Kates Heather R, Soltis Pamela S, Soltis Douglas E
Univ Florida, Genet Inst, Gainesville, FL 32611, USA; Univ Florida, Florida Museum Nat Hist, Gainesville, FL 32611, USA.
Univ Florida, Genet Inst, Gainesville, FL 32611, USA; Univ Florida, Florida Museum Nat Hist, Gainesville, FL 32611, USA.
Mol Phylogenet Evol. 2017 Jun;111:98-109. doi: 10.1016/j.ympev.2017.03.002. Epub 2017 Mar 10.
Phylogenetics can facilitate the study of plant domestication by resolving sister relationships between crops and their wild relatives, thereby identifying the ancestors of cultivated plants. Previous phylogenetic studies of the six Cucurbita crop lineages (pumpkins and squashes) and their wild relatives suggest histories of deep coalescence that complicate uncovering the genetic origins of the six crop taxa. We investigated the evolution of wild and domesticated Cucurbita using the most comprehensive and robust molecular-based phylogeny for Cucurbita to date based on 44 loci derived from introns of single-copy nuclear genes. We discovered novel relationships among Cucurbita species and recovered the first Cucurbita tree with well-supported resolution within species. Cucurbita comprises a clade of mesophytic annual species that includes all six crop taxa and a grade of xerophytic perennial species that represent the ancestral xerophytic habit of the genus. Based on phylogenetic resolution within-species we hypothesize that the magnitude of domestication bottlenecks varies among Cucurbita crop lineages. Our phylogeny clarifies how wild Cucurbita species are related to the domesticated taxa. We find close relationships between two wild species and crop lineages not previously identified. Expanded geographic sampling of key wild species is needed for improved understanding of the evolution of domesticated Cucurbita.
系统发育学可以通过解析作物与其野生近缘种之间的姐妹关系,从而确定栽培植物的祖先,促进对植物驯化的研究。先前对六个南瓜属作物谱系(南瓜和西葫芦)及其野生近缘种的系统发育研究表明,其深度聚合的历史使揭示这六个作物类群的遗传起源变得复杂。我们利用基于44个来自单拷贝核基因内含子的位点构建的、迄今为止最全面且可靠的南瓜属分子系统发育树,研究了野生和驯化南瓜属植物的进化。我们发现了南瓜属物种之间的新关系,并构建了第一棵在物种内部具有良好支持分辨率的南瓜属系统发育树。南瓜属包括一个中生一年生物种的分支,其中包含所有六个作物类群,以及一个旱生多年生物种的类群,代表了该属祖先的旱生习性。基于物种内部的系统发育分辨率,我们推测驯化瓶颈的程度在南瓜属作物谱系中各不相同。我们的系统发育树阐明了野生南瓜属物种与驯化类群之间的关系。我们发现了两个野生物种与之前未确定的作物谱系之间的密切关系。为了更好地理解驯化南瓜属植物的进化,需要对关键野生物种进行更广泛的地理采样。