首页> 外文期刊>Archives of Insect Biochemistry and Physiology >CHITIN SYNTHASE B: A MIDGUT-SPECIFIC GENE INDUCED BY INSECT HORMONES AND INVOLVED IN FOOD INTAKE IN Bombyx mori LARVAE
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CHITIN SYNTHASE B: A MIDGUT-SPECIFIC GENE INDUCED BY INSECT HORMONES AND INVOLVED IN FOOD INTAKE IN Bombyx mori LARVAE

机译:甲壳素合酶B:由家蚕昆虫激素诱导并参与进食家蚕幼虫的食糜特定基因。

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Chitin synthase (CHS) is the key regulatory enzyme in chitin synthesis and excretion in insects, and a specific target of insecticides. We cloned a CHS B gene of Bombyx mori (BmChsB) and showed it to be midgut specific, highly expressed during the feeding process in the larva. Knockdown of BmChsB expression in the third-instar larvae increased the number of nonmolting and abnormally molting larvae. Exposure to nikkomycin Z, a CHS inhibitor, reduced the amount of chitin in the peritrophic membrane of molted larvae, whereas abnormally elevated BmChsB mRNA levels were readily detected from the end of molting and in the newly molted larvae. Exogenous 20-hydroxyecdysone (20E) and methoprene, a juvenile hormone analogue, significantly upregulated the expression of BmChsB when the levels of endogenous molting hormone (MH) were low and the levels of endogenous juvenile hormone (JH) were high immediately after molting. When levels of endogenous MH were high and those of endogenous JH were low during the molting stage, exogenous 20E did not upregulate BmChsB expression and exogenous methoprene upregulated it negligibly. When the endogenous hormone levels were low during the mulberry-leaf intake process, BmChsB expression was upregulated by exogenous methoprene. We conclude that the expression of BmChsB is regulated by insect hormones, and directly affects the chitin-synthesis-dependent form of the peritrophic membrane and protects the food intake and molting process of silkworm larvae
机译:几丁质合酶(CHS)是昆虫几丁质合成和排泄中的关键调节酶,是杀虫剂的特定目标。我们克隆了家蚕的CHS B基因(BmChsB),并显示它是中肠特异性的,在幼虫的进食过程中高度表达。减少三龄幼虫中BmChsB表达的表达增加了不蜕皮和异常蜕皮的幼虫的数量。暴露于CHS抑制剂尼克霉素Z可以减少蜕皮幼虫的营养膜中甲壳质的含量,而从蜕皮结束和新蜕皮的幼虫中很容易检测到BmChsB mRNA的异常升高。当蜕皮后立即降低内源性蜕皮激素(MH)的水平并降低内源性少年激素(JH)的水平时,外源20-羟基蜕皮激素(20E)和甲基异戊二烯(一种少年激素类似物)显着上调了BmChsB的表达。当在蜕皮过程中内源性MH含量高而内源性JH含量低时,外源20E不会上调BmChsB的表达,而外源甲基丁二烯则可以忽略不计。当桑叶摄入过程中内源激素水平较低时,外源甲氧丁烯会上调BmChsB表达。我们得出结论,BmChsB的表达受到昆虫激素的调节,直接影响着几丁质合成依赖形式的营养层,并保护了蚕幼虫的摄食和蜕皮过程

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