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首页> 外文期刊>Plant Disease >Pathogenicity of Fumonisin-producing and Nonproducing Strains of Aspergillus Species in Section Nigri to Maize Ears and Seedlings
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Pathogenicity of Fumonisin-producing and Nonproducing Strains of Aspergillus Species in Section Nigri to Maize Ears and Seedlings

机译:NIGRI截面为玉米耳和幼苗的Fumonisin产生和无曲霉菌株的致病性

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摘要

Species of Aspergillus section Nigri are commonly associated with maize kernels, and some strains can produce fumonisin mycotoxins. However, there is little information about the extent to which these fungi contribute to fumonisin contamination in grain, the damage they cause to maize ears, or their effects on maize seed germination and seedling health. We compared fumonisin-producing and nonproducing strains of A. niger, A. welwitschiae, A. phoenicis, A. tubingensis, and A. carbonarius from the United States and Italy in laboratory and field studies to assess their ability to contribute to fumonisin contamination, to cause maize ear rot, and to affect seed germination and seedling growth. In laboratory experiments, some strains of each Aspergillus species reduced germination or seedling growth, but there was high variability among strains within species. There were no consistent differences between fumonisin-producing and nonproducing strains. In field studies in Iowa and Illinois, strains were variable in their ability to cause ear rot symptoms, but this was independent of the ability of the Aspergillus strains to produce fumonisins. Contamination of grain with fumonisins was not consistently increased by inoculation with Aspergillus strains compared with the control, and was much greater in F. verticillioides-inoculated treatments than in Aspergillus-inoculated treatments. However, the ratio of the FB analogs FB2 and FB1 was altered by inoculation with some Aspergillus strains, indicating that FB2 production by Aspergillus strains occurred in the field. These results demonstrate the pathogenic capabilities of strains of Aspergillus in section Nigri, but suggest that their effects on maize ears and seedlings are not related to their ability to produce fumonisins, and that fumonisin contamination of grain caused by Aspergillus spp. is not as significant as that caused by Fusarium spp.
机译:曲霉属叶片的种类与玉米内核共同关联,有些菌株可以产生富隆霉菌毒素。然而,几乎没有关于这些真菌在谷物中污染的程度的信息,它们导致玉米耳朵的损伤或它们对玉米种子萌发和幼苗健康的影响。我们比较了A.Neger,A. Welwitschiae,A.Phoenicis,A. Tubingensis和A. Carbonarius的植物蛋白产生和无发霉的菌株。实验室和意大利在实验室和田间研究中,以评估他们对Fumonisin污染有助于污染的能力,使玉米耳腐蚀,并影响种子萌发和幼苗生长。在实验室实验中,每种曲霉物种的一些菌株降低了萌发或幼苗生长,但物种在菌株中存在高度变化。富隆产生的产生和无发血菌株之间没有一致的差异。在爱荷华州和伊利诺伊州的野外研究中,菌株在其引起耳腐症状的能力方面是可变的,但这与曲霉菌株生产富马菌素的能力无关。通过与对照相比,通过接种曲霉菌株与曲霉菌菌株接种而污染谷物的污染,在F.甲状腺素内的处理中比在Aspergillus接种的处理中的处理得多。然而,通过与一些曲霉菌株接种进行FB类似物FB2和FB1的比例,表明在该领域中发生曲霉菌株的FB2产生。这些结果表明,曲霉菌株在NIGRI部分菌株的病原能力,但表明它们对玉米耳和幼苗的影响与其生产福诺素的能力无关,以及曲霉素引起的谷物污染的粪便污染。并不像由镰刀菌SPP引起的那么重要。

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