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新的草本植物系统发育解决了深层进化关系,并发现了 C4 的起源。

New grass phylogeny resolves deep evolutionary relationships and discovers C4 origins.

出版信息

New Phytol. 2012 Jan;193(2):304-12. doi: 10.1111/j.1469-8137.2011.03972.x. Epub 2011 Nov 24.

Abstract

• Grasses rank among the world's most ecologically and economically important plants. Repeated evolution of the C(4) syndrome has made photosynthesis highly efficient in many grasses, inspiring intensive efforts to engineer the pathway into C(3) crops. However, comparative biology has been of limited use to this endeavor because of uncertainty in the number and phylogenetic placement of C(4) origins. • We built the most comprehensive and robust molecular phylogeny for grasses to date, expanding sampling efforts of a previous working group from 62 to 531 taxa, emphasizing the C(4)-rich PACMAD (Panicoideae, Arundinoideae, Chloridoideae, Micrairoideae, Aristidoideae and Danthonioideae) clade. Our final matrix comprises c. 5700 bp and is > 93% complete. • For the first time, we present strong support for relationships among all the major grass lineages. Several new C(4) lineages are identified, and previously inferred origins confirmed. C(3)/C(4) evolutionary transitions have been highly asymmetrical, with 22-24 inferred origins of the C(4) pathway and only one potential reversal. • Our backbone tree clarifies major outstanding systematic questions and highlights C(3) and C(4) sister taxa for comparative studies. Two lineages have emerged as hotbeds of C(4) evolution. Future work in these lineages will be instrumental in understanding the evolution of this complex trait.

摘要

• 禾本科植物是世界上生态和经济上最重要的植物之一。C(4) 综合征的反复进化使许多禾本科植物的光合作用效率非常高,激发了将该途径工程化到 C(3) 作物中的强烈努力。然而,由于 C(4) 起源的数量和系统发育位置的不确定性,比较生物学对这一努力的作用有限。 • 我们构建了迄今为止最全面和稳健的禾本科植物分子系统发育,扩大了先前工作组的采样工作,从 62 个增加到 531 个分类群,强调了富含 C(4)的 PACMAD(Panicoideae、Arundinoideae、Chloridoideae、Micrairoideae、Aristidoideae 和 Danthonioideae)进化枝。我们的最终矩阵包含约 5700bp,>93%完整。 • 我们首次为所有主要的禾本科植物谱系提供了强有力的支持。确定了几个新的 C(4)谱系,并证实了以前推断的起源。C(3)/C(4)进化过渡极不对称,C(4)途径的推断起源有 22-24 个,而潜在的逆转只有一个。 • 我们的骨干树澄清了主要的未解决系统问题,并突出了 C(3)和 C(4)姐妹分类群,用于比较研究。有两个谱系已成为 C(4)进化的热点。在这些谱系中的未来工作对于理解这种复杂性状的进化将是至关重要的。

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