LIU Xiaodan,WANG Junling,WANG Xia.Breeding of Laccase High Yield Strain for Ganoderma applanatum by Compound Mutation[J].Northern Horticulture,2019,43(14):124-129.[doi:10.11937/bfyy.20184621]
树舌灵芝复合诱变选育漆酶高产菌株
- Title:
- Breeding of Laccase High Yield Strain for Ganoderma applanatum by Compound Mutation
- Keywords:
- Ganoderma applanatum; laccase; UV; diethyl sulfate; compound mutation
- 文献标志码:
- A
- 摘要:
- 以一株产漆酶树舌灵芝的菌丝片段为试材,利用紫外线和硫酸二乙酯逐级诱变;采用愈创木酚显色圈初筛突变菌株,并通过摇瓶复筛对优势菌株产酶能力进行验证,以期选育稳定高产漆酶菌株。结果表明:最终诱变获得一株遗传稳定的高产突变株,与原始菌株相比,漆酶活性提高63.3%,同时发酵周期缩短1 d。
- Abstract:
- The mycelium fragments of Ganoderma applanatum were used as test material,using ultraviolet ray and diethyl sulfate to induce mutagenesis step by step,in order to select and breed stable and high yield laccase strain,the mutants were primary screened in guaiacol-containing SPDA plates,and then the ability of the dominant strains to produce laccase was verified by triangular bottle fermentation experiment.The results showed that a mutant strain with high yield and genetically stable was obtained finally,laccase activity was 63.3% higher than that of the original strain,and the fermentation cycle was shortened by 1 day.
参考文献/References:
[1]龚睿,孙凯,谢道月.真菌漆酶在绿色化学中的研究进展[J].生物技术通报,2018,34(4):24-34.[2]司静,李伟,崔宝凯,等.真菌漆酶性质、分子生物学及其应用研究进展[J].生物技术通报,2011(2):48-55.[3]刘家扬,焦国宝,有小娟.真菌漆酶的性质、生产及应用研究进展[J].生物技术通报,2016,32(4):24-33.[4]彭滟钞,曹福祥,董旭杰,等.漆酶的发酵生产及其应用研究进展[J].北方园艺,2013(24):206-210.[5]易小畅,蒋智,李娜.红芝漆酶高产菌株的诱变选育[J].食品研究与开发,2014,35(24):139-142.[6]郑蕾.白腐菌紫外诱变选育高产漆酶突变株及其产酶条件研究[J].生物学杂志,2012,29(5):96-99.[7]刘敏.产漆酶杏鲍菇原生质体紫外线诱变育种及其发酵条件研究[D].泰安:山东农业大学,2002.[8]张渊,王谦,张筱梅,等.白灵侧耳木质素酶、纤维素酶高活性菌株的诱变选育[J].河北大学学报(自然科学版),2005,25(6):654-658.[9]王岁楼,王琼波,陈春涛,等.灵芝原生质体诱变选育高产漆酶突变株的研究[J].食品科学,2006,27(5):53-57.[10]梅凡,江义,赵超,等.漆酶高产菌株的筛选及诱变育种[J].贵州农业科学,2014,42(2):128-131.[11]袁超,袁丹丹,赵建刚,等.硫酸二乙酯与紫外线复合诱变选育糖化酶高产菌株的研究[J].食品与药品,2018,20(3):219-223.[12]陈威.糙皮侧耳诱变选育漆酶高产菌株及降解木质素研究[D].锦州:辽宁工业大学,2018.[13]钱磊,张志军.灵芝漆酶研究进展[J].食用菌,2016(4):4-5.[14]刘禹,兰进,徐新然,等.灵芝属不同菌种漆酶活性的比较[J].中药材,2016,39(8):1692-1695.[15]潘志恒,岳鹍,孙勇民,等.树舌灵芝发酵产漆酶培养基优化[J].保鲜与加工,2016,16(4):107-111.[16]赵文娟,徐升运,任平.产漆酶裂褶菌的筛选及其产酶培养条件优化研究[J].湖北农业科学,2013,52(12):2792-2797.[17]彭滟钞,曹福祥,董旭杰,等.紫外、60Co复合诱变选育烟色烟管菌漆酶高产突变株[J].生物技术通报,2014(9):120-124.[18]宋冰,付永平,李丹,等.食药用菌诱变育种研究进展[J].微生物学通报,2017,44(9):2201-2212.[19]王春晖.食用菌领域原生质体技术研究应用浅析[J].中国食用菌,2011,30(3):3-5.[20]梁倩倩,魏生龙,丁玲强,等.荷叶离褶伞高产漆酶菌株选育及其漆酶酶学特性[J].天然产物研究与开发,2014(26):1178-1181.[21]关艳丽,赵新海,张庆华,等.平菇P16原生质体制备条件研究[J].食用菌,2017(6):30-31.[22]夏志兰,艾辛,姜性坚.60Coγ射线对杏鲍菇菌丝的诱变效应[J].激光生物学报,2004,13(4):298-301.[23]林瑞虾.草菇60Co诱变育种研究[D].福州:福建农林大学,2011.[24]周晓东.北虫草菌丝体诱变及优良菌株的筛选[D].保定:河北农业大学,2013.[25]章名春.工业微生物育种[M].上海:上海科技出版社,1990:108-323.[26]张建峰,黄梅花,张岩.红曲霉紫外诱变选育多糖高产菌株[J].吉林农业大学学报,2006,28(1):23-31.[27]陈敏.刺芹侧耳木质素降解酶的研究[D].杭州:浙江大学,2010.[28]房小雪,郑楠,赵敏.新月弯孢霉高产漆酶菌株的诱变及其培养条件优化[J].南京林业大学学报(自然科学版),2014,38(2):117-122.
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备注/Memo
第一作者简介:刘晓丹(1981-),女,博士,讲师,现主要从事酶与蛋白质工程等研究工作。E-mail:liuxiaodan1981@126.com.基金项目:吉林农业科技学院青年基金资助项目(吉农院合字[2016]第Q02号)。收稿日期:2019-03-06