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Heavy metal tolerant
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Ebook "Elucidation of abiotic stress signaling in plants: Functional genomics perspectives, Volume 2" provides timely research in the fi eld of stress-mediated signaling to develop a better and holistic understanding of stress perception and its transduction followed by the generation of response. In spite of the advent of different approaches to develop stress-tolerant crops towards multiple stress conditions in the fi eld, the success in achieving this goal is still unsatisfactory.
497p
manmanthanhla0201
26-02-2024
2
1
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Ebook "Soil heavy metals (Soil biology, Volume 19)" presented include: the general role of heavy metals in biological soil systems; the relation of inorganic and organic pollutions; heavy metal, salt tolerance and combined effects with salinity; effects on abuscular mycorrhizal and on saprophytic soil fungi; heavy metal resistance by streptomycetes;...
496p
tachieuhoa
28-01-2024
5
2
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Ebook "Detoxification of heavy metals" include: sources of heavy metals contaminants in soils; plant species that can grow on contaminated soils; the phytoremediation of contaminated soils; tolerance, accumulation and detoxification mechanisms of zinc, copper, arsenic, cadmium and vanadium in plants; the critical role of sulfur metabolism in heavy metal tolerance;...
468p
tachieuhoa
28-01-2024
6
2
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Ebook "Environmental adaptations and stress tolerance of plants in the era of climate change" will provide the reader with a wide spectrum of information, including vital references. It also provides information as to how phytoconstituents, hormones and plant associated microbes help the plants to tolerate the stress. This volume also highlights the use of plant resources for ameliorating soil contaminants such as heavy metals.
523p
tachieuhoa
28-01-2024
4
2
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Continued part 1, part 2 of ebook "Physiology and molecular biology of stress tolerance in plants" provide readers with content about: photooxidative stress; nutrient stress; heavy metal stress; metabolic engineering for stress tolerance; functional genomics of stress tolerance;... Please refer to the ebook for details!
187p
hanlinhchi
11-11-2022
27
3
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The results show that different heavy metal(loid)s in the shoot tissue had different seasonal variation patterns. Seasonal shoot cutting-regrowth did not markedly affect the accumulation of various heavy metal(loid)s in the shoots. The concentration of shoot-borne heavy metal(loid)s was below the maximum tolerable level set for cattle except for Cd during spring-summer.
8p
thebadguys
15-01-2022
12
0
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Vital factor towards increased plant growth was the amount of IAA secreted by the organism (i.e. 2.65 mg IAA/100 ml of the culture filtrate) which is reasonably high in comparison to earlier reports available. Furthermore, PSB has also demonstrated bioremediation potential against harmful heavy metals such as copper, lead, nickel and arsenic by tolerating upto 25 mM indicating it’s prospective in remediating heavy metal contaminated agricultural fields.
7p
mudbound
10-12-2021
7
1
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Ferrous iron (Fe) and zinc (Zn) at high concentration in the soil cause heavy metal toxicity and greatly affect rice yield and quality. To improve rice production, understanding the genetic and molecular resistance mechanisms to excess Fe and Zn in rice is essential. Genome-wide association study (GWAS) is an effective way to identify loci and favorable alleles governing Fe and Zn toxicty as well as dissect the genetic relationship between them in a genetically diverse population.
15p
vilarryellison
29-10-2021
18
1
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Cupriavidus strain STM 6070 was isolated from nickel-rich soil collected near Koniambo massif, New Caledonia, using the invasive legume trap host Mimosa pudica. STM 6070 is a heavy metal-tolerant strain that is highly effective at fixing nitrogen with M. pudica.
18p
vijeeni2711
24-07-2021
8
0
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As a heavy metal, manganese (Mn) can be toxic to plants. Stylo (Stylosanthes) is an important tropical legume that exhibits tolerance to high levels of Mn. However, little is known about the adaptive responses of stylo to Mn toxicity. Thus, this study integrated both physiological and transcriptomic analyses of stylo subjected to Mn toxicity.
17p
vilichoo2711
25-06-2021
15
0
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Hydrogen sulfide (H2S) is a gas signal molecule involved in regulating plants tolerance to heavy metals stress. In this study, we investigated the role of H2S in cadmium-(Cd-) induced cell death of root tips of cucumber seedlings.
13p
vijichea2711
28-05-2021
36
1
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In the present study, A.flavus and A.fumigatus isolated from pulp and paper mill sludge showed tolerance and accumulation of toxic metals from synthetic medium and paper mill effluent. Effect of heavy metal ions on fungal growth in terms of their biomass (dry weight) was determined and conformed energetic fungal growth after increasing the concentration of Pb2+ and Zn2+ point out the importance of these two fungi for bioremediation.
13p
trinhthamhodang11
27-04-2021
15
1
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The aim of this study is to determine the antimicrobial resistance profile patterns to 15 antibiotics and heavy metals (Zn+2, Cu+2 and Cd+2) by Pantoeaagglomerans bacteria. The (MIC) of the heavy metals was varied from 200 µg /mL to 2200 µg/mL. The results showed that the bacteria were resistant to Zn+2, Cu+2 and Cd+2, considering the MIC values compared with the strain Escherichia coli K-12 used as control. P.
7p
trinhthamhodang1218
26-02-2021
7
1
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The present study was envisaged to check the physico-chemical properties of effluents being treated at CETPs and to isolate indigenous heavy metal tolerant bacteria for their subsequent utilization for heavy metal uptake. Effluent samples were collected from two CETPs located in Ludhiana and Jalandhar and were analyzed for their physico-chemical parameters (dissolved oxygen (DO), biological oxygen demand (BOD), chemical oxygen demand (COD) and pH) and heavy metal profile using Inductively Coupled Argon Plasma-Emission Spectroscopy (ICAP-AES).
11p
angicungduoc8
07-11-2020
20
1
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Mine tailings sites have caused severe damage to the ecosystems through production of a large amount of heavy metals. Ecological remediation of metal polluted sites by means of plants and microbes has received much attention around the world. Phytoremediation of metal contaminated sites in association with phosphate-solubilizing bacteria is considered to be a suitable option for overcoming the metal stress on the environment.
9p
nguathienthan8
20-10-2020
11
2
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This article presents a study of the bacteria bioremediation characters and their heavy metal and antibiotic tolerance from the petroleum contaminated soil located in industrialized areas of Chhattisgarh, India. Soil sediments were characterized by FTIR for the presence of aromatic compounds and further the heterotrophic and fuel degrader counts was estimated. The strains characterized were predominantly from the Bacillus species which showed mixed resistance patterns against antibiotics and heavy metals.
18p
chauchaungayxua6
26-06-2020
12
0
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The present study included two experiments related to heavy metals tolerance and accumulation in Brassica sp plant genotypes Brassica juncea and Brassica nigra. The first one concerned with the study of two genotypes for Seedling characters. The second experiment was carried out under different molecular markersto characterize the relationship between treatment and over expression of GSH gene. The effect of treatment on the level of GSH hence, the highest expression as 5.3 fold of GSH was obtained in treatment with Cd, and 3.5 fold of GSH was obtained in treatment with Ni in B. juncea.
15p
nguaconbaynhay6
23-06-2020
15
0
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Hundred and twenty eighty halophilic bacterial isolated from the soil and water of Karnataka mangrove regions were examined for multi-metal tolerance. Bacillus pumilus (accession no.MF472596) was found to be tolerant against four toxic heavy metal ions (Cd2+, Cu2+, Fe3+, and Ba2+) up to 1000 ppm each.
15p
angicungduoc5
12-06-2020
9
1
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The present study was conducted to isolate promising heavy metal tolerant bacteria from various industrial polluted areas of Hyderabad, India and was tested for their plant growth promoting characteristics.
9p
caygaocaolon5
27-05-2020
17
1
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Brown algae are sessile macro-organisms of great ecological relevance in coastal ecosystems. They evolved independently from land plants and other multicellular lineages, and therefore hold several original ontogenic and metabolic features.
17p
viminato2711
22-05-2020
19
1
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