首页> 外文期刊>Environmental Science and Pollution Research >Interference mechanism of Sophora alopecuroides L. alkaloids extract on host finding and selection of the Asian citrus psyllid Diaphorina citri Kuwayama (Hemiptera: Psyllidae)
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Interference mechanism of Sophora alopecuroides L. alkaloids extract on host finding and selection of the Asian citrus psyllid Diaphorina citri Kuwayama (Hemiptera: Psyllidae)

机译:亚茶叶血清尿胆碱症患者对宿主蛋白酶蛋白酶蛋白酶蛋白酶蛋白酶蛋白酶蛋白酶Citri Kuwayama(Hemiptera:psyllidae)提取物的干扰机制

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Manipulating insect behavior through the deployment of semiochemicals offers a promising opportunity for protecting crops in a sustainable manner. Therefore, there is still a significant opportunity for the development of natural crop protectants as eco-friendly tools in pest management. In this context, the aim of the current investigation is to find a novel prophylactic against the Asian citrus psyllid (ACP) and to gain a better understanding of the host-finding and selection ability of the ACP towards Murraya paniculata seedlings treated with Sophora alopecuroides alkaloids extract (SAAE). Our results indicate that foliar application of SAAE influences the psyllid host-finding and selection process. The behavioral assay with M. paniculata seedlings treated with 15 and 30mg/mL of SAAE, with masked visual cues, revealed that only 6.6 and 10.4% psyllids were able to locate the host in the vials. The results also indicate that citrus psyllids mainly rely on both visual and olfaction in host-finding and selection. In choice settling experiments, psyllids settled almost completely on control seedlings rather than on seedlings treated with SAAE at a concentration of 30mg/mL. Chemical analyses of the alkaloids extract revealed the presence of sophocarpine (33.90%), sophoridine (6.23%), anagyrine (2.77%), matrine (2.38%), lupanine (1.68%) aphylline (0.89%), and sophoramine (0.75%). In further behavioral bioassays with the dominant alkaloids sophocarpine and sophoridine, the alkaloids repelled ACP at higher concentrations of 50 and 70mg/mL as compared to SAAE. Furthermore, the 50mg/mL (1:1, v/v) combination of sophocarpine and sophoridine displayed a synergistic effect and showed the maximum behavioral effect as compared to the individual alkaloid. Based on our results, SAAE makes M. paniculata seedlings unattractive to the psyllids, and therefore, alkaloids could be used in reducing the colonization of citrus plants, subsequently curtailing HLB infection.
机译:通过信息素的部署操控昆虫行为提供了保护作物以可持续的方式有希望的机会。因此,仍然是天然作物保护的害虫管理发展成为生态友好型工具显著的机会。在此背景下,目前调查的目的是要找到对亚洲柑橘木虱(ACP)和一个新的预防,以获得更好的ACP的主机发现和选择能力,理解朝九里香苗苦豆子生物碱处理提取物(SAAE)。我们的研究结果表明,SAAE叶面喷施影响木虱主机发现和选择过程。与M.穿心莲苗行为测定用15和30毫克/ SAAE毫升,用掩蔽视觉提示,显示,只有6.6和10.4%木虱能够定位主机中样品瓶处理。研究结果还表明,柑橘木虱主要依赖视觉和嗅觉在主机发现和选择。在选择沉降实验,木虱结算几乎完全上对照幼苗,而不是与在SAAE / 30毫克的浓度毫升处理的秧苗。生物碱提取物的化学分析揭示槐果碱(33.90%),槐定碱(6.23%),臭豆碱(2.77%),苦参(2.38%),lupanine(1.68%)aphylline(0.89%),和槐胺碱的存在下(0.75% )。与主导生物碱槐果碱和槐定碱进一步行为的生物测定中,生物碱在较高浓度的50和70毫克/毫升排斥ACP相比SAAE。此外,为50mg / mL的:槐果碱和槐定碱(1:1,V / V)的组合显示出协同效应和显示出相比于单独的生物碱为最大行为效应。根据我们的结果,使得SAAE M.穿心莲苗没有吸引力的木虱,因此,生物碱在减少柑橘属植物的定殖,随后削减HLB感染中使用。

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