Qu Liangjian, Wang Lijuan, Wang Qinghua, Wang Yuzhu, Zhang Yongan
Key Laboratory of Forest Protection, State Forestry Administration, Research Institute of Forest Ecology, Environment and Protection, Chinese Academy of Forestry, Haidian District, Beijing 100091, China.
State Key Laboratory of Tree Genetics and Breeding, Research Institute of Forestry, Chinese Academy of Forestry, Haidian District, Beijing 100091, China.
Int J Mol Sci. 2014 Jun 16;15(6):10806-20. doi: 10.3390/ijms150610806.
A high-level of sexual sterility is of importance for the sterile insect technique (SIT). However, the use of high-dose-intensity gamma radiation to induce sterility has negative impacts not only on reproductive cells but also on somatic cells. In this study, we investigated the metabolite differences in somatic tissues between non-irradiated, 20-Gy-irradiated, and 40-Gy-irradiated male Monochamus alternatus, an important vector of the pathogenic nematode, Bursaphelenchus xylophilus, which kills Asian pines. The results showed that metabolite levels changed moderately in the 20-Gy samples but were markedly altered in the 40-Gy samples compared with the non-irradiated samples. Twenty-six and 53 metabolites were disturbed by 20-Gy and 40-Gy radiation, respectively. Thirty-six metabolites were found to be markedly altered in the 40-Gy samples but were not changed significantly in the 20-Gy samples. The comprehensive metabolomic disorders induced by 40-Gy radiation dysregulated six metabolic pathways involved in the life process. The findings presented in this manuscript will contribute to our knowledge of the characteristic metabolic changes associated with gamma-radiation-induced damage to somatic cells and will allow for better exploration of the SIT for the control of this target pest.
高度的性不育对于昆虫不育技术(SIT)至关重要。然而,使用高剂量强度的伽马辐射诱导不育不仅会对生殖细胞产生负面影响,还会对体细胞产生负面影响。在本研究中,我们调查了未辐照、20戈瑞辐照和40戈瑞辐照的雄性松墨天牛(一种致病性线虫——松材线虫的重要传播媒介,松材线虫会导致亚洲松树死亡)体细胞组织中的代谢物差异。结果表明,与未辐照样本相比,20戈瑞样本中的代谢物水平有适度变化,但40戈瑞样本中的代谢物水平则有显著改变。20戈瑞和40戈瑞辐射分别干扰了26种和53种代谢物。发现有36种代谢物在40戈瑞样本中有显著改变,但在20戈瑞样本中没有明显变化。40戈瑞辐射引起的综合代谢紊乱使参与生命过程的6条代谢途径失调。本论文中的研究结果将有助于我们了解与伽马辐射诱导的体细胞损伤相关的特征性代谢变化,并有助于更好地探索利用昆虫不育技术来防治这种目标害虫。