绿木霉 Trichoderma virens

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联系电话: 0574-87917803
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一、菌种简介 

  1、菌种名称:绿木霉 Trichoderma virens 

  2、菌种编号:TS779275 

  3、生物危害程度:四类 

二、储存条件 冻干菌种和试管斜面请置于2℃~8℃冷藏。

三、培养条件

  1、培养基: 马铃薯、葡萄糖琼脂培养基(PDA) 

  2、培养基成分:马铃薯提取液 1.0L,葡萄糖 20.0g,琼脂 15.0g,pH自然。[注] 马铃薯提取液:取去皮马铃薯200g,切成小块, 加水1.0L煮沸30min,滤去马铃薯块,将滤液补足至1.0L。可以使用商品化成品培养基。

  3、需氧类型:好氧

  4、培养温度:24

四、注意事项 

  1、菌种常规培养时间:细菌1-2天,酵母3天,霉菌5-7天,大型真菌 7-10天。

  2、试管斜面菌种请尽快转接,不建议长期存放。 

 3、初次使用时请按照本说明书推荐条件进行复活培养,如使用其它类型培养基或培养条件造成菌种不活等损失,泰斯拓生物科技不负责任。 

 4、使用者应保证菌种的安全存储和操作,带菌废弃物应高压灭菌处理后丢弃。

References[edit]

  1. ^ Harman, G.E.; Howell, C.R.; Viterbo, A.; Chet, I.; Lorito, M. (2004). "Trichoderma species—opportunistic avirulent plant symbionts"Nature Reviews Microbiology2 (1): 43–56. doi:10.1038/nrmicro797PMID 15035008.

  2. ^ Bae, H; Roberts, DP; Lim, HS; Strem, MD; Park, SC; Ryu, CM; Melnick, RL; Bailey, BA (2011). "Endophytic Trichoderma isolates from tropical environments delay disease onset and induce resistance against Phytophthora capsici in hot pepper using multiple mechanisms"Mol. Plant Microbe Interact24 (3): 336–51. doi:10.1094/MPMI-09-10-0221PMID 21091159.

  3. ^ "Home - Trichoderma atroviride".

  4. Jump up to:a b Druzhinina, Irina; Kubicek, Christian P. (February 2005). "Species concepts and biodiversity in Trichoderma and Hypocrea : from aggregate species to species clusters?"Journal of Zhejiang University Science6B (2): 100–112. doi:10.1631/jzus.2005.B0100PMC 1389624PMID 15633245.

  5. ^ Bissett, John (November 1991). "A revision of the genus Trichoderma. III. Section Pachybasium". Canadian Journal of Botany69 (11): 2373–2417. doi:10.1139/b91-298.

  6. Jump up to:a b Samuels, Gary J. (2006). "Trichoderma: Systematics, the Sexual State, and Ecology" (PDF)Phytopathology96 (2): 195–206. doi:10.1094/PHYTO-96-0195ISSN 0031-949XPMID 18943925.

  7. ^ Yang, Chin (2007). SAMPLING AND ANALYSIS OF INDOOR MICROORGANISMS. Wiley. p. 259. ISBN 9780471730934.

  8. ^ Harman, G.E. (2006). "Overview of mechanisms and uses of Trichoderma spp"Phytopathology96 (2): 190–194. doi:10.1094/PHYTO-96-0190PMID 18943924.

  9. ^ Beyer, W.M.; Wuest, P.J.; Anderson, M.G. "Green mold of Mushrooms". Pennsylvania State University. Retrieved 2007-08-02. Pennsylvania State University extension bulletin

  10. ^ Samuels, G.J.; Dodd, S.L.; Gams, W.; Castlebury, L.A.; Petrini, O. (2002). "Trichoderma species associated with the green mold epidemic of commercially grown Agaricus bisporus"Mycologia94 (1): 146–170. doi:10.2307/3761854JSTOR 3761854.

  11. ^ Li Destri Nicosia, M.G.; Mosca, S.; Mercurio, R.; Schena, L. (2015). "Dieback of Pinus nigra Seedlings Caused by a Strain of Trichoderma viride"Plant Disease99 (1): 44–49. doi:10.1094/PDIS-04-14-0433-REPMID 30699733.

  12. ^ Reason Discovered for the Toxicity of Indoor Mould – ScienceDaily (Oct. 12, 2012) : https://www.sciencedaily.com/releases/2012/10/121012074655.htm

  13. ^ Mikkola, Raimo; Andersson, Maria A.; Kredics, László; Grigoriev, Pavel A.; Sundell, Nina; Salkinoja-Salonen, Mirja S. (2012). "20-Residue and 11-residue peptaibols from the fungus Trichoderma longibrachiatum are synergistic in forming Na + /K + -permeable channels and adverse action towards mammalian cells"FEBS Journal279 (22): 4172–4190. doi:10.1111/febs.12010PMID 22994321.

  14. ^ “Trilongins” Offer Insight into Mold Toxicity Archived 2016-03-11 at the Wayback Machine Environmental health perspectives 2/2013.

  15. ^ Dreyfuss, M; Härri, E; Hofmann, H; Kobel, H; Pache, W; Tscherter, H (1976). "Cyclosporin A and C: new metabolites from Trichoderma polysporum (Link ex Pers.) Rifai". European Journal of Applied Microbiology3: 125–133. doi:10.1007/bf00928431.

  16. ^ Authors; Chong, FW; Chakravarthi, S; Nagaraja, HS; Thanikachalam, PM; Lee, N (Jun 2009). "Expression of transforming growth factor-beta and determination of apoptotic index in histopathological sections for assessment of the effects of Apigenin (4', 5', 7'- Trihydroxyflavone) on Cyclosporine A induced renal damage". Malays J Pathol31 (1): 35–43. PMID 19694312.

  17. ^ "Home - Trichoderma reesei v2.0".

  18. ^ Azin, M.; Moravej, R.; Zareh, D. (2007). "Self-directing optimization of parameters for extracellular chitinase production by Trichoderma harzianum in batch mode". Process Biochemistry34 (6–7): 563–566. doi:10.1016/S0032-9592(98)00128-9.

  19. ^ Felse, P.A.; Panda, T. (1999). "Production of xylanase by Trichoderma longibrachiatum on a mixture of wheat bran and wheat straw: Optimization of culture condition by Taguchi method"Enzyme and Microbial Technology40 (4): 801–805. doi:10.1016/j.enzmictec.2006.06.013.


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