首页> 外文期刊>HortScience >Assessment of resistance in lettuce (Lactuca sativa L.) to mycelial and ascospore infection by Sclerotinia minor Jagger and S. sclerotiorum (Lib.) de Bary.
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Assessment of resistance in lettuce (Lactuca sativa L.) to mycelial and ascospore infection by Sclerotinia minor Jagger and S. sclerotiorum (Lib.) de Bary.

机译:评估莴苣( Lactuca sativa L.)对小核盘菌 Jagger和 S的菌丝体和子囊孢感染的抗性。巴利硬化菌(库)。

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摘要

Lettuce drop caused by Sclerotinia spp. is an economically important disease of lettuce (Lactuca sativa L.), and cultivars with resistance to mycelial infection by Sclerotinia sclerotiorum (Lib.) de Bary and S. minor Jagger as well as to S. sclerotiorum ascospores are needed. Assessing resistance in field experiments can be complicated by fast bolting or small stature lettuce lines that may escape rather than resist the pathogens. Therefore, methods to select resistant lines from morphologically variable populations are needed. We used S. sclerotiorum and S. minor-infested field experiments, regression analysis, field experiments with artificially high plant densities, and S. sclerotiorum ascospore inoculations to identify lettuce lines with resistance to both pathogens. Three replicated experiments in S. sclerotiorum-infested fields were conducted in Yuma, AZ, and three replicated experiments in a S. minor-infested field were conducted in Salinas, CA, using diverse populations of iceberg, romaine, leaf, butterhead, Latin, oilseed lettuce, and wild relatives of lettuces; and genetic variation for the incidence of lettuce drop from mycelial infections was identified. In two S. minor field experiments, a quadratic regression model was developed that related rapid bolting with reduced lettuce drop. Regression residuals were calculated, and eight cultivars or PIs had negative residuals in two independent field experiments, indicating higher resistance than predicted by their rate of bolting. Eruption, a small-statured Latin cultivar, had significantly lower disease levels than susceptible cultivars in experiments with high plant densities, indicating that its small size did not facilitate disease escape. Ascospore inoculations confirmed resistance in 'Eruption' and L. virosa SAL012, whereas the oilseed lettuce PI 251246 may have partial resistance to infection. These lines will likely be useful for development of Sclerotinia spp.-resistant lettuce cultivars.
机译: Sclerotinia spp引起的生菜下降。是一种经济上重要的生菜疾病(Lactuca sativa L.),其品种对Bary和 S菌核盘菌(Sclerotinia sclerotiorum)(i ..)的菌丝体感染具有抵抗力。次要 Jagger以及 S。需要菌核孢子孢子。快速螺栓连接或小的生菜线可能逃脱而不是抵抗病原体,因此在野外实验中评估抗药性可能会变得复杂。因此,需要从形态可变的种群中选择抗性品系的方法。我们使用了 S。硬化菌和 S。次生植物侵染的田间试验,回归分析,人工高植物密度的田间试验和 S。接种硬核孢子囊孢子以鉴定对两种病原体均具有抗性的生菜品系。在i中进行了三个重复的实验。在亚利桑那州的尤马市进行了菌核病侵染的田野,并在 S中进行了三个重复的实验。在加利福尼亚州萨利纳斯市进行了小规模侵染的田间耕作,使用了不同种类的冰山,长叶莴苣,叶子,毛头,拉丁,油料生菜和莴苣的野生近缘种;并鉴定了因菌丝体感染而引起的生菜下降的遗传变异。在两个 S中。次要的田间试验,开发了一种二次回归模型,该模型与快速生菜和降低生菜滴量有关。计算了回归残差,在两个独立的田间试验中,八个品种或PI的残差均为负,表明其抗性高于其抽rate率所预测的水平。在植物密度高的实验中,爆发是一种小型的拉丁品种,其病害水平明显低于易感品种,这表明其体积小并不能促进疾病的逃逸。子囊孢子接种证实了“爆发”和 L中的抗性。病毒SAL012,而油菜生菜PI 251246可能对感染具有部分抵抗力。这些品系可能对耐油菜菌的抗生菜品种的发展有用。

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