首页> 外文期刊>American journal of agricultural and biological sciences >Morphological characteristics of P. xylostella granulovirus and effects on its larval host diamondback moth Plutella xylostella L. (Lepidoptera, Plutellidae).
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Morphological characteristics of P. xylostella granulovirus and effects on its larval host diamondback moth Plutella xylostella L. (Lepidoptera, Plutellidae).

机译:P的形态特征。小菜蛾颗粒病毒及其对幼虫宿主小菜蛾的影响小菜蛾(鳞翅目,鳞翅目)。

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Problem statement: Diamondback moth, Plutella xylostella L. (Lepidoptera, Plutellidae) is the most destructive insect pest of cruciferous plants throughout the world which become resistant to wide range of chemical pesticides. PxGV is known as an effective factor on diamondback moth larval mortality. Approach: Some morphological characteristics, viral DNA isolation and Restriction Endonuclease (REN) analysis of P. xylostella granulovirus and its effects of different concentrations on its larval host Diamondback Moth P. xylostella, were studied. Results: Taiwanian isolate confirmed due to restriction pattern and genome size of PxGV Taiwanian isolate which was compared with PxGV isolates reported earlier. PxGV originally isolated in Taiwan has capsules that are ovocylindrical with a mean size of 272.84+or-12 by 148.27+or-19 nm. The virions are 168.44+or-16x29.57+or-12 nm. Results from pathogenicity test of the granulovirus to DBM using the leaf disc method shows that first, second and third instars of P. xylostella were significantly susceptible to infection by PxGV. Older larvae were less susceptible to PxGV than younger larvae with the same virus concentration. The LC50 for second instar larvae was 1.39x106 granules mL-1. The LT50 values ranged between 3.813-6.946, 4.965-9.743 and 5145-9.407 days for first to third instars in three different concentrations, respectively. Conclusion: Its high specificity and pathogenicity to its larval host indicate that PxGV is a good candidate as an alternative biopesticide to chemical insecticides in Integrated Pest Management (IPM) of P. xylostella.
机译:问题陈述:小菜蛾小菜蛾(鳞翅目,鳞翅目)是全世界十字花科植物中最具破坏性的害虫,对多种化学农药具有抗性。 PxGV被认为是小菜蛾幼虫死亡率的有效因素。方法: P的一些形态特征,病毒DNA分离和限制性内切核酸酶(REN)分析。小菜蛾颗粒病毒及其不同浓度对其幼虫宿主小菜蛾的影响。对小菜蛾进行了研究。结果:台湾分离株证实是由于PxGV台湾分离株的限制性模式和基因组大小,与先前报道的PxGV分离株进行了比较。最初在台湾分离出的PxGV的卵泡呈圆柱形,平均大小为272.84 + or-12×148.27 + or-19 nm。病毒体是168.44+或-16x29.57 +或-12 nm。使用叶盘法从粒状病毒对DBM的致病性测试结果表明,第一龄,第二龄和第三龄P。 xylostella 对PxGV感染非常敏感。在病毒浓度相同的情况下,年幼的幼虫比年幼的幼虫更不容易感染PxGV。第二龄幼虫的LC 50 为1.39x10 6 颗粒mL -1 。第一龄至第三龄的三个不同浓度的LT 50 值分别在3.813-6.946、4.965-9.743和5145-9.407天之间。结论:其对幼虫宿主的高特异性和致病性表明,PxGV是 P病虫害综合防治(IPM)中化学杀虫剂的替代生物农药的良好候选者。小菜蛾

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