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面向所有生物学领域的系统发生树思维:将系统发育树视为进步阶梯来解读的问题。

Tree thinking for all biology: the problem with reading phylogenies as ladders of progress.

作者信息

Omland Kevin E, Cook Lyn G, Crisp Michael D

机构信息

Department of Biological Sciences, University of Maryland, Baltimore County, Baltimore MD 21250, USA.

出版信息

Bioessays. 2008 Sep;30(9):854-67. doi: 10.1002/bies.20794.

Abstract

Phylogenies are increasingly prominent across all of biology, especially as DNA sequencing makes more and more trees available. However, their utility is compromised by widespread misconceptions about what phylogenies can tell us, and improved "tree thinking" is crucial. The most-serious problem comes from reading trees as ladders from "left to right"--many biologists assume that species-poor lineages that appear "early branching" or "basal" are ancestral--we call this the "primitive lineage fallacy". This mistake causes misleading inferences about changes in individual characteristics and leads to misrepresentation of the evolutionary process. The problem can be rectified by considering that modern phylogenies of present-day species and genes show relationships among evolutionary cousins. Emphasizing that these are extant entities in the 21(st) century will help correct inferences about ancestral characteristics, and will enable us to leave behind 19(th) century notions about the ladder of progress driving evolution.

摘要

系统发育树在整个生物学领域中日益重要,尤其是随着DNA测序技术使越来越多的进化树得以构建。然而,由于对系统发育树所能揭示的内容存在广泛误解,其效用受到了损害,因此改进“树形思维”至关重要。最严重的问题源于将进化树从“左到右”解读为阶梯状——许多生物学家认为那些看起来“早期分支”或“基部”的物种较少的谱系是祖先——我们将此称为“原始谱系谬误”。这个错误导致对个体特征变化的误导性推断,并导致对进化过程的错误描述。通过认识到现代现存物种和基因的系统发育树显示的是进化近亲之间的关系,这个问题可以得到纠正。强调这些是21世纪的现存实体将有助于纠正对祖先特征的推断,并使我们能够摒弃19世纪关于进步阶梯驱动进化的观念。

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