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刺果番荔枝果实的挥发物分析以确定吸引番荔枝科果实象鼻虫(帕斯科)的利它素成分。

Volatilome Analysis of Soursop Fruits for the Determination of Kairomone Components That Attract the Annonaceae Fruit Weevil ( Pascoe).

作者信息

Pineda-Ríos J M, Cibrián-Tovar J, López-Romero R M, Hernández-Fuentes L M, Soto-Rojas L, Llanderal-Cázares C, García-Sosa P R, Salomé-Abarca L F

机构信息

Colegio de Postgraduados Campus Montecillo, Postgrado en Fitosanidad, Programa de Entomología y Acarología, Km 36.5 Carr., Texcoco 56230, Mexico.

Colegio de Postgraduados Campus Montecillo, Postgrado en Edafología, Texcoco 56230, Mexico.

出版信息

Plants (Basel). 2023 Nov 18;12(22):3898. doi: 10.3390/plants12223898.

Abstract

Soursop possesses the largest fruit size of the genus. However, this species is threatened by the Annonaceae fruit weevil (), which can cause the destruction of whole soursop fruits. Recently, the potential of semiochemicals for the management of this insect is highlighted, and its aggregation pheromone has been elucidated. This pheromone works well only when mixed with soursop volatiles. Thus, the aim of this research was to determine specific kairomone components to potentiate the aggregation pheromone of this Annonaceae fruit weevil. This task was carried out via volatilome analysis of soursop fruits, which was correlated with the biological activity of the identified volatiles. The GC-MS analysis of aroma collections of mature soursop fruits and flowers, determined using multivariate data analysis, confirmed a volatile differentiation between these organs. The volatile variation between fruits and flowers was reflected in weevils' preference for mature fruits instead of flowers. Moreover, weevils' response to soursop fruits increased with more mature fruits. This was correlated with volatile changes throughout the phenological stages of soursop fruits. The two volatiles most correlated with weevils' attraction were benzothiazole and ()--caryophyllene. These volatiles only evoked a response when mixed and potentiated the attraction of the aggregation pheromone. Thus, these two volatiles are active kairomone components with the potential for being used in combination with the aggregation pheromone of Annonaceae fruit weevils in field trials.

摘要

刺果番荔枝拥有该属中最大的果实。然而,这种物种受到番荔枝科果实象甲()的威胁,这种象甲会导致整个刺果番荔枝果实被破坏。最近,信息素在这种昆虫防治方面的潜力受到关注,其聚集信息素已被阐明。这种信息素只有与刺果番荔枝挥发物混合时才有效。因此,本研究的目的是确定特定的利它素成分,以增强这种番荔枝科果实象甲的聚集信息素。这项任务是通过对刺果番荔枝果实进行挥发物组分析来完成的,该分析与已鉴定挥发物的生物活性相关。使用多变量数据分析对成熟刺果番荔枝果实和花朵的香气提取物进行气相色谱 - 质谱分析,证实了这些器官之间的挥发物差异。果实和花朵之间的挥发物差异反映在象甲对成熟果实而非花朵的偏好上。此外,象甲对刺果番荔枝果实的反应随着果实成熟度的增加而增强。这与刺果番荔枝果实物候阶段的挥发物变化相关。与象甲吸引力最相关的两种挥发物是苯并噻唑和() - 石竹烯。这些挥发物只有混合时才会引发反应,并增强聚集信息素的吸引力。因此,这两种挥发物是活性利它素成分,有可能在田间试验中与番荔枝科果实象甲的聚集信息素联合使用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2fa3/10674623/8372f00df85a/plants-12-03898-g001.jpg

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