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Resistance of Mexican fruit fly to quarantine treatments of high-pressure processing combined with cold.

机译:墨西哥果蝇对高压处理和冷处理的隔离处理具有抗性。

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摘要

Mexican fruit fly Anastrepha ludens Loew (Diptera: Tephritidae) is one of the most important insects infesting fruits. Although high pressure has been proposed as an alternative quarantine process for this pest, conditions applied to destroy eggs and larvae can also damage the fruits. The objective of this study was to assess the biological viability of A. ludens eggs treated by high-pressure processing at 0 degrees C, establishing whether nondestroyed eggs and larvae preserved their ability to develop and reproduce. One-, 2-, 3-, and 4-day-old eggs were pressurized at 50, 70, or 90 MPa for 0, 3, 6, or 9 min. The hatching ability of pressurized eggs and their capacity to develop larvae, pupae, and reproductive adults were evaluated. The ability of pressurized larvae to pupate was also registered. The results showed that most of the eggs that resisted the treatments were able to produce adults with capability to reproduce a new generation of A. ludens flies. Larvae were less resistant than eggs. All larvae were killed at 90 MPa for 9 min. The pressure induced the expression of heat shock proteins (HSP) in second- and third-instar larvae. The HSP showed a baroprotective effect in A. ludens larvae. These results are relevant to the industry because they show that eggs of insects infesting fruits treated by high-pressure processing were able to pupate after treatments. This indicates that efforts must be addressed to destroy all eggs because most of the surviving organisms could reach an adult stage and reproduce.
机译:墨西哥果蝇Anastrepha ludens Loew(Diptera:Tephritidae)是侵害水果的最重要昆虫之一。尽管已提出将高压作为该害虫的替代检疫方法,但破坏卵和幼虫的条件也会破坏果实。这项研究的目的是评估在0摄氏度下通过高压处理处理的A. ludens卵的生物生存能力,以确定未破坏的卵和幼虫是否保留了它们的发育和繁殖能力。将一,二,三和四天大的卵在50、70或90 MPa下加压0、3、6或9分钟。评估了受压卵的孵化能力以及它们发育幼虫,p和生殖成虫的能力。还记录了加压幼虫化up的能力。结果表明,大多数抵抗这种处理的卵都能够产生能够繁殖出新一代A. ludens蝇的成虫。幼虫的抵抗力不及卵。在90 MPa下杀死所有幼虫9分钟。压力诱导了第二龄和第三龄幼虫中热激蛋白(HSP)的表达。热休克蛋白对A. ludens幼虫显示出气压保护作用。这些结果与工业相关,因为它们表明在经过高压处理的昆虫虫卵侵染果实后能够化p。这表明必须努力消灭所有卵,因为大多数存活的生物都可以达到成年阶段并繁殖。

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