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人工饲料可以控制捕食性瓢虫的生殖发育状态,并有望用于其货架期管理。

Artificial diets can manipulate the reproductive development status of predatory ladybird beetles and hold promise for their shelf-life management.

作者信息

Zhu Li, Chen Xin, Lv Jia, Huang Zhendong, Pu Zhanxu, Liu Shunmin

机构信息

The Citrus Research Institute of Zhejiang Province, Taizhou, 318000, PR China.

Key Laboratory of Fruit and Vegetable Function and Health Research of Taizhou, Taizhou, 318000, PR China.

出版信息

Heliyon. 2024 Apr 17;10(9):e29836. doi: 10.1016/j.heliyon.2024.e29836. eCollection 2024 May 15.

Abstract

With the development of biological control methods, the predatory ladybird beetle Pallas (Coleoptera: Coccinellidae) has been widely used for pest control in agricultural production. Appropriate shelf-life management strategies could synchronize production with pest outbreaks, finally improving the effectiveness of biological control. Herein, we preliminarily explored whether an artificial diet could optimize the shelf-life management of . We compared the survival rate, nutrition accumulation, reproductive development, juvenile hormone (JH) related-gene expression levels, and stress resistance gene expression levels between aphid-fed and artificial diet-fed females. The results revealed that females maintained a high survival rate after being fed an artificial diet for 60 days, whereas the survival rate of aphid-fed females decreased. Continuous feeding of the artificial diet caused females to enter a diapause-like state, which was characterized by low JH levels, high triglycerides and trehalose accumulation, ovarian development inhibition, decreased expression levels, and increased stress resistance gene expression levels. This diapause-like state could be promptly recovered upon transferring to an aphid diet. These results indicate that the artificial diet could manipulate the reproductive development status of and lay the foundation for its shelf-life management.

摘要

随着生物防治方法的发展,捕食性瓢虫(鞘翅目:瓢虫科)已在农业生产中广泛用于害虫防治。适当的保质期管理策略可以使生产与害虫爆发同步,最终提高生物防治的效果。在此,我们初步探讨了人工饲料是否可以优化[瓢虫名称未给出]的保质期管理。我们比较了以蚜虫为食和以人工饲料为食的[瓢虫名称未给出]雌性之间的存活率、营养积累、生殖发育、保幼激素(JH)相关基因表达水平和抗逆基因表达水平。结果表明,[瓢虫名称未给出]雌性在喂食人工饲料60天后保持较高的存活率,而以蚜虫为食的雌性存活率下降。持续喂食人工饲料导致[瓢虫名称未给出]雌性进入类似滞育的状态,其特征是保幼激素水平低、甘油三酯和海藻糖积累高、卵巢发育受抑制、[基因名称未给出]表达水平降低以及抗逆基因表达水平增加。转移到蚜虫饲料后,这种类似滞育的状态可以迅速恢复。这些结果表明,人工饲料可以控制[瓢虫名称未给出]的生殖发育状态,并为其保质期管理奠定基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/511a/11064149/b0bbd5654bac/ga1.jpg

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