南京林业大学学报(自然科学版) ›› 2010, Vol. 34 ›› Issue (01): 145-147.doi: 10.3969/j.jssn.1000-2006.2010.01.033
赵博光
出版日期:
2010-02-09
发布日期:
2010-02-09
ZHAO Boguang
Online:
2010-02-09
Published:
2010-02-09
摘要: 介绍了长期流行的松萎蔫病的单病原学说及其在解释松萎蔫病病理机制、新的实验结果等方面面临的困难。根据多项实验结果作者提出松萎蔫病是由松材线虫与其携带的致病细菌引起的复合侵染新假说。在此基础上,发现松材线虫与其致病细菌间的互惠共生现象、分离、鉴定致病细菌产生的鞭毛蛋白及其他毒素、松萎蔫病由细菌毒素导致萎蔫致死的致病机理等新进展。阐述了松萎蔫病致病新学说在研究松萎蔫病致病机理及测报、防控、抗病育种等方面新方向。
中图分类号:
赵博光. 松材线虫携带的细菌在松萎蔫病中的作用[J]. 南京林业大学学报(自然科学版), 2010, 34(01): 145-147.
ZHAO Boguang. The role of bacteria carried by Bursaphelenchus xylophilus in pine wilt disease[J].Journal of Nanjing Forestry University (Natural Science Edition), 2010, 34(01): 145-147.DOI: 10.3969/j.jssn.1000-2006.2010.01.033.
[1]Mamiya Y. Behaviour of Bursaphelenchus lignicolus in the wood of pine seedlings and pathological responses of pine to nematode infection[C]//Translations of the 86th Meeting of Japanese Forestry Society, 1975. [2]Myers R F. Pathogenesis in pine wilt caused by pine wood nematode, Bursaphelenchus xylophilus[J]. Journal of Nematology, 1988, 20: 236-244. [3]Cao Y. Studies on toxin of pine wilt disease caused by pine wood nematode[D]. Nanjing: Nanjing Forestry University, 1997. [4]Kawazu K, Kaneko N. Asepsis of the pine wood nematode isolate OKD-3 causes it to lose its pathogenicity[J]. Japanese Journal of Nematology, 1997, 27: 76-80. [5]Oku H, Shiraishi T, Kurozumi S. Pine wilt toxin, the metabolite of a bacteria associated with a nematode[J]. Naturwissenschaften, 1980, 67: 198-199. [6]Higgins D F, Harmy M A, Jones D L. Pathogenicity related gene expression in Bursaphelenchus xylophilus[C]//Futai K, Togashi K, Ikeda T. Sustainability of Pine Forests in Relation to Pine Wilt and Decline. Tokyo: Proceedings of International Symposium, 1999. [7]Zhao Boguang, Guo Dosen, Gao Rong. Observation of the site of pine wood nematode where bacteria are carried with SEM and TEM[J]. Journal of Nanjing Forestry University, 2000, 24: 69-71. [8]Guo Dosen, Cong Peijiang, Li Li, et al. Determination of bacterial number carried by a pine wood nematode and culture of aseptic nematodes on calli of Pinus thunbergii[J]. Journal of Qingdao University, 2002, 15(4): 29-31. [9]Zhao Boguang, Wang H L, Han S F. Distribution and pathogenicity of bacteria species carried by Bursaphelenchus xylophilus in China[J]. Nematology, 2003, 5: 899-906. [10]Zhao Boguang, Gao Rong, Ju Yunwei, et al. Effects of antibiotics on the pine wilt disease[J]. Journal of Nanjing Forestry University: Natural Sciences Edition, 2000, 24(4): 75-77. [11]Zhao Boguang, Zhao Linguo, Liu Xiuhua, et al. Study on the Pathogens of pine wilt disease[J]. Journal of Nanjing Forestry University: Natural Sciences Edition, 2007, 33(4): 1-5. [12]Guo Daosen, Zhao Boguang, Li Ronggui. Effect of pine wood nematode on the propagation and pathogenicity of its carrying bacterial strain[J]. Chin J Appl Environ Biol, 2006, 12(4): 523-527. [13]Zhao B G, Lin F. Mutualistic symbiosis between Bursaphelenchus xylophilus and bacteria of the genus Pseudomonas[J]. Forest Pathology, 2005, 35: 39-345. [14]Zhao Boguang, Liang Bo, Xu Mei, et al. Preliminary partition of the toxins of a strain in Pseudomonas fluorescens associated with Busaphelenchus xylophelus[J]. Scientia Silvae Sinicae, 2006(1): 75-78. [15]Guo Qunqun, Guo Daosen, Zhao Boguang, et al. Two cyclic dipeptides from Pseudomonas florescens GcM5-1A carried by the pine wood nematode and their toxicityes to Japanese black pine suspension ls and seedlings in vitro[J]. Journal of Nematology, 2007, 39(3): 243-247. [16]Guo Daosen, Zhao Boguang, Li Ronggui, et al. Purification of flagellin of Pseudomonas fluorescens GcM5-1A carried by the pine wood nematode, Bursaphelenchus xylophilus, and its in vitro toxicity to a suspension of cells of Pinus thunbergii[J]. Russian Journal Nematology, 2008, 16(2): 141-147. [17]Li Shengnan, Guo Daosen, Zhao Boguang, et al. Lethal effect of flagellin secreted by Pseudomonas fluorescens on cells of Pinus thunbergii[J]. Acta Bot, 2008, 28(11): 2154-2158. |
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