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番茄编码 YUCCA 样黄素单加氧酶的基因结构和时空表达谱:ToFZY 基因家族。

Gene structure and spatiotemporal expression profile of tomato genes encoding YUCCA-like flavin monooxygenases: the ToFZY gene family.

机构信息

Instituto de Productos Naturales y Agrobiología - CSIC, Avda. Astrofísico Francisco Sánchez 3, P.O. Box 195, 38206 La Laguna, Tenerife, Canary Islands, Spain.

出版信息

Plant Physiol Biochem. 2011 Jul;49(7):782-91. doi: 10.1016/j.plaphy.2011.02.022. Epub 2011 Mar 3.

DOI:10.1016/j.plaphy.2011.02.022
PMID:21435892
Abstract

The flavin monooxygenases (FMO) encoded by plant YUCCA genes are thought to catalyze a rate-limiting step in the tryptamine pathway for indole-3-acetic acid biosynthesis. Recent experiments with different plant models have indicate that YUCCA genes play essential roles in growth and development through their contribution to the local pool of free auxin. In this study we have characterized five new genes that encode YUCCA-like FMOs in the tomato genome (ToFZY2 to ToFZY6), including gene structure, conserved motifs and phylogenetic analyses. As a first step towards clarifying the individual functions of ToFZY genes, we have used quantitative real-time RT-PCR to conduct a systematic comparison of the steady-state mRNA levels of 6 ToFZY genes, in 33 samples representing major organs and the entire tomato life cycle. We followed an absolute quantification strategy which allowed us to cross-compare transcript levels among different ToFZY genes in a given spatiotemporal coordinate. Our results indicate that expression of ToFZY genes is temporally and spatially regulated, and that the distinctive expression pattern of each ToFZY gene partially overlaps with other members of the multigenic family. We compare our data with previous results in other plant species and make some predictions about the role of tryptamine pathway in tomato growth and development.

摘要

植物 YUCCA 基因编码的黄素单加氧酶(FMO)被认为催化吲哚-3-乙酸生物合成中色胺途径的限速步骤。最近使用不同植物模型的实验表明,YUCCA 基因通过对游离生长素局部池的贡献,在生长和发育中发挥重要作用。在这项研究中,我们在番茄基因组中鉴定了五个新的编码 YUCCA 样 FMO 的基因(ToFZY2 至 ToFZY6),包括基因结构、保守基序和系统发育分析。作为阐明 ToFZY 基因个体功能的第一步,我们使用定量实时 RT-PCR 对 33 个代表主要器官和整个番茄生命周期的样本中的 6 个 ToFZY 基因的稳定态 mRNA 水平进行了系统比较。我们采用了绝对定量策略,允许我们在给定的时空坐标中比较不同 ToFZY 基因的转录水平。我们的结果表明,ToFZY 基因的表达受到时间和空间的调节,并且每个 ToFZY 基因的独特表达模式与多基因家族的其他成员部分重叠。我们将我们的数据与其他植物物种的先前结果进行了比较,并对色胺途径在番茄生长和发育中的作用做出了一些预测。

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