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Shading Effects on Leaf Gas Exchange Leaf Pigments and Secondary Metabolites of

机译:叶片气体交换叶片颜料和次生代谢物的阴影效果

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摘要

The growing demand for high value aromatic herb Polygonum minus-based products have increased in recent years, for its antioxidant, anticancer, antimicrobial, and anti-inflammatory potentials. Although few reports have indicated the chemical profiles and antioxidative effects of Polygonum minus, no study has been conducted to assess the benefits of micro-environmental manipulation (different shading levels) on the growth, leaf gas exchange and secondary metabolites in Polygonum minus. Therefore, two shading levels (50%:T2 and 70%:T3) and one absolute control (0%:T1) were studied under eight weeks and 16 weeks of exposures on Polygonum minus after two weeks. It was found that P. minus under T2 obtained the highest photosynthesis rate (14.892 µmol CO2 m−2 s−1), followed by T3 = T1. The increase in photosynthesis rate was contributed by the enhancement of the leaf pigments content (chlorophyll a and chlorophyll b). This was shown by the positive significant correlations observed between photosynthesis rate with chlorophyll a (r2 = 0.536; p ≤ 0.05) and chlorophyll b (r2 = 0.540; p ≤ 0.05). As the shading levels and time interval increased, the production of total anthocyanin content (TAC) and antioxidant properties of Ferric Reducing Antioxidant Power (FRAP) and 2,2-Diphenyl-1-picrylhydrazyl (DPPH) also increased. The total phenolic content (TPC) and total flavonoid content (TFC) were also significantly enhanced under T2 and T3. The current study suggested that P.minus induce the production of more leaf pigments and secondary metabolites as their special adaptation mechanism under low light condition. Although the biomass was affected under low light, the purpose of conducting the study to boost the bioactive properties in Polygonum minus has been fulfilled by 50% shading under 16 weeks’ exposure.
机译:近年来,对高价值芳香族药草薄饼的需求越来越大,其抗氧化剂,抗癌,抗菌剂和抗炎潜力尤为增加。虽然很少有报道表明了多谷益减去的化学分布和抗氧化作用,但没有进行研究以评估微环境操作(不同遮荫水平)对薄粒子薄膜中的生长,叶片气体交换和次生代谢物的益处。因此,在两周后,在八周和16周内进行了两次遮阳水平(50%:t2和70%:t3)和一个绝对控制(0%:t1),在两周后的薄粒子含量下的曝光。发现在T2下的p.减去获得最高的光合速率(14.892μmolCO2M-2 S-1),然后是T3 = T1。光合速率的增加因增强叶片颜料含量(叶绿素A和叶绿素B)而有贡献。这是通过叶绿素A(R2 = 0.536;p≤0.05)和叶绿素B(R2 = 0.540;P≤0.05)之间观察到的正显着相关性显示的正显着相关性。随着遮光水平和时间间隔增加,生产总花青素含量(TAC)和抗氧化抗氧化能力(FRAP)和2,2-二苯基-1-富铬(DPPH)的抗氧化性能也增加。在T2和T3下,总酚类含量(TPC)和总黄酮含量(TFC)也显着增强。目前的研究表明,P.Minus在低光状况下诱导更多叶子颜料和次级代谢物作为其特殊适应机制。虽然生物质在低光下受到影响,但进行研究以提高薄粒子中的生物活性性能的目的已经在16周内暴露下满足50%阴影。

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