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不同的食物来源会影响牧草盲蝽卵寄生蜂——伊氏潜蝇茧蜂的味觉反应。

Different food sources affect the gustatory response of Anaphes iole, an egg parasitoid of Lygus Spp.

作者信息

Beach J Peirce, Williams Livy, Hendrix Donald L, Price Leslie D

机构信息

USDA-ARS, Southern Insect Management Research Unit, P.O. Box 346 Stoneville, Mississippi 38776-0346, USA.

出版信息

J Chem Ecol. 2003 May;29(5):1203-22. doi: 10.1023/a:1023837808291.

Abstract

The gustatory response of female Anaphes iole wasps to naturally occurring carbohydrates, a commercial food source, and host (Lygus lineolaris) frass was determined. Wasps responded to all 14 of the sugars at the highest concentration tested (2 M). At this concentration, sucrose, glucose, maltose, melezitose, fructose, and erlose all elicited > 90% acceptance. The lowest concentration that evoked a response (= acceptance threshold) for these sugars was < 1/256 M, with the exception of glucose. which was 1/16 M. Raffinose, trehalose, mannose, galactose, melibiose, rhamnose, stachyose, and lactose led to < 50% gustatory response by the wasps at 2 M, and were categorized as "moderately stimulatory sugars." The acceptance threshold for these sugars was > 1/4 M, with the exception of raffinose, which was 1/256 M. In trials with moderately stimulatory sugars combined with either sucrose or maltose, only the rhamnose+maltose mixture significantly inhibited the gustatory response of A. iole. Food and water deprived parasitoids readily accepted the moderately stimulatory sugars. Eliminade, a commercial food supplement, was readily accepted (92%) by A. iole. Conversely, the wasps did not feed on host frass. Chemical analysis of L. lineolaris frass demonstrated the presence of glucose, sucrose, fructose, trehalulose, and melezitose, apparently at concentrations below those perceived by A. iole. The latter two compounds were previously known only from homopteran honeydew (trehalulose and melezitose) and bacteria (trehalulose). With respect to gustatory response to nectar and honeydew sugars, A. iole differs markedly from other hymenopterans that have been studied in that this parsitoid accepted all the naturally occurring sugars with which it was tested. Moreover, this parasitoid had lower acceptance thresholds than other hymenopterans for many of the sugars. This broad and sensitive range of gustatory perception might be helpful in the development of a food source for the wasp that is not exploited by the host.

摘要

测定了雌性艾氏柄腹姬小蜂对天然存在的碳水化合物、一种商业食物源以及寄主(牧草盲蝽)粪便的味觉反应。在测试的最高浓度(2M)下,黄蜂对所有14种糖都有反应。在此浓度下,蔗糖、葡萄糖、麦芽糖、松三糖、果糖和糊精的接受率均超过90%。除葡萄糖的接受阈值为1/16M外,这些糖引发反应的最低浓度(即接受阈值)均小于1/256M。棉子糖、海藻糖、甘露糖、半乳糖、蜜二糖、鼠李糖、水苏糖和乳糖在2M时引发的黄蜂味觉反应小于50%,被归类为“中度刺激糖”。除棉子糖的接受阈值为1/256M外,这些糖的接受阈值均大于1/4M。在将中度刺激糖与蔗糖或麦芽糖混合的试验中,只有鼠李糖+麦芽糖混合物显著抑制了艾氏柄腹姬小蜂的味觉反应。食物和水被剥夺的寄生蜂很容易接受中度刺激糖。一种商业食物补充剂Eliminade很容易被艾氏柄腹姬小蜂接受(接受率为92%)。相反,黄蜂不取食寄主粪便。对牧草盲蝽粪便的化学分析表明,其中存在葡萄糖、蔗糖、果糖、松二糖和松三糖,其浓度显然低于艾氏柄腹姬小蜂能感知的浓度。后两种化合物以前仅在同翅目蜜露(松二糖和松三糖)和细菌(松二糖)中发现。就对花蜜和蜜露糖的味觉反应而言,艾氏柄腹姬小蜂与其他已研究的膜翅目昆虫有显著不同,因为这种寄生蜂接受了所有测试的天然存在的糖。此外,这种寄生蜂对许多糖的接受阈值低于其他膜翅目昆虫。这种广泛而敏感的味觉感知范围可能有助于开发一种寄主未利用的黄蜂食物源。

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