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Untangling the reticulate history of species complexes and horticultural breeds in Abelia (Caprifoliaceae)

机译:弄清阿贝利亚(Caprifoliaceae)物种复合体和园艺品种的网状历史

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摘要

>Background and Aims The genetic and morphological consequences of natural selection and selective breeding are explored in the genus Abelia. The genus consists of ornamental shrubs endemic to China, which have been bred to create attractive and diverse cultivars. >Methods DNA fingerprinting (AFLP) and DNA sequence data are used to investigate the genetic diversity among 46 accessions of Abelia (22 natural taxa and 24 horticultural breeds). In the cultivated varieties these data are used to explore taxon boundaries, hybridisation and backcrossing. The genetic analysis dataset is also used to investigate morphological variation within natural species complexes and subsequently to inform a taxonomic treatment. >Key Results Abelia comprises five species: A. forrestii, A. schumannii, A. macrotera, A. uniflora and A. chinensis and has a total of 11 varieties. Abelia uniflora and A. macrotera do not occur in sympatry and are disjunctly distributed to the east and west of the A. chinensis distribution range. Abelia chinensis is widespread in eastern China and creates hybrids and introgressive taxa, including A. uniflora, along the contact zones with the previous taxa. Abelia `Maurice Foster' is a horticultural variety collected from wild stocks in Sichuan (China). Bayesian clustering methods (inferred in STRUCTURE based on AFLP data) indicate admixture between A. macrotera and A. schumannii in this variety. Hybridization probably occurred in the wild where these progenitor taxa co-occur and naturally form hybrids. AFLP results also reveal that a few diagnostic morphological characters such as sepal number or inflorescence structure were transferred between natural species and this is mirrored by taxa such as in Abelia `Saxon Gold' and A. forrestii. >Conclusions Studying both natural and cultivated species from the same group has helped understanding both differentiation mechanisms and how to improve cultivated plants in the future by studying which morphological characters are transferred between species and which taxa may already have arisen through hybridisation.
机译:>背景和目标在阿贝莉亚属中探索了自然选择和选择性育种的遗传和形态学后果。该属包括中国特有的观赏灌木,这些灌木经培育产生了引人入胜的多样品种。 >方法使用DNA指纹图谱(AFLP)和DNA序列数据来研究46种阿贝利亚(22个自然分类单元和24个园艺品种)的遗传多样性。在栽培品种中,这些数据用于探索分类群边界,杂交和回交。遗传分析数据集还用于调查自然物种复合体内的形态变化,并随后为分类学提供依据。 >主要结果:白菜属共有5种:A. forrestii,A。schumannii,A。macrotera,A。uniflora和A. chinensis,共有11个变种。 Abelia uniflora和A. macrotera不会在交感神经系统中出现,而是在A. chinensis分布范围的东部和西部分散分布。白莲花在中国东部广泛分布,并在与前一个分类单元的接触带上形成杂种和渐进型分类单元,包括紫花苜蓿。 Abelia'Maurice Foster'是从四川(中国)野生种群中收集的园艺品种。贝叶斯聚类方法(基于AFLP数据在STRUCTURE中推断)表明该品种中A. macrotera和A. schumannii之间存在混合。杂交可能发生在这些祖先类群同时发生并自然形成杂种的野外。 AFLP结果还表明,一些诊断形态特征(如萼片数或花序结构)在自然物种之间转移,这在类群(例如 Abelia “ Saxon Gold”和 A)中得到了反映。 forrestii 。 >结论通过研究哪些形态特征在物种之间转移以及哪些分类单元可能已经出现,研究了同一群体中的自然物种和栽培物种有助于了解二者的分化机理以及未来如何改良栽培植物。杂交。

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