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首页> 外文期刊>BMC Genomics >Identification of sex-linked SNP markers using RAD sequencing suggests ZW/ZZ sex determination in Pistacia vera L.
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Identification of sex-linked SNP markers using RAD sequencing suggests ZW/ZZ sex determination in Pistacia vera L.

机译:使用RAD测序鉴定与性相关的SNP标记表明黄连木的ZW / ZZ性别测定。

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Pistachio (Pistacia vera L.) is a dioecious species that has a long juvenility period. Therefore, development of marker-assisted selection (MAS) techniques would greatly facilitate pistachio cultivar-breeding programs. The sex determination mechanism is presently unknown in pistachio. The generation of sex-linked markers is likely to reduce time, labor, and costs associated with breeding programs, and will help to clarify the sex determination system in pistachio. Restriction site-associated DNA (RAD) markers were used to identify sex-linked markers and to elucidate the sex determination system in pistachio. Eight male and eight female F1 progenies from a Pistacia vera L. Siirt?×?Ba?yolu cross, along with the parents, were subjected to RAD sequencing in two lanes of a Hi-Seq 2000 sequencing platform. This generated 449 million reads, comprising approximately 37.7 Gb of sequences. There were 33,757 polymorphic single nucleotide polymorphism (SNP) loci between the parents. Thirty-eight of these, from 28 RAD reads, were detected as putative sex-associated loci in pistachio. Validation was performed by SNaPshot analysis in 42 mature F1 progenies and in 124 cultivars and genotypes in a germplasm collection. Eight loci could distinguish sex with 100% accuracy in pistachio. To ascertain cost-effective application of markers in a breeding program, high-resolution melting (HRM) analysis was performed; four markers were found to perfectly separate sexes in pistachio. Because of the female heterogamety in all candidate SNP loci, we report for the first time that pistachio has a ZZ/ZW sex determination system. As the reported female-to-male segregation ratio is 1:1 in all known segregating populations and there is no previous report of super-female genotypes or female heteromorphic chromosomes in pistachio, it appears that the WW genotype is not viable. Sex-linked SNP markers were identified and validated in a large germplasm and proved their suitability for MAS in pistachio. HRM analysis successfully validated the sex-linked markers for MAS. For the first time in dioecious pistachio, a female heterogamety ZW/ZZ sex determination system is suggested.
机译:开心果(Pistacia vera L.)是一个雌雄异体的物种,幼年期较长。因此,标记辅助选择(MAS)技术的发展将极大地促进开心果品种育种计划。开心果中的性别决定机制目前未知。与性别相关的标记的产生可能会减少与育种计划相关的时间,人工和成本,并将有助于阐明开心果中的性别决定系统。限制性酶切位点相关的DNA(RAD)标记用于鉴定与性别相关的标记,并阐明开心果中的性别决定系统。在Hi-Seq 2000测序平台的两个泳道中,对来自黄连Pistacia vera L. Siirt?×?Ba?yolu杂交的8个雄性和8个雌性F1后代以及其亲本进行了RAD测序。这产生了4.49亿次读取,包括大约37.7 Gb的序列。父母之间有33,757个多态性单核苷酸多态性(SNP)基因座。在开心果中,从RAD的28个读物中,有38个被检测为与性有关的基因座。通过SNaPshot分析对42个成熟的F1后代以及种质集合中的124个品种和基因型进行验证。八个位点可以在开心果中以100%的准确度区分性别。为了确定标记物在育种程序中的经济有效应用,已进行了高分辨率熔解(HRM)分析。在开心果中发现了四个标记,可以完全区分性别。由于所有候选SNP位点中的雌性异配子,我们首次报道开心果具有ZZ / ZW性别确定系统。由于在所有已知的隔离种群中报告的雌雄分离比例均为1:1,并且以前没有开心果中超女基因型或雌性异型染色体的报道,因此WW基因型似乎不可行。在大型种质中鉴定并验证了与性相关的SNP标记,并证明了它们适用于开心果中的MAS。 HRM分析成功验证了MAS的性别相关标记。在雌雄异果开心果中,首次提出了女性异性配子ZW / ZZ性别确定系统。

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