球孢白僵菌LPSc 1067菌株对阿根廷不同种农业害虫蝗虫(直翅目:蝗科:黑蝗科)的防治效果

S. Pelizza, M. Mancini, Leticia Russo, F. Vianna, A. C. Scorsetti
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引用次数: 0

摘要

蚱蜢影响着全世界的农业,造成严重的经济损失。目前,即使考虑到严重的环境问题,使用化学杀虫剂对付蚱蜢是唯一有效的策略。本研究旨在研究昆虫病原真菌白僵菌(Beauveria bassiana, LPSc 1067)对阿根廷6种有害蝗虫的生物防治效果。差异有统计学意义(DF= 5;F = 9.93;P<0.0001),考虑球孢白僵菌对不同蝗虫种类三龄若虫的致病性。白斑三棱棘虫和斑点二棱棘虫的死亡率最高(100%),鼠脚棘虫的死亡率最低(48.6±3.5%)。平均生存时间(MST)以白腹棘球绦虫(T. pallidipennis)最低(3.5±0.15 d),以草地棘球绦虫(Dichroplus pratensis)若虫最高(7.48±0.28 d)。结果表明,球孢白僵菌LPSc 1067作为白僵菌和马氏白僵菌的生物防治剂,有进一步研究的潜力。亮点:黑蝗科蚱蜢包括几种被认为是瘟疫的物种。昆虫病原真菌作为生物防治剂被认为是化学防治的优良替代品。球孢菌(lpsc1067)对阿根廷6种蚱蜢的药效。分离物lpsc1067可作为白斑蝶和黄斑蝶的生物防治菌。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Control capacity of the LPSc 1067 strain of Beauveria bassiana (Ascomycota: Hypocreales) on different species of grasshoppers (Orthoptera: Acrididae: Melanoplinae), agricultural pests in Argentina
Grasshoppers affect agriculture worldwide, causing serious economic damage. Currently, the application of chemical insecticides against grasshoppers is the only effective strategy, even considering the significant environmental concern. This study aimed to test the entomopathogenic fungi Beauveria bassiana (LPSc 1067) as biocontrol agent on six harmful grasshopper species in Argentina. Significant differences were observed (DF= 5; F= 9.93; P<0.0001) when considering B. bassiana pathogenicity on third-instar nymphs of the different grasshopper species. The highest mortality (100%) was registered on Trimerotropis pallidipennis and Dichroplus maculipennis nymphs while the lowest mortality (48.6 ±3.5%) was observed on Scotussa lemniscata nymphs. The lowest mean survival time (MST) was recorded for T. pallidipennis (3.5 ±0.15 days) and the highest MST was observed on Dichroplus pratensis nymphs (7.48 ±0.28 days). Results suggest that B. bassiana LPSc 1067 may constitute an excellent candidate to be further studied as biological control agent of T. pallidipennis and D. maculipennis. Highlights: Melanoplinae grasshoppers include several species considered plagues. Entomopathogenic fungi as biocontrol agents are considered excellent alternatives to chemical control. The efficacy of bassiana (LPSc 1067) on six grasshopper species of Argentina. The isolate LPSc 1067 could be considered a biological controller pallidipennis and D. maculipennis.
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