王祥林, 陈文静, 苏达明. 温度对六斑月瓢虫生长发育及繁殖的影响[J]. 西南林业大学学报, 2012, 32(4): 76-80. DOI: 10.3969/j.issn.2095-1914.2012.04.016
引用本文: 王祥林, 陈文静, 苏达明. 温度对六斑月瓢虫生长发育及繁殖的影响[J]. 西南林业大学学报, 2012, 32(4): 76-80. DOI: 10.3969/j.issn.2095-1914.2012.04.016
WANG Xianglin1, 2, CHEN Wenjing3. Influence of Temperature on the Growth, Development and Reproduction of Menochilus sexmaculates[J]. Journal of Southwest Forestry University, 2012, 32(4): 76-80. DOI: 10.3969/j.issn.2095-1914.2012.04.016
Citation: WANG Xianglin1, 2, CHEN Wenjing3. Influence of Temperature on the Growth, Development and Reproduction of Menochilus sexmaculates[J]. Journal of Southwest Forestry University, 2012, 32(4): 76-80. DOI: 10.3969/j.issn.2095-1914.2012.04.016

温度对六斑月瓢虫生长发育及繁殖的影响

Influence of Temperature on the Growth, Development and Reproduction of Menochilus sexmaculates

  • 摘要: 为探索人工饲养六斑月瓢虫的最适温度,研究温度对其生长发育及繁殖的影响。结果表明:在17~32℃下,六斑月瓢虫的发育速率随着温度的升高而加快,但发育历期随着温度的升高而缩短;在32℃以上的高温区,其发育速率有所减慢,发育历期则随着温度的升高而略有延长。用直线回归法求得六斑月瓢虫世代的发育起点温度和有效积温分别为829℃和29412日度;而用直接最优法求得六斑月瓢虫世代的发育起点温度和有效积温分别为836℃和28880日度。采用线性日度模型和Logistic模型对卵期、各龄幼虫期和蛹期的发育速率进行模拟分析,2种模型均能较好地反映出各虫期的生长发育速度。

     

    Abstract: The influence of temperature on the growth, development and reproduction of Menochilus sexmaculates was studied to explore the optimal temperature for artificial rearing of the ladybug. The results showed that the growth and development rate of the ladybug increased significantlyand the development period was shortened along with temperature rising from 17℃ to 32℃. The development rate dropped slowly when the temperature was over 32℃, and thedevelopment phase was ℃. The development threshold and the effective accumulated temperatures of the whole life cycle of M. sexmaculates was calculated by the linear regression method as 8.29℃ and 294.12 daydegrees respectively. The corresponding two data of the whole life cycle of this ladybug was calculated by the direct optimal method to be 8.36℃ and 288.80 daydegrees respectively. The development rate of the egg stage, each instars larvae stage and the pupa stage of M. sexmaculates were simulated by both the Linear Day Degree model and the Logistic model. The results showed that both of these two models could well reflect the growth and development rate of each stage of M. sexmaculates.

     

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