首页> 外文期刊>Archives of Insect Biochemistry and Physiology >CONTACTING IS ESSENTIAL FOR OVIPOSITION DETERRENCE OF RHODOJAPONIN-III IN SPODOPTERA LITURA
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CONTACTING IS ESSENTIAL FOR OVIPOSITION DETERRENCE OF RHODOJAPONIN-III IN SPODOPTERA LITURA

机译:接触对于小夜蛾的视紫红质-Ⅲ的排卵是必不可少的

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In Lepidoptera, choosing the right site for egg laying is particularly important, because the small larvae cannot forage for alternate host plants easily. Some secondary compounds of plants have the ability to deter oviposition behaviors of insects. Rhodojaponin-III, a botanical compound, has been reported to have intense deterring-oviposition activity against many insects, which have important implications for agricultural pest management. This study provided evidence for elucidating the perception mechanism underlying Rhodojaponin-III as oviposition deterrent. In this study, the antennas of moths could not elicit notable electroantennogram responses to Rhodojaponin-III, which suggested the Rhodojaponin-III could not exert effects like those volatile compounds. The results of physiological experiments confirmed the Rhodojaponin-III could produce the oviposition deterrence effect against moths without depending on antennas, while the physical contact was essential for perceiving the compound, which suggested that the sensilla on tarsus and ovipositor could be chemoreceptor for Rhodojaponin-III. Therefore, these sensilla were investigated by scanning electron microscopy to explore their potential functions in detecting Rhodojaponin-III. This study highlighted the contacting mechanism in deterring oviposition behaviors of moths by Rhodojaponin-III and provided new insight for development of contact-based pest management.
机译:在鳞翅目中,选择合适的产卵地点尤为重要,因为幼虫无法轻易觅食其他寄主植物。植物的某些次要化合物具有阻止昆虫产卵行为的能力。据报道,植物皂甙Rhodojaponin-III具有对许多昆虫的强烈的抑制产卵活性,这对农业害虫的防治具有重要意义。这项研究为阐明杜鹃花皂苷III抑制产卵的感知机制提供了证据。在这项研究中,飞蛾的触角无法引起对杜鹃皂甙III的显着电响应,这表明杜鹃皂甙III不能像那些挥发性化合物那样发挥作用。生理学实验的结果证实,杜鹃花皂苷III可以在不依赖天线的情况下对蛾产生产卵抑制作用,而物理接触对于感知该化合物是必不可少的,这表明鱼和产卵剂上的感觉分子可能是杜鹃花皂苷III的化学感受器。 。因此,通过扫描电子显微镜对这些感官进行了研究,以探索其在检测杜鹃皂苷III中的潜在功能。这项研究突出了杜鹃花皂苷-III抑制蛾类产卵行为的接触机制,并为基于接触的害虫管理的发展提供了新的见识。

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