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保幼激素生物合成研究进展 被引量:12

Advances in studies on juvenile hormone biosynthesis
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摘要 保幼激素(juvenile hormone,JH)是存在于昆虫、甲壳动物和部分植物体内的倍半萜类衍生物。在昆虫和甲壳动物体内,保幼激素主要调节变态和生殖活动。在植物体内,则可能作为异株克生物质发挥作用。保幼激素主要通过细胞质内的甲羟戊酸途径(MVA)合成,植物质体内存在萜类合成的1-去氧木糖-5-磷酸途径(DXP)。MVA和DXP途径通过单向质子协同运输系统进行协调,使DXP途径中形成的前体化合物参与MVA途径的倍半萜合成。JH生物合成的主要步骤已基本查明,但与合成相关的酶学研究还较薄弱。生物合成酶的分子生物学是近来研究的热点,相关酶的cDNA克隆已有报道。JH生物合成酶的进一步研究有助于查明JH生物合成调控机制,深化对节肢动物生殖的理解,还可为新型杀虫剂开发提供可能的靶标。 Juvenile hormones(JHs) are a group of sesquiterpenoid derivatives found in insects, crutaceans and some plants. JHs regulate metamorphosis and reproduction in arthropods and may function as an allelopathic agent in the plants. JHs are mainly produced via the cytosolic pathway, which involves mevalonate (MVA) as a key intermediate. The plastidial pathway via 1-deoxy-xylulose 5-phosphate (DXP) has been described from plants. The cooperation of both pathways via a unidirectional proton symport system has been reported for the biosynthesis of certain sesquiterpenes in some plants. Although the biosynthetic pathway of JH has been elucidated, the enzymes related to the pathway are poorly understood. Recent studies have focused on molecular biology of JH biosynthetic enzymes. The cDNA of some enzymes related to JH biosynthesis have been cloned from crustaceans and insects. Further studies on the JH biosynthetic enzymes will help clarify the regulating mechanisms of JH biosynthesis and improve our understanding of the arthropod reproduction. Moreover, the studies will offer a potential target for the development of novel insect control agents.
出处 《生命科学》 CSCD 2007年第1期90-96,共7页 Chinese Bulletin of Life Sciences
基金 国家自然科学基金项目(30271086 30471399) 江苏省高校自然科学研究计划项目(04KJB180053)
关键词 保幼激素 生物合成途径 生物合成酶 juvenile hormone biosynthetic pathway biosynthetic enzymes
作者简介 嵇保中(1956-),男,教授,博士生导师,通讯作者,Tel:025-85427428,E-mail:jbz9885@njfu.edu.cn
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  • 1赵维信,魏华,汪志强,金生仁,周国良.人工诱导罗氏沼虾同步产卵与卵巢组织学研究[J].水产学报,1995,19(4):289-296. 被引量:14
  • 2关雪辰.昆虫神经肽allatostatin与allatotropin的研究新近展[J].昆虫学报,1996,39(2):214-218. 被引量:6
  • 3赵维信,贾江,安苗.外源激素和眼柄提取物对罗氏沼虾卵母细胞的离体诱导作用[J].上海水产大学学报,1996,5(4):221-225. 被引量:24
  • 4徐昌杰 张上隆.The carotenoid biosynthesis ad regulation in plant[J].Plant Physiology Communication:植物生理学通讯,2000,36(1):64-70.
  • 5赵文恩 崔艳红 李艳杰 杨丽.Analysis of carotenoids in different variety of watermelon[J].China Watermelon and Muskmelon,2004,.
  • 6[1]Cane DE. BIOSYNTHETIC PATHWAYS: Biosynthesis Meets Bioinformatics[J]. Science, 2000,287:818
  • 7[2]Lange BM, Rujan T, Matin W, Croteau R. Isoprenoid biosynthesis: the evolution of two ancient and distinct pathways across genomes[J]. Proc Natl Aead Sci U S A, 2000,97(13): 172
  • 8[3]Rohmer M, Knani M, Simonin P, et, al. Isoprenoid biosynthesis in bacteria: a novel pathway for the early steps leading to isopentenyl diphosphate[J]. Biochem J, 1993,295 ( Pt 2) :517
  • 9[4]Rohmer M. The discovery of a mevalonate-independent pathway for isoprenoid biosynthesis in bacteria, algae and higher plants[J]. Nat Prod Rep, 1999,16: 565
  • 10[5]Schwender J, Zeidler J, Groner R,et, al. Incorporation of 1-deoxyD-xylulose into isoprene and phytol by higher plants and algae[J].FEBS Lett, 1997,414:129

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