首页> 美国卫生研究院文献>Springer Open Choice >Attractiveness of Host Plant Volatile Extracts to the Asian Citrus Psyllid Diaphorina citri is Reduced by Terpenoids from the Non-Host Cashew
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Attractiveness of Host Plant Volatile Extracts to the Asian Citrus Psyllid Diaphorina citri is Reduced by Terpenoids from the Non-Host Cashew

机译:非寄主腰果中的萜类化合物降低了寄主植物挥发物提取物对亚洲柑橘木耳桔黄的吸引力。

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摘要

Diaphorina citri is a vector of the bacterial causative agent of Huanglongbing (HLB = Citrus greening), a severe disease affecting citrus crops. As there is no known control for HLB, manipulating insect behaviour through deployment of semiochemicals offers a promising opportunity for protecting citrus crops. The behavioural responses of D. citri to plant volatiles, and the identity of these plant volatiles were investigated. Volatiles were collected from host plants Murraya paniculata, Citrus sinensis, C. reshni, C. limettioides, Poncirus trifoliata, and from non-host plants Psidium guajava, Mangifera indica, Anacardium occidentale. In behavioural assays, female D. citri spent more time in the arms containing volatiles from either M. paniculata or C. sinensis compared to the control arms. When D. citri was exposed to volatiles collected from A. occidentale, they preferred the control arm. Volatiles emitted from the other studied plants did not influence the foraging behaviour of D. citri. Chemical analyses of volatile extracts from C. sinensis, M. paniculata, and A. occidentale revealed the presence of the terpenoids (E)-4,8-dimethylnona-1,3,7–triene (DMNT) and (E,E)-4,8,12-trimethyltrideca-1,3,7,11-tetraene (TMTT) in higher amounts in A. occidentale. In further behavioural bioassays, female D. citri spent less time in arms containing a synthetic blend of DMNT and TMTT compared to the control arms. Female D. citri also spent less time in arms containing the synthetic blend in combination with volatile extracts from either M. paniculata or C. sinensis compared to the control arms. Results suggest that higher release of the two terpenoids by A. occidentale make this species unattractive to D. citri, and that the terpenoids could be used in reducing colonisation of citrus plants and therefore HLB infection.
机译:柠檬黄柑桔是黄龙病(HLB =柑橘绿化)的一种细菌病原体的载体,黄龙病是一种影响柑橘类作物的严重疾病。由于没有已知的HLB防治方法,通过部署化学信息素来控制昆虫的行为为保护柑橘类作物提供了广阔的机遇。研究了柠檬果蝇对植物挥发物的行为响应以及这些植物挥发物的身份。挥发物从寄主植物Murraya paniculata,柑橘,C。reshni,C。limettioides,三叶草Poncirus trifoliata以及非寄主植物番石榴,Mangifera indica,Anacardium occidentale收集。在行为分析中,与对照臂相比,雌性柠檬果蝇在含有来自M. paniculata或C. sinensis的挥发物的臂上花费更多的时间。当柠檬木杆菌暴露于从西方农杆菌中收集的挥发物时,他们更喜欢使用控制臂。从其他研究植物中释放出的挥发物不影响柠檬果蝇的觅食行为。化学分析中华C,中华<和 A。 occidentale 发现存在萜类化合物( E )-4,8-​​二甲基壬基-1,3,7-三烯(DMNT)和( E ,< em> E )-4,8,12-trimethyltrideca-1,3,7,11-tetraene(TMTT)在 A中含量较高。西方。在进一步的行为生物测定中,女性为 D。与对照组相比,citri 在含有DMNT和TMTT合成掺合物的对照组中花费的时间更少。女 D。 citri 在含有合成掺合物和 M挥发物提取物的手臂上花费的时间也更少。 paniculata C。与对照组相比。结果表明, A释放了两个萜类化合物。 occidentale 使该物种对 D没有吸引力。柠檬酸,并认为萜类化合物可用于减少柑橘类植物的定殖,从而减少HLB感染。

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