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Cadmium Application in Tomato: Nutritional Imbalance and Oxidative Stress

机译:镉在番茄中的应用:营养失衡和氧化应激

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Over the last few decades, the concentration of cadmium (Cd) in the environment has increased considerably in many countries due to anthropogenic activities. Cd is one of the most toxic pollutants in the environment and affects many metabolic processes in plants. The main objective of this study was to evaluate the response of the production, nutritional, and enzymatic antioxidant system of two tomato genotypes (Calabash Rouge and CNPH 0082) grown in tropical soils that were treated with doses of Cd. Soil samples were collected from the layer of earth at a depth of 0-0.2 m in areas subjected to a minimum of human disturbance. The concentrations of Cd applied to the soil samples were 0, 1, 2, and 4 times (0, 3, 6, and 12 mg kg(-1) of Cd) the agricultural intervention value adopted by current environmental legislation in the state of Sao Paulo. Brazil. Analysis of superoxide dismutase, catalase, glutathione reductase, guaiacol peroxidase, and ascorbate peroxidase activities, formation of stress indicator compound (malondialdehyde MDA and hydrogen peroxide), parameters of production dry mass of the shoot and root system (here in after "shoots" and "roots"), as well as nutrition, and both the bioavailable and total levels of this metal in the soil were performed. When the bioavailable content and total levels of Cd in the soil increased as a result of this metal doses applied, the biomass of both shoots and roots decreased in both genotypes (with the exception of the CNPH 0082 grown in clay soil) and displayed lower SPAD (relative chlorophyll index) values when exposed to contaminated environments with Cd concentrations. Cadmium treatment resulted in nutritional imbalances, mainly in terms of N, P, and Mn metabolism. Plants subjected to an elevated available content of metal in the soil exhibited increases in content of MDA and hydrogen peroxide and increased activity of catalase, ascorbate peroxidase, and guaiacol peroxidase in plant tissues when grown in both clay soil and sandy soil. Cadmium was phytotoxic to the plants causing a nutritional imbalance, especially on the metabolisms of N, P, and Mn. An oxidative stress condition was established in response to the Cd treatments applied, which led to changes in peroxidase activity.
机译:在过去的几十年中,由于人为活动,许多国家环境中的镉(Cd)浓度大大增加。镉是环境中毒性最高的污染物之一,会影响植物的许多代谢过程。这项研究的主要目的是评估在用Cd剂量处理过的热带土壤中种植的两种番茄基因型(Calabash Rouge和CNPH 0082)的生产,营养和酶促抗氧化系统的响应。在受到最小人类干扰的区域中,从0-0.2 m深度的土层中收集土壤样品。目前土壤环境中采用的农业干预值是土壤环境中现行的农业干预值的0、1、2和4倍(0、3、6和12 mg kg(-1)Cd)。圣保罗。巴西。分析超氧化物歧化酶,过氧化氢酶,谷胱甘肽还原酶,愈创木酚过氧化物酶和抗坏血酸过氧化物酶的活性,形成胁迫指示剂化合物(丙二醛MDA和过氧化氢),枝条和根系的生产干重参数(此处为“芽”和“根”以及营养,以及土壤中该金属的生物利用度和总含量都进行了。当施用这种金属剂量导致土壤中Cd的生物利用度含量和总Cd含量增加时,两种基因型的枝条和根部生物量均下降(除了CNPH 0082在粘土中生长),SPAD降低暴露于Cd浓度污染的环境中时(相对叶绿素指数)值。镉处理导致营养失衡,主要在氮,磷和锰代谢方面。在土壤和沙质土壤中生长时,土壤中有效金属含量增加的植物表现出MDA和过氧化氢含量的增加,植物组织中过氧化氢酶,抗坏血酸过氧化物酶和愈创木酚过氧化物酶的活性增加。镉对植物具有植物毒性,造成营养失衡,尤其是对氮,磷和锰的代谢。响应于所施用的镉处理,建立了氧化应激条件,这导致了过氧化物酶活性的变化。

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