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Enniatin production by fusarium strains and its effect on potato tuber tissue.

机译:镰刀菌菌株产生的烯属甜蛋白及其对马铃薯块茎组织的影响。

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Several Fusarium strains produce the cyclohexadepsipeptide enniatin, a host-nonspecific phytotoxin. Enniatins are synthesized by the 347-kDa multifunctional enzyme enniatin synthetase. In the present study, 36 Fusarium strains derived from a wide range of host plants were characterized with respect to enniatin production in different media. Thirteen of these strains produced enniatins on one or more of these media. To determine whether enniatin production affected virulence, an assay on potato tuber tissue was performed. Seven enniatin-producing and 16 nonproducing strains induced necrosis of potato tuber tissue, so that enniatin synthesis is not essential for the infection of potato tuber tissue. The application of a mixture of enniatins to slices of potato tuber, however, caused necrosis of the tissue. Therefore, enniatin production by the enniatin-synthesizing strains may affect their pathogenicity. The enniatin synthetase gene (esyn1) of Fusarium scirpi ETH 1536 was used as a probe to determine if similar sequences were present in the strains examined. In Southern blot analyses, DNA sequences hybridizing with the esyn1 probe were present in all but two of the strains examined. In some cases, enniatin-nonproducing strains had the same hybridization pattern as enniatin producers.
机译:几种镰刀菌菌株产生了环六肽肽烯属蛋白,一种宿主非特异性植物毒素。通过347-kDa多功能酶烯醛酸合成酶来合成烯醛酸。在当前的研究中,针对在不同培养基中产生的烯醇丁胺(enniatin)产生,表征了来自广泛宿主植物的36个镰刀菌菌株。这些菌株中有13种在一种或多种这些培养基上产生了烯尿苷。为了确定enniatin的产生是否影响毒力,对马铃薯块茎组织进行了测定。七个产生烯睾增生素的菌株和16个未产生烯醇增生的菌株诱导了马铃薯块茎组织的坏死,因此,烯睾丙肽合成对于马铃薯块茎组织的感染不是必不可少的。然而,将烯尿嘧啶混合物用于马铃薯块茎切片,则导致组织坏死。因此,由enenatin合成菌株产生的enniatin可能影响其致病性。 Fusarium scirpi ETH 1536的烯属生物素合成酶基因(esyn1)被用作探针,以确定在检测的菌株中是否存在相似的序列。在Southern印迹分析中,除了两个被检测的菌株外,与esyn1探针杂交的DNA序列均存在。在某些情况下,不产生enenatin的菌株与enenatin生产者具有相同的杂交模式。

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