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中国生物防治学报 ›› 2023, Vol. 39 ›› Issue (6): 1282-1288.DOI: 10.16409/j.cnki.2095-039x.2022.11.009

• 研究论文 • 上一篇    下一篇

日晒下不同颜色放蜂球对球内温度及螟黄赤眼蜂羽化出蜂的影响

李德伟, 罗亚伟, 黄杏, 梁菊菊, 覃振强   

  1. 广西壮族自治区农业科学院甘蔗研究所/广西甘蔗遗传改良重点实验室/农业农村部广西甘蔗生物技术与遗传改良重点实验室, 南宁 530007
  • 收稿日期:2022-09-05 出版日期:2023-12-08 发布日期:2023-12-20
  • 通讯作者: 覃振强,博士,研究员,E-mail:qinzqcn@163.com。
  • 作者简介:李德伟,硕士,正高级农艺师,E-mail:ldw11023@163.com。
  • 基金资助:
    广西自然科学基金(2020GXNSFAA297016, 2021GXNSFAA220069);国家现代农业产业技术体系(NYCYTXGXCXTD-2021-03-03);广西农业科学院基本科研业务专项资助项目(桂农科 2021YT013)

Effects of Trichogramma Ball Color on the Temperature and the Emergence of Trichogramma chilonis inside the Ball under Sunlight

LI Dewei, LUO Yawei, HUANG Xing, LIANG Juju, QIN Zhenqiang   

  1. Sugarcane Research Institute, Guangxi Academy of Agricultural Sciences/Guangxi Key Laboratory of Sugarcane Biotechnology and Genetic Improvement/Ministry of Agriculture and Rural Affairs, Guangxi Key Laboratory of Sugarcane Genetic Improvement, Nanning 530007, China
  • Received:2022-09-05 Online:2023-12-08 Published:2023-12-20

摘要: 为明确不同颜色放蜂球在日晒条件下对球内温度及螟黄赤眼蜂羽化率的影响,本研究测定了3种不同颜色放蜂球在不同气温下日晒或蔗林遮阴对球内温度的影响,在31 ℃高温日晒下球内温度和赤眼蜂羽化率变化,及放蜂球颜色对其球内羽化蜂出球率的影响。结果表明:太阳直晒下棕色放蜂球内温度最高,其次是红色球和白色球,球内温度均大于环境温度,在23 ℃~31 ℃的气温下日晒,球外气温均未超过38 ℃,球内温度5~10 min后急剧上升;白色、红色、棕色放蜂球内温度分别比球外温度高0 ℃~11.2 ℃、1 ℃~12.5 ℃、1.5 ℃~20.2 ℃。通过多因素方差分析,日晒时气温、放蜂球颜色及日晒时间对放蜂球内温度均具有显著影响。蔗田遮阴下白色、红色放蜂球的球内温度与环境温度差异不显著。3种颜色放蜂球在31 ℃下日晒5 min,球内温度可升至45 ℃以上,但球内赤眼蜂的羽化率与26 ℃室内的球内赤眼蜂羽化率相比无显著差异;日晒超过10 min时,红色、棕色球内赤眼蜂羽化率显著低于白色球的,日晒超过30 min后球内赤眼蜂羽化率显著降低;直晒超过60 min,放蜂球内的赤眼蜂羽化率为0;双因素方差分析表明,高温直晒时间与放蜂球颜色对球内赤眼蜂羽化率均有显著影响。放蜂球颜色对球内羽化蜂出球率无显著影响。本研究将为改良赤眼蜂田间释放技术,合理确定放蜂时的气温和放蜂球颜色提供科学依据。

关键词: 螟黄赤眼蜂, 日晒高温, 放蜂球, 植保无人机

Abstract: The aim of this study was to determine the effects of Trichogramma ball color on the temperature and the emergence rate of Trichogramma chilonis inside the ball under the condition of sun exposure. In this study, the temperatures inside Trichogramma balls of different colors were measured under sun exposure or shade in sugarcane fields at varying air temperatures. The temperature and the emergence rates of T. chilonis inside Trichogramma balls of different colors were measured at an air temperature of 31℃ in sun exposure. And the percentages of the emerged T. chilonis flying out of the Trichogramma balls of different colors were also observed. Under sun exposure, the temperature inside brown balls is the highest, followed by red balls and white balls. The temperature in the balls is higher than the ambient temperature. Under sun exposure and air temperature of 23 ℃—31 ℃, the temperature outside the ball did not exceed 38 ℃, whereas the temperature inside the ball rose sharply after 5—10 minutes under sunlight. The temperatures inside the white, red and brown balls were 0 ℃—11.2 ℃, 1 ℃—12.5 ℃ and 1.5 ℃—20.2 ℃ higher than the temperature outside the balls, respectively. Multivariate analysis of variance indicated that the air temperature, the Trichogramma ball color and the time of sun exposure had significant effects on the temperature inside the ball. Under shade in the sugarcane fields, there were no significant differences between the temperatures inside the white and red balls and the ambient temperature. The temperature inside the balls could rise to more than 45 ℃ when the balls were exposed to sunlight for 5 minutes at an air temperature of 31 ℃, but the emergence rate of T. chilonis inside the balls showed no significant difference compared with that of T. chilonis held at 26 ℃ in the laboratory. The emergence rates of T. chilonis inside the red and brown balls were significantly lower than that inside the white balls when exposured to sunlight for over 10 minutes, and the emergence rates of T. chilonis inside the balls decreased significantly when the exposure to sunlight exceeded 30 minutes. No emergence of T. chilonis were recorded when the balls were exposed to direct sunlight for more than 60 minutes. Two factors analysis of variance showed that both the time of direct sunlight exposure at high temperature and the color of Trichogramma ball had significant effects on the emergence rates of T. chilonis inside the ball. The ball color had no significant effect on the percentage of the emerged T. chilonis inside the ball flying out of the ball. These results shed light on improving the field release technology of Trichogramma and determining suitable temperature and ball color for the release Trichogramma ball.

Key words: Trichogramma chilonis, solarization high temperature, Trichogramma release ball, plant protection unmanned aerial vehicle

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