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首页> 外文期刊>Journal of Plant Growth Regulation >Cloning and biochemical characterization of ToFZY, a tomato gene encoding a flavin monooxygenase involved in a tryptophan-dependent auxin biosynthesis pathway.
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Cloning and biochemical characterization of ToFZY, a tomato gene encoding a flavin monooxygenase involved in a tryptophan-dependent auxin biosynthesis pathway.

机译:ToFZY的克隆和生化特征,ToFZY是一种番茄黄素基因编码的黄素单加氧酶,参与色氨酸依赖性植物生长素的生物合成途径。

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摘要

Indole-3-acetic acid (IAA), the main endogenous auxin, has been known for decades to be a key regulator for plant growth and development. Multiple routes have been proposed for IAA biosynthesis but physiologic roles or relevance of the different routes are still unclear. Recently, four members of the Arabidopsis thaliana YUC gene family have been implicated in an additional requirement of IAA involved in floral organ and vascular tissue formation. The loss-of-function yuc1yuc4 double mutants in Arabidopsis displayed phenotypes similar to the previously described loss-of-function floozy mutants in petunia (fzy). Moreover, it has been demonstrated that YUC1 encodes a flavin monooxygenase (FMO) that catalyzes a rate-limiting step of a tryptophan-dependent auxin biosynthesis pathway: the conversion of tryptamine to N-hydroxyl-tryptamine. Here we report on the genetic study of ToFZY, the putative tomato ortholog of YUC4 and FZY, including gene and cDNA sequence comparison and a preliminary expression analysis. In addition, we describe a novel conserved amino acid motif that may be considered a hallmark potentially useful for the identification of new YUC-like FMOs. We also demonstrate that ToFZY encodes a protein with the same enzymatic activity as YUC1. Finally, we provide evidence suggesting that the ToFZY gene belongs to a multigenic family whose members may exhibit a temporal and spatial specialization similar to that described in A. thaliana.
机译:主要的内源性生长素吲哚-3-乙酸(IAA)几十年来一直是植物生长发育的关键调节剂。已经提出了用于IAA生物合成的多种途径,但是尚不清楚不同途径的生理作用或相关性。最近,拟南芥YUC基因家族的四个成员已经牵涉到涉及花器官和血管组织形成的IAA的额外要求。拟南芥中功能丧失的yuc1yuc4双重突变体表现出类似于先前描述的矮牵牛中功能丧失的foozy突变体的表型(fzy)。而且,已经证明YUC1编码黄素单加氧酶(FMO),其催化色氨酸依赖性植物生长素生物合成途径的速率限制步骤:色胺向N-羟基色胺的转化。在这里,我们报告了ToFZY的遗传研究,YUC4和FZY的番茄直系同源基因,包括基因和cDNA序列比较和初步表达分析。另外,我们描述了一种新颖的保守氨基酸基序,该基序可以被认为是潜在的可用于识别新的YUC样FMO的标志。我们还证明了ToFZY编码的蛋白具有与YUC1相同的酶促活性。最后,我们提供的证据表明,ToFZY基因属于一个多基因家族,其成员可能表现出与拟南芥中描述的相似的时空特异性。

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