Department of Evolutionary Biology, University of Siena, Italy.
Arch Insect Biochem Physiol. 2010 Feb;73(2):106-17. doi: 10.1002/arch.20344.
Farnesoic acid O-methyl transferase (FAMeT) is the enzyme involved in the penultimate step of insect juvenile hormone (JH) biosynthesis and is thus a key regulator in insect development and reproduction. We report the characterization of the putative-FAMeT in the medfly or Mediterranean fruit fly, Ceratitis capitata. This gene was identified by suppressive subtractive hybridization and completely sequenced by the screening of a medfly cDNA library. The obtained sequence was analyzed for conserved protein domain identification and its expression profile was evaluated by quantitative Real-Time PCR in medfly pre-imaginal life. The tissue expression of the isolated gene was verified by in situ hybridization on third instar larvae sections. The characterization of the isolated gene pointed out several typical features of methyl transferase genes. The pre-imaginal putative-FAMeT expression levels were consistent with JH titer change in Diptera. As recognized in some crustaceans, this gene seems to be widely expressed in the medfly as well. Ceratitis capitata is one of the most relevant agricultural pests against which insecticides and the sterile insect technique (SIT) are extensively used in spite of the well-known limitations of these approaches. Although results are not conclusive for the physiological role of the isolated gene, they suggest the characterization of a new gene in the Mediterranean fruit fly potentially involved in JH biosynthesis and may, therefore, have implications for pest control.
法呢酸 O-甲基转移酶(FAMeT)是参与昆虫保幼激素(JH)生物合成倒数第二步的酶,因此是昆虫发育和繁殖的关键调节剂。我们报道了地中海实蝇或地中海实蝇中假定的 FAMeT 的特征。该基因是通过抑制性消减杂交鉴定的,并通过筛选地中海实蝇 cDNA 文库完全测序。获得的序列用于保守蛋白结构域鉴定的分析,并通过定量实时 PCR 评估其在 medfly 预蛹期的表达谱。通过对第三龄幼虫切片的原位杂交验证了分离基因的组织表达。分离基因的特征指出了甲基转移酶基因的几个典型特征。预蛹期假定的 FAMeT 表达水平与双翅目昆虫 JH 滴度变化一致。与一些甲壳类动物一样,该基因似乎在 medfly 中广泛表达。地中海实蝇是农业上最重要的害虫之一,尽管这些方法存在众所周知的局限性,但仍广泛使用杀虫剂和不育昆虫技术(SIT)来防治它们。尽管对于分离基因的生理作用的结果尚不确定,但它们表明该基因在参与 JH 生物合成的地中海实蝇中具有特征,因此可能对害虫控制具有重要意义。