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首页> 外文期刊>The Journal of Horticultural Science & Biotechnology >Characterization of genetic relationships of Rosa roxburghii Tratt and its relatives using morphological traits, RAPD and AFLP markers
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Characterization of genetic relationships of Rosa roxburghii Tratt and its relatives using morphological traits, RAPD and AFLP markers

机译:利用形态学特征,RAPD和AFLP标记表征罗莎(Rosa roxburghii Tratt)及其亲属的遗传关系

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摘要

Cili (Rosa roxburghii Tratt) is of great interest due to its high content of vitamin C, very high superoxide dismutase (SOD) activity, attractive senescence-retarding and cancer-preventing effects, together with immunity to rose blackspot disease. Thirty-six morphological traits, 251 RAPD markers amplified with 29 arbitrary primers, and 1685 AFLP markers generated from 54 primer combinations were employed to discriminate between 15 accessions, and to evaluate the relatedness of cili with a sample setof its relatives. The genotypes could be efficiently identified by genotype-specific RAPD or AFLP markers, yielded from the four most polymorphic primers: OPAN-07, OPB-11, OPAF-16 and OPW-02, or the six most polymorphic primer combinations: EA01/MC04, EA01/MC05, EA01/MC06, E02/MC01, EA05/MC04 and EA06/MC03, respectively. Compared with the relatives, very close relationships were found among the genotypes of cili. Furthermore, a high relatedness was strikingly obtained between R. sterilis S. D. Shi andR. hiveichowensis Yu and Ku with the three kinds of data. Using the Mantel correspondence test, significant correlations between the three kinds of data were observed, among which matrices of RAPD and AFLP were the most highly correlated: r= 0.7154 (P<0.01 ) . Based on the assessments of the three kinds of data, multi-corolla cili and white-flower cili are certainly variants from R. roxburghii Tratt, while seedless cili presumably originates from a completely male-sterile strain of R. kweichonensis.
机译:刺梨(Rosa roxburghii Tratt)由于其维生素C含量高,超氧化物歧化酶(SOD)活性高,有吸引力的延缓衰老和预防癌症作用以及对玫瑰黑点病的免疫力而备受关注。利用36种形态学特征,251种RAPD标记(用29种任意引物扩增)和1685种AFLP标记(从54种引物组合中生成)来区分15个种质,并评估了纤毛与其亲属样本的相关性。基因型可以通过基因型特异性的RAPD或AFLP标记有效地鉴定,这些标记是由四种多态性最高的引物:OPAN-07,OPB-11,OPAF-16和OPW-02或六种最具多样性的引物组合:EA01 / MC04产生的,EA01 / MC05,EA01 / MC06,E02 / MC01,EA05 / MC04和EA06 / MC03。与亲属相比,在纤毛基因型之间发现了非常密切的关系。此外,在R.sterilis S.D.Shi和R.之间显着地获得了高度的相关性。 hiveichowensis的Yu和Ku具有三种数据。使用Mantel对应检验,观察到了三种数据之间的显着相关性,其中RAPD和AFLP矩阵之间的相关性最高:r = 0.7154(P <0.01)。根据对这三种数据的评估,多花状纤毛和白花纤毛无疑是罗氏罗非鱼的变种,而无核纤毛可能起源于完全不育的桂枯菌。

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