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适于香菇菌棒生产接种的液体菌种培养基配方筛选 被引量:2
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作者 张振宇 王继磊 +6 位作者 吕凯 苏建昌 韩建东 刘晓 杜兴程 朱肖艳 姚强 《山东农业科学》 2014年第12期51-53,共3页
选取6种常用的香菇液体菌种培养基,通过对菌丝生物量、菌棒培养状况和出菇状况的比较,筛选适合香菇菌棒的最佳液体菌种培养基配方。结果表明,配方3(玉米粉2%、马铃薯淀粉2%、酵母膏0.2%、麸皮1%、磷酸二氢钾0.1%、硫酸镁0.1%)适于香菇... 选取6种常用的香菇液体菌种培养基,通过对菌丝生物量、菌棒培养状况和出菇状况的比较,筛选适合香菇菌棒的最佳液体菌种培养基配方。结果表明,配方3(玉米粉2%、马铃薯淀粉2%、酵母膏0.2%、麸皮1%、磷酸二氢钾0.1%、硫酸镁0.1%)适于香菇菌棒的直接接种,其上接种的香菇菌棒整个生长周期仅为205天。 展开更多
关键词 香菇 液体菌种培养 出菇 生长周期
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电热式液体菌种培养器
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作者 史晓文 《中小企业科技》 2003年第4期32-32,共1页
关键词 电热式液体菌种培养 JF-1型 灭菌装置 成品率
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多功能液体菌种培养装置的研制初探
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作者 杨舒惠 李德堂 杨建萍 《云南科技管理》 2015年第2期65-67,共3页
随着食用菌产业的不断壮大,对低成本、低风险、规模化生产菌种的需求迫切。通过对食用菌液体菌种规模化、低成本、低污染的核心问题进行研究试验,找到了一个能规模化、低污染、低成本培养液体菌种的装置和有效方法。
关键词 培养装置 液体菌种培养 液体菌种优势
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牛排菇SB65菌株液体培养基和培养条件的优化
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作者 何培新 秦慧迪 +1 位作者 安正方 李政伟 《郑州轻工业学院学报(自然科学版)》 CAS 2013年第1期11-15,共5页
通过单因素实验和均匀设计对牛排菇SB65菌株的液体菌种培养基和培养条件进行了优化.优化后的培养基配方为(w/v):蔗糖5.5%,酵母浸粉1%,MgSO4·7H2O 0.05%,KH2PO41%,NaCl0.714 7%,CaCl2.2H2O 1%;液体培养条件为:初始pH=7.2,培养温度28... 通过单因素实验和均匀设计对牛排菇SB65菌株的液体菌种培养基和培养条件进行了优化.优化后的培养基配方为(w/v):蔗糖5.5%,酵母浸粉1%,MgSO4·7H2O 0.05%,KH2PO41%,NaCl0.714 7%,CaCl2.2H2O 1%;液体培养条件为:初始pH=7.2,培养温度28℃,培养时间12 d,摇床转速160 r/min,装液量50 mL/250 mL三角瓶,接种量8%(v/v).在优化的培养基和培养条件下进行培养,菌丝体的生物量为4.579 g/L. 展开更多
关键词 牛排菇 液体菌种培养 菌丝体生物量 培养条件
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延安夏季平菇高效栽培技术要点 被引量:1
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作者 呼景明 刘海军 +1 位作者 冯世栋 屈延荣 《黑龙江粮食》 2023年第9期26-28,共3页
延安具有非常丰富的夏季冷资源,通过夏季平菇高效栽培技术的研究,改进了生产工艺,提高了夏菇的收益,巩固和发展了延安作为平菇夏菇主要输出地的地位。
关键词 平菇夏菇输出地 固体菌种液体 液体菌种扩容培养 平菇夏季生产
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应用液体菌种生产食用菌是发展方向 被引量:1
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作者 吕莉 《北京农业》 2003年第8期12-12,共1页
关键词 液体菌种 食用菌 生产成本 产量 多功能液体菌种培养 经济效益
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Mobilization of Inorganic Phosphorus from Soils by Ectomycorrhizal Fungi 被引量:5
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作者 ZHANG Liang WANG Ming-Xia +3 位作者 LI Hua YUAN Ling HUANG Jian-Guo C.PENFOLD 《Pedosphere》 SCIE CAS CSCD 2014年第5期683-689,共7页
Ectomycorrhizal(EM) fungi could form symbiosis with plant roots and participate in nutrient absorption; however, many EM species commonly found in forest soils, where phosphorus(P) concentration and availability are u... Ectomycorrhizal(EM) fungi could form symbiosis with plant roots and participate in nutrient absorption; however, many EM species commonly found in forest soils, where phosphorus(P) concentration and availability are usually very low, particularly in tropical and subtropical areas, have not yet been investigated for their efficiencies to mobilize soil P. In this study, fungal growth, P absorption,efflux of protons and organic acids, and soil P depletion by four isolates of EM fungi isolated either from acidic or calcareous soils were compared in pure liquid culture using soil as a sole P source. Boletus sp. 7(Bo 7), Lactarius deliciosus 3(Ld 3), and Pisolithus tinctorius 715(Pt 715) from acidic and P-deficient soils of southwestern China showed higher biomass and P concentration and accumulation than Cenococcum geophilum 4(Cg 4) from a calcareous soil of Inner Mongolia, northern China, after 4 weeks of liquid culture. Oxalate, malate, succinate, acetate, and citrate concentrations in the culture solutions varied significantly with fungal species,and oxalate accounted for 51.5%–91.4% of the total organic acids. Organic acids, particularly oxalate, in the culture solutions may lead to the solubilization of iron-bound P(Fe-P), aluminum-bound P(Al-P), and occluded P(O-P) from soil phosphates. Fungal species also varied greatly in proton efflux, which decreased the culture solution pH and may dissolve calcium-bound P(Ca-P) in soil.This could be the reason for the increment of both inorganic P in the culture solutions and Olsen P in the soil when EM fungi were present. Total inorganic P, the sum of Al-P, Fe-P, O-P, and Ca-P, in the culture solutions was positively correlated with the total concentration of organic acids in the culture solutions(r = 0.918*, n = 5), but negatively with both the total inorganic P in soil(r =-0.970**, n = 5) and the culture solution pH(r =-0.830*, n = 5). These suggested variable efficiencies of EM fungal species to mobilize inorganic P fractions from soil, which could make EM trees to utilize inorganic P in the same way like EM fungi and adapt to the soils with various P concentrations and availabilities. 展开更多
关键词 EM fungal species inorganic P organic acid P availability PROTON soil phosphate
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