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首页> 外文期刊>African Journal of Microbiology Research >Carbon and nitrogen sources differently influence Penicillium sp. HC1 conidiation in solid and liquid culture
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Carbon and nitrogen sources differently influence Penicillium sp. HC1 conidiation in solid and liquid culture

机译:碳源和氮源对青霉菌的影响不同。固体和液体培养中的HC1混合

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This work evaluates the effect of different carbon and nitrogen sources on conidiophore and conidia formation in Penicillium sp. HC1, a cellulolytic and xylanolytic fungi arousing industrial interest. A factorial design was used having two variables: A carbon source (glucose, sucrose, cassava starch, wheat bran, and rice flour) and a nitrogen source (tryptose, yeast extract, (NH4)2HPO4, and KNO3). The resulting 20 combinations were evaluated in both solid and liquid medium. Different C:N ratios (5:1, 10:1, 20:1, and 40:1) were also evaluated for one of the combinations. The results revealed the influence of both carbon and nitrogen sources on conidiophore and conidia morphology and the amount of conidia produced; however, this depended on culture condition. A particular culture’s condition could also influence conidia tolerance to stressful conditions; conidia having close to 100% tolerance were obtained in liquid media having complex carbon sources and inorganic nitrogen sources. Regarding the C:N ratio, it was found out that nitrogen limitation increased conidia tolerance for both conditions (solid, liquid), the effect being more noticeable in submerged conditions. Understanding the effects of nutrition on conidia production and quality in fungi having industrial interest is a key issue when developing large-scale production.
机译:这项工作评估了不同的碳和氮源对青霉菌中分生孢子和分生孢子形成的影响。 HC1,引起工业兴趣的纤维素分解和木聚糖分解真菌。使用的析因设计具有两个变量:碳源(葡萄糖,蔗糖,木薯淀粉,麦麸和米粉)和氮源(色氨酸,酵母提取物,(NH4)2HPO4和KNO3)。在固体和液体介质中评估所得的20种组合。对于其中一种组合,还评估了不同的C:N比(5:1、10:1、20:1和40:1)。结果揭示了碳源和氮源对分生孢子和分生孢子形态以及分生孢子数量的影响。但是,这取决于培养条件。特定文化条件也可能影响分生孢子对压力条件的耐受性;在具有复杂碳源和无机氮源的液体介质中获得了具有接近100%耐受性的分生孢子。关于C:N比,发现氮限制增加了两种条件(固体,液体)的分生孢子耐受性,在淹没条件下效果更明显。在发展大规模生产时,了解营养对具有工业价值的真菌分生孢子生产和质量的影响是关键问题。

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