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皮暗斑螟性信息素研究 被引量:9
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作者 温秀军 blanka kalinova +1 位作者 刘满光 Michal Hoskovec 《林业科学》 EI CAS CSCD 北大核心 2009年第12期83-89,共7页
通过室内人工饲养与枣树林间定时定点观测相结合的方法,对皮暗斑螟的生殖生物学进行观测。傍晚(17—20时)羽化的成虫占总量的45.71%,交尾多于午夜后至凌晨前进行。在室内通过气相色谱与触角电位测定相结合的方法,测定皮暗斑螟雄蛾对来... 通过室内人工饲养与枣树林间定时定点观测相结合的方法,对皮暗斑螟的生殖生物学进行观测。傍晚(17—20时)羽化的成虫占总量的45.71%,交尾多于午夜后至凌晨前进行。在室内通过气相色谱与触角电位测定相结合的方法,测定皮暗斑螟雄蛾对来自雌蛾性腺的不同化合物的反应,通过应用全二维气相色谱飞行时间质谱分析技术,初步明确了皮暗斑螟性信息素组分为(Z9,E12)-十四碳-9,12-二烯-1-醇[(Z,E)-9,12-14∶OH]和(Z9)-十四碳-9-烯-1醇(Z9-14∶OH)。对二组分及其同分异构体的单体和混合物进行了林间引诱试验,初步结果表明(Z,E)-9,12-14∶OH的诱虫效果较好。5,50,500和1000μg不同剂量诱芯的田间引诱试验证明,500μg剂量诱芯诱虫量最多。 展开更多
关键词 皮暗斑螟 性信息素 生殖生物学 枣树
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Simple ears - flexible behavior: Information processing in the moth auditory pathway 被引量:1
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作者 Gerit PFUHL blanka kalinova +1 位作者 Irena VALTEROVA Bente G. BERG 《Current Zoology》 SCIE CAS CSCD 2015年第2期292-302,共11页
Lepidoptera evolved tympanic ears in response to echolocating bats. Comparative studies have shown that moth ears evolved many times independently from chordotonal organs. With only 1 to 4 receptor cells, they are one... Lepidoptera evolved tympanic ears in response to echolocating bats. Comparative studies have shown that moth ears evolved many times independently from chordotonal organs. With only 1 to 4 receptor cells, they are one of the simplest hearing organs. The small number of receptors does not imply simplicity, neither in behavior nor in the neural circuit. Behaviorally, the response to ultrasound is far from being a simple reflex. Moths' escape behavior is modulated by a variety of cues, especially pheromones, which can alter the auditory response. Neurally the receptor cell(s) diverges onto many interneurons, enabling pa- rallel processing and feature extraction. Ascending interneurons and sound-sensitive brain neurons innervate a neuropil in the ventrolateral protocerebrum. Further, recent electrophysiological data provides the first glimpses into how the acoustic response is modulated as well as how ultrasound influences the other senses. So far, the auditory pathway has been studied in noctuids. The findings agree well with common computational principles found in other insects. However, moth ears also show unique mechanical and neural adaptation. Here, we first describe the variety of moths' auditory behavior, especially the co-option of ul- trasonic signals for intraspecific communication. Second, we describe the current knowledge of the neural pathway gained from noctuid moths. Finally, we argue that Galleriinae which show negative and positive phonotaxis, are an interesting model species for future electrophysiological studies of the auditory pathway and multimodal sensory integration, and so are ideally suited for the study of the evolution of behavioral mechanisms given a few receptors. 展开更多
关键词 LEPIDOPTERA Ultrasound perception Multimodal communication
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