首页> 外文期刊>Journal of Economic Entomology >Effect of Gamma Irradiation on Fecundity, Sterility, and Female Sex Pheromone Production of Callosobruchus chinensis (Coleoptera: Bruchidae)
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Effect of Gamma Irradiation on Fecundity, Sterility, and Female Sex Pheromone Production of Callosobruchus chinensis (Coleoptera: Bruchidae)

机译:γ辐照对愈伤组织(殖民植物:Bruchidae)的繁殖力,无菌和女性性信息素生成的影响

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Azuki bean beetle, Callosobruchus chinensis (L.) (Coleoptera: Bruchidae), is a field-to-storage pest of legumes and its females produce sex pheromone components with two isomers: (2Z,6E)-7-ethyl-3,11-dimethyl-2,6,10-dodecatrienal (2Z-homofarnesal) and (2E,6E)-7-ethyl-3,11-dimethyl-2,6,10-dodecatrienal (2E-homofarnesal). Two-day-old virgin adults were treated with different doses (0, 200, 300, 400, 500, and 600 Gy) of gamma radiation and the effects on adult survivorship, fecundity, sterility, and pheromone production were studied. The longevity of both sexes and female fecundity were dose dependently affected by the gamma irradiation revealing that the fecundity was more reduced when the female adults were irradiated. Adults of both sexes were totally sterilized by the doses of gamma radiation tested in this study as depicted by the null hatchability of the laid eggs. The results from analyses by gas chromatography-mass spectrometry for solid phase micro-extraction revealed that both of the female sex pheromone components were significantly reduced by 300 Gy. Though significantly less, there was release of some amount of pheromone components by the irradiated female azuki bean beetles revealing the possibility of pheromonal attraction of males to the irradiated females. It is a pre-requisite for the successful sterile insect technology that the sterility of azuki bean beetle is induced without the total disruption of the calling behavior.
机译:Azuki Bean Beetle,Callosobruchus chinensis(L.)(鞘翅目:Bruchidae),是豆类植物的野生植物,其女性与两种异构体产生性信息素组分:(2Z,6E)-7-乙基-3,11 - 二甲基-2,6,10-十二烷类(2Z-甲酸)和(2E,6E)-7-乙基-3,11-11-二甲基-2,6,10-十二烷(2E-甲虫)。将两天的圣母成人用不同的剂量(0,200,300,400,500和600倍)的γ辐射治疗,研究了对成​​人生存,繁殖力,无菌和信息素产生的影响。两性和女性繁殖力的寿命依赖于γ辐射的剂量,揭示了当雌性成年人照射时繁殖力更加降低。本研究中测试的γ辐射剂量完全灭菌的成年人是完全灭菌,如被包装蛋的零孵化率所示。通过气相色谱 - 质谱法分析的结果,用于固相微萃取,显示,两种雌性性信息素组分都显着降低了300 Gy。虽然显着较低,但释放了辐照的雌性Azuki Bean甲虫的一定量的信息素成分,揭示了雄性的信息张力的可能性与辐照的女性。它是成功的无菌昆虫技术的先决条件,即诱导氮杂豆甲虫的无菌而没有呼叫行为的总破坏。

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