Fusarium oxysporum and soil nutrient amendments provide short-term inhibition of Cosmopolites sordidus raising questions on biopesticide and plant nutrition potentials in tissue culture banana

IF 2.7 Q2 MULTIDISCIPLINARY SCIENCES
Dennis M.W. Ochieno
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Abstract

Endophytic Fusarium oxysporum strain V5w2 has been suggested to offer the ecosystem service of suppressing Cosmopolites sordidus and other pests that attack tissue culture banana plants in agroecosystems. The effects of endophytic F. oxysporum V5w2 and nutrient supply on C. sordidus in potted tissue culture banana plants were investigated. In the screenhouse, rhizome damage by C. sordidus larvae was lower in F. oxysporum V5w2-inoculated plants than in non-inoculated ones. Banana plants inoculated with F. oxysporum V5w2 were larger and suffered less rhizome damage but with low chlorophyll content. Weights of C. sordidus larvae were not different between those reared on F. oxysporum V5w2-inoculated banana plants and the non-inoculated ones. Larval C. sordidus from nutrient-treated plants had lower weight than those that fed on plants that did not receive nutrients. In the field, fewer adult C. sordidus were found on F. oxysporum V5w2-inoculated banana plants than on non-inoculated plants 12 h after insect release. The number of adult C. sordidus and their eggs did not vary between F. oxysporum V5w2-inoculated banana plants and controls at the end of the experiment. Adult C. sordidus did not discriminate between nutrient-treated banana plants and those without nutrient treatment. However, non-beneficial interactions between F. oxysporum V5w2 and plant-parasitic nematodes negate the chances of its application as an endophytic biological control agent. In conclusion, while F. oxysporum V5w2 is not quite viable for application as an endophytic biological control agent for C. sordidus and other banana pests, this fungus may still have some potential to offer alternative ecosystem services through the provisioning of pest-inhibitive organic compounds.
氧孢镰刀菌和土壤养分改良剂能在短期内抑制 Cosmopolites sordidus,提出了香蕉组培中生物农药和植物营养潜力的问题。
内生镰孢菌 V5w2 菌株被认为可提供生态系统服务,抑制农业生态系统中危害组培香蕉植株的 Cosmopolites sordidus 和其他害虫。本研究调查了内生 F. oxysporum V5w2 和养分供应对盆栽香蕉组培植物中 Cosmopolites sordidus 的影响。在筛选室中,接种 F. oxysporum V5w2 的香蕉植株根茎被 C. sordidus 幼虫破坏的程度低于未接种植株。接种了 F. oxysporum V5w2 的香蕉植株较大,根茎受害程度较轻,但叶绿素含量较低。在接种了 F. oxysporum V5w2 的香蕉植株上饲养的 C. sordidus 幼虫与未接种的幼虫的体重没有差异。从营养液处理过的植株上孵化出的 C. sordidus 幼虫的体重低于从未接种营养液的植株上孵化出的幼虫的体重。在田间,释放昆虫 12 小时后,在接种了 F. oxysporum V5w2 的香蕉植株上发现的 C. sordidus 成虫数量少于未接种的植株。实验结束时,接种了 F. oxysporum V5w2 的香蕉植株和对照植株上的 C. sordidus 成虫及其卵的数量没有变化。成虫对营养液处理过的香蕉植株和未处理过的香蕉植株没有区别。然而,F. oxysporum V5w2 与植物寄生线虫之间的无益相互作用否定了其作为内生生物控制剂的应用机会。总之,虽然 F. oxysporum V5w2 不适合作为内生生物防治剂来防治 C. sordidus 和其他香蕉害虫,但这种真菌仍有可能通过提供抑制害虫的有机化合物来提供其他生态系统服务。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Scientific African
Scientific African Multidisciplinary-Multidisciplinary
CiteScore
5.60
自引率
3.40%
发文量
332
审稿时长
10 weeks
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