首页> 外文期刊>Archives of Insect Biochemistry and Physiology >Significance of penetration, excretion, and transovarial uptake to toxicity of three insect growth regulators in predatory lacewing adults
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Significance of penetration, excretion, and transovarial uptake to toxicity of three insect growth regulators in predatory lacewing adults

机译:掠食性草lace成虫的三种昆虫生长调节剂的渗透,排泄和经卵巢吸收对毒性的意义

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Topical treatment of the predatory lacewing adults, Chrysoperla carnea (Stephens) (Neuroptera: Chrysopidae) before and after the onset of oviposition with diflubenzuron (DFB) at doses based on the maximum field recommended concentration resulted in a total inhibition of egg hatch due to death of the embryo. In contrast, pyriproxyfen (PYR) and tebufenozide (TEB) did not affect fecundity and egg fertility. To explain these differences in toxicity, the patterns of penetration through the cuticle, distribution inside the insect body, and excretion were studied using [~(14)C]-labeled isotopes of each insect growth regulator (IGR). Penetration of DFB and TEB reached about 16 and 26% in 7 days, whereas 88% of PYR had penetrated in 24 h. However, the rate of excretion for PYR was very high, compared to that of DFB and TEB. Low amounts of absorbed radioactivity were recovered from the female body with the exception of DFB, the ovaries and the eggs deposited during a week. DFB and PYR concentration reached a peak in the eggs deposited at the fourth and second day after treatment, respectively. The current data indicate the importance of penetration through the insect cuticle. However, other mechanisms are likely to be involved in the selectivity of the current IGRs towards this beneficial insect.
机译:敌敌贝龙(DFB)以基于最大推荐田间浓度的剂量在产卵之前和之后对掠食性草lace成年Ch(Stephens)(神经翅目:Chrysopidae)进行局部治疗,从而完全抑制了因死亡而引起的卵孵化胚胎。相比之下,吡ip昔芬(PYR)和替布非尼嗪(TEB)不会影响生育力和卵的繁殖力。为了解释这些毒性差异,使用每种昆虫生长调节剂(IGR)的[〜(14)C]标记同位素研究了通过角质层的渗透方式,在昆虫体内的分布以及排泄的方式。 DFB和TEB的渗透率在7天内分别达到16%和26%,而88%的PYR则在24小时内渗透。但是,与DFB和TEB相比,PYR的排​​泄率非常高。除了DFB,卵巢和一个星期内沉积的卵外,从雌性体内回收的吸收的放射性很少。处理后第四天和第二天沉积的卵中DFB和PYR浓度分别达到峰值。当前数据表明了穿透昆虫表皮的重要性。然而,其他IGR对这种有益昆虫的选择性可能与其他机制有关。

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