首页> 外文期刊>Biological trace element research >Effect of bioaccumulation of cadmium on biomass productivity, essential trace elements, chlorophyll biosynthesis, and macromolecules of wheat seedlings.
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Effect of bioaccumulation of cadmium on biomass productivity, essential trace elements, chlorophyll biosynthesis, and macromolecules of wheat seedlings.

机译:镉的生物积累对小麦幼苗生物量生产力,必需微量元素,叶绿素生物合成和大分子的影响。

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Soil contamination with heavy metals has become a worldwide problem, leading to losses in agricultural yield and hazardous human health effects as they enter the food chain. The present investigation was undertaken to examine the influence of cadmium (Cd2+) on the wheat (Triticum aestivum L.) plant. Cd2+ accumulation and distribution in 3-wk-old seedlings grown in nutrient medium containing varying concentrations of Cd2+ (control, 0.25, 0.50, 1.0, 2.5, and 5.0 mg/L) was monitored. The effect of varying Cd2+ concentrations up to 21 d on biomass productivity, plant growth, photosynthetic pigments, protein, amino acids, starch, soluble sugars, and essential nutrients uptake was studied in detail to explore the level up to which the plant can withstand the stress of heavy metal. Plants treated with 0.5, 1.0, 2.5, and 5.0 mg/L Cd2+ showed symptoms of heavymetal toxicity as observed by various morphological parameters which were recorded with the growth of plants. The root, shoot-leaf length and the root, shoot-leaf biomass progressively decreased with increasing Cd2+ concentration in the nutrient medium. Cd2+ uptake and accumulation was found to be maximum during the initial growth period. Cd2+ also interfered with the nutrients uptake, especially calcium (Ca2+), magnesium (Mg2+), potassium (K+), iron (Fe2+), zinc (Zn2+), and manganese (Mn2+) from the growth medium. Growth reduction and altered levels of major biochemical constituents such as chlorophyll, protein, free amino acids, starch, and soluble sugars that play a major role in plant metabolism were observed in response to varying concentrations of Cd2+ in the nutrient medium. In the present study, the effects of Cd2+ on growth, biomass productivity, mineral nutrients, chlorophyll biosynthesis, protein, free amino acid, starch, and soluble sugars in wheat plants was estimated to establish an overall picture of the Cd2+ toxicity at structural and functional levels.
机译:重金属污染土壤已经成为一个世界性的问题,导致它们进入食物链时导致农业产量损失和对人类健康的危害。本研究旨在研究镉(Cd2 +)对小麦(Triticum aestivum L.)植物的影响。监测在含有不同浓度的Cd2 +(对照,0.25、0.50、1.0、2.5和5.0 mg / L)的营养培养基中生长的3周大幼苗中Cd2 +的积累和分布。研究了高达21 d的不同Cd2 +浓度对生物量生产力,植物生长,光合色素,蛋白质,氨基酸,淀粉,可溶性糖和必需养分吸收的影响,以探索植物可以承受的最高水平。重金属的应力。通过各种形态学参数观察到,用0.5、1.0、2.5和5.0 mg / L Cd2 +处理过的植物表现出重金属毒性的症状,并随植物的生长而记录下来。根,茎叶长度和根,茎叶生物量随着营养培养基中Cd2 +浓度的增加而逐渐降低。发现在初始生长期Cd2 +的吸收和积累最大。 Cd2 +也干扰营养物质的吸收,尤其是生长培养基中的钙(Ca2 +),镁(Mg2 +),钾(K +),铁(Fe2 +),锌(Zn2 +)和锰(Mn2 +)。响应营养液中Cd2 +浓度的变化,观察到生长减少和主要生化成分(如叶绿素,蛋白质,游离氨基酸,淀粉和可溶性糖)的水平下降,这些变化在植物代谢中起着重要作用。在本研究中,估计了Cd2 +对小麦植物生长,生物量生产力,矿物质养分,叶绿素生物合成,蛋白质,游离氨基酸,淀粉和可溶性糖的影响,从而确定了Cd2 +在结构和功能上的毒性的总体情况。水平。

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