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Effects of alkali stress on growth, free amino acids and carbohydrates metabolism in Kentucky bluegrass (Poa pratensis)

机译:碱胁迫对肯塔基州早熟禾(Poa pratensis)生长,游离氨基酸和碳水化合物代谢的影响

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Soil alkalization is one of the most prominent adverse environmental factors limiting plant growth, while alkali stress affects amino acids and carbohydrates metabolism. The objective of this study was conducted to investigate the effects of alkali stress on growth, amino acids and carbohydrates metabolism in Kentucky bluegrass (Poa pratensis). Seventy-day-old plants were subjected to four pH levels: 6.0 (control), 8.0 (low), 9.4 (moderate) and 10.3 (severe) for 7 days. Moderate to severe alkali stress (pH[9.4) caused a significant decline in turf quality and growth rate in Kentucky bluegrass. Soluble protein was unchanged in shoots, but decreased in roots as pH increased. The levels of amino acids was kept at the same level as control level at 4 days after treatment (DAT) in shoots, but greater at 7 DAT, when plants were subjected to severe (pH 10.3) alkali stress. The alkali stressed plants had a greater level of starch, water soluble carbohydrate and sucrose content, but lower level of fructose and glucose. Fructan and total non-structural carbohydrate (TNC) increased at 4 DAT and decreased at 7 DAT for alkali stressed plants. These results suggested that the decrease in fructose and glucose contributed to the growth reduction under alkali stress, while the increase in amino acids, sucrose and storage form of carbohydrate (fructan, starch) could be an adaptative mechanism in Kentucky bluegrass under alkali stress.
机译:土壤碱化是限制植物生长的最重要的不利环境因素之一,而碱胁迫会影响氨基酸和碳水化合物的代谢。本研究的目的是研究碱胁迫对肯塔基州早熟禾(Poa pratensis)生长,氨基酸和碳水化合物代谢的影响。将七十日龄的植物置于四个pH值水平:6.0(对照),8.0(低),9.4(中度)和10.3(严重),持续7天。中度至重度碱胁迫(pH [9.4)导致肯塔基草的草皮质量和生长速度显着下降。可溶性蛋白质在芽中没有变化,但随着pH的增加,根中的蛋白质减少。处理后第4天(DAT),枝条中的氨基酸含量保持与对照水平相同,但当植物遭受严重(pH 10.3)碱性胁迫时,氨基酸含量在7 DAT时更高。碱胁迫植物的淀粉,水溶性碳水化合物和蔗糖含量较高,而果糖和葡萄糖含量较低。对于碱性胁迫的植物,果聚糖和总非结构性碳水化合物(TNC)在第4天DAT时升高,而在第7 DAT时降低。这些结果表明,果糖和葡萄糖的减少有助于碱胁迫下的生长减少,而氨基酸,蔗糖和碳水化合物(果聚糖,淀粉)的储存形式的增加可能是肯塔基草在碱胁迫下的一种适应机制。

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