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首页> 外文期刊>The New Phytologist >Mapping quantitative trait loci associated with chilling requirement, heat requirement and bloom date in peach (Prunus persica)
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Mapping quantitative trait loci associated with chilling requirement, heat requirement and bloom date in peach (Prunus persica)

机译:绘制与桃(Prunus persica)的冷藏需求,热量需求和开花日期相关的数量性状基因座

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Chilling requirement, together with heat requirement, determines the bloom date, which has an impact on the climatic distribution of the genotypes of tree species. The molecular basis of floral bud chilling requirement is poorly understood, despite its importance to the adaptation and production of fruit trees. In addition, the genetic nature of heat requirement and the genetic interrelationships among chilling requirement, heat requirement and bloom date remain unclear. A peach (Prunus persica) F population of 378 genotypes developed from two genotypes with contrasting chilling requirements was used for linkage map construction and quantitative trait loci (QTL) mapping. The floral bud chilling and heat requirements of each genotype were evaluated over 2 yr and the bloom date was scored over 4 yr. Twenty QTLs with additive effects were identified for three traits, including one major QTL for chilling requirement and two major QTLs for bloom date. The majority of QTLs colocalized with QTLs for other trait(s). In particular, one genomic region of 2 cM, pleiotropic for the three traits, overlapped with the sequenced peach EVG region. This first report on the QTL mapping of floral bud chilling requirement will facilitate marker-assisted breeding for low chilling requirement cultivars and the map-based cloning of genes controlling chilling requirement. The extensive colocalization of QTLs suggests that there may be one unified temperature sensing and action system regulating chilling requirement, heat requirement and bloom date together
机译:寒冷的需求与热量的需求共同决定了开花日期,这会影响树木物种基因型的气候分布。尽管其对果树适应和生产的重要性很重要,但人们对花芽冷害要求的分子基础知之甚少。此外,热量需求的遗传性质以及冷量需求,热量需求和开花日期之间的遗传关系仍然不清楚。从两个基因型发展而来的桃子(Prunus persica)F群体具有两种不同的冷需求,它们被用于连锁图谱构建和数量性状基因座(QTL)作图。在2年中评估每种基因型的花芽冷度和热量需求,并在4年中对开花日期进行评分。确定了三个具有加性效应的QTL,用于三个性状,包括一个用于冷藏需求的主要QTL和一个用于开花期的两个主要QTL。大多数QTL与其他性状的QTL共同定位。特别是,一个2 cM的基因组区域,对这三个性状具有多效性,与测序的桃EVG区域重叠。有关花蕾冷害需求的QTL定位的第一份报告将促进低冷害需求品种的标记辅助育种和控制冷害需求的基因的基于图的克隆。 QTL的广泛共定位表明可能存在一个统一的温度感测和作用系统,一起调节冷却需求,热量需求和开花日期

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