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Influence of Nitrogen Availability on Growth of Two Transgenic Birch Species Carrying the Pine GS1a Gene

机译:氮素供应对携带松树GS1a基因的两种转基因桦树种生长的影响

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摘要

An alternative way to increase plant productivity through the use of nitrogen fertilizers is to improve the efficiency of nitrogen utilization via genetic engineering. The effects of overexpression of pine glutamine synthetase (GS) gene and nitrogen availability on growth and leaf pigment levels of two Betula species were studied. Untransformed and transgenic plants of downy birch (B. pubescens) and silver birch (B. pendula) were grown under open-air conditions at three nitrogen regimes (0, 1, or 10 mM) for one growing season. The transfer of the GS1a gene led to a significant increase in the height of only two transgenic lines of nine B. pubescens, but three of five B. pendula transgenic lines were higher than the controls. In general, nitrogen supply reduced the positive effect of the GS gene on the growth of transgenic birch plants. No differences in leaf pigment levels between control and transgenic plants were found. Nitrogen fertilization increased leaf chlorophyll content in untransformed plants but its effect on most of the transgenic lines was insignificant. The results suggest that birch plants carrying the GS gene use nitrogen more efficiently, especially when growing in nitrogen deficient soil. Transgenic lines were less responsive to nitrogen supply in comparison to wild-type plants.
机译:通过使用氮肥提高植物生产力的另一种方法是通过基因工程提高氮利用效率。研究了过量表达的松木谷氨酰胺合成酶(GS)基因和氮素利用率对两种桦属植物生长和叶片色素水平的影响。未转化的和转基因的霜降桦树(B. pubescens)和白桦树(B. pendula)在露天条件下在三种氮素环境(0、1或10 mM)下生长一个生长季节。 GS1a基因的转移导致仅两个九个耻骨假单胞菌的转基因品系的高度显着增加,但是五个五个假单胞菌转基因品系中的三个比对照高。通常,氮供应降低了GS基因对转基因桦树植物生长的积极作用。在对照植物和转基因植物之间未发现叶色素水平的差异。施氮增加未转化植物的叶片叶绿素含量,但对大多数转基因品系的影响不明显。结果表明,携带GS基因的桦树植物更有效地利用氮,特别是在缺氮土壤中生长时。与野生型植物相比,转基因品系对氮供应的反应较弱。

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