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TaMYB13-1,一种 R2R3 MYB 转录因子,调控着果糖合成途径,有助于提高面包小麦中果糖的积累。

TaMYB13-1, a R2R3 MYB transcription factor, regulates the fructan synthetic pathway and contributes to enhanced fructan accumulation in bread wheat.

机构信息

CSIRO Plant Industry, 306 Carmody Rd., St Lucia, Brisbane, Qld 4067, Australia.

出版信息

J Exp Bot. 2013 Sep;64(12):3681-96. doi: 10.1093/jxb/ert205. Epub 2013 Jul 19.

Abstract

Fructans are the major component of temporary carbon reserve in the stem of temperate cereals, which is used for grain filling. Three families of fructosyltransferases are directly involved in fructan synthesis in the vacuole of Triticum aestivum. The regulatory network of the fructan synthetic pathway is largely unknown. Recently, a sucrose-upregulated wheat MYB transcription factor (TaMYB13-1) was shown to be capable of activating the promoter activities of sucrose:sucrose 1-fructosyltransferase (1-SST) and sucrose:fructan 6-fructosyltransferase (6-SFT) in transient transactivation assays. This work investigated TaMYB13-1 target genes and their influence on fructan synthesis in transgenic wheat. TaMYB13-1 overexpression resulted in upregulation of all three families of fructosyltransferases including fructan:fructan 1-fructosyltransferase (1-FFT). A γ-vacuolar processing enzyme (γ-VPE1), potentially involved in processing the maturation of fructosyltransferases in the vacuole, was also upregulated by TaMYB13-1 overexpression. Multiple TaMYB13 DNA-binding motifs were identified in the Ta1-FFT1 and Taγ-VPE1 promoters and were bound strongly by TaMYB13-1. The expression profiles of these target genes and TaMYB13-1 were highly correlated in recombinant inbred lines and during stem development as well as the transgenic and non-transgenic wheat dataset, further supporting a direct regulation of these genes by TaMYB13-1. TaMYB13-1 overexpression in wheat led to enhanced fructan accumulation in the leaves and stems and also increased spike weight and grain weight per spike in transgenic plants under water-limited conditions. These data suggest that TaMYB13-1 plays an important role in coordinated upregulation of genes necessary for fructan synthesis and can be used as a molecular tool to improve the high fructan trait.

摘要

果聚糖是温带谷物茎中临时碳储备的主要成分,用于谷物灌浆。三种果糖基转移酶家族直接参与小麦液泡中果聚糖的合成。果糖合成途径的调控网络在很大程度上是未知的。最近,一种蔗糖上调的小麦 MYB 转录因子(TaMYB13-1)被证明能够在瞬时转激活测定中激活蔗糖:蔗糖 1-果糖基转移酶(1-SST)和蔗糖:果聚糖 6-果糖基转移酶(6-SFT)启动子的活性。这项工作研究了 TaMYB13-1 的靶基因及其对转基因小麦中果聚糖合成的影响。TaMYB13-1 的过表达导致三种果糖基转移酶家族的上调,包括果聚糖:果聚糖 1-果糖基转移酶(1-FFT)。γ-液泡加工酶(γ-VPE1)也被 TaMYB13-1 过表达上调,可能参与果糖基转移酶在液泡中的成熟加工。在 Ta1-FFT1 和 Taγ-VPE1 启动子中鉴定出多个 TaMYB13 DNA 结合基序,并被 TaMYB13-1 强烈结合。这些靶基因和 TaMYB13-1 的表达谱在重组自交系和茎发育过程中以及转基因和非转基因小麦数据集高度相关,进一步支持这些基因受 TaMYB13-1 的直接调控。在小麦中过表达 TaMYB13-1 导致叶片和茎中的果聚糖积累增加,在水分限制条件下,转基因植株的穗重和每穗粒重也增加。这些数据表明,TaMYB13-1 在协调上调果糖合成所需基因方面发挥重要作用,可作为提高高果聚糖特性的分子工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/150b/3745729/1b8310a597a4/exbotj_ert205_f0001.jpg

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