首页> 外文期刊>Journal of Plant Research >Mapping unexplored genomes II: Genetic architecture of species differences in the woody Sonchus alliance (Asteraceae) in the Macaronesian Islands
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Mapping unexplored genomes II: Genetic architecture of species differences in the woody Sonchus alliance (Asteraceae) in the Macaronesian Islands

机译:绘制未开发的基因组图II:马卡罗尼群岛的木质Sonchus联盟(菊科)中物种差异的遗传结构

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摘要

Despite numerous, well-documented evolutionary histories of plant groups which underwent rapid radiation in various oceanic archipelagos, very little is known about the genetic basis of species differences and adaptive radiation. This paper represents the first such study in the Macaronesian Islands using non-model endemic plants, the woody Sonchus alliance. Here I inferred the genetic basis of species differences between two Canary Island endemics, the herbaceous perennial, shade tolerant Lactucosonchus webbii and the woody, coastal desert perennial Sonchus radicatus by quantitative trait locus (QTL) mapping using AFLP markers. A total of 23 QTL (7.3-23.8% PVE; phenotypic variance explained) for 11 morphological traits were found, one for flowering time (31% PVE), and five QTL (7-10.7% PVE) for two physiological traits (intrinsic water use efficiency and stomatal conductance). Interpreted cautiously, these results suggest that major morphological and some physiological differences between the two species are controlled by numerous genes with small to moderate effect. This implies that major morphological changes in island plants can be more complex than suggested by other studies, such as in Tetramolopium in the Hawaiian Islands. The genetic basis of arborescence on islands, one of the most spectacular convergent features of plants across different lineages and archipelagos, is also discussed.
机译:尽管有众多文献记载的植物群在各种海洋群岛中经历了快速辐射的进化史,但对物种差异和适应性辐射的遗传基础知之甚少。本文代表了马卡罗尼群岛首次使用非典型特有植物,即木质的Sonchus联盟进行的此类研究。在这里,我通过使用AFLP标记通过定量性状位点(QTL)作图推论了两个加那利群岛特有种,多年生草本植物,耐荫的乳杆菌和多年生木本,沿海沙漠多年生桑树的物种差异的遗传基础。共发现11个形态性状的23个QTL(7.3-23.8%PVE;表型变异),其中一个开花时间(31%PVE),五个QTL(7-10.7%PVE)两个生理性状(内在水)使用效率和气孔导度)。谨慎地解释,这些结果表明,这两个物种之间的主要形态学和某些生理学差异是由众多基因控制的,效果从中到小。这暗示着岛上植物的主要形态变化可能比其他研究所建议的更为复杂,例如夏威夷群岛的四甲虫。还讨论了岛上乔木的遗传基础,这是跨不同宗谱和群岛的植物最壮观的收敛特征之一。

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