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首页> 外文期刊>Journal of Chemical Ecology >Odor Composition of Preferred (Buffalo and Ox) and Nonpreferred (Waterbuck) Hosts of Some Savanna Tsetse Flies
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Odor Composition of Preferred (Buffalo and Ox) and Nonpreferred (Waterbuck) Hosts of Some Savanna Tsetse Flies

机译:一些稀树草原采采蝇蝇的首选(水牛和牛)和非首选(水鹿)寄主的气味组成

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摘要

A previous study on the feeding responses of tsetse flies, Glossina morsitans morsitans, implicated the existence of allomonal barriers, both volatile and nonvolatile, on the nonpreferred host, waterbuck, Kobus defassa. In the present study, electroantennogram-active compounds in odors from waterbuck were compared with those of two preferred hosts of tsetse flies, buffalo, Syncerus caffer, and ox, Bos indicus. Odors from the three bovids were trapped on activated charcoal and/or reverse-phase (octadecyl bonded) silica and analyzed with a gas chromatography-linked electroantennographic detector (GC-EAD) and, where possible, identified by using gas chromatography-linked mass spectrometry (GC-MS) and chromatographic comparisons with authentic samples. The GC-EAD profiles (with G. m. morsitans antennae) of the odors of the two preferred hosts were comparable, comprising medium-chain, saturated or unsaturated aldehydes and phenols, with buffalo emitting a few more EAG-active aldehydes. Waterbuck odor gave a richer profile, consisting of fewer aldehydes but more phenolic components and a series of 2-ketones (C8–C13) and δ-octalactone. This bovid also emits moderate amounts of C5–C9 straight-chain fatty acids, some of which were detected in buffalo and ox only in trace amounts. However, these did not elicit significant GC-EAD responses. Waterbuck profiles from the antennae of G. pallidipes showed broad similarity to those from G. m. morsitans, although the composition of aldehydes and ketones was somewhat different, indicating species-specific difference in the detection of host odors. Certain waterbuck-specific EAG-active components, particularly the 2-ketones and lactone, constitute a candidate allomonal blend in waterbuck odor.
机译:以前对采采蝇(Glossina morsitans morsitans)的摄食反应进行的研究表明,在非首选寄主waterbuck,Kobus defassa上存在挥发性和非挥发性的同化障碍。在本研究中,水water气味中的电造影活性化合物与两个首选的采采蝇(水牛,Syncerus caffer)和牛,印度s(Bos indicus)的气味进行了比较。将来自三个牛肝菌的气味捕获在活性炭和/或反相(十八烷基键合)硅胶上,并用气相色谱联用电子血管造影检测器(GC-EAD)进行分析,并在可能的情况下使用气相色谱联用质谱仪进行鉴定(GC-MS)和色谱图与真实样品进行比较。两种优选宿主的气味的GC-EAD图谱(具有G.m. morsitans触角)是可比较的,包括中链,饱和或不饱和醛和酚,而水牛则散发出一些更多的EAG-活性醛。羚羊气味更丰富,由较少的醛,但更多的酚类成分和一系列的2-酮(C8 –C13 )和δ-八内酯组成。这种牛肝菌还散发出适量的C5 –C9 直链脂肪酸,其中一些仅在水牛和牛中被检测到。但是,这些没有引起显着的GC-EAD反应。 G. pallidipes触角的Waterbuck轮廓与G. m。的相似。 morsitans,尽管醛和酮的成分有所不同,这表明在检测宿主气味方面物种特异性不同。某些特定于buckbuck的EAG活性成分,尤其是2-酮和内酯,构成了buckbuck气味中的候选同调共混物。

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