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首页> 外文期刊>Planta: An International Journal of Plant Biology >Comparative study of transgenic Brachypodium distachyon expressing sucrose:fructan 6?fructosyltransferases from wheat and timothy grass with different enzymatic properties
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Comparative study of transgenic Brachypodium distachyon expressing sucrose:fructan 6?fructosyltransferases from wheat and timothy grass with different enzymatic properties

机译:小麦和提摩太草不同酶表达蔗糖:果糖6?果糖基转移酶的转基因短枝曲霉的比较研究

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Fructans can act as cryoprotectants and contribute to freezing tolerance in plant species, such as in members of the grass subfamily Pooideae that includes Triticeae species and forage grasses. To elucidate the relationship of freezing tolerance, carbohydrate composition and degree of polymerization (DP) of fructans, we generated transgenic plants in the model grass species Brachypodium distachyon that expressed cDNA s for sucrose:fructan 6-fructosyltransferases (6-SFTs) with different enzymatic properties: one cDNA encoded PpFT1 from timothy grass (Phleum pratense), an enzyme that produces high-DP levans; a second cDNA encoded wft1 from wheat (Triticum aestivum), an enzyme that produces low-DP levans. Transgenic lines expressing PpFT1 and wft1 showed retarded growth; this effect was particularly notable in the PpFT1 transgenic lines. When grown at 22 °C, both types of transgenic line showed little or no accumulation of fructans. However, after a cold treatment, wft1 transgenic plants accumulated fructans with DP = 3–40, whereas PpFT1 transgenic plants accumulated fructans with higher DPs (20 to the separation limit). The different compositions of the accumulated fructans in the two types of transgenic line were correlated with the differences in the enzymatic properties of the overexpressed 6-SFTs. Transgenic lines expressing PpFT1 accumulated greater amounts of mono- and disaccharides than wild type and wft1 expressing lines. Examination of leaf blades showed that after cold acclimation, PpFT1 overexpression increased tolerance to freezing; by contrast, the freezing tolerance of the wft1 expressing lines was the same as that of wild type plants. These results provide new insights into the relationship of the composition of watersoluble carbohydrates and the DP of fructans to freezing tolerance in plants.
机译:果聚糖可以充当防冻剂,并有助于植物物种的耐寒性,例如在包括小麦科和牧草在内的禾本科禾本科科中。为了阐明果糖的耐寒性,碳水化合物组成和聚合度(DP)的关系,我们在模型草种Brachypodium distachyon中产生了转基因植物,该植物表达了蔗糖:果糖6-6-果糖基转移酶(6-SFT)的cDNA。性质:一种来自提摩西草(Phleum pratense)的编码PpFT1的cDNA,PpFT1是一种产生高DP levan的酶。小麦(Triticum aestivum)的第二个cDNA编码wft1,一种产生低DP左旋聚糖的酶。表达PpFT1和wft1的转基因品系显示出生长受阻。这种作用在PpFT1转基因品系中尤为明显。当在22°C下生长时,两种类型的转基因品系都显示出很少或没有果聚糖积累。但是,经过冷处理后,wft1转基因植物积累的果聚糖具有DP = 3-40,而PpFT1转基因植物积累的果聚糖具有更高的DP(分离极限为20)。两种类型的转基因品系中积累的果聚糖的不同组成与过表达的6-SFTs的酶学特性差异相关。与野生型和wft1表达系相比,表达PpFT1的转基因系积累了更多的单糖和二糖。叶片检查表明,冷驯化后,PpFT1过表达增加了对冷冻的耐受性。相反,表达wft1的品系的耐冻性与野生型植物相同。这些结果为水溶性碳水化合物的组成和果聚糖的DP与植物的耐寒性之间的关系提供了新的见解。

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