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首页> 外文期刊>Journal American Pomological Society >Hazelnut Accessions from Russia and Crimea Transmit Resistance to Eastern Filbert Blight
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Hazelnut Accessions from Russia and Crimea Transmit Resistance to Eastern Filbert Blight

机译:俄罗斯和克里米亚的榛子种传播了对东部欧洲榛树疫病的抵抗力

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摘要

Eastern filbert blight (EFB), caused by the fungus Anisogramma anomala, severely restricts production ot European hazelnuts (Corylus avellana) in North America. The planting of EFB-resistant cultivars is considered to be the most effective disease management strategy. In 2002, a seed-based germplasm collection was made in Russia and Crimea to add diversity to the U.S. hazelnut collection and search for new sources of resistance. The resulting seedlings were grown and evaluated in both Oregon and NewJersey—in Oregon, seedlings were first evaluated for horticultural traits (i.e., nut and kernel characteristics, yield) with improved selections later subjected to the EFB pathogen, whereas in New Jersey, all seedlings were first exposed to EFB with thehorticultural traits of the survivors examined later. From a total of 1299 seedlings grown in Oregon, 68 Russian and 29 Crimean improved selections were identified. In this study, they were clonally propagated and evaluated for disease response after being exposed to A. anomala through greenhouse inoculations and/or exposure under a structure topped with diseased wood. Out of 1,285 seedlings planted in New Jersey, nearly all died from EFB; however, -70 resistant or highly tolerant trees were identified. As part of this study, 11 improved EFB-resistant seedlings were selected and crossed with susceptible male parents to examine inheritance of resistance. Fourteen progenies represented by 1,584 seedlings were field planted in 2010 and 2011, annually exposed to high levels of A. anomala, and evaluated for EFB response in January 2015. A rating scale of 0 (no signs or symptoms of EFB) to 5 (all stems containing cankers) was used. Results in Oregon showed that three selections from Russia and one from Crimea remained free of disease after multiple exposures. In New Jersey, all eleven accessions transmitted resistance to a useful number (24% to 59%) of their offspring. Interestingly, all progenies showed a clear bimodal distribution of resistant (rating =0) and highly susceptible trees (rating = 4 or 5) with few intermediate individuals, which indicates genetic control by one or a small number of major genes. The proportions of resistant trees differed among the accessions, with five parents producing progenies that segregated in a ratio of 1 resistant: 1 susceptible, four in a ratio of 1 resistant: 3 susceptible, and two producing an abundance of resistant seedlings. Additional work, including #-gene mapping, is needed to examine whether or not theseselections represent different /{-genes. Overall, our findings highlight and document the value of the new hazelnut germplasm from Russia and Crimea which holds substantial promise for the breeding of improved cultivars.
机译:由真菌Anisogramma anomala引起的东部欧洲榛树病(EFB)严重限制了北美欧洲榛子(Corylus avellana)的生产。种植耐EFB的品种被认为是最有效的疾病管理策略。 2002年,在俄罗斯和克里米亚建立了一个基于种子的种质资源库,以增加美国榛子收集库的多样性,并寻找新的抗药性来源。所得的幼苗在俄勒冈州和新泽西州均进行了生长和评估-在俄勒冈州,首先对幼苗的园艺性状(即坚果和仁特性,产量)进行评估,然后对选择的种子进行改良,然后再接种EFB病原体,而在新泽西州,所有幼苗首先接受了具有幸存者园艺特征的EFB,随后对其进行了检查。从俄勒冈州总共种植的1299株幼苗中,鉴定出68株俄罗斯和29株克里米亚改良品种。在这项研究中,通过温室接种和/或在患病木材顶盖的结构下暴露于异常农杆菌后,将它们克隆繁殖并评估疾病反应。在新泽西州种植的1,285棵树苗中,几乎所有树苗都因EFB死亡;但是,鉴定出了-70株抗性或高耐受性的树。作为这项研究的一部分,选择了11株改良的EFB抗性幼苗,并与易感的雄性亲本杂交以检查抗性的遗传。在2010年和2011年,以14584个幼苗为代表的14个后代在田间种植,每年暴露于高水平的A. anomala,并在2015年1月评估了EFB的响应。等级量表为0(无EFB的症状或体征)至5(全部)使用含有溃疡病的茎)。俄勒冈州的结果显示,来自俄罗斯的三种选择和来自克里米亚的一种选择在多次暴露后仍然没有疾病。在新泽西州,所有11个种质都向其后代的有用数量(24%至59%)传递了抗性。有趣的是,所有后代均显示出清晰的双峰分布,即抗性(等级= 0)和高度易感的树木(等级= 4或5),中间个体很少,这表明由一个或少数主要基因进行遗传控制。抗性树种的比例在种质之间有所不同,其中五个亲本产生的后代以1抗性:1易感性的比例分离,四个以1抗性:3易感性的比例分离,而两个产生大量抗性幼苗。需要进行其他工作,包括#基因映射,以检查这些选择是否代表不同的/基因。总体而言,我们的研究结果突出并证明了来自俄罗斯和克里米亚的新型榛子种质的价值,这些种质对改良品种的育种具有重大希望。

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