反转和无反转果蝇品系中主要角质层碳氢化合物的特征

K. R S, Jayaramu S. C.
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引用次数: 0

摘要

利用气相色谱和质谱(GC-MS)分析方法对 ananassae(Doleschall)果蝇的角质碳氢化合物(CHCs)进行了表征和鉴定。在所有反转菌株(2LA、3LA 和 2LA+3LA)和无反转菌株中发现了高比例的甲基支链烷烃,其次是线性烷烃和烯烃。本研究揭示了反转菌株和无反转菌株之间甲基化烷烃异构体的显著变化规律(F-46.6;df-3,p 0.005),而性别之间的差异不显著(F-2.14;df-1,p 0.2394)。但在线性烷烃中,观察到反转品系之间(F-30.49;df-3,p 0.009)和雌雄之间(F-115.45;df-1,p 0.001)有显著差异。特别是,D. ananassae 的染色体反转与 CHCs 合成之间存在明显的相关性。果蝇中独特的 CHCs 混合体具有抗干燥和作为化学信号分子的双重作用。线性烷烃主要参与抗干燥性,但甲基支链 CHC 的长度变化是决定抗干燥性的关键因素。甲基支链烷烃的长度越长,抗干燥性越高,碳链长度越短,其信号分子的作用就越大。目前的研究揭示了染色体反转对 D. ananassae 角质层碳氢化合物特征的影响。
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Characterization of Dominant Cuticular Hydrocarbons in Inversion and Inversion-Free Strains of Drosophila ananassae (Doleschall)
Cuticular hydrocarbons (CHCs) of Drosophila ananassae (Doleschall) was characterized and identified using gas chromatography and mass spectrometry (GC-MS) analysis. A high % of methyl-branched alkanes were identified in all inversion (2LA, 3LA and 2LA+3LA) and inversion-free strains followed by linear alkanes and alkenes. The present work unfolds the significant patterns of variations in the isomeric forms of methylated alkanes between the inversion and inversion free strains (F-46.6; df-3, p 0.005), and non-significant between the sex (F-2.14; df-1, p 0.2394). But in linear alkanes shows significant variation between the inversion strains (F-30.49; df-3, p 0.009) and between the male and female (F-115.45; df-1, p 0.001) was observed. In particular there is a significant correlation between the chromosomal inversion and synthesis of CHCs in D. ananassae. Unique blend of CHCs in Drosophila performs dual role as desiccation resistance and act as chemical signalling molecule. Linear alkanes are majorly involved in desiccation resistance but in methyl- branched CHCs length variation is a key determinant of desiccation resistance. Presence of longer methyl- branched alkanes and higher desiccation resistance, shorter the carbon chain length act as a signalling molecules. The current study revealed the influence of chromosomal inversion on the cuticular hydrocarbon profile in D. ananassae.
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