的血统将在未来继续产生物种。这些对比方案还映射了关于古生物学时间尺度上慢速分散剂在生物多样性生产中的作用的对比预测。我们考虑了这两种方案在从有孔虫到恐龙的10种过时物种级别的古系统树上的性能。我们发现,与随机的世系相比,优先考虑保护PD通常会导致更少的后继世系,而优先考虑多样化因素会导致适度地更多的后继多样性。对于保护而言,重要的是,决策时的树形无法预测哪种方案最成功。这些模式与长期血统是新物种的起源的观点不一致。尽管有充分的理由优先考虑保护PD,但长期物种生产可能不是其中之一。

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