首页> 外文期刊>Plant Biotechnology Journal >Over?¢????expression of specific HvCslF cellulose synthase?¢????like genes in transgenic barley increases the levels of cell wall (1,3;1,4)?¢???????2?¢???? d ?¢????glucans and alters their fine structure
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Over?¢????expression of specific HvCslF cellulose synthase?¢????like genes in transgenic barley increases the levels of cell wall (1,3;1,4)?¢???????2?¢???? d ?¢????glucans and alters their fine structure

机译:在转基因大麦中过量表达特定的HvCslF纤维素合酶类似基因会增加细胞壁的水平(1,3; 1,4)2。 ¢ ???? d葡聚糖并改变其精细结构

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Cell walls in commercially important cereals and grasses are characterized by the presence of (1,3;1,4)?¢???????2?¢???? d ?¢????glucans. These polysaccharides are beneficial constituents of human diets, where they can reduce the risk of hypercholesterolemia, type II diabetes, obesity and colorectal cancer. The biosynthesis of cell wall (1,3;1,4)?¢???????2?¢???? d ?¢????glucans in the Poaceae is mediated, in part at least, by the cellulose synthase?¢????like CslF family of genes. Over?¢????expression of the barley CslF6 gene under the control of an endosperm?¢????specific oat globulin promoter results in increases of more than 80% in (1,3;1,4)?¢???????2?¢???? d ?¢????glucan content in grain of transgenic barley. Analyses of (1,3;1,4)?¢???????2?¢???? d ?¢????glucan fine structure indicate that individual CslF enzymes might direct the synthesis of (1,3;1,4)?¢???????2?¢???? d ?¢????glucans with different structures. When expression of the CslF6 transgene is driven by the Pro35S promoter, the transgenic lines have up to sixfold higher levels of (1,3;1,4)?¢???????2?¢???? d ?¢????glucan in leaves, but similar levels as controls in the grain. Some transgenic lines of Pro35S: CslF4 also show increased levels of (1,3;1,4)?¢???????2?¢???? d ?¢????glucans in grain, but not in leaves. Thus, the effects of CslF genes on (1,3;1,4)?¢???????2?¢???? d ?¢????glucan levels are dependent not only on the promoter used, but also on the specific member of the CslF gene family that is inserted into the transgenic barley lines. Altering (1,3;1,4)?¢???????2?¢???? d ?¢????glucan levels in grain and vegetative tissues will have potential applications in human health, where (1,3;1,4)?¢???????2?¢???? d ?¢????glucans contribute to dietary fibre, and in tailoring the composition of biomass cell walls for the production of bioethanol from cereal crop residues and grasses.
机译:商业上重要的谷物和草的细胞壁的特征在于存在(1,3; 1,4)2。 d葡聚糖。这些多糖是人类饮食的有益成分,可以降低高胆固醇血症,II型糖尿病,肥胖症和结直肠癌的风险。细胞壁(1,3; 1,4)的生物合成禾本科中的d-葡聚糖是至少部分地由纤维素合酶样CslF家族基因介导的。大麦CslF6基因在胚乳特异性燕麦球蛋白启动子控制下的过度表达导致(1,3; 1,4)Δ¢的增加超过80%。 ?????? 2?¢ ???? d转基因大麦籽粒中葡聚糖的含量。分析(1,3; 1,4)?¢ ?????????? 2?¢ ???? d葡聚糖的精细结构表明单个CslF酶可能指导(1,3; 1,4)的合成(2,3)。 d具有不同结构的葡聚糖。当CslF6转基因的表达由Pro35S启动子驱动时,转基因品系的(1,3; 1,4)具有高达六倍的高水平。 d叶片中的葡聚糖,但水平与谷物中的对照相似。 Pro35S:CslF4的某些转基因品系还显示出(1,3; 1,4)?2的水平升高。 d谷物中的葡聚糖,而不是叶片中的葡聚糖。因此,CslF基因对(1,3; 1,4)→2→3→3的作用。 dβ-葡聚糖的水平不仅取决于所用的启动子,还取决于插入转基因大麦系的CslF基因家族的特定成员。改变(1,3; 1,4)?¢ ????????? 2?¢ ???? d谷物和营养组织中的葡聚糖水平将对人类健康有潜在的应用,其中(1,3; 1,4)?2?¢ ???? d-葡聚糖对膳食纤维有帮助,并有助于调整生物量细胞壁的组成,以便从谷类作物的残留物和草中生产生物乙醇。

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