首页> 外文期刊>Archives of Insect Biochemistry and Physiology >PARASITIZATION BY SCLERODERMA GUANI INFLUENCES EXPRESSION OF SUPEROXIDE DISMUTASE GENES IN TENEBRIO MOLITOR
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PARASITIZATION BY SCLERODERMA GUANI INFLUENCES EXPRESSION OF SUPEROXIDE DISMUTASE GENES IN TENEBRIO MOLITOR

机译:鞘氨醇螺旋菌的寄生性影响变性胶体中过氧化物歧化酶基因的表达。

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Superoxide dismutase (SOD) is an antioxidant enzyme involved in detoxifying reactive oxygen species. In this study, we identified genes encoding the extracellular and intracellular copper-zinc SODs (ecCuZnSOD and icCuZnSOD) and a manganese SOD (MnSOD) in the yellow mealworm beetle, Tenebrio molitor. The cDNAs for ecCuZnSOD, icCuZnSOD, and MnSOD, respectively, encode 24.55, 15.81, and 23.14 kDa polypeptides, which possess structural features typical of other insect SODs. They showed 20-94% identity to other known SOD sequences from Bombyx mori, Musca domestica, Nasonia vitripennis, Pediculus humanus corporis, and Tribolium castaneum. Expression of these genes was analyzed in selected tissues and developmental stages, and following exposure to Escherichia coli and parasitization by Scleroderma guani. We recorded expression of all three SODs in cuticle, fat body, and hemocytes and in the major developmental stages. Relatively higher expressions were detected in late-instar larvae and pupae, compared to other developmental stages. Transcriptional levels were upregulated following bacterial infection. Analysis of pupae parasitized by S. guani revealed that expression of T. molitor SOD genes was significantly induced following parasitization. We infer that these genes act in immune response and in host-parasitoid interactions
机译:超氧化物歧化酶(SOD)是一种抗氧化剂,可对活性氧进行解毒。在这项研究中,我们鉴定了在黄色粉虫甲虫Tenebrio molitor中编码细胞外和细胞内铜锌SOD(ecCuZnSOD和icCuZnSOD)和锰SOD(MnSOD)的基因。 ecCuZnSOD,icCuZnSOD和MnSOD的cDNA分别编码24.55、15.81和23.14 kDa的多肽,这些多肽具有其他昆虫SOD的典型结构特征。他们显示出与家蚕,家蝇,紫胶萘,人脚小di和cast藜的其他已知SOD序列20-94%的同一性。这些基因的表达在选定的组织和发育阶段中进行了分析,并在暴露于大肠杆菌并被胍基硬皮菌寄生后进行了分析。我们记录了表皮,脂肪体和血细胞以及主要发育阶段中所有三种SOD的表达。与其他发育阶段相比,在晚龄幼虫和p中检测到相对较高的表达。细菌感染后转录水平上调。对被鸟粪沙门氏菌寄生的p进行分析后发现,在寄生后,显着诱导了T. molitor SOD基因的表达。我们推断这些基因在免疫反应和宿主-拟寄生物相互作用中起作用

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