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The First Step of Gibberellin Biosynthesis in Pumpkin Is Catalyzed by at Least Two Copalyl Diphosphate Synthases Encoded by Differentially Regulated Genes

机译:南瓜中赤霉素生物合成的第一步是 至少由的编码的两个钴基二磷酸合酶催化 差异调控基因

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摘要

The first step in gibberellin biosynthesis is catalyzed by copalyl diphosphate synthase (CPS) and ent-kaurene synthase. We have cloned from pumpkin (Cucurbita maxima L.) two cDNAs, CmCPS1 and CmCPS2, that each encode a CPS. Both recombinant fusion CmCPS proteins were active in vitro. CPS are translocated into plastids and processed by cleavage of transit peptides. For CmCPS1 and CmCPS2, the putative transit peptides cannot exceed the first 99 and 107 amino acids, respectively, because longer N-terminal deletions abolished activity. Levels of both CmCPS transcripts were strictly regulated in an organ-specific and developmental manner. Both transcripts were almost undetectable in leaves and were abundant in petioles. CmCPS1 transcript levels were high in young cotyledons and low in roots. In contrast, CmCPS2 transcripts were undetectable in cotyledons but present at significant levels in roots. In hypocotyls, apices, and petioles, CmCPS1 transcript levels decreased with age much more rapidly than those of CmCPS2. We speculate that CmCPS1 expression is correlated with the early stages of organ development, whereas CmCPS2 expression is correlated with subsequent growth. In contrast, C. maxima ent-kaurene synthase transcripts were detected in every organ at almost constant levels. Thus, ent-kaurene biosynthesis may be regulated through control of CPS expression.
机译:赤霉素生物合成的第一步是由椰油酰二磷酸合酶(CPS)和对映体-月桂烯合酶催化的。我们从南瓜(南瓜最大)中克隆了两个cDNA,分别为CmCPS1和CmCPS2,每个cDNA均编码一个CPS。两种重组融合CmCPS蛋白在体外均具有活性。 CPS易位到质体中,并通过切割转运肽进行加工。对于CmCPS1和CmCPS2,假定的转运肽不能分别超过前99个和107个氨基酸,因为更长的N末端删除会取消活性。两种CmCPS转录本的水平均以器官特异性和发育方式严格调控。两种转录本在叶中几乎都检测不到,并且在叶柄中含量丰富。 CmCPS1转录水平在幼子叶中较高,在根中较低。相反,在子叶中无法检测到CmCPS2转录本,但在根中却存在显着水平。在下胚轴,顶部和叶柄中,CmCPS1转录水平随年龄的增长比CmCPS2下降的快得多。我们推测,CmCPS1表达与器官发育的早期阶段有关,而CmCPS2表达与随后的生长有关。相比之下,在每个器官中都以几乎恒定的水平检测到了最大梭状芽孢杆菌-kaurene合酶转录物。因此,可以通过控制CPS表达来调节对-天花香烯的生物合成。

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