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Resistance of soybean genotypes to Sclerotinia sclerotiorum isolates in different incubation environments

机译:不同培养条件下大豆基因型对核盘菌核盘菌的抗性

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Sclerotinia sclerotiorum is an important soybean pathogen. The objectives of this study were to evaluate levels of resistance of soybean genotypes to the fungus, and to determine the effects of different incubation environments on host resistance and pathogen aggressiveness. Two experiments were conducted using 103 genotypes from the seed collection of Laboratório de Desenvolvimento de Germoplasma, Universidade Federal de Uberlandia (LAGER-UFU). The first experiment was conducted in a greenhouse, and the second in a growth chamber. Inoculations were performed by the straw test method using two Brazilian isolates of the fungus, one from Uberaba, Minas Gerais, and the other from Jataí, Goiás. The average stem-lesion length (cm) at 5 days post-inoculation was used to determine levels of resistance. Overall, the most resistant genotype was EMGOPA-316, and the most susceptible genotype was LAGER-29. Incubation in a growth chamber and use of the Jataí isolate generated the most reliable data, and multivariate analysis indicated that the genotypes were divergent under the growth chamber conditions. Therefore, when studying host resistance of soybean genotypes to S. sclerotiorum, it is important to use environmental conditions favorable to the fungus and aggressive isolates.
机译:核盘菌是一种重要的大豆病原体。这项研究的目的是评估大豆基因型对真菌的抗性水平,并确定不同孵育环境对宿主抗性和病原体侵袭性的影响。使用来自联邦乌贝兰迪亚大学种质实验室的种子的103种基因型进行了两个实验。第一个实验在温室中进行,第二个实验在生长室中进行。使用两种巴西真菌分离物通过稻草试验方法进行接种,其中一种来自米纳斯吉拉斯州的Uberaba,另一种来自果阿州的贾塔。接种后5天的平均茎病变长度(cm)用于确定抗性水平。总体而言,最耐药的基因型是EMGOPA-316,而最易感的基因型是LAGER-29。在生长室中孵育和使用Jataí分离株可产生最可靠的数据,多变量分析表明,基因型在生长室条件下存在差异。因此,在研究大豆基因型对核盘菌的宿主抗性时,重要的是使用有利于真菌和侵袭性分离株的环境条件。

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