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首页> 外文期刊>Plant Disease >Pea seed-borne mosaic virus in Field Pea: Widespread Infection, Genetic Diversity, and Resistance Gene Effectiveness
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Pea seed-borne mosaic virus in Field Pea: Widespread Infection, Genetic Diversity, and Resistance Gene Effectiveness

机译:豌豆中的豌豆种子传播的花叶病毒:广泛感染,遗传多样性和抗性基因有效性

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From 2013 to 2015, incidences of Pea seed-borne mosaic virus (PSbMV) infection were determined in semi-leafless field pea (Pisum sativum) crops and trial plots growing in the Mediterranean-type environment of southwest Australia. PSbMV was found at incidences of 2 to 51% in 9 of 13 crops, 1 to 100% in 20 of 24 cultivar plots, and 1 to 57% in 14 of 21 breeding line plots. Crops and plots of 'PBA Gunyah', 'Kaspa', and 'PBA Twilight' were frequently PSbMV infected but none of PSbMV resistance gene .sbm/-carrying 'PBA Wharton' plants were infected. In 2015,14 new PSbMV isolates obtained from these various sources were sequenced and their partial coat protein (CP) nucleotide sequences analyzed. Sequence identities and phylogenetic comparison with 39 other PSbMV partial CP nucleotide sequences from GenBank demonstratedthat at least three PSbMV introductions have occurred to the region, one of which was previously unknown. When plants of 'Greenfeast' and PBA Gunyah pea (which both carry resistance gene sbm2) and PBA Wharton and 'Yarrum' (which carry sbml) were inoculated with PSbMV pathotype P-2 isolate Wl, resistance was overcome in a small proportion of plants of each cultivar, showing that resistance-breaking variants were likely to be present. An improved management effort by pea breeders, advisors, and growers isrequired to diminish infection of seed stocks, avoid sbm gene resistance being overcome in the field, and mitigate the impact of PSbMV on seed yield and quality. A similar management effort is likely to be needed in field pea production elsewhere in the world.
机译:从2013年到2015年,确定了在澳大利亚西南部地中海型环境中生长的半无叶豌豆(Pisum sativum)作物和试验区豌豆种子传播的花叶病毒(PSbMV)感染的发生率。在13种作物中的9种中发现PSbMV的发生率为2%至51%,在24个品种地中的20种中为1%至100%,在21种育种地中的1%至57%。 “ PBA Gunyah”,“ Kaspa”和“ PBA Twilight”的农作物和地块经常被PSbMV感染,但携带PSbMV抗性基因.sbm /的“ PBA Wharton”植物均未被感染。在2015年,对从这些不同来源获得的14种新PSbMV分离株进行了测序,并对它们的部分外壳蛋白(CP)核苷酸序列进行了分析。序列同一性和与来自GenBank的39个其他PSbMV部分CP核苷酸序列的系统发育比较表明,该区域至少发生了3次PSbMV导入,其中一个以前是未知的。当向PSbMV致病型P-2分离株W1接种'Greenfeast'和PBA Gunyah豌豆(均带有抗性基因sbm2)以及PBA Wharton和'Yarrum'(均带有sbm1)的植物时,在小部分植物中克服了抗性每个品种的抗性,表明可能存在抗性突变体。需要豌豆育种者,顾问和种植者改善管理工作,以减少种子种群的感染,避免田间克服sbm基因抗性,并减轻PSbMV对种子产量和品质的影响。世界其他地方的豌豆生产也可能需要类似的管理工作。

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