首页> 外文会议>Symposium on Biotechnology for Fuels and Chemicals >Rapid Isolation of the Trichoderma Strain with Higher Degrading Ability of a Filter Paper and Superior Proliferation Characteristics Using Avicel Plates and the Double-Layer Selection Medium
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Rapid Isolation of the Trichoderma Strain with Higher Degrading Ability of a Filter Paper and Superior Proliferation Characteristics Using Avicel Plates and the Double-Layer Selection Medium

机译:使用Avicel板和双层选择培养基快速分离具有较高降解能力和优异增殖特性的木霉菌株

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The cost of cellulase is still a problem for bioethanol production. As the cellulase of Trichoderma reesei is applicable for producing ethanol from cellulosic materials, the cellulase productivity of this fungus should be increased. Therefore, we attempted to develop a system to isolate the strain with higher degrading ability of a filter paper and superior proliferation characteristics among the conidia treated with the mitotic arrester, colchicine. When green mature conidia of T. reesei RUT C-30 were swollen, autopolyploidized, and incubated in the double-layer selection medium containing Avicel, colonies appeared on the surface earlier than the original strain. When such colonies and the original colony were incubated on the Avicel plates, strain B5, one of the colonies derived from the colchicine-treated conidia, showed superior proliferation characteristics. Moreover, when strain B5 and the original strain were compared in the filter paper degrading ability and the cellulose hydrolyzing activity, strain B5 was also superior to the original strain. It was suspected that superior proliferation characteristics of strain B5 reflects higher filter paper degrading ability. Thus, we concluded that the Trichoderma strain with higher degrading ability of a filter paper and superior proliferation characteristics can be isolated using Avicel plates and the double-layer selection medium.
机译:纤维素酶的成本仍然是生物乙醇生产的问题。由于里氏木霉的纤维素酶适用于由纤维素材料生产乙醇,因此应提高这种真菌的纤维素酶生产率。因此,我们试图开发一种系统来分离在有丝分裂阻滞剂秋水仙碱处理过的分生孢子中具有较高的滤纸降解能力和优异的增殖特性的菌株。当里氏木霉RUT C-30的绿色成熟分生孢子肿胀,自身多倍体化并在含有Avicel的双层选择培养基中孵育时,菌落比原始菌株早出现在表面上。当将这些菌落和原始菌落在Avicel平板上温育时,菌株B5(源自秋水仙碱处理的分生孢子的菌落之一)显示出优异的增殖特性。此外,当将菌株B5和原始菌株的滤纸降解能力和纤维素水解活性进行比较时,菌株B5也优于原始菌株。怀疑菌株B5的优异增殖特性反映出较高的滤纸降解能力。因此,我们得出结论,可以使用Avicel平板和双层选择培养基分离具有较高的滤纸降解能力和优异的增殖特性的木霉属菌株。

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