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首页> 外文期刊>Revista Argentina de Microbiologia >Response of ligninolytic macrofungi to the herbicide atrazine: dose-response bioassays
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Response of ligninolytic macrofungi to the herbicide atrazine: dose-response bioassays

机译:木质素分解大真菌对除草剂at去津的反应:剂量反应生物测定

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The effect of atrazine concentrations on mycelial growth and ligninolytic enzyme activities of eight native ligninolytic macrofungi isolated in Veracruz, México, were evaluated in a semi-solid culture medium. Inhibition of mycelial growth and growth rates were significantly affected ( p =0.05) by atrazine concentrations (468, 937, 1875, and 3750mg/l). In accordance with the median effective concentration (EC 50 ), Pleurotus sp. strain 1 proved to be the most tolerant isolate to atrazine (EC 50 = 2281.0mg/l), although its enzyme activity was not the highest. Pycnoporus sanguineus strain 2, Daedalea elegans and Trametes maxima showed high laccase activity (62.7, 31.9, 29.3U mg/protein, respectively) without atrazine (control); however, this activity significantly increased ( p <0.05) (to 191.1, 83.5 and 120.6U mg/protein, respectively) owing to the effect of atrazine (937mg/l) in the culture medium. Pleurotus sp. strain 2 and Cymatoderma elegans significantly increased ( p <0.05) their manganese peroxidase (MnP) activities under atrazine stress at 468mg/l. The isolates with high EC 50 ( Pleurotus sp. strain 1) and high enzymatic activity ( P. sanguineus strain 2 and T. maxima ) could be considered for future studies on atrazine mycodegradation. Furthermore, this study confirms that atrazine can increase laccase and MnP activities in ligninolytic macrofungi.
机译:在半固体培养基中评估了阿特拉津浓度对在墨西哥韦拉克鲁斯分离的八种天然木质素分解大型真菌的菌丝生长和木质素分解酶活性的影响。阿特拉津浓度(468、937、1875和3750mg / l)对菌丝体生长和生长速率的抑制作用显着影响(p = 0.05)。按照中值有效浓度(EC 50),侧耳属。尽管菌株1的酶活性不是最高,但它被证明对阿特拉津的耐受性最高(EC 50 = 2281.0mg / l)。无阿特拉津(对照)的碧萝cn(Pycnoporus sanguineus)菌株2,线虫(Daedalea elegans)和最大值(Trametes maxima)表现出较高的漆酶活性(分别为62.7、31.9、29.3U mg /蛋白)。然而,由于阿特拉津(937 mg / l)在培养基中的作用,该活性显着​​增加(p <0.05)(分别达到191.1、83.5和120.6U mg / l)。平菇在阿特拉津胁迫下(468mg / l),菌株2和秀丽线虫显着提高了其锰过氧化物酶(MnP)活性(p <0.05)。具有高EC 50(侧柏属菌株1)和高酶活性(P. sanguineus菌株2和T. maxima)的分离株可以考虑用于未来对r去津mycodegradation的研究。此外,这项研究证实阿特拉津可以增加木质素分解大真菌中的漆酶和MnP活性。

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