Yi Jiequn, Liu Jianbai, Li Dunsong, Sun Donglei, Li Jihu, An Yuxing, Wu Han
Guangdong Engineering Research Center for Pesticide and Fertilizer Institute of Bioengineering Guangdong Academy of Sciences Guangzhou China.
Guangdong Provincial Key Laboratory of High Technology for Plant Protection/Plant Protection Research Institute Guangdong Academy of Agricultural Sciences Guangzhou China.
Ecol Evol. 2021 Mar 11;11(9):4816-4825. doi: 10.1002/ece3.7383. eCollection 2021 May.
is a useful species that is widely applied in biocontrol. Temperature profoundly affects the commercial application of . Different developmental transcriptomes of prepupae and pupae of under 10, 25, and 40°C were obtained from our previous study. In this study, transcriptomic analysis was further conducted to gain a clear understanding of the molecular changes in the prepupae of under different thermal conditions. A total of 37,295 unigenes were identified from 3 libraries of prepupae of , 17,293 of which were annotated. Differential expression analysis showed that 408 and 108 differentially expressed genes (DEGs) were identified after heat and cold treatment, respectively. Under heat stress, the pathway of protein processing in endoplasmic reticulum was found to be active. Most of the genes involved in this pathway were annotated as lethal (2) essential for life [] and heat shock protein genes (), which were both highly upregulated. Nevertheless, most of the genes involved in another significantly enriched pathway of starch and sucrose metabolism were downregulated, including 1 alpha-glucosidase gene and 2 beta-glucuronidase genes. Under cold stress, no significantly enriched pathway was found, and the significantly enriched GO terms were related to the interaction with host and immune defenses. Together, these results provide us with a comprehensive view of the molecular mechanisms of in response to temperature stresses and will provide new insight into the mass rearing and utilization of .
是一种广泛应用于生物防治的有用物种。温度对其商业应用有深远影响。我们之前的研究获得了在10℃、25℃和40℃下该物种预蛹和蛹的不同发育转录组。在本研究中,进一步进行转录组分析以清楚了解该物种预蛹在不同热条件下的分子变化。从该物种预蛹的3个文库中总共鉴定出37295个单基因,其中17293个得到注释。差异表达分析表明,热处理和冷处理后分别鉴定出408个和108个差异表达基因(DEG)。在热应激下,发现内质网中的蛋白质加工途径活跃。该途径中涉及的大多数基因被注释为生命必需的致死(2)[]和热休克蛋白基因(),两者均高度上调。然而,参与另一个显著富集的淀粉和蔗糖代谢途径的大多数基因被下调,包括1个α-葡萄糖苷酶基因和2个β-葡萄糖醛酸酶基因。在冷应激下,未发现显著富集的途径,显著富集的GO术语与与宿主的相互作用和免疫防御有关。总之,这些结果为我们提供了该物种响应温度胁迫的分子机制的全面视图,并将为该物种的大规模饲养和利用提供新的见解。