State Key Laboratory of Rice Biology, Key Laboratory of Molecular Biology of Crop Pathogens and Insects, Ministry of Agriculture, and Institute of Insect Sciences, Zhejiang University, Hangzhou, Zhejiang, 310058, China.
Department of Medicine and Stony Brook Cancer Center, The State University of New York at Stony Brook, Stony Brook, New York, 11794, USA.
Sci Rep. 2018 Jan 18;8(1):1130. doi: 10.1038/s41598-018-19219-y.
Ceramidases (CDases) are vital enzymes involved in the biosynthesis of sphingolipids, which are essential components of eukaryotic membranes. The function of these enzymes in insects, however, is poorly understood. We identified a neutral ceramidase (NlnCDase) from the brown planthopper, Nilaparvata lugens, one of the most destructive hemipteran pests of rice. The C12-ceramide was the most preferred substrate for the NlnCDase enzyme. The activity of the NlnCDase enzyme was highest in the neutral-pH range (pH 6.0). It was inhibited by EGTA, Cs and Fe, while stimulated by EDTA and Ca. Moreover, the NlnCDase has higher transcript level and activity in adults than in eggs and nymphs, and in the reproductive organs (ovaries and spermaries) than in other tissues (i.e. heads, thorax, legs, midguts), which suggested that the NlnCDase might be elevated to mediate developmental process. In addition, transcripts and activity of the NlnCDase were up-regulated under abiotic stresses including starvation, abnormal temperature, and insecticides, and biotic stress of resistant rice varieties. Knocking down NlnCDase by RNA interference increased female survival under starvation and temperature stresses, suggesting that NlnCDase might be involved in the stress response in N. lugens.
神经酰胺酶(CDases)是参与鞘脂类生物合成的重要酶,鞘脂类是真核细胞膜的重要组成部分。然而,这些酶在昆虫中的功能还知之甚少。我们从褐飞虱(Nilaparvata lugens)中鉴定出一种中性神经酰胺酶(NlnCDase),褐飞虱是水稻上最具破坏性的半翅目害虫之一。C12-神经酰胺是 NlnCDase 酶最偏好的底物。该酶的活性在中性 pH 范围内(pH 6.0)最高。它被 EGTA、Cs 和 Fe 抑制,而被 EDTA 和 Ca 刺激。此外,NlnCDase 在成虫中的转录水平和活性高于卵和若虫,在生殖器官(卵巢和精巢)中的转录水平和活性高于其他组织(即头部、胸部、腿部、中肠),这表明 NlnCDase 可能被上调以介导发育过程。此外,NlnCDase 的转录本和活性在非生物胁迫(包括饥饿、异常温度和杀虫剂)和抗虫水稻品种的生物胁迫下上调。通过 RNA 干扰敲低 NlnCDase 可提高褐飞虱在饥饿和温度胁迫下的雌虫存活率,表明 NlnCDase 可能参与褐飞虱的应激反应。