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Development of artificial conidia for ecological studies of Rhizoctonia solani in soil

机译:土壤茄枯萎病生态研究的人工分生孢子研究进展。

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Artificial conidia of Rhizoctonia solani were developed by releasing protoplasts from young mycelia with lytic enzymes and by inducing cell wall formation in stabilizer solution. Conidia produced in this way were spherical with sizes ranging from 10 to 20 mm in diameter. Artificial conidia were sensitive to soil fungistasis. Young hyphae originated from artificial conidia were also sensitive to fungistasis and mycolysis in soils. These results demonstrate that the previously reported insensitivity of R. solani to fungistasis and mycolysis in soils is due to special ability of propagules used rather than the inherited nature of the organism. Germination rates of artificial conidia on soils were inversely correlated with the amount of fungicide Flutolanil added. When germination of artificial conidia was used to detect suppressive soils, 3 out of 30 soil samples collected from different parts of Taiwan were suppressive to R.solani and all these suppressive soils were low in pH. Using artificial conidia for assay of fungicide activity in soil and detection of suppressive soils has the advantages of being fast and precise in comparison with relative hyphal growth. However, preparation of artificial conidia at this stage is tedious and time-consuming.
机译:通过使用裂解酶从幼小菌丝体中释放原生质体并诱导稳定剂溶液中细胞壁的形成,可以开发出茄形假单胞菌的分生孢子。以这种方式生产的分生孢子是球形的,直径范围为10至20mm。人工分生孢子对土壤真菌敏感。来自人工分生孢子的幼菌丝也对土壤中的真菌和霉菌溶解敏感。这些结果表明,先前报道的茄红假单胞菌对土壤中的真菌和真菌溶解不敏感是由于所用繁殖体的特殊能力,而不是由于有机体的遗传特性。人工分生孢子在土壤上的发芽率与所添加的杀菌剂氟乙腈的含量成反比。当使用人工分生孢子的萌发来检测抑制性土壤时,从台湾不同地区收集的30个土壤样品中有3个对R.solani具有抑制性,所有这些抑制性土壤的pH均较低。与相对菌丝生长相比,使用人工分生孢子测定土壤中的杀菌剂活性和检测抑制性土壤的优点是快速准确。然而,在此阶段制备人工分生孢子是繁琐且费时的。

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