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1.
《菌物学报》2017,(2):267-271
通过菌丝生长抑制方法测定枯草芽胞杆菌Bacillus subtilis EDR4对灰葡萄孢菌Botrytis cinerea的抑制作用,利用电子显微镜观察受到抑制的灰葡萄孢菌丝形态和细胞结构的变化。结果表明,菌丝生长异常,分支变多,出现不规则膨大和缢缩;线粒体数量异常增多并出现不规则肿胀;细胞质外渗,出现空腔化细胞;细胞器泡囊化解体和细胞崩解,细胞趋于死亡。  相似文献   

2.
马青  商鸿生 《菌物学报》2002,21(4):580-584
条锈菌与慢锈小麦品种互作的超微结构研究表明,随着慢锈性的表达,条锈菌的胞间菌丝发育受抑,细胞器泡囊化解体。吸器母细胞和吸器发育受阻,最终解体、坏死。吸器的受抑、坏死主要表现在吸器体形成后期。在锈菌与寄主互作的交界面,吸器外质膜皱褶、电子致密度增高,吸器外间质加宽,并有大量电子致密度加深的物质沉积。与抗病品种相比, 慢锈品种中病菌受抑、坏死程度轻,寄主细胞的过敏性坏死机率也较低。  相似文献   

3.
袁立  许修宏 《菌物学报》2011,30(4):566-571
分别从显微和超微结构观察木耳菌种老化过程中菌丝细胞的形态变化。结果显示:接种后30d时,光镜下观察到菌丝结构均匀紧凑,细胞壁光滑;电镜下观察到细胞结构完整,内含物丰富,各种细胞器形态规整,没有老化现象。接种后60d时,光镜下菌丝部分肿胀,色泽加深;电镜下细胞壁疏松,线粒体和液泡肿大,细胞核不规则肿胀,核仁消失,脂肪滴和囊泡增多,并有少量电子致密度高的嗜锇性黑色颗粒状物质出现,表明菌丝开始老化。90d时,光镜下部分菌丝严重肿胀,且色泽更深;电镜下线粒体和液泡肿胀明显,部分细胞核破裂,脂肪滴、囊泡和电子致密度高的嗜锇性黑色颗粒状物质显著增多,细胞壁更加疏松。120d时,光镜下许多菌丝开始断裂,色泽进一步加深;电镜下细胞壁塌陷,膜系统也随之解体,线粒体等细胞器部分溶解消失。150d时,光镜下大部分菌丝完全断裂,并失去菌丝形态;电镜下细胞膜及其内含物已基本消失,只剩部分严重塌陷的细胞壁残骸。由此表明,木耳菌丝的老化是一个由个别向整体逐渐过渡的不可逆的过程。  相似文献   

4.
条锈菌与慢锈小麦品种互作的超微结构   总被引:1,自引:0,他引:1  
马青  商鸿生 《菌物系统》2002,21(4):580-584
条锈菌与慢锈小麦品种互作的超微结构研究表明,随着慢锈性的表达,条锈菌的胞间菌丝发育受抑,细胞器泡囊化解体。吸器母细胞和吸器发育受阻,最终解体,坏死。吸器的受抑,坏死主要表现在吸器体形成后期。在锈菌与寄主互作的交界面,吸器外质膜皱褶,电子致密度增高,吸器外间质加宽,并有大量电子致密度加深的物质沉积。与抗病品种相比,慢锈品种中病菌受抑,坏死程度轻,寄主细胞的过敏性坏死机率也较低。  相似文献   

5.
本文对梨胶锈菌性子期和锈子期菌丝吸器的形成方式、吸器及其与寄主细胞界面的超微结构进行了研究。观察结果表明:梨胶锈菌性子期和锈子期寄主胞间菌丝吸器的形成方式有两种:一种是由寄主胞间菌丝直接形成吸器;另一种是由寄主胞间菌丝先形成吸器母细胞,然后由吸器母细胞形成吸器。吸器在开始形成时只是一个乳头状的侵入楔,以后逐渐形成囊状、镰刀状、指状及其它不规则形状的吸器。多数吸器分化为颈和吸器主体两部分,在颈部及部分吸器主体外有一个由类似寄主细胞壁物质形成的领圈。吸器内部的超微结构与寄主胞间菌丝基本相同,但吸器壁比胞间菌丝或吸器母细胞的壁薄。吸器鞘的厚度随着吸器伸长膨大 而逐渐增厚。  相似文献   

6.
李金玉  康振生 《真菌学报》1996,15(3):178-181
利用电镜技术研究了内吸杀菌剂甲霜对向日葵霜霉菌在寄主向日葵上发育的影响,观察发现甲霜引起病菌发生一系列的变化,病菌胞间菌丝细胞内液泡,电子致密体增加,线粒体肿胀畸形,菌丝细胞壁不规则地加厚,部分极度加厚的细胞壁构成了假膜,并且在菌丝上还有不规则的突起形成,病菌吸器外间质明显不规则地变宽,其中充满大量电子致密度高的物质;部分吸器体不能正常扩张膨大,发育受阻而成畸形,向日葵霜霉菌的以上变化导致菌丝细胞  相似文献   

7.
以马铃薯晚疫病水平抗性品种LBr-12和感病品种费乌瑞它为材料,采用普通光学和电子显微镜技术,系统研究了马铃薯与晚疫病菌(致病疫霉)互作的组织细胞学反应特征。观察结果显示:(1)接种后,水平抗性材料LBr-12出现过敏反应,病菌被限制在侵染点的几个细胞中,菌丝产生较少的分支和吸器。(2)感病品种费乌瑞它被侵染细胞呈蔓延趋势,菌丝产生较多的分支和吸器。(3)电镜观察发现,抗病品种上病菌的胞间菌丝、吸器母细胞、吸器在细胞和亚细胞水平均发生了一系列异常变化,包括原生质的电子致密度加深、液泡增多变大、菌丝细胞壁不规则增厚、细胞器排列紊乱及解体、吸器母细胞及吸器形态异常、病菌最终畸形坏死,同时发现抗病品种受病菌侵染时可迅速产生结构防卫反应,形成的细胞壁沉积物使胞壁极度增厚或细胞膜上产生乳突状结构。  相似文献   

8.
利用电镜技术研究了内吸杀菌剂甲霜灵对向日葵霜霉菌在寄主向日葵上发育的影响。观察发现甲霜灵引起病菌发生一系列的变化。病菌胞间菌丝细胞内液泡、电子致密体增加,线粒体肿胀畸形;菌丝细胞壁不规则地加厚,部分极度加厚的细胞壁构成了假隔膜,并且在菌丝上还有不规则的突起形成。病菌吸器外间质明显不规则地变宽,其中充满大量电子致密度高的物质:部分吸器体不能正常扩张膨大,发育受阻而成畸形。向日葵霜霉菌的以上变化导致菌丝细胞和吸器的坏死,从而抑制了病菌的进一步发育。  相似文献   

9.
氨基寡糖素对黄瓜白粉病菌侵染的抑制作用*   总被引:8,自引:0,他引:8  
用透射电子显微镜,研究了寡聚糖类药剂中科6号(2%氨基寡糖素)处理黄瓜Cucumis sativus 植株叶片后对白粉病菌Sphaerotheca fuliginea侵染的抑制作用。超微结构观察表明,病菌发育受到明显抑制,表现为白粉菌菌丝细胞质凝聚,细胞器解体和细胞组织崩解;吸器内的原生质电子致密度加深,吸器畸形,吸器壁增厚,细胞器解体,最终吸器坏死。  相似文献   

10.
本文利唱电镜技术研究了小麦条锈菌吸器母细胞的超微特征。观察发现,小麦条锈菌吸器母细胞大部位于胞间菌丝的顶部,但也可形成于两菌丝细胞间,同一菌丝细胞上可着生多个吸器母细胞,吸器母细胞的多核现象较为普遍。吸器母细胞壁由6层组成,而其隔膜可分辩为4层。细泡化学染色结果表明隔膜突中含有多糖类物质,吸器母细胞隔膜突的出现和消失与吸器的发育密切相关。本文结果表明小麦条锈菌吸器母细胞的一些超微特征明显不同于其它锈菌。  相似文献   

11.
Baka ZA 《Mycopathologia》2002,156(3):215-221
The ultrastructure of intercellular hyphae and dikaryotic haustoria of Uromyces euphorbiae, and the host response to haustorial invasion was investigated. The intercellular hyphae share common characteristics with those of other uredinial stages of rust fungi. Three types of septa were recognized inside the intercellular hypha. This study showed that the extrahaustorial membrane was possibly formed before the development of the haustorium. The periodic acid-thiocharbohydrazide-silver proteinate technique showed that the haustorial mother cell wall at the penetration site, and the haustorial wall contained more carbohydrates than other fungal structures. In addition, the neckband, present around the haustorial neck, contains different material from those of the rest of the haustorial neck wall. The close associations of host organelles, such as the nucleus, chloroplasts, mitochondria, endoplasmic reticulum and microtubules, with the haustorium, is described.  相似文献   

12.
Soylu S 《Mycopathologia》2004,158(4):457-464
In this study transmission electron microscopy (TEM) was used to examine details of the host–pathogen interface in Arabidopsis thaliana cotyledons infected by Albugo candida, causal agent of white blister. After successful entry through stomatal pores, the pathogen developed a substomatal vesicle and subsequently produced intercellular hyphae. TEM observations revealed that coenocytic intercellular hyphae ramified and spread intercellularly throughout the host tissue forming several haustoria in host mesophyll cells. Intracellular haustoria were spherical and 4.5 μm in diameter. Each haustorium was connected to intercellular hyphae by a narrow, slender haustorium neck. The cytoplasm of the haustorium included the organelles characteristic of the pathogen. No obvious response was observed in host cells following formation of haustoria. Most of the mesophyll cells contained normal haustoria and the host cytoplasm displayed a high degree of structural integrity. Absence of host cell wall alteration and cell death in penetrated host cells suggest that the pathogen exerts considerable control over basic cellular processes and in this respect, response to this biotrophic Oomycete differs considerably from responses to other pathogens such as necrotrophs. Modification of the host plasma membrane (PM) along the cell wall and around the haustoria, was detected by applying the periodic acid-chromic acid-phosphotungstic acid (PACP) staining technique. After staining with PACP, the host PM was found to be intensely electron dense where it was adjacent to the host cell wall and the distal region of the haustorial neck. By contrast, the extrahaustorial membrane, where the host PM surrounded the haustorium, was consistently very lightly stained.  相似文献   

13.
本研究采用电镜技术研究了种衣剂17号对小麦条锈菌发育的影响。观察结果表明,该种衣剂引起病菌和寄主细胞内发生了一系列变化。病菌菌丝和吸器内脂肪粒和液泡明显增加;菌丝壁和吸器壁呈不规则加厚;菌丝分枝处无隔膜产生或隔膜畸形;有的吸器母细胞产生的畸形入侵栓,大都不能穿透寄主细胞壁,初生吸器外间质内沉积有染色较深的物质,次生吸器可产生多个不规则分枝,但不能扩张膨大;菌丝外渗的物质可能引起寄主细胞的坏死;大多数受侵寄主细胞可分泌形成较大的胼胝质,有时寄主细胞分泌的物质可将吸器体完全包围起来。上述结果表明,种衣剂17号不仅可直接作用于条锈菌,而且也可通过影响寄主而间接地影响病菌。  相似文献   

14.
The fine structure of the intercellular hyphae of the obligate parasite Albugo candida infecting radish does not differ markedly from that described previously for cells of Peronospora manshurica. The stalked, capitate haustoria do not contain nuclei and are packed with mitochondria and lomasomes. The fungal plasma membrane and cell wall are continuous from the intercellular hypha throughout the haustorium except that there is no evidence of fungal cell wall around a portion of the haustorial stalk proximal to the haustorial head. Within the vacuolate host mesophyll cell, the haustorium is always surrounded by host plasma membrane and with at least a thin layer of host cytoplasm. The host cell wall invaginates at the point of haustorial penetration to form a short sheath around the region of penetration, but normally there is no host cell wall around the balance of the haustorium. About 1% of the haustoria observed were necrotic, and these were invariably walled-off completely from host cytoplasm by host cell wall. An amorphous, moderately electron-dense encapsulation lies between the haustorium proper and the host plasma membrane and extends into the penetration region between the sheath and the fungal cell wall. Invaded host cells contain more ribosomal-rich ground cytoplasm than uninfected cells. Glandular-like systems of tubules and connecting vesicles are often numerous in host cytoplasm in the vicinity of haustorial heads. These tubules open into the encapsulation, their limiting unit membranes being continuous with the host plasma membrane. We suggest that these represent a secretory mechanism of the host specifically induced by the parasite.  相似文献   

15.
Investigations on the susceptibility and resistance of head lettuce (Lactuca sativa) to downy mildew (Bremia lactucae) II. Light and electron microscopic examinations of the host-parasite interface Infected leaves of lettuce varieties susceptible and incompletely resistant to Bremia lactucae were observed by light and electron microscopy. Primary infection structures in the epidermal cells as well as intercellular hyphae with the adjacent haustoria could be seen by differential interference contrast microscopy. The haustoria in host cells of susceptible varieties collapsed before degeneration of the invaded host cell. On the contrary, host cells of incompletely resistant varieties died before the haustoria in these cells showed any sign of degeneration. Electron microscopic investigations confirmed the observations with light microscopy. In incompletely resistant varieties, an electron transparent sheath enveloped the haustorium. In the sheath fragments of membranes are localized. These membrane particles as seen by using the goniometer in electron microscopic work were flat faced. The sheath material consists of transformed host cell wall material and involves fragments of the host plasmalemma as well as fragments of the unit membrane separating the sheath from extrahaustorial matrix. The sheath has an important role as a special filter to prevent the passage of nutrients from the host cell into the haustorium. Thus the incomplete resistance is based not only on an impeded penetration of the parasite into the epidermal cells and their hypersensitive reactions in case of a successful penetration but also on hypersensitivity of mesophyll cells which does not necessarily lead to death of the parasite but does impede the absorption of nutrients.  相似文献   

16.
Ehrlich , H. G., and Mary A. Ehrlich . (Duquesne U., Pittsburgh, Pa.) Electron microscopy of the host-parasite relationships in stem rust of wheat.—Amer. Jour. Bot. 50(2): 123–130. Illus. 1963.—A series of micrographs showing intercellular dikaryotic mycelium, haustorial mother cells, stages in haustorial formation, and haustoria within host cells are presented in the present report. Of special interest and potential significance in a study of obligate parasitism is an encapsulation ranging from 800 to 3400 A in thickness which surrounds the haustorium, but which is not present around the intercellular hyphae. The encapsulation completely encases the haustorium proper; it is bounded on the inside by the cell wall of the haustorium, and its thin membranous outer margin abuts directly on the protoplast of the host cell. The nature of the material composing the encapsulation is uncertain, but it appears to originate from the haustorial protoplast, and at least a portion of it may be fungal cytoplasm. This newly described structure represents the actual interface between the host and pathogen. Small vesicles which seem to originate from the outer margin of the encapsulation are sometimes found in the host cytoplasm surrounding apparently vigorous haustoria. The vesicles are bounded by a membrane and contain particulate material.  相似文献   

17.
The ultrastructure of the uredinial stage of the rust fungus,Puccinia polypogonis onPolypogon monspeliensis is described, using scanning and transmission electron microscopy. This study examined the urediniospores, intercellular hyphae, and haustoria of the fungus. The formation and structure of urediniospores is similar to those of otherPuccinia species. The ultrastructure of intercellular hyphae and haustoria is similar to those of other rust fungi, but with some differences. No modifications are observed in the wall of the haustorial mother cells during penetration. A collar is found only around old haustoria. In most cases, one nucleus is detected inside the haustorial body and no nucleoli are seen in the nuclei of intercellular hyphae and haustoria. The host-parasite interface, including extrahaustorial matrix and extrahaustorial membrane, is also discussed and compared with those of other rust fungi.  相似文献   

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