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Genetic diversity analysis of Myristica and related genera using RAPD and ISSR markers

机译:利用RAPD和ISSR标记分析肉豆蔻及其近缘属的遗传多样性

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Genetic diversity among seven species of Myristica, two of its related genera and an unidentified species was analyzed using 46 PCR markers (30 RAPD and 16 ISSR). This is the first study on molecular genetic diversity of the rare, endangered and endemic Myristica species and its related genera. RAPD and ISSR analyses yielded 497 and 262 bands with 98.1% and 97.3% polymorphism, respectively. By combining markers, a total of 759 bands were detected of which 743 (97.8%) were polymorphic with an averageof 16.1 bands per primer. High level of existing genetic variability was evident from the high percentage of polymorphism. Combined analysis of RAPD and ISSR markers resulted in better distinction of species. The mean polymorphic information content (PIC) indicated that both the marker systems are effective in detecting polymorphism either individually or in combination. Similarity coefficient (Jaccards) varied from 0.22 to 0.62 when markers were combined and the pattern was similar to RAPD with a highMantel matrix correlation (r=0.95). Principal Coordinates Analysis (PCA) conformed to cluster analyses. First three most informative PC components explained 51.1%, 49.3% and 46.5% of total variation. A maximum similarity of (63%) was observed between Gymnocranthera canarica and the unidentified species of Myristica. Knema andamanica and Myristica prainii were found to be the most distinct (17.7%). Similarities at molecular level were close to either the morphological traits (mace and fruit/seed characters) or the geographical location. Species specific bands could be identified from all the accessions under study, which has the potential for development into SCAR (Sequence Characterised Amplified Region) markers for genotype fingerprinting or development of specific DNA probes for identification and authentication.
机译:使用46个PCR标记(30个RAPD和16个ISSR)分析了肉豆蔻属7个物种,其两个相关属和一个身份不明物种的遗传多样性。这是对稀有,濒危和特有的肉豆蔻属及其近缘属的分子遗传多样性的首次研究。 RAPD和ISSR分析分别产生497和262条带,多态性分别为98.1%和97.3%。通过组合标记,共检测到759个条带,其中743个(97.8%)是多态性的,每个引物平均16.1个条带。从多态性的高百分比可以明显看出现有遗传变异的高水平。 RAPD和ISSR标记的组合分析可更好地区分物种。平均多态性信息含量(PIC)表明,两种标记系统均可有效地单独或组合检测多态性。组合标记后,相似系数(Jaccards)从0.22变到0.62,并且模式与具有高Mantel矩阵相关性的RAPD相似(r = 0.95)。主坐标分析(PCA)符合聚类分析。前三个信息最丰富的PC组件解释了总变化的51.1%,49.3%和46.5%。观察到加拿大裸枝裸枝Gym(Gymnocranthera canarica)和未认出的肉豆蔻种之间的最大相似度(63%)。 Knema andamanica和Myristica prainii被发现是最明显的(17.7%)。在分子水平上的相似性接近于形态性状(种质和果实/种子特征)或地理位置。可以从所有正在研究的种质中鉴定出物种特异性条带,这有可能发展成用于基因型指纹图谱的SCAR(序列特征扩增区)标记或开发用于鉴定和鉴定的特定DNA探针。

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