首页> 外文期刊>Sociobiology >Genetic Variation in Iranian Honey bees, Apis mellifera meda Skorikow, 1829, (Hymenoptera: Apidae) Inferred from PCR-RFLP Analysis of two mtDNA Gene Segments (COI and 16S rDNA)
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Genetic Variation in Iranian Honey bees, Apis mellifera meda Skorikow, 1829, (Hymenoptera: Apidae) Inferred from PCR-RFLP Analysis of two mtDNA Gene Segments (COI and 16S rDNA)

机译:伊朗蜜蜂的遗传变异,Apis Mellifera Meda Skorikow,1829,(Hymenoptera:Apidae)从PCR-RFLP分析推断出两种MTDNA基因段(COI和16S rDNA)

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In this study, the genetic structure of Iranian honey bee (Apis mellifera meda) populations, mainly obtained from all of regions, were investigated at two different mitochondrial regions. A total of 300 worker bees were collected from 20 different populations in 20 different locations. Portions of the mitochondrial 16S ribosomal RNA (16S rDNA) and cytochrome C oxidase I (COI) genes were amplified by PCR and then subjected to RFLP pattern analysis using 8 restriction enzymes. Nucleotide polymorphisms were revealed using restriction enzyme Sau3A I, Ssp I and Taq I in COI and Bsp143I, Ssp I and Dra I in the 16S rDNA gene segment. In this study, 3 novel composite genotypes (haplotypes) were found in Iranian honey bee populations. The average haplotype diversity (h) within populations was 0.0405. Heterozygosity values, Shannon index and the number of alleles of Iranian honey bee populations were low that could be caused by low definite geographic structure of Iranian honey bee populations. Genetic distance (D) values were found to be low (0.0–0.0011) within Iranian honey bee populations. Cluster analysis based on UPGMA method revealed that all populations and samples groups be in one cluster. Also, the phylogenetic tree based on Neighbor-joining method divided 29 subspecies of honey bee to 5 distinct clusters. The Iranian subspecies honey bee composed of a shared clade with subspecies of Eastern Mediterranean, Near East and Eastern parts of Middle East (O branch). This result is very useful for the control of conservation of local honey bees, as the movement of colonies across the border line of these neighboring countries, may affect the genetic structure of honey bee populations.
机译:在这项研究中,在两种不同的线粒体区域研究了主要从所有地区获得的伊朗蜂窝蜂(API Mellifera MEDA)群体的遗传结构。共有300名工人蜜蜂在20个不同的地方收集了20个不同的人口。通过PCR扩增了线粒体16S核糖体RNA(16SRDNA)和细胞色素C氧化酶I(COI)基因的部分,然后使用8个限制酶进行RFLP图案分析。在COI和BSP143I中使用限制酶SAU3A I,SSP I和TAQ I,SSP I和DRA I中的核苷酸多态性在16S rDNA基因部分中使用了核苷酸多态性。在本研究中,在伊朗蜂蜜蜂群中发现了3种新型复合基因型(单倍型)。种群内的平均单倍型多样性(h)为0.0405。杂合子值,香农指数和伊朗蜂蜜蜂的等位基因数量低,可能是由伊朗蜂蜜蜜蜂种群的低明确地理结构引起的。发现遗传距离(d)值在伊朗蜂蜜蜂蜂群中低于(0.0-0.0011)。基于UPGMA方法的聚类分析显示,所有群体和样本组都在一个群集中。此外,基于邻接方法的系统发育树将29个蜂窝蜜蜂分开至5个不同的簇。伊朗亚种蜂蜜蜜蜂由与东地中海的亚种,近东和东部的中东地区(O分公司)的共同落地组成。这种结果对于控制局部蜂蜜蜜蜂的保护非常有用,因为这些邻国边境线的殖民地的运动可能会影响蜂蜜蜂群的遗传结构。

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