Dai Lulu, Ma Mingyuan, Wang Chunyan, Shi Qi, Zhang Ranran, Chen Hui
College of Forestry, Northwest A&F University, Yangling, Shaanxi, 712100, China.
College of Forestry, Northwest A&F University, Yangling, Shaanxi, 712100, China.
Insect Biochem Mol Biol. 2015 Oct;65:35-46. doi: 10.1016/j.ibmb.2015.08.004. Epub 2015 Aug 28.
Bark beetles oxidize the defensive allelochemicals from their host trees to both detoxify and convert these materials into components of their pheromone system. The ability of this insect to adapt to its chemical environment might be explained by the action of major detoxification enzymes such as cytochrome P450s (or CYPs). Sixty-four sequences coding for P450s were identified, and most of the transcripts were found to be expressed in the larvae, pupae and adults of Dendroctonus armandi. To gain information on how these genes help D. armandi overcome the host defense, differential transcript levels of the CYP genes were observed between sexes and within the sexes. Significant differences were observed among developmental stages, in feeding on the phloem of Pinus armandi and in exposure to stimuli ((±)-α-pinene, (S)-(-)-α-pinene, (S)-(-)-β-pinene, (+)-3-carene, (±)-limonene and turpentine oil) for 8 h. We investigated the effect of sex and generations on the survivorship of individual D. armandi that were exposed to host volatiles at concentrations comparable to constitutive and induced levels of defense using fumigant exposure to understand the ability of the beetles to tolerate host defensive chemicals. The differential transcript accumulation patterns of CYP genes of these bark beetle provided insight into the ecological interactions of D. armandi with its host pine.
小蠹虫会氧化来自其寄主树木的防御性化感物质,以实现解毒并将这些物质转化为其信息素系统的组成部分。这种昆虫适应其化学环境的能力可能可以通过主要解毒酶(如细胞色素P450,或CYPs)的作用来解释。我们鉴定出了64个编码P450的序列,并且发现大多数转录本在华山松大小蠹的幼虫、蛹和成虫中表达。为了了解这些基因如何帮助华山松大小蠹克服寄主防御,我们观察了CYP基因在不同性别之间以及性别内部的转录水平差异。在发育阶段、取食华山松韧皮部以及暴露于刺激物((±)-α-蒎烯、(S)-(-)-α-蒎烯、(S)-(-)-β-蒎烯、(+)-3-蒈烯、(±)-柠檬烯和松节油)8小时后,均观察到了显著差异。我们研究了性别和世代对暴露于与组成型和诱导型防御水平相当浓度的寄主挥发物下的华山松大小蠹个体存活率的影响,通过熏蒸暴露来了解这些甲虫耐受寄主防御性化学物质的能力。这些小蠹虫CYP基因的差异转录积累模式为华山松大小蠹与其寄主松树之间的生态相互作用提供了见解。