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Get unlimited, online access to over 18 million full-text articles from more than 15,000 scientific journals. In this review, it will discuss recent advancement and potential application of plants for lead removal from the environment. To subscribe to email alerts, please log in first, or sign up for a DeepDyve account if you don’t already have one. The aim of the present study is to verify whether other common wetland plants such as Alternanthera philoxeroides and Beckmannia syzigachne, also possess the same characteristics. In this review, it will discuss recent advancement and potential application of plants for lead removal from the environment. Its tolerance and accumulation of zinc, lead, copper, iron, manganese and magnesium as well as sulphur have been studied and compared with similar phenomena in two other local metal-tolerant grasses, Cynodon dactylon and Trachypogon spicatus, as well as  |  From the words “lead tolerance in plants” it’s pretty easy to deduce that some plants have some kind of tolerance for lead. These results suggest that transgenic plants expressing YCF1 may be useful for phytoremediation of lead and cadmium. You can change your cookie settings through your browser. Wetland plants such as Typha latifolia and Phragmites australis have been indicated to show a lack of evolution of metal tolerance in metal-contaminated populations. Lead. Damage to soil texture, i.e., pH of soil, presence of different elements, and accumulation of heavy metals cause direct and/or indirect reduction of plant growth by adversely affecting vari… To limit the detrimental impact of Pb, efficient strategies like phytoremediation are required. Environ Sci Pollut Res Int. Epub 2020 Feb 17. Over-expression of Arabidopsis δ-OAT has been shown to enhance proline levels and to increase the stress tolerance of rice and tobacco (Roosens et al., 2002; Qu et al., 2005) even though Arabidopsis plants deficient in δ-OAT accumulated proline in response to stress and showed a salt stress tolerance similar to the wild type (Funck et al., 2008). Deng H(1), Ye ZH, Wong MH. The negative effects of environmental stresses, such as low temperature, high temperature, salinity, drought, heavy metal stress, and biotic stress significantly decrease crop productivity. Epub 2009 May 22. Heavy metal stress has become a major concern in various terrestrial ecosystems worldwide. Author information: (1)Biology Department and Croucher Institute for Environmental Sciences, Hong Kong Baptist University, Kowloon, Hong Kong SAR, PR China. Abiotic (non-living) factors that influence where a species can live. Plant defense strategies play important roles in the survival of plants as they are fed upon by many different types of herbivores, especially insects, … eCollection 2020. From classic methodologies to application of nanomaterials for soil remediation: an integrated view of methods for decontamination of toxic metal(oid)s. Genome-wide association study (GWAS) reveals genetic loci of lead (Pb) tolerance during seedling establishment in rapeseed (Brassica napus L.). Google Classroom Facebook Twitter. J Plant Physiol. Interactions between lead (Pb) with different plant species. Lead is a naturally occurring heavy metal. HHS 15,000 peer-reviewed journals. DeepDyve's default query mode: search by keyword or DOI. Phytoextraction of lead by plants Phytoremediation has been suggested as an inexpensive and Currently, phytoremediation is an effective and affordable technological solution used to extract or remove inactive metals and metal pollutants from contaminated soil and water. Why biodiversity is distributed unevenly. [D K Gupta, H G Huang, F J Corpas] PMID 23338995 . Two independent trials were conducted to examine the involvement of nitric oxide (NO) in MT-mediated tolerance to Cd toxicity in wheat plants. Yan A, Wang Y, Tan SN, Mohd Yusof ML, Ghosh S, Chen Z. OH), which are necessary for the correct functioning of plants; however, in excess they caused damage to biomolecules, such as membrane lipids, proteins, and nucleic acids among others. In plants, Pb uptake and translocation occurs, causing toxic effects resulting in decrease of biomass production. Leadplant is a good indicator of well managed lands that have moderate to low levels of livestock grazing. that matters to you. L14, Guo, H; Luo, S; Chen, L; Xiao, X; Xi, Q; Wei, W; Zeng, G; Liu, C; Wan, Y; Chen, J; He, Y, Antioxidant defence mechanism in hydroponically grown Zea mays seedlings under moderate lead stress, Gupta, DK; Nicoloso, FT; Schetinger, MRC; Rossato, LV; Pereira, LB; Castro, GY; Srivastava, S; Tripathi, RD, The detoxification of lead in Sedum alfredii H. is not related to phytochelatins but the glutathione, Gupta, DK; Huang, HG; Yang, XE; Razafindrabe, BHN; Inouhe, M, Lead induced responses of Pfaffia glomerata, an economically important Brazilian medicinal plant, under in vitro culture conditions, Gupta, DK; Nicoloso, FT; Schetinger, MRC; Rossato, LV; Huang, HG; Srivastava, S; Yang, XE, Tolerance and accumulation of lead by species of Iris L, Han, YL; Huang, SZ; Gu, JG; Qiu, S; Chen, JM, Studying the enhanced phytoremediation of lead contaminated soils via laser induced breakdown spectroscopy, Hassan, M; Sighicelli, M; Lai, A; Colao, F; Ahmed, AHH; Fantoni, R; Harith, MA, Sedum alfredii: a new lead-accumulating ecotype, He, B; Yang, XE; Ni, WZ; Wei, YZ; Long, XX; Ye, ZQ, Increased cadmium and lead uptake of a cadmium hyperaccumulator tomato by cadmium-resistant bacteria, He, LY; Chen, ZJ; Ren, GD; Zhang, YF; Qian, M; Sheng, XF, Role of EDTA in alleviating lead toxicity in accumulator species of Sedum alfredii H, Huang, HG; Li, TX; Tian, SK; Gupta, DK; Zhang, XZ; Yang, XE, Lead tolerance and physiological adaptation mechanism in roots of accumulating and non-accumulating ecotypes of Sedum alfredii, Huang, HG; Gupta, DK; Tian, SK; Yang, XE; Li, TX, Promising role of plant hormones in translocation of lead in Sesbania drummondii shoots, Phytoremediation of heavy metals: Physiological and molecular mechanisms, Pb-induced cellular defense system in the root meristematic cells of Allium sativum L, Isolation and characterization of a heavy metal-resistant Burkholderia sp. Lead uptake, toxicity, and detoxification in plants. NIH What are the why’s, the how’s, and the whereto’s? It is resistant to occurrences of fire and can tolerate a moderate amount of grazing. 2006 Feb;163(3):319-32 Zhang F, Xiao X, Xu K, Cheng X, Xie T, Hu J, Wu X. BMC Genomics. The lead tolerance of these species correlated with their water requirements. Environ Sci Pollut Res Int. Plant disease resistance protects plants from pathogens in two ways: by pre-formed structures and chemicals, and by infection-induced responses of the immune system. Tolerance ranges of species. All the latest content is available, no embargo periods. 2009 Nov;16(7):795-804. doi: 10.1007/s11356-009-0168-7. New localities lead to new biodiversity. Lead tolerance in plants: strategies for phytoremediation Lead tolerance in plants: strategies for phytoremediation Gupta, D.; Huang, H.; Corpas, F. 2013-01-22 00:00:00 Environ Sci Pollut Res (2013) 20:2150–2161 DOI 10.1007/s11356-013-1485-4 REVIEW ARTICLE D. K. Gupta & H. G. Huang & F. J. Corpas Received: 22 October 2012 /Accepted: 9 January 2013 /Published online: 22 … IT = 15%), those from damp stands had higher tolerance, and those from wet … Do not surround your terms in double-quotes ("") in this field. (Brassicaceae) from the vicinity of a lead mine and smelter in Slovenia, Nitric oxide reduces aluminum toxicity by preventing oxidative stress in the roots of Cassia tora L, Effect of indole-3-acetic acid on lead accumulation in maize (Zea mays L.) seedlings and the relevant antioxidant response, Wang, H; Shan, X; Wen, B; Owens, G; Fang, J; Zhang, S, The effect of EDDS addition on the phytoextraction efficiency from Pb contaminated soil by Sedum alfredii Hance, Wang, X; Wang, Y; Mahmood, Q; Islam, E; Jin, XF; Li, TQ; Yang, XE; Liu, D, Lead-contaminated soil induced oxidative stress, defense response and its indicative biomarkers in roots of Vicia faba seedlings, Wang, C; Tian, Y; Wang, X; Geng, J; Jiang, J; Yu, H; Wang, C, Evaluation of Pb phytoremediation potential in Buddleja asiatica and B-paniculata, Waranusantigul, P; Kruatrachue, M; Pokethitiyook, P; Auesukaree, C, Isolation and characterization of lead-tolerant Ochrobactrum intermedium and its role in enhancing lead accumulation by Eucalyptus camaldulensis, Waranusantigul, P; Lee, H; Kruatrachue, M; Pokethitiyook, P; Auesukaree, C, Phytoremediation: plant-endophyte partnerships take the challenge, Weyens, N; Lelie, D; Taghavi, S; Vangronsveld, J, Ca2+-dependent plant response to Pb2+ is regulated by LCT1, Wojas, S; Ruszczynska, A; Bulska, E; Wojciechowski, M; Antosiewicz, DM, Sorghum roots are inefficient in uptake of EDTA-chelated lead, Signal interaction between nitric oxide and hydrogen peroxide in heat shock induced hypericin production of Hypericum perforatum suspension cells, Sedum alfredii H: a new Zn hyperaccumulating plant first found in China, Lead-induced nitric oxide generation plays a critical role in lead uptake by Pogonatherum crinitum root cells, Yu, Q; Sun, L; Jin, H; Chen, Q; Chen, Z; Xu, M, Effects of EDTA on phytoextraction of heavy metals (Zn, Mn and Pb) from sludge-amended soil with Brassica napus, Zaier, H; Ghnaya, T; Ben Rejeb, K; Lakhdar, A; Rejeb, S; Jemal, F, Comparative study of Pb-phytoextraction potential in Sesuvium portulacastrum and Brassica juncea: Tolerance and accumulation, Zaier, H; Ghnaya, T; Lakhdar, A; Baioui, R; Ghabriche, R; Mnasri, M; Sghair, S; Lutts, S; Abdelly, C, Characterization of lead-resistant and ACC deaminase-producing endophytic bacteria and their potential in promoting lead accumulation of rape, Zhang, YF; He, LY; Chen, ZJ; Zhang, WH; Wang, QY; Qian, M; Sheng, XF, Effects of lead and EDTA-assisted lead on biomass, lead uptake and mineral nutrients in Lespedeza chinensis and Lespedeza davidii, Zheng, LJ; Liu, XM; Lutz-Meindl, U; Peer, T, Lead tolerance in plants: strategies for phytoremediation, http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png, Environmental Science and Pollution Research, http://www.deepdyve.com/lp/springer-journals/lead-tolerance-in-plants-strategies-for-phytoremediation-upKdUaJMys. Plants from dry stands demonstrated the lowest tolerance to lead (Berteroa incana IT = 10%, Helichrysum sp. 2006 Mar;140(3):922-32 On similar waste tips in Scotland, A. tenuis is replaced by Festuca ovina and Deschampsia flexuosa, and a method has been worked out for the measurement of lead tolerance in F. ovina from soils of different lead contents. 2011;213:113-36. doi: 10.1007/978-1-4419-9860-6_4. In all cases, the seedlings contained more lead in their tissues than the plants that had developed from bulbs. Select data courtesy of the U.S. National Library of Medicine. Epub 2020 Jun 5. Lead in the soil can settle on or be absorbed by plants grown for fruits or vegetables or plants used as ingredients in food, including dietary supplements. Start a 14-Day Trial for You and Your Team. Zinc, lead and cadmium tolerance in four populations of Typha latifolia raised from seed collected from metal‐contaminated and uncontaminated sites were investigated. This suggested that some plants of A. tenuis were inherently more tolerant of the lead and zinc in the soil than others. To limit the detrimental impact of Pb, efficient strategies like phytoremediation are required. Leadplant is native to areas in Manitoba and Ontario.  |  2020 Apr;27(10):10205-10227. doi: 10.1007/s11356-020-08032-8. Would you like email updates of new search results? Tolerance is the ability of plants to mitigate the negative fitness effects caused by herbivory. Lead (Pb) is naturally occurring element whose distribution in the environment occurs because of its extensive use in paints, petrol, explosives, sludge, and industrial wastes. Plants absorb Pb from their environment, but it is not an essential element. They were placed on your computer when you launched this website. All DeepDyve websites use cookies to improve your online experience. Ying Yong Sheng Tai Xue Bao. Lead tolerance in Festuca ovina is an inherited characteristic, evolved by the production of compounds within the plants, specifically for protection against the toxic effects of heavy metals. Phytoremediation: A Promising Approach for Revegetation of Heavy Metal-Polluted Land. Epub 2019 Nov 19. This site needs JavaScript to work properly. over 18 million articles from more than [Research advances in plant lead tolerance and detoxification mechanism]. Those are the interesting questions. Please enable it to take advantage of the complete set of features! In plants, Pb uptake and translocation occurs, causing toxic effects resulting in decrease of biomass production. And what makes them so interesting? Several methods already used to clean up the environment from these kinds of contaminants, but most of them are costly and difficult to get optimum results. To low levels of livestock grazing online access to over 18 million articles from more than 15,000 journals! 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