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1.
《菌物学报》2017,(7):879-891
印度块菌属于子囊菌门异宗配合真菌,其交配型基因(mating type gene)的表达调控与块菌子囊果的形成和发育直接相关。已有研究表明在种植园内,两种交配型基因竞争性地感染宿主植物且不同交配型菌株的时空分布吻合概率可能是决定子实体产出及产量的关键因素之一。为增加印度块菌子囊果形成的几率,本研究以交配型基因MAT1-1-1及MAT1-2-1作为分子标记,检测了接种印度块菌菌剂后6个月、24个月和36个月的华山松菌根中块菌的两种交配型基因的动态变化,结果表明接种后24个月的单株苗存在两种交配型基因的菌根苗占总菌根苗的比例最高,暗示在此时间点进行块菌菌根苗室外移栽,有望在后期提高两种交配型菌株的时空分布吻合概率,从而提高子实体产生的几率。  相似文献   

2.
邓晓娟  闫兴富  刘建利  刘培贵 《生态学报》2018,38(19):7066-7074
以印度块菌-云南松菌根际土壤细菌为研究对象,研究其种群组成和结构特征。(1)稀释平板法分离得到印度块菌-云南松菌根际土壤细菌的纯培养菌株,对菌株的16S rRNA序列测序分析,对测序的菌株数量和得到的OTUs数量绘制物种累积曲线,当物种累积曲线趋于平缓时,对OTUs进行系统发育分析,揭示可培养细菌的种群组成和结构特征。(2)对印度块菌-云南松菌根际土壤细菌16S rRNA基因的V3—V4区进行高通量测序,分析全部细菌类群的种群组成和结构特征。(1)分离得到菌根际可培养细菌793株,分属于3个属的61个OTUs,其中假单胞菌属(Pseudomonas)序列占总序列的86%,不动杆菌属(Acinetobacter)序列占总序列的9.8%,链霉菌属(Streptomyces)序列占总序列的6.5%。假单胞菌是印度块菌-云南松菌根际土壤可培养细菌的绝对优势类群。(2)高通量测序得到菌根际细菌序列8937条,分属于20个门、198属、2073个OTUs。隶属于变形菌门(Proteobacteria)、放线菌门(Actinobacteria)和酸杆菌门(Acidobacteria)的OTUs占总OTUs的65.9%,变形菌门、放线菌门和酸杆菌门细菌是印度块菌-云南松菌根际土壤细菌的优势细菌。隶属于黄杆菌属(Flavobacterium)、根瘤菌属(Rhizobium)和假黄色单胞菌属(Pseudoxanthomona)的OTUs占总OTUs的33%,黄杆菌属、根瘤菌属和假黄色单胞菌属细菌是印度块菌-云南松菌根际土壤细菌的优势属。印度块菌-云南松菌根际土壤可培养细菌多样性较低,假单胞菌属细菌占据绝对优势地位。印度块菌-云南松菌根际土壤细菌类群具有较高的多样性,物种种类丰富,优势菌群集中。  相似文献   

3.
油松菌根促生细菌——荧光假单胞菌的分离与鉴定   总被引:3,自引:2,他引:3  
为了探讨菌根促生细菌荧光假单胞菌(Pseudomonas fluorescens)与菌根真菌的互作关系,本实验从油松菌根上分离得到36株在紫外灯下产荧光的细菌菌株,以荧光假单胞菌9702作为标准菌株,对分离菌株进行显微观察、生物学鉴定和16S rDNA序列分析,结果确定HDY-8、HDY-9、HDY-20、HDY-35共 4株菌株为荧光假单胞菌,并分别命名为P.fluorescens HDY-8、P.fluorescens HDY-9、P.fluorescens HDY-20、P.fluorescens HDY-35.用这4株细菌菌株分别与外生菌根真菌(ECMF)粘盖牛肝菌(Suillus bovinus)、褐环粘盖牛肝菌(Suillus luteus)和褐黄牛肝菌(Boletus luridus)进行纯培养互作研究.结果表明,只有P.fluorescens HDY-20对3种外生菌根真菌有不同程度的促生作用,并对S.luteus促进效果最好,S.bovinus次之,B.luridus最差;P.fluorescens HDY-20促进S.bovinus、S.luteus和B.luridus菌丝生长的最佳浓度分别为2.4×109 cfu/mL、0.8×109~2.4×109 cfu/mL和0.8×109 cfu/mL,与对照相比S.bovinus和S.luteus的生物量达到极显著差异(P<0.01),B.luridus的达到显著差异(P<0.05),且分别比对照增加6.5%、9.1%和4.3%.  相似文献   

4.
夏块菌(Tuber aestivum)是一种具有较高经济价值的菌根食用菌。对夏块菌与青刚栎(Cycloba-lanopsis glauca)在形成菌根过程中不同阶段的菌根形态变化进行了研究,结果显示:用夏块菌孢子液接种青刚栎苗后,第14天起开始形成淡乳色的外生菌根,外延菌丝刚毛状;第一至第二个月可形成黄褐色、褐色外生菌根,外延菌丝刚毛或羊毛状。外生菌根为单根,长1~4mm,直径150~250μm。菌套厚12~20μm,平坦或自菌根延伸出刚毛状菌丝,外延菌丝束黄绿色;哈替氏网菌丝直径1~1.5μm。菌根老化后变暗褐或萎缩。外延菌丝束呈黄绿色是夏块菌菌根区别于其它块菌菌根最重要的形态特征。  相似文献   

5.
通过印度块菌子囊果石蜡切片的显微观察,对印度块菌子囊果包被及子实层的显微结构、子囊及子囊孢子的发育过程进行研究.结果表明:(1)印度块菌子囊果是由包被和子实层构成,子囊果的表面密被大量大小不一的疣状突起,包被由外皮层和内皮层构成;子实层由封闭的、大小不一的产孢组织构成,在产孢组织中包含有侧丝、产囊丝、子囊和子囊内的子囊孢子;(2)成熟印度块菌子囊果横切面上有明暗相间的迷宫状纹脉;(3)子囊卵形,由产囊丝顶端的细胞发育而来;(4)成熟子囊孢子红褐色,椭圆形至近球形不等,子囊孢子双层壁,外壁密布有刺状纹饰.子囊孢子在子囊内的发育过程中常出现败育现象,每个成熟子囊中含有1~5个子囊孢子(常见4个).  相似文献   

6.
块菌是重要的经济真菌, 在其生长发育过程中, 细菌扮演了重要角色。本文利用传统分离培养方法和高通量测序技术分析了印度块菌(Tuber indicum)子囊果内细菌的群落结构。共分离得到细菌532株, 根据物种累积曲线, 选取其中的112株细菌进行了16S rRNA基因序列分析, 共鉴定出4属40种, 其中假单胞菌属(Pseudomonas)菌株占所测菌株数的80%, 不动杆菌属(Acinetobacter)占12.5%, 链霉菌属(Streptomyces)占5%, 贪噬菌属(Variovorax)占2.5%。通过对印度块菌子囊果16S rRNA基因的V1-V3区高通量测序分析, 共获得细菌序列9,862条, 分属于7门43属220种, 其中变形菌门、拟杆菌门和放线菌门的物种占总物种数的99.7%, 是印度块菌子囊果内的优势细菌。黄杆菌属(Flavobacterium)、壤霉菌属(Agromyces)、微杆菌属(Microbacterium)、剑菌属(Ensifer)和寡养食单胞菌属(Stenotrophomonas)的物种数占总物种的86.3%, 是印度块菌子囊果内细菌的优势属。研究结果表明, 采用胰蛋白大豆培养基仅分离得到印度块菌子囊果内少数细菌物种, 而采用高通量测序技术分析发现, 印度块菌子囊果内细菌物种种类丰富, 群落结构复杂。  相似文献   

7.
研究成熟度对印度块菌Tuber indicum香气成分的影响,并测定成熟印度块菌的关键香气成分。将3种不同成熟度的印度块菌,以固相微萃取(SPME)技术为香气富集方法,利用气相色谱-质谱联用(GC-MS)分析其香气成分。结果表明未成熟印度块菌中仅检测出4种香气成分,中度成熟阶段检测出8种,成熟阶段检测出13种,而且成熟阶段检测出的香气成分大多都是前人报道过对块菌香气有贡献的成分;通过计算成熟块菌各香气组分的香气活度值(OAV),可知二甲基硫醚、2,3-丁二酮、3-甲基正丁醛、2-甲基正丁醛、己醛、1-辛烯-3-醇这6种物质是印度块菌的关键香气成分(OAV>1)。  相似文献   

8.
郭霞  郑雨焕 《菌物学报》2018,37(12):1802-1807
为了获得黑松Pinus thunbergii-美味牛肝菌Boletus edulis(Be)菌塘中的菌根促生菌(mycorrhiza helper bacteria,MHB),为美味牛肝菌的人工培育提供理论基础,通过比较野生牛肝菌菌塘细菌胞外代谢产物对菌丝生长的促进作用以及细菌+Be真菌双接处理黑松幼苗对其苗高、地径、茎根比、干重、根侵染率的影响,筛选出菌根促生菌。结果表明,菌株B2和K2代谢产物可以显著促进Be菌丝生长,盆栽实验结果表明双接种Be+B2、Be+K2的黑松苗,苗高分别增长了17.71%和16.82%,地径增长了41.65%和35.63%,干重提高了44.71%和48.78%,根侵染率提高了23.20%和21.50%,茎根比下降了46.41%和35.40%。可见菌株B2和K2是黑松-美味牛肝菌的菌根促生菌。通过细菌的形态、生化特性、16S rDNA序列测定,菌株B2和K2均鉴定为蜡样芽孢杆菌Bacillus cereus。蜡样芽孢杆菌有望进一步开发为美味牛肝菌的菌塘生物肥料。  相似文献   

9.
山杨苗木的菌根类型及对苗木促生作用的研究   总被引:2,自引:0,他引:2  
孟繁荣  汤兴俊 《菌物系统》2001,20(4):552-555
用Glomus mosseae,G.intraradices,G.versiforme,Sclerocystis sinuosa和Pisolithus tinctorius,Cortinarius russus,Russula foetens,Lactarius insulsus等丛枝菌根真菌和外生菌根真菌各4种,对盆钵播种的山杨实生苗进行接种试验,结果表明,4种丛枝菌根真菌对山杨苗木均未发生侵染,与野外调查结果相符,与报道的杨属既有外生菌根又有丛枝菌根相悖,因此认为山杨属于非丛枝菌根类型。4种外生菌根真菌均与山杨苗木合成菌根,且促生作用明显,其中C.russus最好,苗高,地径,侧根数及整株干物重增长率分别为38.13%,20.27%,70.97%和33.39%,研究结果表明,山杨属外生菌根类型。  相似文献   

10.
《菌物学报》2017,(2):131-144
块菌属Tuber是一类珍贵的地下生外生菌根食药用真菌,具有重要的经济和生态价值。分子生物学技术的快速发展尤其是高通量测序技术在块菌属研究领域的应用,极大地推动了块菌属分类、系统学、生态、生化、菌根共生机制及人工种植等研究。本文重点从块菌的分子系统学、群体遗传学及菌根共生机制3个方面对近5年的研究成果进行综述,并对其研究和应用前景进行了展望。  相似文献   

11.
Mycorrhization helper bacteria, Paenibacillus sp. EJP73 and Burkholderia sp. EJP67, were used to study the importance of bacterial inoculum dose and bacterial derived soluble and volatile metabolites localization for enhancing mycorrhiza formation in the Pinus sylvestris-Lactarius rufus symbiosis, using a laboratory based microcosm. EJP73 and EJP67 produced different responses in relation to the inoculum dose; EJP73 significantly enhanced mycorrhiza formation to the same degree at all doses tested (10(5), 10(7), 10(9) and 10(10) CFU mL(-1)), whereas, EJP67 only stimulated mycorrhiza formation within a narrow range of inoculum densities (10(7) and 10(9) CFU mL(-1)). The importance of soluble bacterial metabolites was assessed by applying spent broth derived from exponential and stationary phase bacterial cultures to microcosms. No spent broth enhanced mycorrhiza formation over the control. As EJP73 produced the helper effect over a wide range of inoculum doses, this bacterium was chosen for further study. Physical separation of EJP73 from the fungal and plant symbiosis partners was carried out, in order to determine the contribution of constitutively produced bacterial volatile metabolites to the mycorrhization helper bacteria effect. When EJP73 was physically separated from the symbiosis, it had a significant negative effect on mycorrhiza formation. These results suggest that close proximity, or indeed cell contact, is required for the helper effect. Therefore, fluorescent in situ hybridization in conjunction with cryosectioning was used to determine the localization of EJP73 in mycorrhizal tissue. The cells were found to occur as rows or clusters ( approximately 10 cells) within the mycorrhizal mantle, both at the root tip and along the length of the mycorrhizal short roots.  相似文献   

12.
Douglas fir (Pseudotsuga menziesii) seedlings in two bare-root forest nurseries were inoculated with the ectomycorrhizal fungus Laccaria laccata, together or not with one of five mycorrhization helper bacteria isolated from L. laccata sporocarps or mycorrhizas and previously selected by in vitro and glasshouse screenings. With the most efficient MHB isolates, when compared to the control with no bacteria, the percent of mycorrhizal short roots was increased from 60 to 90 or from 80 to 100, depending on the nursery, with inoculation doses as low as 106 living cells per m2. A dual inoculum made of calcium alginate beads containing the two microorganisms appears to be a valuable technique for increasing the efficiency of ectomycorrhizal inoculation of planting stocks in forest nurseries.  相似文献   

13.
Mycorrhization helper bacteria (MHB), isolated from phylogenetically distinct ectomycorrhizal symbioses involving Lactarius rufus, Laccaria bicolor or Suillus luteus, were tested for fungus specificity to enhance L. rufus–Pinus sylvestris or L. bicolor–P. sylvestris mycorrhiza formation. As MHB isolated from the L. rufus and S. luteus mycorrhiza were originally characterised using a microcosm system, we assessed their ability to enhance mycorrhiza formation in a glasshouse system in order to determine the extent to which MHB are system-specific. Paenibacillus sp. EJP73, an MHB for L. rufus in the microcosm, significantly enhanced L. bicolor mycorrhiza formation in the glasshouse, demonstrating that the MHB effect of this bacterium is neither fungus-specific nor limited to the original experimental system. Although the five MHB strains studied were unable to significantly enhance L. rufus mycorrhiza formation, two of them did have a significant effect on dichotomous short root branching by L. rufus. The effect was specific to Paenibacillus sp. EJP73 and Burkholderia sp. EJP67, the two strains isolated from L. rufus mycorrhiza, and was not associated with auxin production. Altered mycorrhiza architecture rather than absolute number of mycorrhizal roots may be an important previously overlooked parameter for defining MHB effects.  相似文献   

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16.
Mycorrhization helper bacteria (MHBs) isolated and selected from the Douglas fir-Laccaria laccata symbiotic system have previously been shown to be fungus-specific: they promote ectomycorrhizal establishment of Laccaria laccata but inhibit mycorrhiza formation by other fungi. In this paper, two experiments in a nursery producing two years-old bare-root Douglas-fir planting stocks confirm the specificity of MHBs under field conditions. They also show that, by selectively helping the introduced L. laccata against the resident symbionts, MHBs are an interesting alternative (safer and easier) to soil fumigation for the success of routine controlled mycorrhization of planting stocks in forest nurseries.  相似文献   

17.
利用扫描电镜对成熟印度块菌子囊果的内部结构进行了观察,以系统揭示其子囊果内部组织特征,为块菌属的分类以及块菌属真菌子囊果的生理研究奠定基础。观察结果进一步证明,成熟印度块菌子囊果横切面上的白色迷宫状脉络是由不育的侧丝构成,而暗脉则是被侧丝缠绕并包裹着的可育的菌丝组织,即产孢组织,这些白色脉络和暗脉就构成了印度块菌子囊果横切面上迷宫状的纹脉;产孢组织中,可观察到正在发育的大大小小的子囊被缠绕在一起的大量产囊丝与侧丝包裹着,形成密密麻麻微小的类似蜂巢状结构;子囊孢子游离于子囊中,成熟子囊孢子表面有刺状纹饰,刺的顶端有小弯钩。单个子囊内含的子囊孢子大小与其内含的子囊孢子数目有关,子囊内所含的子囊孢子越多,子囊孢子就越小。  相似文献   

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