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Evaluation of Malus genetic resources for tolerance to apple replant disease (ARD)

机译:对恶性遗传资源对苹果补充疾病(ARD)的耐受性评价

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摘要

Replant disease, also described as soil decline, is known for centuries; yet the ultimate causes remain unlcnown. After repeated growing of the same plant species, the soil loses its capacity to support the growth of plants of the respective species. Replant disease is characterized by a poor vegetative development, stunted growth and reduced yield in terms of quantity and quality. A growing concern for tree nurseries and orchards is that most dwarfing apple rootstocks used in modern apple cultivation are susceptible to apple replant disease (ARD). Thus, the use of ARD-tolerant rootstocics would be a sustainable and economically advantageous solution. Currently, only a few Malus genotypes less susceptible to ARD are described. Identifying ARD-tolerant genotypes and understanding the molecular and physiological basis underpinning such tolerance are prerequisites for future rootstock breeding. Hence, in a greenhouse bio-test, the responses to ARD were evaluated for 48 Malus genotypes, including 41 accessions of 18 wild apple species and 7 rootstock genotypes. Susceptibility to ARD was classified by an ARD-susceptibility index (ASI) calculated based on biomass and increase in shoot length increase, respectively, after cultivation of each genotype in both ARD-soil and disinfected ARD soil by gamma-irradiation. In total, six accessions were categorized as less susceptible based on either the ASI_(biomass) or the ASI_(shoot). These accessions are available for future breeding of less susceptible rootstocks.
机译:重生疾病,也被描述为土壤下降,以几个世纪而闻名;然而,最终的原因仍然没有牌。经过相同的植物物种重复生长后,土壤失去了其支持各种物种植物生长的能力。重生疾病的特点是营养发展差,增长急剧增长和数量和质量的产量降低。对树苗和果园的越来越担心的是,现代苹果栽培中使用的大多数矮化苹果砧木易患苹果补充疾病(ARD)。因此,使用耐抗体的rootocics是可持续和经济上有利的解决方案。目前,仅描述易于ard的少数甘蓝基因型。鉴定抗原基因型并理解不稳定这种耐受的分子和生理基础是未来砧木育种的先决条件。因此,在温室生物试验中,对ARD的反应进行了评估48个Malus基因型,包括41种野生苹果物种和7种砧木基因型。通过基于生物量计算的ARD易感性指数(ASI)对ARD的敏感性分别,分别通过γ辐射培养了抗原土壤和消毒的ARD土壤中的每种基因型,分别增加了枝条长度增加。总共六种载体分类为基于ASI_(生物量)或ASI_(拍摄)不太容易受到敏感。这些可用于未来育种砧木的未来繁殖。

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