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首页> 外文期刊>Plant Genetic Resources Characterization and Utilization >A new set of microsatellite loci for Cattleya walkeriana Gardner, an endangered tropical orchid species and its transferability to Cattleya loddigesii Lindl. and Cattleya nobilior Reichenbach
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A new set of microsatellite loci for Cattleya walkeriana Gardner, an endangered tropical orchid species and its transferability to Cattleya loddigesii Lindl. and Cattleya nobilior Reichenbach

机译:一套新的Cattleya Walkeriana Gardner,濒临灭绝的热带兰花种类及其对Cattleya Loddigesii Lindl的可转移性。 和Cattleya Nobilior Reichenbach

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In this study, we isolate and analyse a new set of microsatellite loci for Cattleya walkeriana. Twenty-two primer pairs were screened for C. walkeriana (n = 32) and assessed for their transferability to Cattleya loddigesii (n = 12) and Cattleya nobilior (n = 06). All loci amplified for C. walkeriana; however, for C. loddigesii and C. nobilior, four and five primers, respectively, did not present amplification. The polymorphic loci presented between 2 and 13 alleles per locus for both C. walkeriana and C. loddigesii, with respective averages of 5.1 and 4.2. For C. nobilior, we found between two and five alleles per locus, with an average of 2.6. For C. walkeriana, observed heterozygosity varied from 0.100 to 0.966, whereas expected heterozygosity ranged from 0.097 to 0.900. The observed and expected heterozygosity for C. loddigesii and C. nobilior were also estimated. We found no significant linkage disequilibrium between any pair of loci, and evidence of null alleles at four loci (Cw16, Cw24, Cw30 and Cw31) for C. walkeriana. The combined power to exclude the first parent and combined non-exclusion probability of identity were 0.999 and 2.3 x 10(-20), respectively. These new loci can be used in studies of germplasm resources, and assessments of genotypic and genetic diversity and population structure, thus improving the accuracy of such analyses and their applicability in the conservation and protection of these endangered species.
机译:在这项研究中,我们隔离并分析了一套新型的Cattleya Walkeriana的微卫星基因座。筛选22个引物对的C. walkeriana(n = 32)并评估它们对Cattleya Loddigesii(n = 12)和cattleya nobilior(n = 06)的可转移性。所有基因座为C. Walkeriana扩增;然而,对于C.Loddigesii和C.Nobilior,4和5个引物,分别没有出现扩增。对于C.Wakeeriana和C.Loddigesii的每个基因座在2和13等位基体中呈现的多晶型基因座,其平均值为5.1和4.2。对于C. nobilior,我们在每位基因座两和五个等位基因中发现,平均为2.6。对于C. Walkeriana,观察到的杂合子在0.100至0.966之间变化,而预期的杂合子范围为0.097至0.900。还估计了C. Loddigesii和C. nobilior的观察和预期的杂合子。我们发现任何一对基因座之间没有显着的连锁不平衡,以及用于C. Walkeriana的四个基因座(CW16,CW24,CW30和CW31)的无效等位基因的证据。排除第一个父母的组合功率分别为0.999和2.3×10(-20)分别为0.999和2.3×10(-20)。这些新的基因座可用于种质资源的研究,以及基因型和遗传多样性和人口结构的评估,从而提高了这种分析的准确性及其在保护和保护这些濒危物种中的适用性。

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