首页> 外文OA文献 >Exogenous classic phytohormones have limited regulatory effects on fructan and primary carbohydrate metabolism in perennial ryegrass (lolium perenne l.)
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Exogenous classic phytohormones have limited regulatory effects on fructan and primary carbohydrate metabolism in perennial ryegrass (lolium perenne l.)

机译:外源经典植物激素对多年生黑麦草(多年生黑麦草)中的果聚糖和初级碳水化合物代谢的调节作用有限。

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摘要

Fructans are polymers of fructose and one of the main constituents of water-soluble carbohydrates in forage grasses and cereal crops of temperate climates. Fructans are involved in cold and drought resistance, regrowth following defoliation and early spring growth, seed filling, have beneficial effects on human health and are used for industrial processes. Perennial ryegrass (Lolium perenne L.) serves as model species to study fructan metabolism. Fructan metabolism is under the control of both synthesis by fructosyltransferases (FTs) and breakdown through fructan exohydrolases (FEHs). The accumulation of fructans can be triggered by high sucrose levels and abiotic stress conditions such as drought and cold stress. However, detailed studies on the mechanisms involved in the regulation of fructan metabolism are scarce. Since different phytohormones, especially abscisic acid (ABA), are known to play an important role in abiotic stress responses, the possible short term regulation of the enzymes involved in fructan metabolism by the five classical phytohormones was investigated. Therefore, the activities of enzymes involved in fructan synthesis and breakdown, the expression levels for the corresponding genes and levels for water-soluble carbohydrates were determined following pulse treatments with ABA, auxin (AUX), ethylene (ET), gibberellic acid (GA), or kinetin (KIN). The most pronounced fast effects were a transient increase of I- I activities by AUX, KIN, ABA, and ET, while minor effects were evident for 1-FEH activity with an increased activity in response to KIN and a decrease by GA. Fructan and sucrose levels were not affected. This observed discrepancy demonstrates the importance of determining enzyme activities to obtain insight into the physiological traits and ultimately the plant phenotype. The comparative analyses of activities for seven key enzymes of primary carbohydrate metabolism revealed no co-regulation between enzymes of the fructan and sucrose pool.
机译:果糖是果糖的聚合物,是温带气候下的牧草和谷物作物中的水溶性碳水化合物的主要成分之一。果聚糖具有抗寒和抗旱性,在落叶和春早生长后长成,种子填充,对人体健康具有有益的作用,可用于工业生产。多年生黑麦草(Lolium perenne L.)是研究果聚糖代谢的模型物种。果聚糖的代谢受果糖基转移酶(FTs)合成和果糖外水解酶(FEHs)分解的控制。果糖的积累可以由高蔗糖水平和非生物胁迫条件(例如干旱和寒冷胁迫)触发。但是,有关果聚糖代谢调节机制的详细研究很少。由于已知不同的植物激素,尤其是脱落酸(ABA)在非生物胁迫响应中起重要作用,因此研究了五种经典植物激素对果聚糖代谢相关酶的短期调节作用。因此,在用ABA,生长素(AUX),乙烯(ET),赤霉素(GA)脉冲处理后,确定了参与果聚糖合成和分解的酶的活性,相应基因的表达水平和水溶性碳水化合物的水平。或激动素(KIN)。最明显的快速效应是AUX,KIN,ABA和ET短暂增强了I-I活性,而1-FEH活性则受到了轻微的影响,其中对KIN的活性增强而GA的活性降低。果胶和蔗糖水平不受影响。这种观察到的差异证明了确定酶活性以了解生理特征并最终了解植物表型的重要性。对初级糖代谢的七个关键酶的活性进行的比较分析表明,果聚糖和蔗糖池中的酶之间没有共同调节。

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