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水分失衡对黄脊竹蝗趋泥行为的影响

张威1,张守科1,滕莹2,方蓉1,耿显胜1,舒金平1*,王浩杰1   

  1. 1中国林业科学研究院亚热带林业研究所, 杭州 311400;2浙江省杭州市富阳区农业和林业局, 杭州 311400)
  • 出版日期:2019-10-10 发布日期:2019-10-10

Effects of water imbalance on the mud-puddling behavior of yellow-spined bamboo locust (Ceracris kiangsu).

ZHANG Wei1, ZHANG Shou-ke1, TENG Ying2, FANG Rong1, GENG Xian-sheng1, SHU Jin-ping1*, WANG Hao-jie1   

  1. (1Research Institute of Subtropical Forestry, Chinese Academy of Forestry, Hangzhou 311400, China; 2Agricultural and Forestry Bureau of Fuyang District, Hangzhou 311400, China).
  • Online:2019-10-10 Published:2019-10-10

摘要: 黄脊竹蝗(Ceracris kiangsu)是具有趋泥行为的咀嚼式口器昆虫。为了探讨黄脊竹蝗趋泥行为的激发动力,本文分析了水对黄脊竹蝗趋泥行为的影响。结果表明:补充水分是黄脊竹蝗“趋泥”的动力之一;黄脊竹蝗成虫对经去离子水处理的滤纸访问次数及停留时间均多于干滤纸,且发生趋泥行为的黄脊竹蝗成虫体内含水率较未发生趋泥行为的竹蝗有显著提升(P=0.008);碳酸氢铵是激发黄脊竹蝗成虫定向聚集的引诱物质,而水是重要的驻留剂;发生趋泥行为的黄脊竹蝗雌虫显著多于雄虫(♀∶♂=7.75∶1),可能与雌虫体型较大密切相关;在高湿度栖境中活动也是黄脊竹蝗维持体内水分平衡的重要途径。

关键词: 光合产物分配, 玉米, 生物量, 模型

Abstract: The yellow-spined bamboo locust,Ceracris kiangsu (Orthoptera: Oedipodidae) is the first reported insect with chewing mouthpart possessing mud-puddling behavior. To better understand the driving factors for the mud-puddling behavior of C. kiangsu, we analyzed the effects of water imbalance on the mud-puddling behavior of the yellowspined bamboo locust. The results showed that water uptake was one of the important factors driving mud-puddling behavior ofC. kiangsu. C. kiangsu adults visited wet filter paper more frequently and stayed longer time on wet filter paper than dry filter paper. Body’s water content of the adults significantly increased after puddling (P=0.008). Ammonium hydrogencarbonate was the attractant and water was the phagostimulant towards C. kiangsu adults. Body size of femaleC. kiangsu adults was significantly larger than that of the males. The number of puddling female adults was much more than that of males (♀∶♂=7.75∶1), which is probably closely related to the larger size of female adults. Moreover, moving towards and staying in moist regions was another approach to keep body water balance.

Key words: maize, model., biomass\ photosynthate allocation