首页> 美国卫生研究院文献>Journal of Zhejiang University. Science. B >Alternaria toxin-induced resistance against rose aphids and olfactory response of aphids to toxin-induced volatiles of rose plants
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Alternaria toxin-induced resistance against rose aphids and olfactory response of aphids to toxin-induced volatiles of rose plants

机译:交链孢菌毒素诱导的对玫瑰蚜虫的抗性和蚜虫对毒素诱导的玫瑰植物挥发物的嗅觉响应

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摘要

The search for active toxins for managing weeds or plant diseases is believed to be a promising avenue of investigation. However, the effects of Alternaria toxins on insects have just begun to be investigated. Bioactivities of toxins from four strains of Alternaria alternata on Rosa chinensis and rose aphid Macrosiphum rosivorum were tested in the present study. At a concentration of 50.0 μg/ml, the crude extract (toxin) of strain 7484 was found not to be harmful to rose plants with excised leaf-puncture method (P≥0.079), and rose plants showed enhanced resistance to rose aphids when this Alternaria toxin was sprayed on the plants (P≤0.001). However, this toxin caused no detrimental effects on aphids in insecticidal bioassay at a concentration of 10.0 to 160.0 μg/ml (P≥0.096). Therefore, the Alternaria toxin had significantly induced the resistance of rose plants against rose aphids, demonstrating that the resistance mechanism triggered by the Alternaria toxin in the rose plant may also be used by the plant to defend itself against insects. Further bioassays aimed to discover the olfactory responses of aphids to the toxin-induced volatiles of host plants. The aphids were significantly more attracted to both volatiles emitted and collected from control rose plants than to both volatiles emitted and collected from the toxin-treated rose plants (P≤0.014). This result showed that the toxin-induced resistance related to the volatile changes of host plants.
机译:寻找用于控制杂草或植物病害的活性毒素被认为是有前途的研究途径。但是,链格孢菌毒素对昆虫的影响才刚刚开始研究。在本研究中测试了四种在玫瑰蔷薇和玫瑰蚜蚜上的链格孢菌株的毒素的生物活性。在浓度为50.0μg/ ml的情况下,发现采用切叶穿刺法(P≥0.079)对菌株7484的粗提物(毒素)无害,对玫瑰植株无害,并且在这种情况下,玫瑰植株对玫瑰蚜虫的抗性增强。将交链孢菌毒素喷在植物上(P≤0.001)。但是,在10.0至160.0μg/ ml的浓度下,这种毒素在杀虫生物测定中对蚜虫没有有害影响(P≥0.096)。因此,链霉菌毒素显着诱导了玫瑰植物对玫瑰蚜虫的抗性,表明玫瑰植物中由链霉菌毒素触发的抗性机制也可被植物用来防御昆虫。进一步的生物测定旨在发现蚜虫对宿主植物毒素诱导的挥发物的嗅觉反应。蚜虫对从对照玫瑰植物排放和收集的挥发物的吸引比对经过毒素处理的玫瑰植物排放和收集的挥发物的吸引要大得多(P≤0.014)。该结果表明毒素诱导的抗性与宿主植物的挥发性变化有关。

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