古生物组的动态塑造了庞大的冈多瓦纳植物辐射
Alexander Skeels1, Hervé Sauquet2,3, Austin Mast4
1Division of Ecology and Evolution, Research School of Biology, Australian National University, Canberra, ACT 0200, Australia.
概括
历史气候和地质,而不是当前的条件,驱动植物的多样性. 古代生物群的扩张推动了蛋白质家族的快速多样化,解释了当前的物种丰富模式.
科学领域:
- 生态生态学 生态生态学
- 进化生物学 进化生物学
- 古气候学 古气候学
背景情况:
- 适应性辐射理论表明,在新环境中,多样性的快速积累会随着竞争的增加而放缓.
- 了解历史环境变化对于解释当前的生物多样性模式至关重要,但这具有挑战性.
研究的目的:
- 研究古生物组动态如何影响1亿2千万年来蛋白质科 (Grevilleoideae) 的多样化.
- 确定历史生态机会与当前环境因素在塑造植物多样性的相对重要性.
主要方法:
- 在一亿二千万年的时间里建模了古生物组的动态.
- 产生了大约700个物种 (74%的类) 的核遗传学数据集.
- 分析了与生物群扩张和收缩相关的多样化率.
主要成果:
- 在Grevilleoideae中,多样化的速度与新兴和不断扩大的生物群的生态机会密切相关.
- 快速多样化发生在新兴和不断扩大的生物群中.
- 长期建立的生物群体表现出更高的物种丰富性,但更低的多样化率,接近平衡.
结论:
- 过去的气候和地质历史显著而异质地影响着当前的植物多样性.
- 生物多样性模式是历史多样化的遗产,通常与当今生物群特征脱.
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