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Soybean Tolerance to Water-Saturated Soil and Role of Resistance to Phytophthora sojae

机译:大豆对水饱和土壤的耐受性及其对大豆疫霉菌的抗性作用

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There are differences among soybean [Glycine max (L.) Merr.] genotypes for tolerance to water-saturated soil conditions. Phytophthora root rot caused by Phytophthora sojae (M.J. Kaufmann and J.W. Gerdemann) is problematic for soybean when the soil is excessively wet. Our objectives were (i) to determine if genotype-by-environment (G x E) interactions existed for yield between water-saturated (irrigated) vs. control (nonirrigated) environments using 37 soybean genotypes; and (ii) to determine whether resistance and/or partial resistance to P. sojae was associated with tolerance to water-saturated soil conditions. The G x E was significant between the water-saturated treatment and control. Some genotypes that yielded well under control conditions did not yield well under saturated conditions. Based on yield, we identified eight genotypes that were tolerant and eight genotypes that lacked tolerance to water-saturated soil conditions. These 16 genotypes were evaluated for resistance and partial resistance to Phytophthora using three virulence phenotypes. Those genotypes that were tolerant to water-saturated soil conditions possessed either a major gene or good partial resistance to P. sojae. We concluded that resistance to P. sojae was an important factor that increased tolerance to water-saturated soil, but that unknown other genetic factors were also important.
机译:大豆[Glycine max(L.)Merr。]基因型对水饱和土壤条件的耐受性存在差异。当土壤过湿时,大豆疫霉菌(M.J. Kaufmann和J.W. Gerdemann)引起的疫霉菌根腐病对大豆是有问题的。我们的目标是(i)确定使用37种大豆基因型在水饱和(灌溉)与对照(非灌溉)环境之间的产量之间是否存在因环境而异的基因型(G x E)相互作用; (ii)确定对大豆疫霉的抗性和/或部分抗性是否与对水饱和土壤条件的耐受性相关。在水饱和处理和对照之间,G x E显着。在对照条件下丰产的某些基因型在饱和条件下丰产。根据产量,我们确定了8种耐性基因型和8种对水饱和土壤条件缺乏耐受性的基因型。使用三种毒力表型评估了这16个基因型对疫霉的抗性和部分抗性。那些耐水饱和土壤条件的基因型具有主要基因或对大豆疫霉的良好部分抗性。我们得出的结论是,对大豆疫霉的抗性是增加对水饱和土壤的耐受性的重要因素,但未知的其他遗传因素也很重要。

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