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The response of Trissolcus basalis to footprint contact kairomones from Nezara viridula females is mediated by leaf epicuticular waxes

机译:叶毛表皮蜡介导了基础毛果对内扎绿头footprint女性足迹接触海洛酮的响应

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Chemical footprints left behind by true bugs are perceived as contact kairomones by scelionid egg parasitoids. Female wasps encountering a contaminated artificial substrate display a characteristic arrestment posture, holding the body motionless and antennating the surface. In the system Nezara viridula (L.) and its egg parasitoid Trissolcus basalis (Wollaston), previous studies have shown that the kairomone mediating such behavior is part of N. viridula’s cuticular hydrocarbons (CHC) and furthermore that the wasp’s ability to discriminate host male and female footprints is mainly based on the presence/absence of nonadecane (nC19). In this study, the effect of epicuticular waxes of leaves of broad bean, Vicia faba, on wasp responses to footprints of N. viridula females were investigated. Approximately 20% of T. basalis females displayed an arrestment posture when released on the adaxial leaf surfaces of broad bean plants with intact wax layer and without host chemical contamination; whereas ∼70% of wasps displayed the arrestment posture when intact leaves were contaminated by host female footprints. Adaxial leaf surfaces of broad bean plants dewaxed with an aqueous solution of gum arabic and afterwards contaminated by N. viridula females induced arrestment responses in about 10% of female wasps; the same percentage of arrestment (10%) was observed when the wasps were released on leaves contaminated by host females and subsequently dewaxed. The side of the polymer film that was appressed to the leaf surface, peeled from the contaminated leaves, induced an arrestment posture in about 95% of observed wasps. Scanning electron microscopy (SEM) revealed that the epicuticular waxes occurred as a film densely crystallized as irregularly shaped platelets with spherical granules randomly distributed. These findings demonstrated that epicuticular waxes of broad bean leaves can mediate the foraging behavior of T. basalis females by absorbing contact kairomones of the host. Keywords Insects - Egg parasitoids - Southern green stink bug - Vicia faba - Scanning electron microscopy
机译:真正的虫子留下的化学足迹被卵单卵寄生虫视为接触海洛酮。雌性黄蜂遇到被污染的人造基质时,会表现出典型的停滞姿势,使身体静止不动并触及表面。以前的研究表明,在Nezara viridula(L.)及其卵寄生性寄生虫Trissolcus basalis(Wollaston)系统中,海洛酮介导这种行为是N. viridula的表皮碳氢化合物(CHC)的组成,此外,黄蜂还具有区分宿主雄性的能力。女性的脚印主要是根据是否存在十八烷(nC 19 )来确定的。在这项研究中,调查了蚕豆蚕豆叶片的表皮蜡对黄vi雌虫足迹的黄蜂响应的影响。当释放在具有完整蜡层且没有宿主化学污染的蚕豆植物的近轴叶表面上时,约有20%的基底螺旋藻雌虫表现出停滞姿势。而约70%的黄蜂在完整的叶子被宿主雌性足迹污染时表现出停滞姿势。蚕豆植物的腋叶表面用阿拉伯树胶水溶液脱蜡,然后被绿毛猪笼草(N. viridula)雌性污染,诱导了约10%的雌性黄蜂的停滞反应。当黄蜂在被寄主雌性污染的叶子上释放并随后脱蜡后,观察到了相同的逮捕率(10%)。从被污染的叶子上剥下的贴在叶片表面的聚合物薄膜一侧在大约95%的观察到的黄蜂中引起了停滞姿势。扫描电子显微镜(SEM)显示,表皮蜡以致密结晶为不规则形状的血小板的膜的形式出现,球形颗粒随机分布。这些发现表明,蚕豆叶片的表皮蜡可以通过吸收宿主的接触海洛酮来介导基础种雌性的觅食行为。昆虫-卵寄生虫-南部绿色臭虫-蚕豆-扫描电子显微镜

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