首页> 外文OA文献 >Histopathological Events And Detection Of Metarhizium Anisopliae Using Specific Primers In Infected Immature Stages Of The Fruit Fly Anastrepha Fraterculus (wiedemann, 1830) (diptera: Tephritidae) [eventos Histológicos E Detecção De Metarhizium Anisopliae Usando Primers Específicos Em Estágios Imaturos Da Mosca Das Frutas Anastrepha Fraterculus (wiedemann, 1830) (diptera: Tephritidae)]
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Histopathological Events And Detection Of Metarhizium Anisopliae Using Specific Primers In Infected Immature Stages Of The Fruit Fly Anastrepha Fraterculus (wiedemann, 1830) (diptera: Tephritidae) [eventos Histológicos E Detecção De Metarhizium Anisopliae Usando Primers Específicos Em Estágios Imaturos Da Mosca Das Frutas Anastrepha Fraterculus (wiedemann, 1830) (diptera: Tephritidae)]

机译:蝇蝇幼体感染未成熟阶段的特定病理学的组织病理学事件和使用异质引物的检测(wiedemann,1830)(双翅目:蝇科)[蝇的未成熟骨折阶段使用特定引物的组织学事件和异质菌的检测。 (维德曼,1830年)(双翅目:di科)

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摘要

The fungus Metarhizium anisopliae is used on a large scale in Brazil as a microbial control agent against the sugar cane spittlebugs, Mahanarva posticata and M. fimbriolata (Hemiptera., Cercopidae). We applied strain E9 of M. anisopliae in a bioassay on soil, with field doses of conidia to determine if it can cause infection, disease and mortality in immature stages of Anastrepha fraterculus, the South American fruit fly. All the events were studied histologically and at the molecular level during the disease cycle, using a novel histological technique, light green staining, associated with light microscopy, and by PCR, using a specific DNA primer developed for M. anisopliae capable to identify Brazilian strains like E9. The entire infection cycle, which starts by conidial adhesion to the cuticle of the host, followed by germination with or without the formation of an appressorium, penetration through the cuticle and colonisation, with development of a dimorphic phase, hyphal bodies in the hemocoel, and death of the host, lasted 96 hours under the bioassay conditions, similar to what occurs under field conditions. During the disease cycle, the propagules of the entomopathogenic fungus were detected by identifying DNA with the specific primer ITSMet: 5' TCTGAATTTTTTATAAGTAT 3' with ITS4 (5' TCCTCCGCTTATTGATATGC 3') as a reverse primer. This simple methodology permits in situ studies of the infective process, contributing to our understanding of the host-pathogen relationship and allowing monitoring of the efficacy and survival of this entomopathogenic fungus in large-scale applications in the field. It also facilitates monitoring the environmental impact of M. anisopliae on non-target insects.
机译:在巴西,真菌Metarhizium anisopliae被广泛用作抗微生物剂,用于防治甘蔗的臭虫,Mahanarva posticata和M. fimbriolata(Hemiptera。,Cercopidae)。我们在土壤中的生物测定中应用了M. anisopliae的E9菌株,并使用了分生孢子剂量,以确定它是否会在南美果蝇Anastrepha fraterculus的未成熟阶段引起感染,疾病和死亡。在疾病周期中,使用一种新颖的组织学技术,浅绿色染色,光学显微镜,并通过PCR,使用专为能识别巴西菌株的异种分枝杆菌开发的特异性DNA引物,对所有事件进行了组织学和分子水平的研究。就像E9。整个感染周期从分生孢子粘附到宿主的表皮开始,然后萌发(有或没有形成包膜),通过表皮的渗透和定居,形成双态相,血细胞中的菌丝体和在生物测定条件下,宿主的死亡持续了96个小时,类似于田间条件下的死亡。在疾病周期中,通过使用特异性引物ITSMet:5'TCTGAATTTTTTATAAGTAT 3'和ITS4(5'TCCTCCGCTTATTGATATGC 3')作为反向引物鉴定DNA,从而检测到了致病性真菌的繁殖体。这种简单的方法可以对感染过程进行原位研究,有助于我们了解宿主与病原体的关系,并可以在现场大规模应用中监测这种昆虫病原真菌的功效和存活率。它还有利于监测沙门氏菌对非目标昆虫的环境影响。

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