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首页> 外文期刊>Journal of Experimental Botany >Over-expression of a putative poplar glycosyltransferase gene, PtGT1, in tobacco increases lignin content and causes early flowering
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Over-expression of a putative poplar glycosyltransferase gene, PtGT1, in tobacco increases lignin content and causes early flowering

机译:烟草中推测的杨木糖基转移酶基因PtGT1的过表达增加了木质素的含量并导致早花

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摘要

Family 1 glycosyltransferases catalyse the glycosylation of small molecules and play an important role in maintaining cell homeostasis and regulating plant growth and development. In this study, a putative glycosyltransferase gene of family 1, PtGT1, was cloned from poplar (Populus tomentosa Carr.). Sequence analysis showed that this gene encodes a protein of 481 amino acid residues with a conserved PSPG box at its C-terminal, suggesting that it is active in the glycosylation of plant secondary products. The PtGT1 gene was expressed in poplar stems and leaves, with a particularly high expression level in elongating stems. Transgenic tobacco plants ectopically over-expressing PtGT1 were obtained and phenotypes were analysed. Wiesner and Maule staining showed that stem xylem of transgenic tobacco plants stained more strongly than controls. Measurement of the Klason lignins showed much higher lignin content in the transgenic lines than in control plants. Furthermore, the ectopic over-expression of PtGT1 in tobacco resulted in an early flowering phenotype. These findings offer a possible starting point towards better understanding of the function of poplar PtGT1, and provide a novel strategy for lignin engineering and flowering control in plants through the genetic manipulation of a poplar glycosyltransferase gene.
机译:1族糖基转移酶催化小分子的糖基化,并在维持细胞稳态和调节植物生长发育中起重要作用。在这项研究中,从杨树(Populus tomentosa Carr。)中克隆了家族1 PtGT1的假定糖基转移酶基因。序列分析表明,该基因编码一个481个氨基酸残基的蛋白,在其C端带有一个保守的PSPG盒,这表明它在植物次级产物的糖基化中具有活性。 PtGT1基因在杨树的茎和叶中表达,在伸长的茎中表达特别高。获得异位过表达PtGT1的转基因烟草植物,并分析其表型。 Wiesner和Maule染色表明,转基因烟草植物的茎木质部比对照染色更强烈。对Klason木质素的测量显示,转基因品系中的木质素含量比对照植物高得多。此外,在烟草中异位表达PtGT1导致了早期开花表型。这些发现为更好地了解杨树PtGT1的功能提供了可能的起点,并通过对杨树糖基转移酶基因的遗传操作为植物中的木质素工程化和开花控制提供了新的策略。

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