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果蝇在不同成熟度的采摘和未采摘番茄果实中的幼虫存活率及相关基因表达模式

Fruit Fly Larval Survival in Picked and Unpicked Tomato Fruit of Differing Ripeness and Associated Gene Expression Patterns.

作者信息

Roohigohar Shirin, Clarke Anthony R, Strutt Francesca, van der Burg Chloé A, Prentis Peter J

机构信息

Faculty of Science, School of Biology and Environmental Science, Queensland University of Technology, Brisbane, QLD 4001, Australia.

Centre for Agriculture and the Bioeconomy, Queensland University of Technology, Brisbane, QLD 4001, Australia.

出版信息

Insects. 2022 May 10;13(5):451. doi: 10.3390/insects13050451.

Abstract

The larvae of frugivorous tephritid fruit flies feed within fruit and are global pests of horticulture. With the reduced use of pesticides, alternative control methods are needed, of which fruit resistance is one. In the current study, we explicitly tested for phenotypic evidence of induced fruit defences by running concurrent larval survival experiments with fruit on or off the plant, assuming that defence induction would be stopped or reduced by fruit picking. This was accompanied by RT-qPCR analysis of fruit defence and insect detoxification gene expression. Our fruit treatments were picking status (unpicked vs. picked) and ripening stage (colour break vs. fully ripe), our fruit fly was the polyphagous , and larval survival was assessed through destructive fruit sampling at 48 and 120 h, respectively. The gene expression study targeted larval and fruit tissue samples collected at 48 h and 120 h from picked and unpicked colour-break fruit. At 120 h in colour-break fruit, larval survival was significantly higher in the picked versus unpicked fruit. The gene expression patterns in larval and plant tissue were not affected by picking status, but many putative plant defence and insect detoxification genes were upregulated across the treatments. The larval survival results strongly infer an induced defence mechanism in colour-break tomato fruit that is stronger/faster in unpicked fruits; however, the gene expression patterns failed to provide the same clear-cut treatment effect. The lack of conformity between these results could be related to expression changes in unsampled candidate genes, or due to critical changes in gene expression that occurred during the unsampled periods.

摘要

植食性实蝇的幼虫在果实内部取食,是全球园艺业的害虫。随着农药使用量的减少,需要替代控制方法,其中果实抗性就是一种方法。在当前的研究中,我们通过对果实留在植株上或采摘下来的情况同时进行幼虫存活实验,明确测试了诱导果实防御的表型证据,假定果实采摘会停止或减少防御诱导。同时还对果实防御和昆虫解毒基因表达进行了逆转录定量聚合酶链反应(RT-qPCR)分析。我们的果实处理因素是采摘状态(未采摘与已采摘)和成熟阶段(开始变色与完全成熟),我们使用的实蝇是多食性的,分别在48小时和120小时通过对果实进行破坏性取样来评估幼虫的存活率。基因表达研究针对的是在48小时和120小时从已采摘和未采摘的开始变色果实中收集的幼虫和果实组织样本。在开始变色的果实中,120小时时,已采摘果实中的幼虫存活率显著高于未采摘果实。幼虫和植物组织中的基因表达模式不受采摘状态的影响,但在所有处理中,许多假定的植物防御和昆虫解毒基因都上调了。幼虫存活结果有力地推断出开始变色的番茄果实中存在诱导防御机制,且在未采摘果实中更强/更快;然而,基因表达模式未能提供同样明确的处理效果。这些结果之间缺乏一致性可能与未采样的候选基因的表达变化有关,或者是由于在未采样期间发生的基因表达的关键变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1fe2/9146954/491db7ebcc40/insects-13-00451-g001.jpg

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