Fujian Key Laboratory for Monitoring and Integrated Management of Crop Pests, Institute of Plant Protection, Fujian Academy of Agricultural Sciences, Fuzhou, Fujian 350013, PR China.
Fujian Key Laboratory for Monitoring and Integrated Management of Crop Pests, Institute of Plant Protection, Fujian Academy of Agricultural Sciences, Fuzhou, Fujian 350013, PR China.
J Invertebr Pathol. 2020 Mar;171:107343. doi: 10.1016/j.jip.2020.107343. Epub 2020 Feb 11.
Gynaikothrips uzeli gall thrips are protected from insecticide exposure by their leaf gall habitat. A biocontrol strategy based on entomopathogenic fungi is an alternative approach for the control of G. uzeli. Higher temperatures can promote the reproduction and spread of pests; however, the impact of higher temperatures on biological control is unclear. We studied the immunocompetence of thrips from different latitudes and determined the effect of degree days on thrips immunity. We examined the potential impact of temperature on the biocontrol provided by entomopathogenic fungi. Beauveria bassiana pathogenicity against thrips increased with decreasing latitude, suggesting that immunity of thrips increased as latitude increased. The phenoloxidase activity of G. uzeli increased with increasing latitude but there was no significant change in hemocyte concentration. This indicated that the humoral immunity of thrips was significantly associated with degree days, and this was confirmed by transcriptome data. Transcriptome and RT-PCR results showed that the expression of key genes in eight toll pathways increased with increasing latitude. The relative expression of key genes in the Toll pathway of thrips and the activity of phenoloxidase decreased with increasing degree days that are characteristic of lower latitudes. These changes led to a decrease in humoral immunity. The immunity of G. uzeli against entomopathogenic fungi increased as degree days characteristic of lower latitudes decreased. Increased temperatures associated with lower latitude may therefore increase biocontrol efficacy. This study clarified immune level changes and molecular mechanisms of thrips under different degree days.
叶瘿缨小蜂通过其叶瘿生境免受杀虫剂暴露的影响。基于昆虫病原真菌的生物防治策略是控制 G.uzeli 的另一种方法。较高的温度可以促进害虫的繁殖和传播;然而,较高温度对生物防治的影响尚不清楚。我们研究了来自不同纬度的蓟马的免疫能力,并确定了度日数对蓟马免疫力的影响。我们研究了温度对昆虫病原真菌提供的生物防治的潜在影响。球孢白僵菌对蓟马的致病性随着纬度的降低而增加,这表明随着纬度的增加,蓟马的免疫力也增加。G.uzeli 的酚氧化酶活性随着纬度的增加而增加,但血淋巴浓度没有明显变化。这表明蓟马的体液免疫与度日数有显著的相关性,这一点也得到了转录组数据的证实。转录组和 RT-PCR 结果表明,8 条 Toll 途径中的关键基因的表达随着纬度的增加而增加。随着代表较低纬度的度日数的增加,Toll 途径中关键基因的相对表达和酚氧化酶的活性下降,导致体液免疫下降。G.uzeli 对昆虫病原真菌的免疫力随着代表较低纬度的度日数的减少而增加。因此,与较低纬度相关的较高温度可能会增加生物防治效果。本研究阐明了不同度日数下蓟马的免疫水平变化和分子机制。