Piesman J, Happ C M
Division of Vector-Borne Infectious Diseases, Centers for Disease Control and Prevention, Fort Collins, CO 80522, USA.
J Med Entomol. 1997 Jul;34(4):451-6. doi: 10.1093/jmedent/34.4.451.
The infectivity of a diverse collection of Borrelia burgdorferi strains from North America for mice was determined as a prelude to vector competence experiments with the 3 primary human-biting tick species in the eastern United States (Ixodes scapularis Say, Dermacentor variabilis (Say), Amblyomma americanum (L.)]. Of the 34 B. burgdorferi strains inoculated into mice, 29 were infectious; the exceptions were 5 isolates from Texas. Vector competence experiments were conducted with 2 strains from the southern United States (North Carolina and Georgia). Both strains were extremely infectious to I. scapularis larvae. Moreover, I. scapularis efficiently maintained these spirochetes transstadially and transmitted infection as nymphs. D. variabilis larvae were intermediate in susceptibility but generally did not maintain the infection transstadially. A. americanum larvae were completely refractory to infection with these 2 southern B. burgdorferi strains. Three isolates from Michigan D. variabilis were inoculated into mice, subsequently exposed to I. scapularis and D. variabilis larvae. Larval I. scapularis were 5-fold more susceptible to infection with these strains than were larval D. variabilis. Although nymphal I. scapularis efficiently transmitted a Michigan isolate, nymphal D. variabilis did not. In all these experiments, I. scapularis was the only species that proved to be vector competent for B. burgdorferi.
作为在美国东部对3种主要叮咬人类的蜱虫(肩突硬蜱Say、变异革蜱(Say)、美洲钝缘蜱(L.))进行媒介能力实验的前奏,测定了来自北美的多种伯氏疏螺旋体菌株对小鼠的感染性。在接种到小鼠体内的34种伯氏疏螺旋体菌株中,有29种具有感染性;例外的是来自得克萨斯州的5个分离株。用来自美国南部(北卡罗来纳州和佐治亚州)的2种菌株进行了媒介能力实验。这两种菌株对肩突硬蜱幼虫都极具感染性。此外,肩突硬蜱能有效地经变态期维持这些螺旋体,并在若虫阶段传播感染。变异革蜱幼虫易感性中等,但一般不能经变态期维持感染。美洲钝缘蜱幼虫对这两种来自美国南部的伯氏疏螺旋体菌株完全具有抗性。将来自密歇根州变异革蜱的3个分离株接种到小鼠体内,随后让其接触肩突硬蜱和变异革蜱幼虫。肩突硬蜱幼虫对这些菌株的感染易感性是变异革蜱幼虫的5倍。虽然肩突硬蜱若虫能有效地传播一种来自密歇根州的分离株,但变异革蜱若虫则不能。在所有这些实验中,肩突硬蜱是唯一被证明对伯氏疏螺旋体具有媒介能力的物种。