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应用生态学报 ›› 2012, Vol. 23 ›› Issue (11): 3045-3050.

• 研究报告 • 上一篇    下一篇

温度对以白茶为寄主的米缟螟生长发育的影响

尚小丽1,杨茂发1**,黄丽1,苟光前2   

  1. (1贵州大学昆虫研究所/贵州山地农业病虫害重点实验室, 贵阳 550025; 2贵州大学生命科学学院,  贵阳 550025)
  • 出版日期:2012-11-18 发布日期:2012-11-18

Effects of temperature on the growth and development of Aglossa dimidiata parasitized on Litsea coreana.

SHANG Xiao-li1, YANG Mao-fa1, HUANG Li1, GOU Guang-qian2   

  1. (1Guizhou Key Laboratory for Plant Pests Management of Mountainous Region, Institute of Entomology, Guizhou University, Guiyang 550025, China; 2College of Life Sciences, Guizhou University, Guiyang 550025, China)
  • Online:2012-11-18 Published:2012-11-18

摘要: 为探明温度对以白茶为寄主植物的产虫茶昆虫米缟螟生长发育的影响, 分别设置5个温度条件(31、28、25、22、19 ℃), 研究温度对米缟螟各虫态平均发育历期、发育速率和存活率的影响, 计算各虫态发育起点温度和有效积温. 结果表明: 温度对米缟螟各虫态平均发育历期影响显著, 除卵的发育历期随温度的升高而缩短外, 幼虫、蛹及未成熟期的发育历期均在25 ℃达到最小值, 分别为(249.53±23.83) d、(12.94±1.27) d和(273.00±24.19) d;除蛹外米缟螟各虫态发育速率与温度呈极显著相关, 其中卵的发育速率与温度呈线性相关, 幼虫、蛹和未成熟期则呈抛物线相关;温度显著影响各虫态存活率, 卵、幼虫、蛹及未成熟期各虫态存活率均在25 ℃最高, 分别为94.0%、73.8%、91.3%和63.4%, 22和19 ℃次之, 31 ℃最低;幼虫及蛹存活率在31 ℃均为0, 表明米缟螟不耐高温;卵、幼虫、蛹及未成熟期的发育起点温度分别为13.21、17.12、14.76和16.47 ℃, 有效积温分别为 117.94、870.88、149.70和1442.75日·度.研究结果与米缟螟在贵州息烽地区一年发生2至3代的事实大致相符.

Abstract: In order to reveal the effects of temperature on the growth and development of Aglossa dimidiata  parasitized on Litsea coreana, a laboratory experiment was conducted to study the mean development duration, development rate, and survival rate of A. dimidiata at its different growth stages at 31 ℃, 28 ℃, 25 ℃, 22 ℃, and 19 ℃, with the development threshold temperature and effective accumulated temperature for different growth stages calculated. Temperature had significant effects on the developmental duration. Except that the development duration of egg was shortened with increasing temperature, the development durations of larva, pupa, and immature A. dimidiata were the shortest at 25 ℃, being 249.53±23.83, 12.94±1.27, and 273.00±24.19 days, respectively. There existed significant relationships between the development rates of A. dimidiata at its different growth stages and temperature, with positive linear relationship at egg stage, and quadratic relationship at larva, pupa, and immature stages. Temperature also had significant effects on the survival rate of A. dimidiata. The survival rates of A. dimidiata at its different growth stages were all the highest at 25 ℃, being 94.0%, 73.8%, 91.3%, and 63.4% for the egg, larva, pupa, and immature A. dimidiata, respectively, followed by at 22 ℃ and 19 ℃, and the lowest at 31 ℃. No larva and pupa could survive at 31 ℃, suggesting that A. dimidiata was not resistant to high temperature. The development threshold temperature for egg, larva, pupa, and immature A. dimidiata was 13.21 ℃, 17.12 ℃, 14.76 ℃, and 16.47 ℃, and the effective accumulated temperature was 117.94, 870.88, 149.70, and 1442.75 daydegree, respectively. The results coincided with the fact that the A. dimidiata  reproduced 2 or 3 generations a year in Xifeng area of Guizhou, Southwest China.