首页> 外文期刊>Journal of the American Society for Horticultural Science >Identification and Mapping of Eastern Filbert Blight Resistance Quantitative Trait Loci in European Hazelnut Using Double Digestion Restriction Site Associated DNA Sequencing
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Identification and Mapping of Eastern Filbert Blight Resistance Quantitative Trait Loci in European Hazelnut Using Double Digestion Restriction Site Associated DNA Sequencing

机译:欧洲榛子中东氟玻土抗震定量特征轨迹的识别与映射使用双消解限制性位点相关的DNA测序

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摘要

European hazelnut (Corylus avellana L.) is an economically important edible nut producing species, which ranked sixth in world tree nut production in 2016. European hazelnut production in the United States is primarily limited to the Willamette Valley of Oregon, and currently nonexistent in the eastern United States because of the presence of a devastating endemic disease, eastern filbert blight (EFB) caused by Anisogramma anomala (Peck) E. Muller. The primary commercial means of control of EFB to date is through the development and planting of genetically resistant european hazelnut cultivars, with an R-gene introduced from the obsolete, late-shedding pollinizer 'Gasaway'. Although the `Gasaway' resistance source provides protection against EFB in the Pacific northwestern United States (PNW), recent reports have shown that it is not effective in parts of the eastern United States. This may be in part because the identification and selection of `Gasaway' and `Gasaway'-derived cultivars occurred in an environment (PNW) with limited genetic diversity of A. anomala. The objectives of the current research were to develop a genetic linkage map using double digestion restriction site associated DNA sequencing (ddRADseq) and identify quantitative trait loci (QTL) markers associated with EFB resistance from the resistant selection Rutgers H3R07P25 from southern Russia. A mapping population composed of 119 seedling trees was evaluated in a geographic location (New Jersey) where the EFB fungus is endemic, exhibits high disease pressure, and has a high level of genetic diversity. The completed genetic linkage map included a total of 2217 markers and spanned a total genetic distance of 1383.4 cM, with an average marker spacing of 0.65 cM. A single QTL region associated with EFB resistance from H3R07P25 was located on european hazelnut linkage group (LG) 2 and was responsible for 72.8% of the phenotypic variation observed in the study. Based on its LG placement, origin, and disease response in the field, this resistance source is different from the `Gasaway' source located on LG6. The current results, in combination with results from previous research, indicate that the H3R07P25 source is likely exhibiting resistance to a broader range of naturally occurring A. anomala isolates. As such, H3R07P25 will be important for the development of new european hazelnut germplasm that combines EFB resistance from multiple sources in a gene pyramiding approach. Identification of EFB resistance in high disease pressure environments representing a diversity of A. anomala populations is likely a requirement for identifying plants expressing durable EFB resistance, which is a precursor to the development of a commercially viable european hazelnut industry in the eastern United States.
机译:欧洲榛子(Corylus Avellana L.)是一家经济上重要的食用螺母生产物种,2016年世界树螺母产量排名第六。美国的欧洲榛子产量主要仅限于俄勒冈州的威尔兰谷,目前不存在。美国东部由于存在毁灭性的地方性疾病,东部榛子枯萎(EFB)由各种图表Anomala(Peck)E. Muller引起。迄今为止迄今为止的EFB迄今为止的主要商业意义是通过转基因欧洲榛子品种的开发和种植,并从过时的后脱落的粉碎机的瓦拉韦引入了R-基因。虽然`GASAWAY的电阻源为美国西北地区(PNW)的EFB提供保护,但最近的报道表明它在美国东部的地区并不有效。这可能部分是因为在环境(PNW)中发生了“酸甜胺”和`酸盐的衍生品种的鉴定和选择,其中A.Anomala的有限遗传多样性。目前研究的目的是使用双重消化限制部位开发遗传联系地图相关的DNA测序(DDRADSeq),并鉴定与来自俄罗斯南部的抗性选择Rutgers H3R07P25相关的与EFB抗性相关的定量性状点基因座(QTL)标记。在地理位置(新泽西岛)中评估了由119棵幼苗树组成的映射人口,其中EFB真菌是流行的,表现出高疾病压力,并且具有高水平的遗传多样性。完成的遗传联系地图包括总共2217个标记,并截止了总遗传距离为1383.4cm,平均标记间距为0.65厘米。与H3R07P25的EFB电阻相关的单个QTL区域位于欧洲榛子连杆组(LG)2上,并负责该研究中观察到的表型变异的72.8%。基于该领域的LG放置,原产地和疾病反应,这种电阻源与位于LG6上的“加气”源不同。当前结果与先前研究的结果相结合,表明H3R07P25源可能表现出对更广泛的天然存在的A.Anomala分离物的抵抗力。因此,H3R07P25对新欧洲榛子种质的发展至关重要,以将EFB抗性与多种来源以基因金字塔的方法相结合。鉴定代表A.Anomala群体多样性的高疾病压力环境中的EFB抗性可能是识别表达耐用EFB抗性的植物的要求,这是美国东部商业上可行的欧洲榛子产业发展的前兆。

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