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Overexpression of Poplar Xylem Sucrose Synthase in Tobacco Leads to a Thickened Cell Wall and Increased Height

机译:烟草中杨木木质部蔗糖合酶的过表达导致细胞壁增厚和高度增加

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摘要

Sucrose synthase (SuSy) is considered the first key enzyme for secondary growth because it is a highly regulated cytosolic enzyme that catalyzes the reversible conversion of sucrose and UDP into UDP-glucose and fructose. Although SuSy enzymes preferentially functions in the direction of sucrose cleavage at most cellular condition, they also catalyze the synthetic reaction. We isolated a gene that encodes a SuSy from Populus simonii×Populus nigra and named it PsnSuSy2 because it shares high similarity to SuSy2 in Populus trichocarpa. RT-PCR revealed that PsnSuSy2 was highly expressed in xylem, but lowly expressed in young leaves. To characterize its functions in secondary growth, multiple tobacco overexpression transgenic lines of PnsSuSy2 were generated via Agrobacterium-mediated transformation. The PsnSuSy2 expression levels and altered wood properties in stem segments from the different transgenic lines were carefully characterized. The results demonstrated that the levels of PsnSuSy2 enzyme activity, chlorophyll content, total soluble sugars, fructose and glucose increased significantly, while the sucrose level decreased significantly. Consequently, the cellulose content and fiber length increased, whereas the lignin content decreased, suggesting that PsnSuSy2 plays a significant role in cleaving sucrose into UDP-glucose and fructose to facilitate cellulose biosynthesis and that promotion of cellulose biosynthesis suppresses lignin biosynthesis. Additionally, the noticeable increase in the lodging resistance in transgenic tobacco stem suggested that the cell wall characteristics were altered by PsnSuSy2 overexpression. Scanning electron microscopy was performed to study the cell wall morphology of stem, and surprisingly, we found that the secondary cell wall was significantly thicker in transgenic tobacco. However, the thickened secondary cell wall did not negatively affect the height of the plants because the PsnSuSy2- overexpressing lines grew taller than the wildtype plants. This systematic analysis demonstrated that PsnSuSy2 plays an important role in cleaving sucrose coupled with cellulose biosynthesis in wood tissue.
机译:蔗糖合酶(SuSy)被认为是二次生长的第一个关键酶,因为它是一种高度调控的胞质酶,可催化蔗糖和UDP可逆转化为UDP-葡萄糖和果糖。尽管SuSy酶在大多数细胞条件下均优先在蔗糖裂解的方向上起作用,但它们也催化合成反应。我们从小杨(Populus simonii)×黑杨(Populus nigra)分离了一个编码SuSy的基因,并将其命名为PsnSuSy2,因为它与毛果杨(Populus trichocarpa)的SuSy2具有高度相似性。 RT-PCR显示PsnSuSy2在木质部中高表达,而在幼叶中低表达。为了表征其在次级生长中的功能,通过农杆菌介导的转化产生了多个烟草过表达的PnsSuSy2转基因株系。仔细表征了来自不同转基因品系的茎段中PsnSuSy2的表达水平和木材性质的变化。结果表明,PsnSuSy2酶活性,叶绿素含量,总可溶性糖,果糖和葡萄糖水平显着增加,而蔗糖水平显着下降。因此,纤维素含量和纤维长度增加,而木质素含量降低,表明PsnSuSy2在将蔗糖切割成UDP-葡萄糖和果糖以促进纤维素生物合成中起重要作用,并且促进纤维素生物合成抑制了木质素生物合成。此外,转基因烟草茎中抗倒伏能力的显着提高表明,PsnSuSy2过表达改变了细胞壁的特性。进行扫描电子显微镜研究茎的细胞壁形态,并且令人惊讶地,我们发现转基因烟草中的次级细胞壁明显更厚。但是,增厚的二次细胞壁不会对植物的高度产生负面影响,因为过表达PsnSuSy2的品系比野生型植物高。该系统分析表明,PsnSuSy2在裂解蔗糖和木质组织中纤维素生物合成方面起着重要作用。

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