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作为家蝇潜在引诱剂的黑strap糖蜜饲料中提取成分和挥发性成分的分析。 (注:“blackstrap molasses”常见释义为“黑strap糖蜜” ,具体意思可能需结合更多背景知识准确理解)

Analysis of extracted and volatile components in blackstrap molasses feed as candidate house fly attractants.

作者信息

Quinn Brian P, Bernier Ulrich R, Geden Christopher J, Hogsette Jerome A, Carlson David A

机构信息

United States Department of Agriculture, Agricultural Research Service, Center for Medical, Agricultural, and Veterinary Entomology, 1600 SW 23rd Drive, Gainesville, FL 32608, USA.

出版信息

J Chromatogr A. 2007 Jan 19;1139(2):279-84. doi: 10.1016/j.chroma.2006.11.039. Epub 2006 Dec 1.

Abstract

House flies are a ubiquitous insect that have the potential to spread many diseases to humans and livestock. Managing house fly populations is accomplished by having desirable baits, traps, and killing agents. Most house fly baits are designed for outdoor use or limited indoor use, and have a foul odor that is not conducive to food preparatory and dining areas. Blackstrap molasses has long been used as a house fly bait, but it is sticky and viscous, making it difficult to handle. This study sought to identify compounds present in blackstrap molasses that might be attractive to house flies, and therefore, provide the public with an indoor bait that does not have an offensive smell and is easy to handle. Indoor bioassays with house flies using 50% blackstrap molasses diluted in deionized water, a hexane extract of blackstrap molasses, and deionized water, elicited 86.2%, 70.6%, and 13.8% responses, respectively. Hexane and diethyl ether extracts of blackstrap molasses produced a large number of compounds with widely differing organic structures including substituted phenols, nitrogen and oxygen heterocycles, carboxylic acids, and many other organic compounds.

摘要

家蝇是一种无处不在的昆虫,有向人类和牲畜传播多种疾病的可能。控制家蝇数量可通过使用合适的诱饵、诱捕器和杀虫剂来实现。大多数家蝇诱饵是为户外使用或有限的室内使用而设计的,且有难闻气味,不适合食品制备和用餐区域。糖蜜长期以来一直被用作家蝇诱饵,但它粘性大且黏稠,难以处理。本研究旨在确定糖蜜中可能对家蝇有吸引力的化合物,从而为公众提供一种无异味且易于处理的室内诱饵。使用在去离子水中稀释的50%糖蜜、糖蜜的己烷提取物和去离子水对家蝇进行室内生物测定,分别引发了86.2%、70.6%和13.8%的反应。糖蜜的己烷和乙醚提取物产生了大量具有广泛不同有机结构的化合物,包括取代酚、氮和氧杂环、羧酸以及许多其他有机化合物。

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