首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Effects of Salt Stress on Plant Growth Antioxidant Capacity Glandular Trichome Density and Volatile Exudates of Schizonepeta tenuifolia Briq.
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Effects of Salt Stress on Plant Growth Antioxidant Capacity Glandular Trichome Density and Volatile Exudates of Schizonepeta tenuifolia Briq.

机译:盐胁迫对Schizonepeta tenuifolia Briq植物生长抗氧化能力腺毛状体密度和挥发性分泌物的影响。

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摘要

Salinity is a major abiotic factor affecting plant growth and secondary metabolism. However, no information is available about its effects on Schizonepeta tenuifolia Briq., a traditional Chinese herb. Here, we investigated the changes of plant growth, antioxidant capacity, glandular trichome density, and volatile exudates of S. tenuifolia exposed to salt stress (0, 25, 50, 75, 100 mM NaCl). Results showed that its dry biomass was reduced by salt treatments except 25 mM NaCl. Contents of antioxidants, including phenolics and flavonoids, increased at low (25 mM) or moderate (50 mM) levels, but declined at severe (75 and 100 mM) levels. On leaf surfaces, big peltate and small capitate glandular trichomes (GTs) were found. Salt treatments, especially at moderate and severe concentrations, enhanced the density of total GTs on both leaf sides. The most abundant compound in GT volatile exudates was pulegone. Under salinity, relative contents of this component and other monoterpenes decreased significantly; biosynthesis and accumulation of esters were enhanced, particularly sulfurous acid,2-ethylhexyl hexyl ester, which became the second major compound as salinity increased. In conclusion, salt stress significantly influenced the growth and secondary metabolism of S. tenuifolia, enabling us to study the changes of its pharmacological activities.
机译:盐度是影响植物生长和次级代谢的主要非生物因子。但是,目前尚无关于其对传统中草药裂叶荆芥的影响的信息。在这里,我们调查了暴露于盐胁迫(0、25、50、75、100 mM NaCl)下的S. tenuifolia的植物生长,抗氧化能力,腺毛总密度和挥发性分泌物的变化。结果表明,除25 mM NaCl外,盐处理可减少其干燥生物量。抗氧化剂(包括酚类和类黄酮)的含量在低(25 mM)或中度(50 mM)含量下增加,但在严重(75和100 mM)含量下下降。在叶片表面,发现大的骨状和小头状的腺毛(GTs)。盐处理,尤其是中度和重度浓度的盐处理,增加了叶片两侧总GT的密度。 GT挥发性渗出物中最丰富的化合物是pulegone。在盐度下,该成分和其他单萜的相对含量显着下降;酯的生物合成和积累得到增强,尤其是亚硫酸2-乙基己基己酯,随着盐度的增加,它成为第二大主要化合物。总之,盐胁迫显着影响藤蔓链球菌的生长和次级代谢,这使我们能够研究其药理活性的变化。

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