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Allatostatin gene expression in brain and midgut, and activity of synthetic allatostatins on feeding-related processes in the cockroach Blattella germanica

机译:脑和中肠中Allatostatin基因的表达以及合成Altostatin对蟑螂小att(Blattella germanica)进食相关过程的活性

摘要

Allatostatins of the YXFGLamide group were discovered in cockroaches through their capacity to inhibit juvenile hormone biosynthesis. Here, we assess the occurrence of preproallatostatin (preproAST) mRNA in the brain and midgut of adult females of the cockroach Blattella germanica, and estimate brain and midgut preproAST mRNA levels during the first reproductive cycle. Reverse transcription polymerase chain reaction (RT-PCR) shows that brain preproAST mRNA levels increase slightly during the gonadotrophic cycle, and remain high during ootheca transport. In the midgut, preproAST mRNA levels decline around the middle of the gonadotrophic cycle. The pattern of allatostatin expression in gut tissues suggests that these peptides play roles related to feeding and nutrition. Our results have shown that synthetic allatostatins inhibit hindgut motility and activate midgut α-amylase secretion. In addition, injected allatostatins inhibit food consumption, which might be connected to the above activities. © 2003 Elsevier B.V. All rights reserved.
机译:YXFGLamide组的Allatostatin具有抑制幼体激素生物合成的能力,因此在蟑螂中被发现。在这里,我们评估了德国小Bl(Blattella germanica)成年女性的大脑和中肠中的preproallatostatin(preproAST)mRNA的发生,并估计了第一个生殖周期中大脑和中肠的preproAST mRNA水平。逆转录聚合酶链反应(RT-PCR)显示,在促性腺营养循环中,大脑preproAST mRNA的水平略有增加,在卵囊运输过程中仍保持较高水平。在中肠,proproAST mRNA水平在性腺营养循环的中间前后下降。肠道组织中阿托伐他汀的表达模式表明,这些肽发挥与进食和营养有关的作用。我们的结果表明,合成的altostatin抑制后肠运动并激活中肠α-淀粉酶分泌。另外,注射的阿托伐他汀可以抑制食物的消耗,这可能与上述活动有关。 ©2003 Elsevier B.V.保留所有权利。

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