首页> 外文OA文献 >Effect of Citric Acid on Growth, Ecophysiology, Chloroplast Ultrastructure, and Phytoremediation Potential of Jute (Corchorus capsularis L.) Seedlings Exposed to Copper Stress
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Effect of Citric Acid on Growth, Ecophysiology, Chloroplast Ultrastructure, and Phytoremediation Potential of Jute (Corchorus capsularis L.) Seedlings Exposed to Copper Stress

机译:柠檬酸对铜应力暴露于铜应力的黄麻(Corchorus Capsularis L.)幼苗生长,生态学,叶绿体超微结构和植物修复潜力的影响

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摘要

Soil and water contamination from heavy metals and metalloids is one of the most discussed and caused adverse effects on food safety and marketability, crop growth due to phytotoxicity, and environmental health of soil organisms. A hydroponic investigation was executed to evaluate the influence of citric acid (CA) on copper (Cu) phytoextraction potential of jute (Corchorus capsularis L.). Three-weeks-old seedlings of C. capsularis were exposed to different Cu concentrations (0, 50, and 100 μM) with or without the application of CA (2 mM) in a nutrient growth medium. The results revealed that exposure of various levels of Cu by 50 and 100 μM significantly (p < 0.05) reduced plant growth, biomass, chlorophyll contents, gaseous exchange attributes, and damaged ultra-structure of chloroplast in C. capsularis seedlings. Furthermore, Cu toxicity also enhanced the production of malondialdehyde (MDA) which indicated the Cu-induced oxidative damage in the leaves of C. capsularis seedlings. Increasing the level of Cu in the nutrient solution significantly increased Cu uptake by the roots and shoots of C. capsularis seedlings. The application of CA into the nutrient medium significantly alleviated Cu phytotoxicity effects on C. capsularis seedlings as seen by plant growth and biomass, chlorophyll contents, gaseous exchange attributes, and ultra-structure of chloroplast. Moreover, CA supplementation also alleviated Cu-induced oxidative stress by reducing the contents of MDA. In addition, application of CA is helpful in increasing phytoremediation potential of the plant by increasing Cu concentration in the roots and shoots of the plants which is manifested by increasing the values of bioaccumulation (BAF) and translocation factors (TF) also. These observations depicted that application of CA could be a useful approach to assist Cu phytoextraction and stress tolerance against Cu in C. capsularis seedlings grown in Cu contaminated sites.
机译:来自重金属和金属的土壤和水污染是对食品安全和可销售性的最讨论和造成的不利影响之一,由于植物毒性而产生的作物生长,以及土壤生物的环境健康。执行了水培查,评价柠檬酸(CA)对黄麻(Corchorus Capsularis L.)的铜(Cu)浮铜萃取电位的影响。在营养生长培养基中,在营养生长培养基中施加三周的C. capsularis的C.粒子幼苗,暴露于不同的Cu浓度(0,50和100μm),或者不施用Ca(2mm)。结果表明,各种水平的Cu暴露于50%和100μm显着(P <0.05)降低植物生长,生物质,叶绿素含量,气态交换属性和C. capsularis幼苗的叶绿体的损坏的超结构。此外,Cu毒性还增强了丙二醛(MDA)的生产,其表明Cu诱导的C.胶囊幼苗叶片中的氧化损伤。增加营养溶液中Cu水平显着增加了C. capsulsis幼苗的根和芽的Cu吸收。植物生长和生物质,叶绿素含量,气态交换属性和叶绿体的超结构,将Ca施加到营养培养基上显着缓解了Cupsultisis幼苗的Cupsultoxicity作用。此外,Ca补充还通过降低MDA的含量来缓解Cu诱导的氧化应激。此外,Ca的应用在通过增加生物累积(BAF)和易位因子(TF)的植物的根部和植物的芽中,增加植物的植物修复潜力是有助于增加植物的植物修复潜力。所描绘的这些观察结果认为Ca的应用可以是在Cu污染位点生长的C. capsularis幼苗中辅助Cu植物萃取和胁迫耐受性的有用方法。

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