Fatty acids as components of cuticular lipids of insects play a significant role in antifungal in protection against fungal infection. The chemical composition of cuticular and internal extracts obtained from all developmental stages of flesh flies Sarcophaga carnaria was identified. The fatty acids were detected using gas chromatography coupled with mass spectrometry and the most abundant for all examined stages were: 18:1 > 16:0 > 16:1 > 18:0 > 18:2. Polyunsaturated fatty acids (PUFA) C20 were found in both, cuticular and internal extracts. GC-MS analysis showed higher relative content of PUFA in adults than in preimaginal stages. Fatty acids alone as well as their cuticular and internal extracts obtained from larvae, pupae male and female of S. carnaria were tested according to their potential antimicrobial activity against entomopathogenic fungi: Paecilomyces lilacinus, Paecilomyces fumosoroseus, Lecanicillium lecanii, Metarhizium anisopliae, Beauveria bassiana (Tve-N39) and B. bassiana (Dv-1/07). FA presented diverse antimicrobial activity depending on the length of the chain and the presence of unsaturated bonds. Short chain and unsaturated FA (6:0, 11:0, 13:0) have shown significantly stronger activity against fungi but they were detected in lower concentrations. PUFA inhibit fungal growth more effectively than unsaturated long chain fatty acids. Cuticular and internal extracts of all living forms of S. carnaria exhibited approximately equal activity against tested entomopathogenic fungi. We presumed that the most abundant saturated long chain FA and additionally PUFA founded in our analysis are involved in protecting the flies against fungal infection.

译文

:脂肪酸作为昆虫表皮脂质的成分,在抗真菌保护真菌感染中起着重要作用。确定了从果蝇Sarcophaga carnaria的所有发育阶段获得的表皮和内部提取物的化学成分。使用气相色谱和质谱法检测脂肪酸,所有检查阶段中最丰富的脂肪酸为:18:1> 16:0> 16:1> 18:0> 18:2。在表皮和内部提取物中均发现了多不饱和脂肪酸(PUFA)C20。 GC-MS分析显示,成年人中PUFA的相对含量高于想象前阶段。根据脂肪酸对昆虫病原真菌的潜在抗微生物活性,对脂肪酸以及从幼虫,p男性和女性of的p和表皮和内部提取物进行了测试:淡紫色拟青霉,烟酸拟青霉,Lecanicillium lecanii,南美白僵菌,Beauverhizium anisopliae(博韦Tve-N39)和球孢白僵菌(Dv-1 / 07)。根据链的长度和不饱和键的存在,FA表现出多种抗菌活性。短链和不饱和脂肪酸(6:0,11:0,13:0)已显示出明显较强的抗真菌活性,但在较低浓度下被检测到。 PUFA比不饱和长链脂肪酸更有效地抑制真菌生长。沙门氏菌所有生活形式的表皮和内部提取物对被测昆虫病原真菌表现出大致相同的活性。我们推测,在我们的分析中建立的最丰富的饱和长链FA和另外的PUFA可以保护果蝇免受真菌感染。

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