1996
DOI: 10.1080/01904169609365121
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Plant tolerance to nickel toxicity: II nickel effects on influx and transport of mineral nutrients in four plant species

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Cited by 84 publications
(76 citation statements)
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“…Paiva et al (2002) observed that in stems and leaves of cedar seedlings, the iron content had a positive quadratic response, falling to doses of 128.4 and 98.0 mmol of nickel, respectively, and increasing with higher doses, indicating that, up to a certain dose of nickel, there is restricted iron transport from the root to the shoot. This effect has been observed in many plant species (YANG et al, 1996), although in tomato plants a reduction in iron absorption occurred when the nickel dose of the nutrient solution ranged from 0 to 510 mmol (PALACIOS et al, 1998).…”
Section: Revmentioning
confidence: 72%
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“…Paiva et al (2002) observed that in stems and leaves of cedar seedlings, the iron content had a positive quadratic response, falling to doses of 128.4 and 98.0 mmol of nickel, respectively, and increasing with higher doses, indicating that, up to a certain dose of nickel, there is restricted iron transport from the root to the shoot. This effect has been observed in many plant species (YANG et al, 1996), although in tomato plants a reduction in iron absorption occurred when the nickel dose of the nutrient solution ranged from 0 to 510 mmol (PALACIOS et al, 1998).…”
Section: Revmentioning
confidence: 72%
“…According to Israr et al (2011), with the binary mixture of copper + nickel and copper + zinc, the copper root uptake of Sesbania drummondii increased in the presence of nickel. Yang et al (1996) found that there was a reduction in copper absorption in the presence of nickel in Trifolium repens and Brassica oleracea plants, while copper absorption was not affected by nickel in Lolium perenne plants. In tomato plants, Palacios et al (1998) found that the presence of nickel significantly decreased copper absorption.…”
Section: Revmentioning
confidence: 93%
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“…No caule, a presença de Pb fez com que o teor de Cu apresentasse resposta quadrĂĄtica positiva, alcançando o teor mĂ­nimo quando da aplicação de 165 ”mol Pb. O Pb reduziu linearmente o teor foliar de Cu, mostrando que este elemento, apesar de nĂŁo interferir na absorção de Cu (Kabata-Pendias & Pendias, 1984), afeta o seu transporte para a parte aĂ©rea, a exemplo do que ocorre com a aplicação de Cd (Obata & Umebayashi, 1997) e de Ni (Yang et al, 1996). O teor de ferro na raiz das mudas de ipĂȘ-roxo aumentou de forma linear com a aplicação de Pb.…”
Section: Resultsunclassified
“…It is a constituent of the enzyme urease and in small quantities is essential for many plant species to complete their life cycle (Seregin and Kozhevnikova, 2006) but higher concentrations of this metal are toxic and may severely interfere with many physiological and biochemical processes of plants (Seregin and Kozhevnikova, 2006). If the plants taken up larger amounts of nickel, the common symptoms of Ni toxicity are chlorosis, weak plant growth, yield depression and may even be accompanied by reduced nutrient uptake and disorders in plant metabolism (Yang, 1996). Ni excess in the environment also decreases chlorophyll content and growth in metal sensitive plants (Boominathan and Doran, 2002).…”
Section: Introductionmentioning
confidence: 99%