Moulin M M, Rodrigues R, Bento C S, Gonçalves L S A, Santos J O, Sudré C P, Viana A P
Laboratório de Genética e Biologia Molecular, Instituto Federal do Espírito Santo, Alegre, ES, Brasil
Laboratório de Melhoramento Genético Vegetal, Universidade Estadual do Norte Fluminense Darcy Ribeiro, Campos dos Goytacazes, RJ, Brasil.
Genet Mol Res. 2015 Mar 20;14(1):2122-32. doi: 10.4238/2015.March.20.23.
Genetic mapping is very useful for dissecting complex agronomic traits. Genetic mapping allows for identification of quantitative trait loci (QTL), provide knowledge on a gene position and its adjacent region, and enable prediction of evolutionary mechanisms, in addition to contributing to synteny studies. The aim of this study was to predict genetic values associated with different agronomic traits evaluated in an F2 population of Capsicum baccatum var. pendulum. Previously, a reference genetic map for C. baccatum was constructed, which included 183 markers (42 microsatellite, 85 inter-simple sequence repeat, and 56 random amplification of polymorphic DNA) arranged in 16 linkage groups. The map was used to identify QTL associated with 11 agronomic traits, including plant height, crown diameter, number of days to flowering, days to fruiting, number of fruits per plant, average fruit weight, fruit length, fruit diameter, fruit pulp thickness, soluble solids, and fruit dry weight. QTL mapping was performed by standard interval mapping. The number of small QTL effects ranged from 3-11, with a total of 61 QTL detected in 9 linkage groups. This is the first report involving QTL analysis for C. baccatum species.
遗传图谱对于剖析复杂的农艺性状非常有用。遗传图谱有助于鉴定数量性状基因座(QTL),提供有关基因位置及其相邻区域的信息,并能够预测进化机制,此外还有助于共线性研究。本研究的目的是预测与辣椒(Capsicum baccatum var. pendulum)F2群体中评估的不同农艺性状相关的遗传值。此前,构建了一个辣椒的参考遗传图谱,其中包括排列在16个连锁群中的183个标记(42个微卫星标记、85个简单序列重复区间标记和56个随机扩增多态性DNA标记)。该图谱用于鉴定与11个农艺性状相关的QTL,这些性状包括株高、冠幅、开花天数、结果天数、单株果实数、平均果实重量、果实长度、果实直径、果肉厚度、可溶性固形物和果实干重。通过标准区间作图法进行QTL定位。小效应QTL的数量范围为3至11个,在9个连锁群中总共检测到61个QTL。这是关于辣椒属植物QTL分析的首次报道。