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Genetic diversity of Quercus liaotungensis Koidz populations at different altitudes

机译:辽东栎不同海拔的种群遗传多样性

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To estimate genetic diversity and genetic structures of Q. liaotungensis at different altitudes in Xingtangsi, eight natural populations were surveyed by sequence-related amplified polymorphism (SRAP) markers. A total of 179 bands were amplified by 12 pairs of SRAP primer combinations. The average number of amplification band for each pair primers was 14.9. The percentage polymorphic band (PPB) of Q. liaotungensis was 100%, Nei’s gene diversity (H) and Shannon information index (I) was 0.3482 and 0.5264 respectively, which indicated the high genetic diversity occurred in Q. liaotungensis populations. The highest genetic diversity harbored in population 6, while the lowest in population 4. The genetic diversity of all eight studied populations showed a low-high-low variation pattern alongelevationgradients. Analysis of molecular variance (AMOVA) explored that the genetic variation mainly existed within populations (80%) and only 20% of genetic variation between populations of Q. liaotungensis (p&0.001). STRUCTURE and Principal coordinate analysis (PCoA) further confirmed the AMOVA analysis. Based on the genetic distance between populations, eight populations were mainly clustered into two groups. Q. liaotungensis' intrinsic biological characteristics, effective gene flow and microenvironmental heteroplasmy resulted in the genetic distribution of Q. liaotungensis populations in Xingtangsi.
机译:为了估计星塘寺不同海拔的辽东栎的遗传多样性和遗传结构,利用序列相关的扩增多态性(SRAP)标记调查了八个自然种群。通过12对SRAP引物组合扩增了总共179条条带。每对引物的平均扩增带数为14.9。辽东Q.的多态性带(PPB)为100%,Nei s基因多样性(H)和Shannon信息指数(I)分别为0.3482和0.5264,这表明辽东Q.种群具有较高的遗传多样性。遗传多样性最高的是种群6,而种群4的最低。所有八个研究种群的遗传多样性沿高度梯度显示出低-高-低-变异模式。分子变异分析(AMOVA)发现遗传变异主要存在于种群(80%)内,而辽东栎种群之间仅存在20%的遗传变异(p <0.001)。结构和主坐标分析(PCoA)进一步证实了AMOVA分析。根据种群之间的遗传距离,将八个种群主要分为两组。辽东栎内在生物学特性,有效基因流和微环境异质性导致了星塘寺辽东栎种群的遗传分布。

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