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首页> 外文期刊>Biocontrol Science and Technology >First record of an entomopathogenic fungus of tomato leafminer, Tuta absoluta (Meyrick) in Tanzania
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First record of an entomopathogenic fungus of tomato leafminer, Tuta absoluta (Meyrick) in Tanzania

机译:坦桑尼亚Tuta Absoluta(Meyrick)番茄叶植物昆虫疗法真菌的首次记录

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摘要

Tuta absoluta (Meyrick) is a destructive pest causing adverse environmental and economic effects globally. Management of T.?absoluta by synthetic chemicals is of diminutive achievement due to resistance trick of the pest. Harnessing of biocontrols is currently fascinating and efficient for management of the tremendous pests. This study isolated an entomopathogenic fungus from dead larvae of T.?absoluta on tomato leaves from farmer’s field Tanzania. Two Aspergillus fungal isolates were isolated and tested against larvae and adults of T.?absoluta under conditions of 19.5°C and 50%RH, 30.4°C and 70% RH, respectively, in the laboratory. Sequence analysis of Aspergillus isolates that we referred as A-Tz1 and A-Tz2 were analysed with the BLAST program available at the National Center for Biological Information (NCBI). The two isolates (A-Tz1 and A-Tz2) showed 100% similarity with Aspergillus oryzae of GeneBank accession numbers EF121337.1 and MG519722.1. Such similarity implied that both A-Tz1 and A-Tz2 isolates were A.?oryzae. To confirm pathogenicity, bioassays were conducted against the larvae, pupa and adults of T.?absoluta. Results showed that at 1.0?×?108?conidia/mL, fungal isolates caused up to 70% larval mortality 3 days post inoculation and consequently inhibited pupation by 84.5% and adult emergence by 74.4%. The identified A.?oryzae reduced the life span of adult T.?absoluta up to 5 days post inoculation at 1.0?×?108?conidia/mL whereas in control T.?absoluta survived up to 25 days. This study found that isolates of Aspegillus species have the potential to be used as active ingrediennt for the formulation of a new bioinjections for application by farmers to control the pest in fields.
机译:Tuta Absoluta(Meyrick)是一种破坏性害虫,导致全球的不利环境和经济效果。通过合成化学品管理T.?Babsoluta是由于害虫的抗性戏剧性的逐步成绩。生物控制的利用目前对巨大害虫的管理是令人着迷和有效的。这项研究从农民的田野坦桑尼亚孤立于T.?Babsoluta的死亡幼虫的昆虫疗法。将两种曲霉菌菌分离,并在实验室分别在19.5℃和50%RH,30.4℃和70%RH的条件下对T.?Babsoluta的幼虫和成人进行测试。通过国家生物信息中心(NCBI)的爆炸计划分析了我们称为A-TZ1和A-TZ2的曲霉属分离物的序列分析。两种分离株(A-TZ1和A-TZ2)显示了100%相似性与基因库登录号EF121337.1和M​​G519722.1的曲霉属植物。这种相似性暗示A-TZ1和A-TZ2隔离物是A.?oryzae。为了确认致病性,对T.?Babsoluta的幼虫,蛹和成虫进行生物测定。结果表明,在1.0?×108?分类/ ml,真菌分离株造成高达70%的幼虫死亡率3天接种后3天,并因此抑制蛹化84.5%,成人出现74.4%。所鉴定的A.?ORYZAE减少了成人T.?Babsoluta的寿命,最多5天接种在1.0?×108?分析/ ml,而在对照T.?Babsoluta幸存下,最多25天。本研究发现,Aspegillus物种的分离物具有用作活性IngediennT的潜力,用于制定新的生物分析,以便农民在领域控制害虫控制害虫。

著录项

  • 来源
    《Biocontrol Science and Technology》 |2019年第8期|共12页
  • 作者单位

    Department of Sustainable Agriculture and Biodiversity Conservation School of Life Science and Bioengineering The Nelson Mandela African Institution of Science and Technology;

    Department of Industrial Research Tanzania Industrial Research Development Organization;

    World Vegetable Center;

    Department of Sustainable Agriculture and Biodiversity Conservation School of Life Science and Bioengineering The Nelson Mandela African Institution of Science and Technology;

    Department of Sustainable Agriculture and Biodiversity Conservation School of Life Science and Bioengineering The Nelson Mandela African Institution of Science and Technology;

    Department of Sustainable Agriculture and Biodiversity Conservation School of Life Science and Bioengineering The Nelson Mandela African Institution of Science and Technology;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 other
  • 中图分类 生物防治;
  • 关键词

    Biological control; entomopathogenic fungi; tomato; Tuta absoluta; Tanzania;

    机译:生物控制;昆虫致病真菌;番茄;坦塔绝对;坦桑尼亚;

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