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首页> 外文期刊>Journal of Applied Phycology >Effect of seaweed extract (Ulva rigida) on the water deficit tolerance of Salvia officinalis L
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Effect of seaweed extract (Ulva rigida) on the water deficit tolerance of Salvia officinalis L

机译:海藻提取物(紫花苜蓿)对丹参耐缺水能力的影响

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The present investigation examined the effect of a seaweed extract (SWE) of Ulva rigida applied at different concentrations: 25, 50, and 75 % to sage plant (Salvia officinalis L.) subjected to drought stress tolerance. Three watering treatments, without stress (WS), moderate water deficit (MWS), and severe water deficit (SWD) corresponding respectively to 82, 18, and 7 % field capacity (FC), were used to understand the metabolic and physiological changes of Salvia plant during water deficit. SWE application enhanced vegetative growth in sage plants under drought stress conditions. The shoot length, total leaf area, and number were significantly reduced under water stress treatment. All SWE concentrations enhanced these growth parameters under water deficit. Maximal shoot number was observed with application of 25 % U. rigida extract under MWD that resulted in increases of 40 % compared to the control plants. Water stress increased glycine betaine (GB) content, that was significantly reduced by all concentration of SWE applied. The maximum reduction of GB was observed with the 50 % SWE treatment. The lipid peroxidation was less pronounced in drought-stressed plants treated with SWE. The lowest content of malondialdehyde (MDA) was in non-stressed plants and 50 % SWE treatment. The total phenolic content was reduced in plants with increased water deficit intensity (30 % reduction of TFC under SWD) but improved by all concentrations of SWE applied. Drought stress increased the superoxide dismutase (SOD) activities when compared to control. There was a significant enhancement of SOD activity and ascorbate peroxydase (APX) activity when sage plants were treated by SWE under deficit water. The beneficial effect of SWE varied with extract concentrations applied. No significant effect was observed with treatment of SWE. Results indicated that seaweed extract of U. rigida application to medicinal plant S. officinalis under water resulted in amelioration of drought stress and helped in enhancement of antioxidant potential and drought tolerance.
机译:本研究调查了不同浓度(25%,50%和75%)的鼠尾草植物海藻提取物(SWE)对鼠尾草植物(Salvia officinalis L.)的抗旱性。分别采用分别对应于82%,18%和7%田间持水量(FC)的三种无压力(WS),中度水分亏缺(MWS)和严重水分亏缺(SWD)的浇水处理来了解大豆的代谢和生理变化缺水期间的丹参植物。在干旱胁迫条件下,SWE的应用增强了鼠尾草植物的营养生长。在水分胁迫下,苗长,总叶面积和数量均明显减少。在水分不足的情况下,所有SWE浓度均能提高这些生长参数。在MWD下施用25%的硬毛乌贼菌提取物观察到最大芽数,与对照植物相比增加了40%。水分胁迫增加了甘氨酸甜菜碱(GB)的含量,所有浓度的SWE均显着降低了甘氨酸甜菜碱(GB)的含量。用50%SWE处理观察到GB的最大减少。脂质过氧化在用SWE处理的干旱胁迫植物中不太明显。丙二醛(MDA)的最低含量是在非胁迫植物和50%SWE处理中。随着水分亏缺强度的增加,植物中的总酚含量降低(SWD下TFC降低30%),但所有浓度的SWE均可提高总酚含量。与对照相比,干旱胁迫增加了超氧化物歧化酶(SOD)的活性。当鼠尾草在缺水条件下用SWE处理时,SOD活性和抗坏血酸过氧化物酶(APX)活性显着增强。 SWE的有益效果随所施加的提取物浓度而变化。用SWE治疗未观察到明显效果。结果表明,在水中应用刚性植物海藻提取物可以改善药用植物的抗旱性,并有助于增强其抗氧化能力和抗旱性。

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