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中国蛭类动物生态地理类群特征及其防护医用研究进展
引用本文:谭恩光. 中国蛭类动物生态地理类群特征及其防护医用研究进展[J]. 生态学报, 2008, 28(12): 6272-6281. DOI: 10.1016/S1872-2032(09)60016-0
作者姓名:谭恩光
作者单位:中山大学,中山医学院,生物学教研室,广州510080
基金项目:国家自然科学基金资助项目  
摘    要:综述中国蛭类研究如下内容:(1)生态学.山蛭生态学,包括山蛭的生态分布,海南山蛭(H. hainana)的种群动态,对温度、土壤湿度和pH值的适应,以及对温、光、湿的综合反应和人类经济活动对其种群数量的影响;山蛭行为生态学,山蛭的运动包括慢缩短、快缩短、身体摆动和转动、洗刷运动、亲吻运动、觅食行为6程序,影响山蛭行为的一些因素以及对环境因素刺激的生态学意义;淡水水蛭生态学,包括浙江水田蛭类生活习性、广州水生光润金线蛭种群数量动态与水体化学因子关系、广州水田吸血菲牛蛭生活水体化学环境;山蛭和水生吸血菲牛蛭的觅食、生长动态、生命周期和生殖生物学;(2)形态学、分类学和动物地理学.形态学包括山蛭机能组织学、山蛭器官系统解剖;分类学,中国蛭类动物有2亚纲(蛭蚓亚纲、真蛭亚纲)、3目(蛭蚓目、吻蛭目、无吻目)、9科、33属、111种,占世界蛭类物种数约1/6;动物地理学,包括世界山蛭科属动物地理,中国山蛭科动物地理、中国医蛭科动物地理.(3)蛭类的防治和驱避,淡水吸血蛭类防治所用农药种类,不同农药对海南山蛭的毒力( LD50、LD95)及使用,并比较了12种驱避剂对海南山蛭的驱避效果.(4)蛭类的医学利用,蛭素是蛭类唾液腺分泌的一种抗凝物质,蛭素有水蛭素(Hirudin)、山蛭素(Haemadin)和吻蛭素(Hementin).记述了蛭素的分离、纯化和功能以及有关分子生物学内容.

关 键 词:蛭类  生态学  分类学  动物地理学  防治和驱避
收稿时间:2007-11-06
修稿时间:2008-08-29

Progress in the study of ecology, zoogeography, group, control repellent and medical usage of Hirudinea in China
TAN En-Guang. Progress in the study of ecology, zoogeography, group, control repellent and medical usage of Hirudinea in China[J]. Acta Ecologica Sinica, 2008, 28(12): 6272-6281. DOI: 10.1016/S1872-2032(09)60016-0
Authors:TAN En-Guang
Affiliation:aDepartment of Biology, College of Medical Science, Sun-Yatsen University, Guangzhou 510080, China
Abstract:Hirudinea in China were reviewed. The ecological distribution of Hirudinea, the population dynamics of H. hainana, the adaptation of H. hainana to temperature, soil humidity and pH, the response of H. hainana to temperature, relative humidity and light, and the effects of human activities on H. hainana populations were discussed. The land-leeches' behavior ecology, including (1) the locomotion of H. hainana such as shortening, oscillating, rotating, sucking cleaning, rubbing and foraging behaviors; (2) the factors influencing these behaviors; (3) the ecological significance, was also discussed. The ecology of freshwater leeches including (1) behavior in paddy fields of Ninghsien, Zhejiang Province, China; (2) relationship between population dynamics of Whitmania laevis and chemical factors in paddy fields of Guangzhou, China; (3) chemical environment of blood-sucking Hirudinaria manillensis in paddy fields of Guangzhou was described. The study also discussed the foraging, growth dynamics, life recycle and biology of reproduction of blood-sucking land-leech H. hainana and freshwater leech Hirudinaria manillensis, the taxonomy and the zoogeography. In addition, the morphology including histology and anatomy of the organic system of H. hainana was described. The Hirudinea can be classified into 2 subclasses (Branchiobdellidea and Euhirudinea), 3 orders (Branchiobdellida, Rhynchobdellida and Arhynchobdellida), 9 families, 33 genera and 111 species. The response of leeches to pesticides, including toxicity (LD50, LD95) of different pesticides to H. hainana, was presented. Medical usage of the leech Hirudin from salivary glands as anticoagulant material was discussed. Hirudin (from Hirudo medicinalis), Haemadin (from land-leech), and hementi (from Hementeria ghilianii) were identified and isolated.
Keywords:leech   ecology   taxonomy   zoogeography   repellent and control
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