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Construction of a high-density genetic map and QTL mapping of leaf traits and plant growth in an interspecific F1 population of Catalpa bungei × Catalpa duclouxii Dode

机译:叶状特异性F1百分之三群百分之三的叶状性状性状和植物生长的高密度遗传图和QTL映射×Catalpa duclouxii dode

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摘要

Abstract Background Catalpa bungei is an important tree species used for timber in China and widely cultivated for economic and ornamental purposes. A high-density linkage map of C. bungei would be an efficient tool not only for identifying key quantitative trait loci (QTLs) that affect important traits, such as plant growth and leaf traits, but also for other genetic studies. Results Restriction site-associated DNA sequencing (RAD-seq) was used to identify molecular markers and construct a genetic map. Approximately 280.77 Gb of clean data were obtained after sequencing, and in total, 25,614,295 single nucleotide polymorphisms (SNPs) and 2,871,647 insertions-deletions (InDels) were initially identified in the genomes of 200 individuals of a C. bungei (7080) × Catalpa duclouxii (16-PJ-3) F1 population and their parents. Finally, 9072 SNP and 521 InDel markers that satisfied the requirements for constructing a genetic map were obtained. The integrated genetic map contained 9593 pleomorphic markers in 20 linkage groups and spanned 3151.63 cM, with an average distance between adjacent markers of 0.32 cM. Twenty QTLs for seven leaf traits and 13 QTLs for plant height at five successive time points were identified using our genetic map by inclusive composite interval mapping (ICIM). Q16–60 was identified as a QTL for five leaf traits, and three significant QTLs (Q9–1, Q18–66 and Q18–73) associated with plant growth were detected at least twice. Genome annotation suggested that a cyclin gene participates in leaf trait development, while the growth of C. bungei may be influenced by CDC48C and genes associated with phytohormone synthesis. Conclusions This is the first genetic map constructed in C. bungei and will be a useful tool for further genetic study, molecular marker-assisted breeding and genome assembly.
机译:摘要背景楸树是用于在中国木材及经济和观赏用途广泛栽培的重要树种。楸树的高密度连锁图将是一个有效的工具,不仅用于识别影响重要性状,如植物生长和叶性状键数量性状基因座(QTL),但也可用于其他遗传研究。结果限制位点相关的DNA测序(RAD-SEQ)用于鉴定分子标记和构建遗传图谱。大约干净数据的280.77千兆进行测序后获得,而在总,25614295个单核苷酸多态性(SNP)和2871647插入-缺失(个InDel)在楸树的200个个体(7080)×滇楸的基因组初步确定(16-PJ-3)F1人口和他们的父母。最后,获得了9072 SNP和521个InDel标记,满足构建遗传图谱的要求。集成的遗传图谱包含在20个连锁群9593个的多形性标记物和跨区3151.63厘米,0.32 cM的相邻标记之间的平均距离。七个叶性状的QTL二十,并在五个连续的时间点13点的QTL的植物高度,使用我们的遗传图谱由包容复合区间作图(ICIM)标识。 Q16-60被确定为用于与植物生长至少两次检测到相关联的5个叶性状,和三个显著的QTL(Q9-1,Q18-66和Q18-73)的QTL。基因组注释表明细胞周期蛋白基因参与了叶性状的发展,而楸树的生长可以通过CDC48C,并用植物激素合成相关的基因的影响。结论这是楸树构造的第一遗传图谱和将是进一步的遗传研究的有用工具,分子标记辅助育种和基因组装配。

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