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首页> 外文期刊>Environmental toxicology and pharmacology >Biochemical changes in dehydrogenase, hydroxylase and tyrosinase of a permethrin-resistant strain of housefly larvae, Musca domestica L.
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Biochemical changes in dehydrogenase, hydroxylase and tyrosinase of a permethrin-resistant strain of housefly larvae, Musca domestica L.

机译:家蝇幼虫抗蝇菊酯抗性菌株脱氢酶,羟化酶和酪氨酸酶的生化变化

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摘要

In the present study, a permethrin-resistant strain (ALHF) of housefly was used to understand some enzymic changes in normal biosynthetic pathways after insecticide selection. Aflatoxin B_1 (AFB_1) as a natural substrate was used to verify the changes on the level of cytochrome P450-dependent monooxygenases and oxido-reductase activities in the ALHF strain compared to an insecticide-susceptible strain, aabys. ALHF yielded three major biotransformation products: aflatoxin B_(2a) (AFB_(2a)), aflatoxin M_1 (AFM_1), and aflatoxicol (AFL) by larvae. These principal products were also found in aabys. AFL production rate of ALHF larvae was 5-fold lower than that of aabys. Differences between ALHF larvae and aabys in AFM_1 production were found. ALHF did not differ significantly from aabys in AFB_(2a) production. The levels of 17α- and β-hydroxysteroid dehydrogenase (17α- and β-HSD) were also determined to elucidate which type of dehydrogenase activities could be changed. The cytosolic fraction of ALHF larvae yielded about 2-fold higher 17α-estradiol than that of aabys larvae. In contrast, the microsomal fraction of ALHF larvae produced about 2-fold lower amount of 17α-estradiol than that of aabys larvae. The production rate of microsomal fraction of 17β-estradiol ALHF larvae yielded 3-fold lower than that of aabys larvae. Inhibition studies on 17α-HSD and 17β-HSD activities by pyrethroid insecticides showed that there was no inhibition by pyrethroids on the enzyme activity. Therefore, there seems to be no changes on the enzyme structures. Changes on enzyme expression may occur in ALHF larvae in relation to 17α- or β-HSD. To assess biochemical changes of the cuticle formation phenylalanine 4-hydroxylase and tyrosinase activities were determined. The production rate of tyrosine from phenylalanine in ALHF was about 2-fold higher for larvae than that in aabys. L-(dihydroxylphenyl)alanine (DOPA) content was determined in larvae and ALHF possessed 1.6-fold larger amounts of DOPA than aabys. Tyrosinase activity of ALHF larval preparations showed 1.6-fold higher than aabys. In summary, many enzymic changes were found in ALHF strain compared to aabys strain and these changes may be resulted from the permethrin selection.
机译:在本研究中,使用家蝇对氯菊酯的抗性菌株(ALHF)了解选择杀虫剂后正常生物合成途径中的某些酶学变化。黄曲霉毒素B_1(AFB_1)作为天然底物用于验证ALHF菌株中的细胞色素P450依赖的单加氧酶和氧化还原酶活性与易受杀虫剂影响的深渊相比的变化。 ALHF产生了三种主要的生物转化产物:幼虫产生的黄曲霉毒素B_(2a)(AFB_(2a)),黄曲霉毒素M_1(AFM_1)和黄曲霉毒素(AFL)。这些主要产品也发现于深渊。 ALHF幼虫的AFL产量比深渊幼虫低5倍。发现在AFM_1生产中,ALHF幼虫和深渊之间存在差异。在AFB_(2a)生产中,ALHF与深渊没有显着差异。还确定了17α-和β-羟基类固醇脱氢酶(17α-和β-HSD)的水平,以阐明哪种脱氢酶活性可以改变。 ALHF幼虫的胞质级分产生的17α-雌二醇比深渊幼虫高2倍。相比之下,ALHF幼虫的微粒体级分产生的17α-雌二醇的量比深渊幼虫低2倍。 17β-雌二醇ALHF幼虫的微粒体级分的产率比深渊幼虫低3倍。拟除虫菊酯类杀虫剂对17α-HSD和17β-HSD活性的抑制研究表明,拟除虫菊酯对酶活性没有抑制作用。因此,酶结构似乎没有变化。与17α-或β-HSD相关的ALHF幼虫中酶的表达可能发生变化。为了评估表皮形成的生化变化,测定了苯丙氨酸4-羟化酶和酪氨酸酶活性。幼虫从苯丙氨酸生产酪氨酸的产率比矮人高约2倍。确定了幼虫中的L-(二羟苯基)丙氨酸(DOPA)含量,而ALHF的DOPA量比深海大1.6倍。 ALHF幼虫制剂的酪氨酸酶活性比Abys高1.6倍。总之,相比于深渊菌株,在ALHF菌株中发现了许多酶学变化,这些变化可能是由于氯菊酯的选择所致。

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