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Assessment of genetic diversity and population structure of an endemic Moroccan tree (Argania spinosa L.) based in IRAP and ISSR markers and implications for conservation

机译:基于IRAP和ISSR标记的地方性摩洛哥树木(Argania spinosa L.)的遗传多样性和种群结构评估及其对保护的意义

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摘要

Argan Tree is well known for its precious oil extracted from its seeds particularly used for the nutritional and cosmetic benefits. Because of the high international demand, the argan tree suffers from overexploitation and its cultivation is rare. Thus, the assessment of the genetic variation of this endemic tree is critically important for designing conservation strategies. In the present study and for the first time, genetic diversity of the global natural distribution of argan tree (Argania spinosa L.) in Morocco was assessed. Four IRAP (inter-retrotransposon amplified polymorphism) primer combinations and seven ISSR (inter-simple sequence repeat) primers amplified 164 and 248 scorable polymorphic bands respectively. Polymorphic information content (PIC = 0.27), resolving power (Rp = 15) and marker index (MI = 10.81) generated by IRAP primer combinations were almost identical to those generated by ISSR primers (PIC = 0.27, Rp = 9.16 and MI = 12). AMOVA analysis showed that 49% of the genetic variation was partitioned within populations which is supported by Nei’s genetic differentiation (Gst = 0.5391) and the overall estimate of gene flow (Nm) being 0.4274. The STRUCTURE analysis, PCoA (principal coordinate analysis) and UPGMA (unweighted pair-group method with arithmetic mean) based on the combined data matrices of IRAP and ISSR divided the 240 argan genotypes into two groups. The strong differentiation observed might be due to the geographical distribution of argan tree. Our results provide crucial insight for genetic conservation programs of this genetic resource.
机译:摩洛哥坚果树因从其种子中提取的珍贵油而闻名,特别用于营养和美容。由于国际需求旺盛,摩洛哥坚果树遭到过度开发,其种植很少。因此,对这种特有树的遗传变异的评估对于设计保护策略至关重要。在本研究中,这是首次评估了摩洛哥摩洛哥坚果树(Argania spinosa L.)全球自然分布的遗传多样性。四个IRAP(逆转录转座子之间扩增多态性)引物组合和七个ISSR(简单序列间重复)引物分别扩增了164和248可评分多态性条带。 IRAP引物组合产生的多态信息含量(PIC = 0.27),分辨力(Rp = 15)和标记指数(MI = 10.81)与ISSR引物产生的信息几乎相同(PIC = 0.27,Rp = 9.16和MI = 12 )。 AMOVA分析表明,有49%的遗传变异在人群中分配,这得到了Nei的遗传分化(Gst = 0.5391)的支持,基因流的总体估计值(Nm)为0.4274。基于IRAP和ISSR组合数据矩阵的结构分析,PCoA(主坐标分析)和UPGMA(带算术平均值的非加权成对方法)将240个Argan基因型分为两组。观察到的强烈差异可能归因于摩洛哥坚果树的地理分布。我们的结果为该遗传资源的遗传保护计划提供了重要的见识。

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