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一种用于评估大豆对菜豆壳球孢抗性的切茎接种技术。

A Cut-Stem Inoculation Technique to Evaluate Soybean for Resistance to Macrophomina phaseolina.

作者信息

Twizeyimana M, Hill C B, Pawlowski M, Paul C, Hartman G L

机构信息

Department of Crop Sciences.

United States Department of Agriculture-Agricultural Research Service and Department of Crop Sciences, University of Illinois, Urbana 61801.

出版信息

Plant Dis. 2012 Aug;96(8):1210-1215. doi: 10.1094/PDIS-02-12-0126-RE.

Abstract

Charcoal rot of soybean is caused by the fungal pathogen Macrophomina phaseolina. Effective and reliable techniques to evaluate soybean for resistance to this fungus are needed to work toward a management scheme that would utilize host resistance. Three experiments were conducted to investigate the use of a cut-stem inoculation technique to evaluate soybean genotypes for resistance to M. phaseolina. The first experiment compared aggressiveness of M. phaseolina isolates collected from soybean on different soybean genotypes. Significant (P < 0.05) differences among the isolates and genotypes for relative area under disease progress curve (RAUDPC) were found without a significant isolate-genotype interaction. The second experiment compared 14 soybean genotypes inoculated with M. phaseolina in multiple trials conducted in two environments, the greenhouse and growth chamber. Significant (P < 0.05) differences among environments and highly significant (P < 0.001) differences among soybean genotypes for RAUDPC were found. The environment-genotype interaction was nonsignificant (P > 0.05). Soybean genotypes DT97-4290, DT98-7553, DT98-17554, and DT99-16864 had significantly (P < 0.05) lower RAUDPC than 7 of the 14 genotypes. The third experiment evaluated resistance in selected Phaseolus spp. and soybean genotypes. The range of RAUDPC for Phaseolus spp. was similar to that of soybean. The Phaseolus lunatus 'Bush Baby Lima' had significantly (P < 0.05) lower RAUDPC than P. vulgaris genotypes evaluated. The cut-stem inoculation technique, which has several advantages over field tests, successfully distinguished differences in aggressiveness among M. phaseolina isolates and relative differences among soybean genotypes for resistance to M. phaseolina comparable with results of field tests.

摘要

大豆炭腐病由真菌病原体菜豆壳球孢引起。为制定利用寄主抗性的管理方案,需要有效且可靠的技术来评估大豆对这种真菌的抗性。开展了三项试验,以研究采用茎部接种技术评估大豆基因型对菜豆壳球孢的抗性。第一项试验比较了从大豆上分离得到的菜豆壳球孢菌株对不同大豆基因型的侵染力。发现菌株和基因型在病害进展曲线下相对面积(RAUDPC)方面存在显著(P < 0.05)差异,但菌株与基因型之间不存在显著互作。第二项试验在温室和生长室这两种环境下进行了多次试验,比较了接种菜豆壳球孢的14个大豆基因型。发现环境间存在显著(P < 0.05)差异,大豆基因型间存在极显著(P < 0.001)差异。环境与基因型的互作不显著(P > 0.05)。大豆基因型DT97 - 4290、DT98 - 7553、DT98 - 17554和DT99 - 16864的RAUDPC显著(P < 0.05)低于14个基因型中的7个。第三项试验评估了选定的菜豆属物种和大豆基因型的抗性。菜豆属物种的RAUDPC范围与大豆相似。菜豆‘矮生宝宝利马’的RAUDPC显著(P < 0.05)低于所评估的普通菜豆基因型。茎部接种技术相对于田间试验具有若干优势,成功区分了菜豆壳球孢菌株间的侵染力差异以及大豆基因型间对菜豆壳球孢抗性的相对差异,其结果与田间试验相当。

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