固氮进化枝系统发育的全球与中国视角

IF 3.7
Hong‐Lei Li, Wei Wang, Rui‐Qi Li, Jing-Bo Zhang, Miao-miao Sun, R. Naeem, Junyan Su, X. Xiang, P. Mortimer, De-Zhu Li, K. Hyde, Jian-chu Xu, D. Soltis, P. Soltis, Jianhua Li, Shouzhou Zhang, Hong Wu, Zhiduan Chen, An‐ming Lu
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引用次数: 6

摘要

在生态研究中,将区域生命树与群落聚集规则相结合的研究越来越受到关注。这就提出了在区域和全球尺度上分类单元取样策略对拓扑学影响的问题。为了解决这一问题,我们构建了两个固氮枝树:(i)一个属级的全球树,包括1023个属;(ii)包括303个属的区域树,分类单元取样仅限于中国。我们使用超矩阵方法对组合的matK、rbcL和trnL‐F质体序列进行了最大似然分析。结果表明,固定N枝的全局树和区域树的拓扑结构基本一致。然而,尽管全局树得到的4个序列之间的关系与基因较多的集中分析得到的公认拓扑一致,但区域拓扑得到的关系却不同,尽管支持程度较弱。在更精细的尺度上,发现杨梅科的系统发育位置对采样密度敏感。我们期望通过更密集的分类群采样可以改善整个系统发育的内部支持。分类单元取样方法(全球与区域)对固氮进化枝的精细分支模式没有重大影响。因此,在这种情况下,在区域尺度上具有相对密集的分类单元采样策略的系统发育似乎是整体系统发育模式的良好代表,可以用于生态学研究。否则,需要根据相应的可靠全局树对区域树进行调整。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Global versus Chinese perspectives on the phylogeny of the N‐fixing clade
There has been increasing interest in integrating a regional tree of life with community assembly rules in the ecological research. This raises questions regarding the impacts of taxon sampling strategies at the regional versus global scales on the topology. To address this concern, we constructed two trees for the nitrogen‐fixing clade: (i) a genus‐level global tree including 1023 genera; and (ii) a regional tree comprising 303 genera, with taxon sampling limited to China. We used the supermatrix approach and performed maximum likelihood analyses on combined matK, rbcL, and trnL‐F plastid sequences. We found that the topology of the global and the regional tree of the N‐fixing clade were generally congruent. However, whereas relationships among the four orders obtained with the global tree agreed with the accepted topology obtained in focused analyses with more genes, the regional topology obtained different relationships, albeit weakly supported. At a finer scale, the phylogenetic position of the family Myricaceae was found to be sensitive to sampling density. We expect that internal support throughout the phylogeny could be improved with denser taxon sampling. The taxon sampling approach (global vs. regional) did not have a major impact on fine‐level branching patterns of the N‐fixing clade. Thus, a well‐resolved phylogeny with relatively dense taxon sampling strategy at the regional scale appears, in this case, to be a good representation of the overall phylogenetic pattern and could be used in ecological research. Otherwise, the regional tree should be adjusted according to the correspondingly reliable global tree.
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