Detection and substrate portrayal on the serum phenoloxidase activity from the grub of rhinoceros beetle, Oryctes rhinoceros.

IF 1.6 3区 农林科学 Q2 ENTOMOLOGY Bulletin of Entomological Research Pub Date : 2023-10-01 Epub Date: 2023-07-31 DOI:10.1017/S0007485323000305
Balashanmuga Nehru Marieshwari, Chandran Prithi, Ramanathan Nivetha, Sreeramulu Bhuvaragavan, Janarthanan Sundaram
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Abstract

Phenoloxidase (PO) is a significant biomolecule involved in humoral defence mechanism of invertebrates. Spontaneous melanization of insect haemolymph is the major hinderance for studying PO activity, as haemolymph was collected devoid of phenylthiourea. In the study, no visible melanization was observed in crude serum from the grub of Oryctes rhinoceros up to 30 min of incubation amongst crude haemolymph, diluted haemolymph, crude serum and diluted serum that were subjected to visual observation for spontaneous melanization reaction. Accordingly, crude serum was taken for evaluating PO activity. At the same time, as PO substrates tend to auto-oxidize and provide false optical density value, tris-buffered saline devoid of any substrates were used as blank for PO assays. The ideal wavelength at which maximum PO activity occurred for each substrate, namely, tyrosine, tyramine, dopamine, L-dopa, DL-dopa, catechol, protocatechuic acid and pyrogallol was determined as 407, 410, 429, 465, 403, 466, 428 and 400 nm, respectively. Additionally, time course of oxidation for each phenolic substrate by the serum PO were examined and DL-dopa was identified as the specific substrate for serum PO in the grub of O. rhinoceros. Furthermore, maximum PO activity was observed at 5 min of incubation for 10 mM of DL-dopa that was considered as optimum concentration. The ideal pH and temperature for serum PO activity was observed as 7.5 and 20°C, respectively. These results suggested that standardizing a suitable substrate is an essential prerequisite to evaluate the real PO activity of serum which might significantly fluctuate in each insect model.

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犀牛甲虫幼虫血清酚氧化酶活性的检测及底物表征。
酚氧化酶(Phenoloxidase, PO)是参与无脊椎动物体液防御机制的重要生物分子。昆虫血淋巴的自发黑化是研究PO活性的主要障碍,因为采集的血淋巴缺乏苯硫脲。本研究对粗血淋巴、稀释血淋巴、粗血清和稀释血清进行了自发黑化反应的目测,发现在孵育30 min后,粗血清未见明显的黑化现象。因此,取粗血清评价PO活性。同时,由于PO底物倾向于自动氧化并提供虚假的光密度值,因此使用不含任何底物的tris缓冲盐水作为PO测定的空白。测定了酪氨酸、酪胺、多巴胺、左旋多巴、左旋多巴、儿茶酚、原儿茶酸和邻苯三酚在407、410、429、465、403、466、428和400 nm处PO活性最大的理想波长。此外,研究了各酚类底物被血清PO氧化的时间过程,确定了dl -多巴是犀牛幼虫血清PO的特异性底物。此外,10 mM的DL-dopa被认为是最佳浓度,在孵育5 min时观察到最大的PO活性。血清PO活性的理想pH和温度分别为7.5℃和20℃。这些结果表明,标准化一个合适的底物是评估血清中真实的PO活性的必要前提,而PO活性在不同的昆虫模型中可能存在显著的波动。
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来源期刊
CiteScore
4.00
自引率
0.00%
发文量
160
审稿时长
6-12 weeks
期刊介绍: Established in 1910, the internationally recognised Bulletin of Entomological Research aims to further global knowledge of entomology through the generalisation of research findings rather than providing more entomological exceptions. The Bulletin publishes high quality and original research papers, ''critiques'' and review articles concerning insects or other arthropods of economic importance in agriculture, forestry, stored products, biological control, medicine, animal health and natural resource management. The scope of papers addresses the biology, ecology, behaviour, physiology and systematics of individuals and populations, with a particular emphasis upon the major current and emerging pests of agriculture, horticulture and forestry, and vectors of human and animal diseases. This includes the interactions between species (plants, hosts for parasites, natural enemies and whole communities), novel methodological developments, including molecular biology, in an applied context. The Bulletin does not publish the results of pesticide testing or traditional taxonomic revisions.
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