2020
DOI: 10.1007/s13165-020-00325-z
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Biocontrol potential of nematophagous fungi against Meloidogyne spp. infecting tomato

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Cited by 15 publications
(9 citation statements)
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“…Such predatory efficiency of nematophagous fungi has been demonstrated in a number of in vitro assays where both plant and animal-parasitic nematodes are captured in trapping devices and eventually killed and digested by predatory fungi [172,173]. Their potential use in the control of phytonematodes in different economically important crops has also been demonstrated with successful results [174][175][176]. The predatory activity of nematophagous fungi, both in vitro and in vivo, against animal parasitic nematodes has been widely documented [177][178][179]; some of the most studied nematophagous fungi in the control of plant and animal parasitic nematodes are species from the genera Arthrobotrys, Duddingtonia, Purpureocillium and Pochonia chlamydosporia.…”
Section: Nematode-trapping Fungimentioning
confidence: 98%
“…Such predatory efficiency of nematophagous fungi has been demonstrated in a number of in vitro assays where both plant and animal-parasitic nematodes are captured in trapping devices and eventually killed and digested by predatory fungi [172,173]. Their potential use in the control of phytonematodes in different economically important crops has also been demonstrated with successful results [174][175][176]. The predatory activity of nematophagous fungi, both in vitro and in vivo, against animal parasitic nematodes has been widely documented [177][178][179]; some of the most studied nematophagous fungi in the control of plant and animal parasitic nematodes are species from the genera Arthrobotrys, Duddingtonia, Purpureocillium and Pochonia chlamydosporia.…”
Section: Nematode-trapping Fungimentioning
confidence: 98%
“…Amarasinghe et al [ 83 ] reported that T. viride significantly reduced the root galling of susceptible rice variety Bg 366 when compared to untreated plants. Tazi et al [ 91 ] assessed the nematicidal potential of different fungal genera ( Arthrobotrys , Monacrosporium , Purpureocillium , Talaromyces , and Trichoderma ) in vitro and observed the highest RKN mortality rates after 72 h using A. oligospora and P. lilacinum . However, the same authors reported better results for the chemical control (abamectin) than the fungi tested in vivo [ 91 ].…”
Section: Microbes Against Plant-parasitic Nematodesmentioning
confidence: 99%
“…Tazi et al [ 91 ] assessed the nematicidal potential of different fungal genera ( Arthrobotrys , Monacrosporium , Purpureocillium , Talaromyces , and Trichoderma ) in vitro and observed the highest RKN mortality rates after 72 h using A. oligospora and P. lilacinum . However, the same authors reported better results for the chemical control (abamectin) than the fungi tested in vivo [ 91 ]. Patil et al [ 84 ] evaluated the efficacy of P. lilacinum and T. viride on M. incognita in cucumber and noted a significant reduction in nematode population with carbosulfan, followed by the highest dose of a liquid formulation with both fungi (15 mL/kg seed).…”
Section: Microbes Against Plant-parasitic Nematodesmentioning
confidence: 99%
“…Nematoides são parasitas de ampla ocorrência em várias culturas agrícolas, causando danos e perdas econômicas expressivas. Dentre os nematoides que estão descritos na literatura, o gênero Meloidogyne, também conhecido como nematoides-das-galhas, é citado como o mais importante, devido ao grande impacto que causa na agricultura em escala global (Tazi et al, 2020). Esses nematoides causam doenças que resultam em grandes perdas na produção agrícola da cana-de-açúcar, algodão, banana, tomate, tubérculos, entre outras culturas de interesse econômico (Perry et al, 2009;Gharabadiyan et al, 2013;Rosa et al, 2015;Silva et al, 2016).…”
Section: Introductionunclassified
“…Estudos realizados por Janati et al (2020) mostraram que a espécie M. javanica apresentou alta ocorrência de infestação, sendo encontrada em mais de 86% das espécies agrícolas avaliadas. O nematoide M. javanica está associado ao sistema radicular das plantas, sendo responsável pela formação de galhas, o que dificulta a absorção de água e nutrientes e, portanto, afeta de forma negativa o crescimento e o desenvolvimento da parte aérea das plantas (Tazi et al, 2020). Além da formação das galhas, outros sintomas são observados nas plantas (não resistentes) cultivadas em solos contaminados por M. javanica, como o amarelecimento das folhas, a diminuição do perfilhamento, o retardo na maturação, de modo a causar prejuízos consideráveis na produção agrícola (Yang et al 2020).…”
Section: Introductionunclassified