斑节螟在休眠和非休眠状态下的脂质组成不同

IF 1.9 3区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Comparative Biochemistry and Physiology B-Biochemistry & Molecular Biology Pub Date : 2024-05-27 DOI:10.1016/j.cbpb.2024.110996
Aditya K. Tanwar , Mukesh K. Dhillon , Fazil Hasan , Sandeep Kumar , Jagbir S. Kirti
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引用次数: 0

摘要

斑螟(Chilo partellus)的幼虫会经历休眠(冬眠和休眠),并依靠觅食阶段积累的食物储备生存。脂质是休眠期的主要能量来源,对不同的细胞、生化和生理功能至关重要。然而,目前还没有关于部分栉水母冬眠、休眠和非休眠不同阶段的脂质和亲脂化合物含量的信息。因此,我们比较了冬眠前、冬眠期和冬眠后以及冬眠期与非冬眠期的脂质浓度和组成。研究发现,与非休眠期相比,在休眠期的不同阶段,部分栉水母的总脂质和各种亲脂化合物存在明显差异。与非休眠期幼虫相比,休眠期和冬眠期的总脂质明显较低。此外,与非休眠期幼虫相比,亚油酸、3-甲氧基十四酸甲酯和2,6-二十六酸 l-(+)-抗坏血酸含量明显较低,油酸和棕榈油酸含量在休眠前和休眠期阶段较高。与非休眠期幼虫相比,休眠前期、休眠期和休眠后期的胆固醇含量明显更高。与冬眠和非冬眠状态相比,冬眠前和冬眠期的不饱和度比明显较高,冬眠后的不饱和度比明显较低。这项研究深入揭示了不同休眠期的不同脂质特征,有助于进一步了解生化和生理的相互影响,并开发出针对不同目标的技术来管理部分褐飞虱。
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Lipid composition differs in diapause and nondiapause states of spotted stem borer, Chilo partellus

Spotted stem borer, Chilo partellus, undergoes larval diapause (hibernation and aestivation), and depends on the food reserve accumulated during feeding stage for its survival. Lipids are the primary source of energy during diapause, and essential for different cellular, biochemical and physiological functions. However, there is no information on lipid and lipophilic compound contents during different stages of hibernation, aestivation and nondiapause in C. partellus. Thus, we compared the concentration and composition of lipids in pre-diapause, diapause and post-diapause stages of hibernation and aestivation with nondiapause stages of C. partellus. The studies revealed significant differences in total lipids and various lipophilic compounds during different stages of diapause as compared to nondiapause C. partellus. The total lipids were significantly lower during diapause stage of aestivation and hibernation as compared to nondiapause larvae. Further, the linoleic acid, Methyl 3-methoxytetradecanoate, and l-(+)-Ascorbic acid 2,6-dihexadecanoate were significantly lower, and oleic and palmitoleic acids greater during pre-diapause and diapause stages of hibernation and aestivation as compared to nondiapause larvae. The cholesterol content was significantly greater during pre-diapause stage of hibernation, and diapause and post-diapause stages of aestivation as compared to nondiapause stages. The unsaturation ratio was significantly higher in the pre-diapause and diapause stages and lower in post-diapause stage of aestivation than the hibernation and nondiapause states. This study provides insights on differential lipid profiles during different phases of diapause, which could be useful for further understanding biochemical and physiological cross-talk, and develop target-specific technologies for the management of C. partellus.

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来源期刊
CiteScore
4.60
自引率
4.50%
发文量
77
审稿时长
22 days
期刊介绍: Comparative Biochemistry & Physiology (CBP) publishes papers in comparative, environmental and evolutionary physiology. Part B: Biochemical and Molecular Biology (CBPB), focuses on biochemical physiology, primarily bioenergetics/energy metabolism, cell biology, cellular stress responses, enzymology, intermediary metabolism, macromolecular structure and function, gene regulation, evolutionary genetics. Most studies focus on biochemical or molecular analyses that have clear ramifications for physiological processes.
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