首页> 外文期刊>Archives of Insect Biochemistry and Physiology >CHARACTERIZATION OF THE Mamestra configurata (LEPIDOPTERA: NOCTUIDAE) LARVAL MIDGUT PROTEASE COMPLEMENT AND ADAPTATION TO FEEDING ON ARTIFICIAL DIET, Brassica SPECIES, AND PROTEASE INHIBITOR
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CHARACTERIZATION OF THE Mamestra configurata (LEPIDOPTERA: NOCTUIDAE) LARVAL MIDGUT PROTEASE COMPLEMENT AND ADAPTATION TO FEEDING ON ARTIFICIAL DIET, Brassica SPECIES, AND PROTEASE INHIBITOR

机译:Mamestra configurata(LEPIDOPTERA:NOCTUIDAE)幼虫蛋白酶补充的特性以及对人工饮食,芸苔属植物和蛋白酶抑制剂进食的适应性

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The midgut protease profiles from 5th instar Mamestra configurata larvae fed various diets (standard artificial diet, low protein diet, low protein diet with soybean trypsin inhibitor [SBTI], or Brassica napus) were characterized by ondimensional enzymography in gelatin gels. The gut protease profile of larvae fed B. napus possessed protease activities ofmolecular masses of approximately 33 and 55 kDa, which were not present in the guts of larvae fed artificial diet. Similarly, larvae fed artificial diet had protease activities of molecular masses of approximately 21, 30, and 100 kDa that were absent inlarvae fed B. napus. Protease profiles changed within 12 to 24 h after switching larvae from artificialdiet to plant diet and vice versa. The gut protease profiles from larvae fed various other brassicaceous species and lines having different secondary metabolite profiles did not differ despite significant differences in larval growth rates on the different host plants. Genes encoding putative digestive proteolytic enzymes, including four carboxypeptidases, fiveaminopeptidases, and 48 serine proteases, were identified in cDNA libraries from 4th instar M. configurata midgut tissue. Many of the protease-encoding genes were expressed at similar levels on all diets; however, three chymoptrypsin-like genes (McSP23,McSP27, and McSP37) were expressed at much higher levels on standard artificial diet and diet containing SBTI as was the trypsin-like gene McSP34. The expression of the trypsin-like gene McSP50 was highest on B. napus. Theadaptation of M. configurata digestive biochemistry to different diets is discussed in the context of the flexibility of polyphagous insects to changing diet sources.
机译:通过在明胶凝胶中进行三维酶谱分析,对饲喂各种饮食(标准的人工饮食,低蛋白饮食,低蛋白饮食和大豆胰蛋白酶抑制剂[SBTI]或甘蓝型油菜)的五龄Mamestra configurata幼虫的中肠蛋白酶谱进行了表征。幼虫饲喂的油菜的肠道蛋白酶谱具有大约33和55 kDa的分子质量的蛋白酶活性,这在人工喂养的幼虫的肠道中不存在。同样,饲喂幼虫的人工饲料具有不存在饲喂油菜双歧杆菌的分子量约为21、30和100 kDa的蛋白酶活性。幼虫从人工饮食改为植物饮食后,蛋白酶特性在12至24小时内发生变化,反之亦然。尽管在不同寄主植物上幼虫的生长速度存在显着差异,但从幼虫饲喂的其他幼虫的肠道蛋白酶谱来看,具有不同的次级代谢产物谱的品系并没有差异。在第四龄幼虫中肠组织的cDNA文库中鉴定出编码推定的消化蛋白水解酶的基因,包括四种羧肽酶,五种氨基肽酶和48种丝氨酸蛋白酶。在所有饮食中,许多编码蛋白酶的基因均以相似的水平表达。但是,三种胰糜蛋白酶样基因(McSP23,McSP27和McSP37)在标准人工饮食和含SBTI的饮食中的表达水平要高得多,就像胰蛋白酶样基因McSP34一样。胰蛋白酶样基因McSP50的表达在甘蓝型油菜中最高。在多食性昆虫对改变饮食来源的灵活性的背景下,讨论了构树分枝杆菌的消化生物化学对不同饮食的适应性。

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