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1.
本文研究碳源、氮源、温度、湿度、pH值和光照等对蝉拟青霉LB菌株生长、产孢和孢子萌发的影响.结果表明,适合该菌株菌落生长和产孢的最佳碳源是可溶性淀粉和蔗糖,最佳氮源为蛋白胨;菌丝生长和孢子萌发的最适温度范围是25℃~27℃,产生分生孢子的最适温度是25℃;分生孢子萌发所需湿度范围是RH 90%~100%,当RH低于90%时很难萌发;在pH值4~10的范围内该菌能生长和产孢,菌丝生长最适pH为6,产生分生孢子和孢子萌发最适pH范围为6-7;光照处理对该菌产孢有一定的影响;分生孢子的致死条件为55℃ 10min.生物学特性显示,蝉拟青霉LB菌株是一株对营养要求不高、对环境适应能力较强的昆虫病原真菌.  相似文献   

2.
苹果炭疽菌低毒性菌株生物学特性的研究   总被引:3,自引:0,他引:3  
研究了温度、pH值及碳源对苹果炭疽病菌(Colletotrichum gloeosporioides)强毒性菌株及低毒性菌株的生长、产孢和孢子萌发的影响。结果表明:菌丝生长温度范围10℃~35℃、最适温度为28℃,低毒菌株生长速率较快,产生分生孢子的温度范围与分生孢子萌发的温度范围为15℃~35℃,低毒菌株孢子萌发率较高,菌丝生长的最适pH值基本相同,pH在3~10的范围内均能生长和产孢,产生分生孢子的最适pH值为4~5,但经离子注入的低毒性菌株C100-2-5的产孢量在不同的pH值和温度下却一直低于经磁场处理的C0.25-1-2和强毒性菌株(对照)。分生孢子的致死温度为47℃、15 min或50℃、5 min。但菌丝的致死温度却不同,对照为60℃、20 min,C0.25-1-2为60℃、25 min,C100-2-5为60℃、30 min,65℃下5 min(及5 min以上)。  相似文献   

3.
马铃薯干腐病菌硫色镰孢的生物学特性   总被引:1,自引:0,他引:1  
从碳源、氮源、酸碱度及生长温度等方面对引起马铃薯干腐病的硫色镰孢Fusarium sulphureum的生物学特性进行了研究。结果表明,该病原菌在不同发育阶段对营养和环境条件的要求存在差异。在固体培养基上,菌落生长最佳碳源为葡萄糖、麦芽糖,最佳氮源为蛋白胨,pH8?为最佳;在液体培养基中,菌丝体生长以麦芽糖为最佳碳源,以硝酸钠为最佳氮源,pH6?为最佳;在分生孢子萌发阶段,在以羧甲基纤维素钠、蛋白胨和谷氨酸为碳、氮源的营养液中,分生孢子萌发率最高,最适pH 6–8。该病菌最适生长温度为25℃,分生孢子致死  相似文献   

4.
芹菜斑枯病菌生物学特性研究   总被引:2,自引:0,他引:2  
赵奎华 《菌物研究》2009,7(3):169-179
以沈阳地区芹菜斑枯病菌的纯培养菌株为试材,通过对菌丝生长、孢子萌发的营养及环境条件的多因子试验,明确了芹菜斑枯病菌菌丝生长以在CDAMS—VI培养基上最好,其次是CSA、CCSA和PDA,菌丝生长及产孢对碳源、氮源种类有明显的选择性。菌丝生长的最适pH值为4~5,最适温度为21℃,致死温度为39℃(处理40min),光照明显抑制菌丝生长。病菌分生孢子在水和芹菜汁中不能萌发,在水琼脂上萌发最好;孢子萌发的适宜pH值为4.6~6.6,适温为17—25℃,致死温度为42℃(处理20min),RH100%最适宜孢子萌发。光照和变温处理可促进分生孢子器的形成,病菌在PDA上从孢子萌发到分生孢子器形成并释放出分生孢子需要16~18d。  相似文献   

5.
主要研究影响鸭跖草生防菌叶点霉菌株菌丝生长和孢子萌发的条件。研究表明,PDA培养基和鸭跖草培养基是该菌生长的适宜培养基,该菌生长的温度范围为20~35℃,最适温度为25℃,分生孢子萌发的温度范围为25~35℃,最适温度为30℃;pH为6时生长最快,偏酸偏碱有利于孢子的萌发,在pH为10时萌发最好。F-3菌株在供试的6种碳源中生长速度相差不大,在不同氮源中差异显著,以硝酸铵为氮源生长最好。  相似文献   

6.
蚧镰孢菌孢子萌发及产孢的最适温度是 2 8℃ ,菌生长的适温是 2 4℃~ 2 6℃。孢子萌发受 pH值影响较小 ,菌生长以 pH6.5~ 8.5为最适 ,而 pH8.5时产孢最多。菌的生长也可以调节培养液的pH值 ,使其达到最适生长的 pH范围。光照对该菌的生长及产孢也有一定影响。蚧镰孢菌能利用多种碳源和氮源 ,也能以几丁质为唯一碳源和氮源生长 ,但生长很差。Ca2 、Fe2 等金属离子以及硫胺素、核黄素、叶酸等维生素的加入可使产孢量增加 ,而维生素的作用更明显。该菌的产孢高峰期一般在 2 1天左右 ,而且在相同条件下 ,接种量越大 ,产生最大量孢子所需的时间越短。  相似文献   

7.
【目的】明确柑桔全爪螨Panonychus citri(Mc Gregor)高致病力菌株芽枝状枝孢霉Cladosporium cladosporioides(CQBBW3)的生物学特性。【方法】通过单因素试验,测试了不同培养基、碳源、氮源、温度及pH对CQBBW3菌株生长和产孢的影响。【结果】CQBBW3菌株的LC50为4.66×108个孢子/m L,LT50为6.2353 d。最佳生长培养基是淀粉琼脂培养基,最适产孢培养基为察氏培养基;菌丝生长最适碳源和氮源为甘露醇和甘氨酸,产孢最适碳源和氮源为乳糖和赖氨酸;最适生长温度为25℃,最适产孢温度为15℃和30℃;最适生长pH值为6.0~8.0,最适产孢pH值7.0。【结论】CQBBW3菌株对柑桔全爪螨有较好的杀虫活性,喜好25℃、中性、富含有机营养的环境。本研究为菌株快速培养及其真菌杀虫制剂的开发与田间应用奠定基础。  相似文献   

8.
源自不同寄主的灰葡萄孢生物学特性的比较研究   总被引:2,自引:0,他引:2  
本研究以分离自番茄、辣椒、草莓、葡萄的灰葡萄孢Botrytis cinerea为供试菌株,从生长温度、pH适应性、碳源、氮源营养利用等方面对不同寄主来源的灰葡萄孢菌株的生物学性状进行了比较研究。结果表明,5个不同寄主来源的灰葡萄孢菌株的菌丝生长温度范围相同,均为0-35℃;但它们的最适生长温度和分生孢子致死温度存在差异,来自和县番茄菌株HX12最适生长温度为20℃,分生孢子致死温度为47℃ 10min,其余最适生长温度均为25℃,分生孢子致死温度均为48℃ 10min;不同菌株在相同温度下的生长速率有显著差异。pH对不同寄主来源灰葡萄孢菌株菌丝生长的影响存在差异,来自长丰辣椒的菌株LJ菌丝在pH2-9的范围内均能生长,以在pH3-6.5时生长较快,pH6时最快;其余4个菌株在pH2-12的范围内均能生长,以在pH3-9时生长较快,pH6左右最快。不同碳源、氮源营养对灰葡萄孢菌株菌丝生长和分生孢子产生均有显著影响,不同寄主来源的菌株间在碳源、氮源营养利用差异均极显著。在相同碳源、氮源营养条件下,不同寄主来源的菌株的线性生长、菌丝干重和分生孢子产量均有显著差异。  相似文献   

9.
辣椒炭疽病菌生物学特性的研究   总被引:8,自引:0,他引:8  
辣椒炭疽病菌在不同培养基中培养,以PDA、PCA、CFA、CLA菌丝生长最佳,在CMA、PDA、CFA中产孢量最多。病原菌生长和产孢的最适温度和pH值分别为26—28℃和pH4.5—6.5,自然散光和完全黑暗有利于菌丝生长,12小时黑光灯与12小时黑暗交替处理有利于产孢。该菌对多种碳源和氮源均可利用,其中木糖、葡萄糖和蔗糖作碳源,天冬酰胺作氮源,菌生长和产孢最佳。分生孢子在25℃,pH6.0—8.0,相对湿度100%,黑光灯照射,以及20%辣椒叶煎汁或1%蛋白胨液中,萌发率最高,其致死温度为50℃处理10  相似文献   

10.
【目的】明确对蔗根土天牛Dorysthenes granulosus具有良好杀虫活性的金龟子绿僵菌Metarhizium anisopliae JC002菌株生长和产孢所需要的最适营养条件和环境条件。【方法】通过单因素试验,测试了不同培养基、碳源、氮源、温度、pH及紫外线照射不同时间对JC002菌株生长和产孢的影响。【结果】JC002菌株培养基的最佳配方是葡萄糖30 g、蛋白胨15 g、马铃薯200 g、琼脂20 g、水1 000 mL;蔗糖、NaNO3是菌落生长及产孢的最适碳源和氮源;菌株培养的最适温度为25℃,培养基的最适pH值为7.0;紫外光对菌株的生长速率无显著影响,但对产孢量有较大的抑制作用,紫外光照射时间越长,产孢越少。【结论】本研究为JC002菌株的大量培养及其孢子制剂的大量生产和有效利用奠定基础。  相似文献   

11.
Aspergillus tamarii Kita grew and sporulated best at 30°C. The best pH for growth and sporulation were 5.5 and 6.5, respectively. Among the carbon sources employed, glucose supported the highest growth and sporulation. Best growth was obtained with sodium nitrate as nitrogen source and best sporulation with ammonium tar-tarate. When glucose was used as carbon source, the carbohydrates found in the mycelium included myoinositol. dulcitol, fructose, arabinose and ribose.  相似文献   

12.
The effects of cultural parameters such as carbon and nitrogen source and environmental factors including temperature and pH were investigated on spore and mycelial yield of Trichoderma viride, which has potential as a biocontrol agent against species of Fusarium in batch culture and fed-batch culture where there was limiting nutrient. The results obtained indicated that growth and sporulation of T. viride were greatly influenced by various carbon and nitrogen sources, and by environmental factors such as pH and temperature. Mannitol, wheat bran and rice bran as sole carbon sources appear to stimulate high mycelial growth and spore yield in fed-batch culture. Growth and sporulation were also favoured by NaNO3, peptone and NH4SO4 as the nitrogen sources in fed-batch and batch cultures. Maximum growth and sporulation was between pH 4.5 and 6.0. Temperatures between 30 and 37 °C were good for mycelium growth of T. viride while temperatures between 30 to 45 °C were good for sporulation. The amount of spore and mycelium produced and the time required for attainment of maximum spore yield increased with increasing carbon and nitrogen source in batch culture. The final spore yield obtained in fed-batch culture was two times higher than the apparent spore-carrying capacity of batch culture. These results show that T. viride is capable of growing and sporulating with varied nutritional and environmental conditions, and, therefore, this strain of T. viride may be useful as a biocontrol agent under diverse physiological and environmental conditions.  相似文献   

13.
Aim: To identify media and environmental conditions suitable for rapid mycelial growth and sporulation of Diplocarpon mali. Methods and Results: Liquid shake cultures were used to evaluate effects of media and environmental conditions on mycelial growth and conidial production of D. mali. Carrot sucrose broth (CSB), potato and carrot dextrose broth (PCDB) and potato and carrot sucrose broth (PCSB) were most favourable for rapid mycelial growth. PCDB, PCSB, PCB (potato and carrot broth) and carrot dextrose broth (CDB) were favourable for conidial production. All carbon sources tested and peptone favoured for mycelial growth. Carbon and nitrogen sources tested did not significantly stimulate conidial production. The optimum temperature for mycelial growth and conidial production was 25°C. No mycelial growth occurred at 5 or 30°C, but D. mali survived at these temperatures. Active mycelial growth occurred at pH 5–7, and pH 5–8 was favourable for sporulation. Conclusions: PCDB and PCSB incubated at 25°C for 14 day are recommended for mycelial growth and conidial production of D. mali. Significance and Impact of the Study: The information generated in this study will facilitate mycological and pathological research on D. mali and Marssonina leaf blotch of apple caused by D. mali.  相似文献   

14.
Microorganisms associated with invertebrate hosts have long been suggested to be a source for bioactive metabolites. In this study, we reported that a sponge-associated fungus, Letendraea helminthicola, produced two antifouling compounds: 3-methyl-N-(2-phenylethyl) butanamide and cyclo(D-Pro-D-Phe). To optimize the production of these antifouling compounds, we then examined the production of compounds under different culture conditions (temperature, salinity, pH, and carbon and nitrogen sources). This fungus grew well and produced more compounds at temperatures between 18 and 30°C; the fungus grew well at 75 parts per thousand (ppt) salinity but produced the highest amount of antifouling compounds at 30 and 45 ppt. The optimal initial pH value for mycelial growth was 5.5 to 6.5, whereas the production of the antifouling compounds was maximized at pH 3.5 and 4.5. Glucose and xylose (as carbon sources) increased the production of antifouling compounds. Yeast extract and peptone (as nitrogen sources) maximized the production of mycelial biomass and antifouling compounds. Our results indicate that culture conditions greatly affect the production of bioactive compounds from mycelial fungal cultures as exemplified by strain L. helminthicola and that the conditions favorable for fungal growth may not be the best conditions for bioactive compound production.  相似文献   

15.
对光合细菌混合菌群产氢影响因子进行了实验研究。通过单因素实验和正交实验, 系统考察了碳源、氮源、碳源浓度、氮源浓度、初始pH值、光照方式、接种量等因素对产氢量的影响, 实验得出最佳工艺条件为: 采用3号菌群, 碳源为葡萄糖, 碳源浓度为3 g/L, 氮源为尿素, 氮源浓度为9 g/L, 接种量为10%, pH值为8.5, 光照方式为12 h光照-12 h黑暗交替光照, 培养温度为30°C。菌种、碳源、碳源浓度、氮源是影响产氢量的重要因素。  相似文献   

16.
Aspergillus sydowi (Bain. & Start.) Thom & Church grew and sporulated best at 30°C. The best pH for growth and sporulation was 5.5. Light was stimulatory to sporulation but inhibitory to growth. Among the carbon sources employed, sucrose supported the best growth and sporulation. Nitrate, ammonium and asparagine were good nitrogen sources for growth and sporulation. During utilization of sucrose, the carbohydrates found in the mycelium included dulcitol, inositol, mannitol, arabinose, trehalose and galactose.  相似文献   

17.
Mo M  Xu C  Zhang K 《Mycopathologia》2005,159(3):381-387
The effects of carbon and nitrogen sources, carbon-to-nitrogen ratio (C:N) and initial pH value on the growth and sporulation of the nematophagous fungus Pochonia chlamydosporia in liquid culture were examined. Among the 21 carbon sources and 15 nitrogen compounds tested, the optimal carbon and nitrogen sources for mycelial growth were sweet potato and L-tyrosine, and for sporulation were sweet potato and casein peptone. A C:N ratio of 10:1 at pH 3.7 gave the maximum yield of conidia and a C:N ratio of 40:1 at pH 6.8 gave the maximum biomass. The initial pH value had a significant effect on mycelial growth and conidial production, with the optimal ranges being 3.5–4.5 for sporulation and 5–6 for growth. Maximum conidial production was obtained at an initial pH of 4.0 and the maximum biomass at pH 6.0. The results also showed that the final pH after 7 days cultivation was always higher than the initial value. The variability in growth and sporulation of seven strains of P. chlamydosporia in liquid culture was also compared and discussed.  相似文献   

18.
桑木层孔菌固体培养条件的研究   总被引:1,自引:1,他引:0  
为了研究不同碳源、氮源、初始pH及培养温度对桑木层孔菌菌丝生长的影响,采用固体平板培养法研究了桑木层孔菌的培养条件,结果表明,该菌在淀粉为碳源时生长速度最快但长势较弱,在以葡萄糖和麦芽糖为碳源时生长速度比淀粉为碳源时稍慢,但长势最好;最适氮源为酵母浸粉;初始pH在5.5-8.0范围内变化时菌丝生长差异不大;培养温度在28-33℃范围内对菌丝生长有明显的促进作用。  相似文献   

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