首页> 外文期刊>Plant and cell physiology >Molecular Characterization of a Putative Sucrose:Fructan 6-Fructosyltransferase (6-SFT) of the Cold-Resistant Patagonian Grass Bromus pictus Associated With Fructan Accumulation Under Low Temperatures.
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Molecular Characterization of a Putative Sucrose:Fructan 6-Fructosyltransferase (6-SFT) of the Cold-Resistant Patagonian Grass Bromus pictus Associated With Fructan Accumulation Under Low Temperatures.

机译:低温下与果聚糖积累相关的抗寒巴塔哥尼亚草布鲁姆斯的推定蔗糖:果聚糖6-果糖基转移酶(6-SFT)的分子表征。

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摘要

Fructans are fructose polymers synthesized from sucrose in the plant vacuole. They represent short- and long-term carbohydrate reserves and have been associated with abiotic stress tolerance in graminean species. We report the isolation and characterization of a putative sucrose:fructan 6-fructosyltransferase (6-SFT) gene from a Patagonian grass species, Bromus pictus, tolerant to drought and cold temperatures. Structural and functional analyses of this gene were performed by Southern and Northern blot. Sugar content, quality and fructosyltransferase activity were studied using HPAEC-PAD (high-pH anion-exchange chromatography with pulsed amperometric detection), enzymatic and colorimetric assays. The putative 6-SFT gene had all the conserved motifs of fructosyl-transferase and showed 90% identity at the amino acid level with other 6-SFTs from winter cereals. Expression studies, and determination of sugar content and fructosyl-transferase activity were performed on five sections of the leaf. Bp6-SFT was expressed predominantly in leaf bases, where fructosyltransferase activity and fructan content are higher. Bp6-SFT expression and accumulation of fructans showed different patterns in the evaluated leaf sections during a 7 d time course experiment under chilling treatment. The transcriptional pattern suggests that the B. pictus 6-SFT gene is highly expressed in basal leaf sections even under control temperate conditions, in contrast to previous reports in other graminean species. Low temperatures caused an increase in Bp6-SFT expression and fructan accumulation in leaf bases. This is the first study of the isolation and molecular characterization of a fructosyltransferase in a native species from the Patagonian region. Expression in heterologous systems will confirm the functionality, allowing future developments in generation of functional markers for assisted breeding or biotechnological applications.
机译:果糖是在植物液泡中由蔗糖合成的果糖聚合物。它们代表短期和长期的碳水化合物储量,并且与禾本科物种的非生物胁迫耐受性有关。我们报告了从一个巴塔哥尼亚草种,Bromus pictus,耐受干旱和寒冷温度的假定的蔗糖:果糖6-果糖基转移酶(6-SFT)基因的分离和鉴定。通过Southern和Northern印迹对该基因进行结构和功能分析。使用HPAEC-PAD(带脉冲安培检测的高pH阴离子交换色谱),酶法和比色法研究了糖含量,质量和果糖基转移酶活性。推定的6-SFT基因具有果糖基转移酶的所有保守基序,并且在氨基酸水平上与冬季谷物中的其他6-SFT具有90%的同一性。在叶片的五个部分上进行了表达研究以及糖含量和果糖基转移酶活性的测定。 Bp6-SFT主要在叶基中表达,其中果糖基转移酶活性和果聚糖含量较高。 Bp6-SFT的表达和果聚糖的积累在冷藏处理的7天时间过程实验中,在评估的叶片中显示出不同的模式。转录模式表明,即使在控制温带条件下,pic。B. pictus 6-SFT基因也可以在基叶切片中高表达,这与其他禾本科物种先前的报道相反。低温导致叶基中Bp6-SFT表达增加和果聚糖积累。这是对来自巴塔哥尼亚地区的天然果糖基转移酶的分离和分子特征的首次研究。在异源系统中表达将证实其功能性,从而为辅助育种或生物技术应用的功能性标记物的产生提供了未来的发展。

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