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首页> 外文期刊>Plant Omics >Salinity effects on macro and micronutrients uptake in medicinal plant King of Bitters (Andrographis paniculata Nees.)
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Salinity effects on macro and micronutrients uptake in medicinal plant King of Bitters (Andrographis paniculata Nees.)

机译:盐度对药用植物苦王(Andrographis paniculata Nees。)的宏观和微量营养素吸收的影响。

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摘要

Plants species require macro and micro nutrients to complete the growth cycles such as photosynthesis, enzyme activities and secondary metabolite production. The objective of the present study was to investigate the effects of salinity on biomass as well as macro and micro nutrients uptake in the medicinal plant of Andrographis paniculata (AP). In this regard, a split plot experiment was carried out based on Randomized Complete Block Design (RCBD) with two factors; five salinity levels (control, 4, 8, 12 and 16 dsm- 1) in main plots and 12 different AP accessions in sub-main plots with three replicates. Seventy-day-plants (before flowering stage) were exposed to different salinity levels on a Hoagland medium. The results indicated that salinity levels had a significant effect on the measured traits. Salinity caused a reduction in dry material and salt tolerance index (STI). The sodium (Na+), iron (Fe), zinc (Zn) and copper (Cu) contents significantly increased, while nitrogen (N), phosphorus (P), potassium (K+), calcium (Ca2+), magnesium (Mg2+) and manganese (Mn) content decreased in high salinity levels. Furthermore, under salinity stress, tolerant accessions could produce higher K+, P, N, Mg2+ and Ca2+ and lower Na+, Fe, Zn and Cu than sensitive accessions. Interestingly, Na+ concentration was highly correlated to STI (r = ?0.79), while the lowest correlation was observed between P and Na+ concentration (r = ?0.15). Salt- stress caused changes in macro and micro nutrients uptake, which may lead to decline in photosynthesis capacity and respiration. This type of abiotic stress can also disturb metabolism of several cellular components such as protein synthesis.
机译:植物物种需要大量和微量营养素才能完成生长周期,例如光合作用,酶活性和次级代谢产物的产生。本研究的目的是研究盐度对穿心莲药材中生物量以及大量和微量养分吸收的影响。在这方面,基于两个要素的随机完整块设计(RCBD)进行了分割图实验。在主样区中具有五个盐度水平(对照,4、8、12和16 dsm-1),在次主样区中具有12个不同的AP入藏,具有三个重复。将七十天的植物(开花前)在Hoagland培养基上暴露于不同的盐度水平。结果表明,盐度水平对所测性状有显着影响。盐度导致干物质和耐盐性指数(STI)降低。钠(Na +),铁(Fe),锌(Zn)和铜(Cu)含量显着增加,而氮(N),磷(P),钾(K +),钙(Ca2 +),镁(Mg2 +)和高盐度下锰(Mn)含量降低。此外,在盐分胁迫下,耐性种质比敏感种质能产生更高的K +,P,N,Mg2 +和Ca2 +以及更低的Na +,Fe,Zn和Cu。有趣的是,Na +浓度与STI高度相关(r = 0.79),而P与Na +浓度之间的相关性最低(r = 0.15)。盐胁迫导致宏观和微量养分吸收的变化,这可能导致光合作用能力和呼吸能力下降。这种非生物胁迫也可能干扰几种细胞成分的代谢,例如蛋白质合成。

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