期刊文献+

球毛壳ND35菌株在宿主植物上的侵染定殖 被引量:10

Infection and colonization of Chaetomium globosum ND35 on host plant
原文传递
导出
摘要 为了解球毛壳Chaetomium globosum ND35菌株在宿主植物上的侵染定殖方式和途径,以毛白杨组培苗为宿主植物,借助光学显微镜、扫描电镜、透射电镜,结合免疫荧光标记技术,研究了球毛壳ND35菌株子囊孢子萌发后在毛白杨上的侵染行为及其菌丝在组培苗根部的定殖。结果显示,子囊孢子萌发后形成的菌丝,能从杨树苗根、茎部表面细胞间的缝隙侵入或在根表面形成附着胞,进而形成侵染钉直接从表皮细胞侵入,在叶部主要从气孔侵入叶片内部。侵入根部的菌丝主要定殖于表皮细胞、外皮层细胞和细胞间隙,未进入内皮层和维管束组织。 Chinese white poplar plantlets from tissue culture were served as host plant in order to understand the mode and approach of infection and colonization of Chaetomium globosum ND35 on host plant.Infection of C.globosum ND35 ascospores on Chinese white poplar plantlets after germinating and colonization of C.globosum ND35 hyphae in poplar root were investigated by means of light microscopy,scanning electron microscopy,transmission electron microscopy and with immunofluorescent labeling.The results showed that hyphae of C.globosum ND35 invaded poplar root and stem from gap of epidermal surface cells,or directly penetrated epidermis by penetration peg formed from appressorium after ascospores germinating;and invaded poplar leaves mainly from stomata.Hyphae invaded root of poplar mainly colonized in the epidemic cells,the outermost cortical layer cells or intercellular spaces of cortical layer which was not found in endodermis and vascular tissues.
出处 《植物保护学报》 CAS CSCD 北大核心 2011年第6期493-498,共6页 Journal of Plant Protection
基金 国家自然科学基金(31010103038,30872024,30571498) 公益性行业(农业)科研专项(201003004) 山东省科技发展计划(2010GNC10911)
关键词 内生真菌 球毛壳ND35 生物防治 侵染定殖 毛白杨 endophytic fungus Chaetomium globosum ND35 biocontrol infection and colonization Populus tomentosa
  • 相关文献

参考文献18

  • 1Schulz B, Boyle C. The endophytic continuum. Mycological Research, 2005, 109(6):661-686.
  • 2Gao K X, Mendgen K. Seed-transmitted beneficial endophytic Stagonospora sp. can penetrate the walls of the root epidermis, but does not proliferate in the cortex, of Phragmites australis. Canadian Journal of Botany, 2006, 84(6):981-988.
  • 3袁志林,章初龙,林福呈.植物与内生真菌互作的生理与分子机制研究进展[J].生态学报,2008,28(9):4430-4439. 被引量:66
  • 4Gao F K, Dai C C, Liu X Z. Mechanisms of fungal endophytes in plant protection against pathogens. African Journal of Microbiology Research, 2010, 4(13):1346-1351.
  • 5Toti L, Viret O, Chapela I H, et al. Differential attachment by conidia of the endophyte, Discula umbrinella (Berk. & Br.) Morelet, to host and non-host surfaces. New Phytologist, 1992, 121(3):469-475.
  • 6刘凤权,王金生.毒性基因突变体Du728在水稻叶片上的定殖及在植株体内的传导[J].中国生物防治,2000,16(3):118-122. 被引量:3
  • 7Ernst M, Mendgen K W, Wirsel S G R. Endophytic fungal mutualists:seed-borne Stagonospora spp. enhance reed biomass production in axenic microcosms. Molecular Plant-Microbe Interactions, 2003, 16(7):580-587.
  • 8Genre A, Chabaud M, Timmers T, et al. Arbuscular mycorrhizal fungi elicit a novel intracellular apparatus in Medicago truncatula root epidermal cells before infection. Plant Cell, 2005, 17(12):3489-3499.
  • 9Gao K, Liu X, Kang Z, et al. Mycoparasitism of Rhizoctonia solani by endophytic Chaetomium spirale ND35:ultrastructure and cytochemistry of the interaction. Journal of Phytopathology, 2005, 153(5):280-290.
  • 10印敬明,刘晓光,万慧,肖守华,高克祥,王庆华.螺旋毛壳(Chaetomium spirale)ND35防病促生作用初探[J].莱阳农学院学报,2006,23(4):272-275. 被引量:18

二级参考文献163

共引文献114

同被引文献183

引证文献10

二级引证文献122

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部