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Genome sequences of populus tremula chloroplast and mitochondrion: implications for holistic poplar breeding

机译:毛白杨叶绿体和线粒体的基因组序列:对整体杨树育种的影响

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摘要

Complete Populus genome sequences are available for the nucleus (P. trichocarpa; section Tacamahaca) and for chloroplasts (seven species), but not for mitochondria. Here, we provide the complete genome sequences of the chloroplast and the mitochondrion for the clones P. tremula W52 and P. tremula x P. alba 717-1B4 (section Populus). The organization of the chloroplast genomes of both Populus clones is described. A phylogenetic tree constructed from all available complete chloroplast DNA sequences of Populus was not congruent with the assignment of the related species to different Populus sections. In total, 3,024 variable nucleotide positions were identified among all compared Populus chloroplast DNA sequences. The 5-prime part of the LSC from trnH to atpA showed the highest frequency of variations. The variable positions included 163 positions with SNPs allowing for differentiating the two clones with P. tremula chloroplast genomes (W52, 717-1B4) from the other seven Populus individuals. These potential P. tremula-specific SNPs were displayed as a whole-plastome barcode on the P. tremula W52 chloroplast DNA sequence. Three of these SNPs and one InDel in the trnH-psbA linker were successfully validated by Sanger sequencing in an extended set of Populus individuals. The complete mitochondrial genome sequence of P. tremula is the first in the family of Salicaceae. The mitochondrial genomes of the two clones are 783,442 bp (W52) and 783,513 bp (717-1B4) in size, structurally very similar and organized as single circles. DNA sequence regions with high similarity to the W52 chloroplast sequence account for about 2% of the W52 mitochondrial genome. The mean SNP frequency was found to be nearly six fold higher in the chloroplast than in the mitochondrial genome when comparing 717-1B4 with W52. The availability of the genomic information of all three DNA-containing cell organelles will allow a holistic approach in poplar molecular breeding in the future.
机译:完整的胡杨基因组序列可用于细胞核(P. trichocarpa;塔卡马哈卡部分)和叶绿体(七个物种),但不用于线粒体。在这里,我们提供了克隆P. tremula W52和P. tremula x P. alba 717-1B4(Populus)的叶绿体和线粒体的完整基因组序列。描述了两个胡杨无性系的叶绿体基因组的组织。用所有可用的杨树完整叶绿体DNA序列构建的系统发育树与将相关物种分配给不同杨树节不相称。在所有比较的胡杨叶绿体DNA序列中,总共鉴定出3,024个可变核苷酸位置。从trnH到atpA的LSC的5个主要部分显示出最高的变异频率。可变位置包括具有SNP的163个位置,从而可将两个含金银杏叶绿体基因组的克隆(W52、717-1B4)与其他七个杨树个体区分开。这些潜在的特雷默氏菌特异的SNPs以全质体条形码显示在特雷莫氏菌W52叶绿体DNA序列上。这些SNP中的三个和trnH-psbA接头中的一个InDel已通过Sanger测序在扩展的一组杨树个体中成功验证。颤栗线粒体的完整线粒体基因组序列是杨柳科中的第一个。这两个克隆的线粒体基因组大小分别为783,442 bp(W52)和783,513 bp(717-1B4),结构上非常相似,并组织为单个圆圈。与W52叶绿体序列高度相似的DNA序列区域约占W52线粒体基因组的2%。当将717-1B4与W52进行比较时,发现叶绿体中的平均SNP频率比线粒体基因组中的SNP频率高出近六倍。所有三个包含DNA的细胞器的基因组信息的可用性将为将来的杨树分子育种提供一种整体方法。

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