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[蓝光对黑曲霉分生孢子形成及糖化酶增强的影响]

[Effect of blue light on conidiation development and glucoamylase enhancement in Aspergillus niger].

作者信息

Zhu Jun-chen, Wang Xiao-jing

机构信息

Department of Applied Biological Engineering, Shenzhen Polytechnic, Shenzhen 518055, China.

出版信息

Wei Sheng Wu Xue Bao. 2005 Apr;45(2):275-8.

Abstract

Pure blue (BL) or red light (RL) were obtained by filtering blue or red fluorescent lamp light through plastic filters. With the dark condition as control, the effect of BL and RL on the Aspergillus niger were studied including soluble protein content of mycelium, glucoamylase activity, the biomass as well as sporangiophore photomorphogenesis and vegetative spore development. Irradiation with BL and RL wholly promoted glucoamylase activity together with the rise of the soluble protein content and the mycelium growth. The glucoamylase activity of mycelia culture under blue light was enhanced 2.54 times than that of control. In the phases of developmental growth (young mycelia and sporangiophores), glucoamylase activity and relative conductivity ratio of mycelium were higher under blue light than under dark, the enhanced glucoamylase activity likely stemmed from development of macrosporangiophores of Aspergillus niger promoted by blue light. In addition, the increase of glucoamylase activity under blue light was highest at the stage of macrosporangiophores forming and conidiation, then declined owing to spores aging. As to young microsporangiophores under darkness the glucoamylase activity just relatively increased and declined rapidly with age. Different from control, irradiation with blue light at the time of 72 h after inoculation was able to stimulate development of macrosporangiophore and conidium along with the rise of glucoamylase activity of Aspergillus niger.

摘要

通过塑料滤光片过滤蓝色或红色荧光灯光,可获得纯蓝光(BL)或红光(RL)。以黑暗条件作为对照,研究了蓝光和红光对黑曲霉的影响,包括菌丝体的可溶性蛋白质含量、糖化酶活性、生物量以及分生孢子梗的光形态建成和营养孢子发育。蓝光和红光照射均能促进糖化酶活性,同时伴随着可溶性蛋白质含量的增加和菌丝体生长。蓝光下菌丝体培养物的糖化酶活性比对照提高了2.54倍。在发育生长阶段(幼龄菌丝体和分生孢子梗),蓝光下菌丝体的糖化酶活性和相对电导率比黑暗条件下更高,糖化酶活性的增强可能源于蓝光促进了黑曲霉大型分生孢子梗的发育。此外,蓝光下糖化酶活性在大型分生孢子梗形成和产孢阶段增加最高,随后由于孢子老化而下降。对于黑暗条件下的幼龄小型分生孢子梗,糖化酶活性仅相对增加,并随着年龄迅速下降。与对照不同,接种后72小时照射蓝光能够刺激黑曲霉大型分生孢子梗和分生孢子的发育,同时糖化酶活性升高。

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