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首页> 外文期刊>Arthropods >Selection of entomopathogenic fungi against the red spider mite Tetranychus kanzawai (Kishida) (Tetranychidae: Acarina)
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Selection of entomopathogenic fungi against the red spider mite Tetranychus kanzawai (Kishida) (Tetranychidae: Acarina)

机译:针对红蜘蛛螨的寄主病原真菌的选择(岸田)(螨科:螨虫)

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The pathogenicity of three entomopathogenic fungal species to Tetranychus kanzawai was investigated. Seven isolates of Metarhizium anisopliae, six isolates of Beauveria bassiana, and an isolate of Paecilomyces lilacinus from the Philippines and Indonesia were evaluated. The following studies were undertaken: (1) screening of M. anisoplae, B. bassiana and P. lilicanus pathogenic to T. kanzawai, and (2) bioefficacy studies of the selected entomopathogenic fungi under greenhouse conditions. Conidia of each isolate were mass-produced on potato dextrose agar (PDA) at 26 ± 1°C and a 12-hour photophase for a maximum of 21 days. Preliminary screening for the most pathogenic isolate within the same species was determined using suspension with 104 to 108 conidia ml-1. At 4 days after treatment (DAT), the pathogenicity within M. anisopliae isolates in decreasing order was Ma5>Ma6>Ma4>Ma2>Ma1>Ma3>Ma7 while for B. bassiana, was Bb6>Bb5>Bb4>Bb3>Bb1>Bb2. The top three most pathogenic isolates within the two species were subjected to further studies to determine the most virulent isolate against T. kanzawai. At 5 DAT, the LC50 values of M. anisopliae isolates ranged from 5.0 x102 to 1.4x103 while for B. bassiana ranged from 1.2 x 103 to 2.4x 103 conidia ml-1. Based on LC50, the virulence of the fungal isolates within the species in decreasing order was Ma6>Ma5>Ma4 and Bb6>Bb5>Bb4. However, the LC50values are not significantly different from each other. Green house trials showed that the epizootic of entomopathogenic fungus can regulate the population of mites. The fungal isolates used in the study, although not originally isolated from mites were virulent to T. kanzawai, indicating their wide host range.
机译:研究了三种昆虫病原真菌种类对日本棉毛螨(Tetranychus kanzawai)的致病性。评价了来自菲律宾和印度尼西亚的七个分离的金属异化菌,六个球孢白僵菌和淡紫色的拟青霉。进行了以下研究:(1)筛选对坎萨伊木霉致病的斑节对虾,球孢杆菌和百合假单胞菌,以及(2)在温室条件下对所选昆虫病原真菌的生物功效研究。每个分离物的分生孢子都在马铃薯葡萄糖琼脂(PDA)上于26±1°C和12小时的光相下大量生产,最多21天。使用104至108个分生孢子ml-1的悬浮液,对同一物种中最具致病性的分离株进行了初步筛选。处理(DAT)后第4天,分离的分离株的致病性依次为Ma5> Ma6> Ma4> Ma2> Ma1> Ma3> Ma7,而对于B. bassiana,其致病性为Bb6> Bb5> Bb4> Bb3> Bb1> Bb2。对这两个物种中最具致病性的前三个分离株进行了进一步的研究,以确定针对堪萨斯锥虫的最具毒性的分离株。在第5天DAT时,南美分枝杆菌的LC50值在5.0 x102至1.4x103的范围内,而球茎巴斯德氏菌的LC50在1.2 x 103至2.4x 103的分生孢子ml-1范围内。基于LC50,该物种内的真菌分离物的毒性以递减的顺序为Ma6> Ma5> Ma4和Bb6> Bb5> Bb4。但是,LC50值彼此之间没有显着差异。温室试验表明,昆虫致病真菌的流行可以调节螨的数量。尽管最初不是从螨中分离出的,但该研究中使用的真菌分离物对坎氏锥虫有毒,表明它们的宿主范围很广。

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