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小麦基因编码的一种籽粒特异性脂转移蛋白 TdPR61 的特性及其在小麦、大麦和水稻中的启动子活性。

Characterization of the wheat gene encoding a grain-specific lipid transfer protein TdPR61, and promoter activity in wheat, barley and rice.

机构信息

Australian Centre for Plant Functional Genomics, University of Adelaide, South Australia, Australia.

出版信息

J Exp Bot. 2012 Mar;63(5):2025-40. doi: 10.1093/jxb/err409. Epub 2012 Jan 2.

Abstract

The TaPR61 gene from bread wheat encodes a lipid transfer protein (LTP) with a hydrophobic signal peptide, predicted to direct the TaPR61 protein to the apoplast. Modelling of TaPR61 revealed the presence of an internal cavity which can accommodate at least two lipid molecules. The full-length gene, including the promoter sequence of a TaPR61 orthologue, was cloned from a BAC library of Triticum durum. Quantitative RT-PCR analysis revealed the presence of TaPR61 and TdPR61 mainly in grain. A transcriptional TdPR61 promoter-GUS fusion was stably transformed into wheat, barley, and rice. The strongest GUS expression in all three plants was found in the endosperm transfer cells, the embryo surrounding region (ESR), and in the embryo. The promoter is strong and has similar but not identical spatial patterns of activity in wheat, barley, and rice. These results suggest that the TdPR61 promoter will be a useful tool for improving grain quality by manipulating the quality and quantity of nutrient/lipid uptake to the endosperm and embryo. Mapping of regions important for the promoter function using transient expression assays in developing embryos resulted in the identification of two segments important for promoter activation in embryos. The putative cis-elements from the distal segment were used as bait in a yeast 1-hybrid (Y1H) screen of a cDNA library prepared from the liquid part of the wheat multinucleate syncytium. A transcription factor isolated in the screen is similar to BES1/BLZ1 from Arabidopsis, which is known to be a key transcriptional regulator of the brassinosteroid signalling pathway.

摘要

来自普通小麦的 TaPR61 基因编码一个带有疏水性信号肽的脂质转移蛋白(LTP),该蛋白被预测能将 TaPR61 蛋白导向质外体。TaPR61 的建模揭示了一个内部腔的存在,该腔可以容纳至少两个脂质分子。全长基因,包括 TaPR61 同源物的启动子序列,是从硬粒小麦的 BAC 文库中克隆的。定量 RT-PCR 分析显示 TaPR61 和 TdPR61 主要存在于谷物中。一个完整的 TdPR61 启动子-GUS 融合基因被稳定转化到小麦、大麦和水稻中。在这三种植物中,最强的 GUS 表达都在胚乳转移细胞、胚周围区域(ESR)和胚中发现。该启动子活性较强,在小麦、大麦和水稻中的活性模式相似但不完全相同。这些结果表明,TdPR61 启动子将成为通过操纵营养/脂质对胚乳和胚的吸收质量和数量来改善谷物品质的有用工具。使用发育中的胚胎中的瞬时表达测定来映射对启动子功能重要的区域,导致鉴定出两个对胚胎中启动子激活重要的片段。来自远端片段的假定顺式元件被用作来自小麦多核合胞体液体部分制备的 cDNA 文库的酵母 1 杂交(Y1H)筛选的诱饵。筛选中分离出的转录因子与拟南芥中的 BES1/BLZ1 相似,BES1/BLZ1 是油菜素甾醇信号通路的关键转录调节因子。

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