Prediction of neuropeptide precursors and differential expression of adipokinetic hormone/corazonin-related peptide, hugin and corazonin in the brain of malaria vector Nyssorhynchus albimanus during a Plasmodium berghei infection

IF 2.2 Q1 ENTOMOLOGY Current Research in Insect Science Pub Date : 2021-01-01 DOI:10.1016/j.cris.2021.100014
Alejandro Alvarado-Delgado, Jesús Martínez-Barnetche, Juan Téllez-Sosa, Mario H. Rodríguez, Everardo Gutiérrez-Millán, Federico A. Zumaya-Estrada, Vianey Saldaña-Navor, María Carmen Rodríguez, Ángel Tello-López, Humberto Lanz-Mendoza
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Abstract

Insect neuropeptides, play a central role in the control of many physiological processes. Based on an analysis of Nyssorhynchus albimanus brain transcriptome a neuropeptide precursor database of the mosquito was described. Also, we observed that adipokinetic hormone/corazonin-related peptide (ACP), hugin and corazonin encoding genes were differentially expressed during Plasmodium infection. Transcriptomic data from Ny. albimanus brain identified 29 pre-propeptides deduced from the sequences that allowed the prediction of at least 60 neuropeptides. The predicted peptides include isoforms of allatostatin C, orcokinin, corazonin, adipokinetic hormone (AKH), SIFamide, capa, hugin, pigment-dispersing factor, adipokinetic hormone/corazonin-related peptide (ACP), tachykinin-related peptide, trissin, neuropeptide F, diuretic hormone 31, bursicon, crustacean cardioactive peptide (CCAP), allatotropin, allatostatin A, ecdysis triggering hormone (ETH), diuretic hormone 44 (Dh44), insulin-like peptides (ILPs) and eclosion hormone (EH). The analysis of the genome of An. albimanus and the generated transcriptome, provided evidence for the identification of myosuppressin neuropeptide precursor. A quantitative analysis documented increased expression of precursors encoding ACP peptide, hugin and corazonin in the mosquito brain after Plasmodium berghei infection. This work represents an initial effort to characterize the neuropeptide precursors repertoire of Ny. albimanus and provides information for understanding neuroregulation of the mosquito response during Plasmodium infection.

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柏氏疟原虫感染过程中疟疾病媒白唇虱脑内脂肪动力学激素/蛋白相关肽、蛋白蛋白和蛋白蛋白的差异表达及神经肽前体的预测
昆虫神经肽在控制许多生理过程中起着核心作用。通过对白吻蚊脑转录组的分析,建立了白吻蚊神经肽前体数据库。此外,我们还观察到脂动激素/胶原蛋白相关肽(ACP)、hugin和胶原蛋白编码基因在疟原虫感染过程中存在差异表达。转录组学数据来自纽约。alimanus的大脑从序列中确定了29个前肽,这些前肽可以预测至少60个神经肽。预测的肽包括抑素C、orcokinin、corazonin、脂肪动力激素(AKH)、SIFamide、capa、hugin、色素分散因子、脂肪动力激素/corazonin相关肽(ACP)、速激肽相关肽、trissin、神经肽F、利尿激素31、囊囊素、甲壳类心脏活性肽(CCAP)、抑素、化抑素A、促内分泌激素(ETH)、利尿激素44 (Dh44)、胰岛素样肽(ILPs)和催闭激素(EH)的异构体。An的基因组分析。该转录组为肌抑制素神经肽前体的鉴定提供了依据。定量分析表明,感染伯氏疟原虫后,蚊子大脑中编码ACP肽、hugin和corazonin的前体表达增加。这项工作代表了表征Ny神经肽前体库的初步努力。并为理解疟原虫感染期间蚊子反应的神经调节提供了信息。
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来源期刊
Current Research in Insect Science
Current Research in Insect Science Agricultural and Biological Sciences-Animal Science and Zoology
CiteScore
3.20
自引率
0.00%
发文量
22
审稿时长
36 days
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