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首页> 外文期刊>Molecular Breeding >Characterization of aphid resistance loci in black raspberry (Rubus occidentalis L.)
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Characterization of aphid resistance loci in black raspberry (Rubus occidentalis L.)

机译:黑覆盆子蚜虫抵抗基因座的表征(rubus occidentalis l.)

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Viruses vectored by the aphid Amphorophora agathonica cause decline in black raspberry plant health resulting in a shortened life and poor fruit quality of the infected plantings. New aphid resistant cultivars could increase the longevity of plantings providing growers and processors with consistent fruit production. Recent exploration of the native range of black raspberry identified three sources of aphid resistance: Ag (4) from Ontario (ON), Canada, Ag (5) from Maine (ME), and a third source from Michigan (MI) with no formal designation. The objectives of this study were to assess segregation of these three sources of aphid resistance in populations with single and combined sources and develop markers that can identify each source of resistance. A genetic linkage map constructed for ORUS 4305 placed the ON aphid resistance locus on Rubus linkage group (RLG) 6. Segregation ratios in populations with single and combined sources, and linkage mapping in two populations (ORUS 4304 and ORUS 4812) segregating for the Ag (5) and MI sources, respectively, indicated that these three sources of resistance are each conferred by single dominant genes/alleles that are linked on RLG6. Confirmation of marker association in 16 validation populations identified four markers that could be used to predict resistance; however, none could distinguish between the ON and MI sources. These four markers may be useful for screening populations to enrich the field-planted progeny for aphid resistance. Fine mapping of the resistance loci is needed to develop functional markers at each of the resistance loci to enable pyramiding and durable aphid resistance.
机译:由蚜虫Amphorophora agathonica传染病毒导致黑覆盆子植物健康状况下降导致感染植物的缩短寿命和差的水果质量。新的蚜虫抗性品种可以增加种植的寿命,为种植者和加工器提供一致的水果生产。最近探讨了黑覆盆子的本土范围内确定了三种蚜虫抗性:AG(4)来自安大略省(上),加拿大,AG(5),来自Miche(MI)的AG(5),以及没有正式的密歇根州(MI)的第三个来源指定。本研究的目的是评估具有单一和组合来源的群体中这三种蚜虫抗性的偏见,并开发可以识别每个抵抗来源的标记。用于ORUS 4305构建的遗传连锁图在钩子键(RLG)6上置于蚜虫抗性基因座上。用单一和组合来源的群体中的分离比,以及两个群体(ORU 4304和ORU 4812)的连杆映射为AG分离(5)和MI源分别表明,每个抗性源各自通过连接在RLG6上的单一主要基因/等位基因赋予。在16个验证人群中确认标记关联的确认标记可用于预测抵抗的四个标记;但是,无可以区分on和mi来源。这四种标记物可用于筛选群体以丰富田间植物的后代用于蚜虫抗性。需要对电阻基因座的精细映射来在每个电阻基因座中开发功能标记,以实现功率功率和耐用的蚜虫。

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