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Application of DNA Bar Codes for Screening of Industrially Important Fungi: the Haplotype of Trichoderma harzianum Sensu Stricto Indicates Superior Chitinase Formation▿

机译:DNA条形码在工业重要真菌的筛选中的应用:哈氏木霉的单倍型表明了几丁质酶的形成

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摘要

Selection of suitable strains for biotechnological purposes is frequently a random process supported by high-throughput methods. Using chitinase production by Hypocrea lixii/Trichoderma harzianum as a model, we tested whether fungal strains with superior enzyme formation may be diagnosed by DNA bar codes. We analyzed sequences of two phylogenetic marker loci, internal transcribed spacer 1 (ITS1) and ITS2 of the rRNA-encoding gene cluster and the large intron of the elongation factor 1-alpha gene, tef1, from 50 isolates of H. lixii/T. harzianum, which were also tested to determine their ability to produce chitinases in solid-state fermentation (SSF). Statistically supported superior chitinase production was obtained for strains carrying one of the observed ITS1 and ITS2 and tef1 alleles corresponding to an allele of T. harzianum type strain CBS 226.95. A tef1-based DNA bar code tool, TrichoCHIT, for rapid identification of these strains was developed. The geographic origin of the strains was irrelevant for chitinase production. The improved chitinase production by strains containing this haplotype was not due to better growth on N-acetyl-β-d-glucosamine or glucosamine. Isoenzyme electrophoresis showed that neither the isoenzyme profile of N-acetyl-β-glucosaminidases or the endochitinases nor the intensity of staining of individual chitinase bands correlated with total chitinase in the culture filtrate. The superior chitinase producers did not exhibit similarly increased cellulase formation. Biolog Phenotype MicroArray analysis identified lack of N-acetyl-β-d-mannosamine utilization as a specific trait of strains with the chitinase-overproducing haplotype. This observation was used to develop a plate screening assay for rapid microbiological identification of the strains. The data illustrate that desired industrial properties may be an attribute of certain populations within a species, and screening procedures should thus include a balanced mixture of all genotypes of a given species.
机译:用于生物技术目的的合适菌株的选择通常是高通量方法支持的随机过程。以力氏腐质霉/哈茨木霉(Trichoderma harzianum)生产几丁质酶为模型,我们测试了DNA条形码是否可以诊断出具有优异酶形成能力的真菌菌株。我们分析了两个系统发育标记基因座的序列,分别是来自r。lixii / T的50个分离株的rRNA编码基因簇的内部转录间隔子1(ITS1)和ITS2,以及延伸因子1-alpha基因tef1的大内含子。 Harzianum,还经过测试以确定其在固态发酵(SSF)中产生几丁质酶的能力。对于携带观察到的ITS1和ITS2等位基因之一以及对应于哈茨木霉型CBS 226.95等位基因的tef1等位基因的菌株,获得了统计上支持的优良几丁质酶生产。开发了基于tef1的DNA条形码工具TrichoCHIT,用于快速鉴定这些菌株。菌株的地理来源与几丁质酶的生产无关。含有该单倍型的菌株改善的几丁质酶生产不是由于在N-乙酰基-β-d-葡糖胺或葡糖胺上更好的生长。同工酶电泳显示,N-乙酰基-β-氨基葡萄糖苷酶或内切壳多糖酶的同工酶谱与单个几丁质酶谱带的染色强度均与培养滤液中的总几丁质酶无关。优异的几丁质酶生产者未表现出类似的纤维素酶形成增加。 Biolog表型微阵列分析法确定缺乏N-乙酰基-β-d-甘露糖胺利用是几丁质酶生产单倍型菌株的特定特征。该观察结果用于开发平板筛选测定法,用于菌株的快速微生物鉴定。数据表明,所需的工业特性可能是物种内某些种群的属性,因此筛选程序应包括给定物种的所有基因型的平衡混合物。

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