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Whole Mitochondrial and Plastid Genome SNP Analysis of Nine Date Palm Cultivars Reveals Plastid Heteroplasmy and Close Phylogenetic Relationships among Cultivars

机译:九个枣棕榈品种的全线粒体和质体基因组SNP分析揭示了质子异质性和品种之间亲密的亲缘关系

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摘要

Date palm is a very important crop in western Asia and northern Africa, and it is the oldest domesticated fruit tree with archaeological records dating back 5000 years. The huge economic value of this crop has generated considerable interest in breeding programs to enhance production of dates. One of the major limitations of these efforts is the uncertainty regarding the number of date palm cultivars, which are currently based on fruit shape, size, color, and taste. Whole mitochondrial and plastid genome sequences were utilized to examine single nucleotide polymorphisms (SNPs) of date palms to evaluate the efficacy of this approach for molecular characterization of cultivars. Mitochondrial and plastid genomes of nine Saudi Arabian cultivars were sequenced. For each species about 60 million 100 bp paired-end reads were generated from total genomic DNA using the Illumina HiSeq 2000 platform. For each cultivar, sequences were aligned separately to the published date palm plastid and mitochondrial reference genomes, and SNPs were identified. The results identified cultivar-specific SNPs for eight of the nine cultivars. Two previous SNP analyses of mitochondrial and plastid genomes identified substantial intra-cultivar ( = intra-varietal) polymorphisms in organellar genomes but these studies did not properly take into account the fact that nearly half of the plastid genome has been integrated into the mitochondrial genome. Filtering all sequencing reads that mapped to both organellar genomes nearly eliminated mitochondrial heteroplasmy but all plastid SNPs remained heteroplasmic. This investigation provides valuable insights into how to deal with interorganellar DNA transfer in performing SNP analyses from total genomic DNA. The results confirm recent suggestions that plastid heteroplasmy is much more common than previously thought. Finally, low levels of sequence variation in plastid and mitochondrial genomes argue for using nuclear SNPs for molecular characterization of date palm cultivars.
机译:枣椰子是西亚和北非非常重要的农作物,它是最古老的驯化果树,具有可追溯到5000年的考古记录。该作物的巨大经济价值引起了人们对提高枣产量的育种计划的极大兴趣。这些努力的主要限制之一是不确定性,目前基于果实形状,大小,颜色和口味的枣椰子品种数量。整个线粒体和质体基因组序列用于检查枣椰子的单核苷酸多态性(SNPs),以评估该方法对栽培种分子表征的功效。对9个沙特阿拉伯品种的线粒体和质体基因组进行了测序。对于每个物种,使用Illumina HiSeq 2000平台从总基因组DNA产生约6000万个100 bp的配对末端读数。对于每个品种,将序列分别与已发表的枣棕质体和线粒体参考基因组进行比对,并鉴定出SNP。结果确定了九个品种中八个的特定品种的SNP。先前对线粒体和质体基因组进行的两次SNP分析确定了细胞器基因组中大量的栽培种内(=种内)多态性,但这些研究没有适当考虑到将近一半的质体基因组已整合到线粒体基因组中这一事实。过滤映射到两个细胞器基因组的所有测序读物几乎消除了线粒体异质性,但是所有质体SNP仍保持异质性。这项研究为从总基因组DNA进行SNP分析时如何处理细胞间DNA转移提供了宝贵的见解。结果证实了最近的建议,质体异质性比以前认为的要普遍得多。最后,质体和线粒体基因组中低水平的序列变异要求使用核SNPs对枣椰子品种进行分子表征。

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