نتایج جستجو برای: hyperaccumulator plants

تعداد نتایج: 198348  

Journal: :Jurnal Natural 2022

Heavy metal contaminants like mercury is a serious problem to human, animals, and some plants’ health. Phytoremediation an alternative technique, which can remediate the from soil using hyperaccumulator plant. The goal of this research was study anatomical changes plant main organs (roots, stems, leaves) Ipomoea reptans are assumed as that grows in contaminant. concentration growth medium 0, 61...

2016
Ying Ma Chang Zhang Rui S. Oliveira Helena Freitas Yongming Luo

Application of hyperaccumulator-endophyte symbiotic systems is a potential approach to improve phytoremediation efficiency, since some beneficial endophytic bacteria are able to detoxify heavy metals, alter metal solubility in soil, and facilitate plant growth. The objective of this study was to isolate multi-metal resistant and plant beneficial endophytic bacteria and to evaluate their role in...

Journal: :American journal of botany 2014
Jennifer J Cappa Patrick J Cappa Ali F El Mehdawi Jenna M McAleer Mark P Simmons Elizabeth A H Pilon-Smits

UNLABELLED • PREMISE OF STUDY Selenium (Se) hyperaccumulation, the capacity to concentrate the toxic element Se above 1000 mg·kg(-1)·dry mass, is found in relatively few taxa native to seleniferous soils. While Se hyperaccumulation has been shown to likely be an adaptation that protects plants from herbivory, its evolutionary history remains unstudied. Stanleya (Brassicaceae) is a small genus...

Journal: :Physiologia plantarum 2014
Ali F El Mehdawi Ray Jason B Reynolds Christine N Prins Stormy D Lindblom Jennifer J Cappa Sirine C Fakra Elizabeth A H Pilon-Smits

Symphyotrichum ericoides was shown earlier to contain hyperaccumulator levels of selenium (Se) in the field (>1000 mg kg(-1) dry weight (DW)), but only when growing next to other Se hyperaccumulators. It was also twofold larger next to hyperaccumulators and suffered less herbivory. This raised two questions: whether S. ericoides is capable of hyperaccumulation without neighbor assistance, and w...

Journal: :The Science of the total environment 2002
Weihua Zhang Yong Cai Cong Tu Lena Q Ma

Arsenic-contaminated soil is one of the major arsenic sources for drinking water. Phytoremediation, an emerging, plant-based technology for the removal of toxic contaminants from soil and water, has been receiving renewed attention. Although a number of plants have been identified as hyperaccumulators for the phytoextraction of a variety of metals, and some have been used in field applications,...

Journal: :Archives of environmental contamination and toxicology 2011
Bohdan Kříbek Martin Mihaljevič Ondra Sracek Ilja Knésl Vojtěch Ettler Imasiku Nyambe

The extent of arsenic (As) and metal accumulation in fronds of the As hyperaccumulator Pteris vittata (Chinese brake fern) and in leaves of Cyperus involucratus, which grow on the surface of an old flotation tailings pond in the Zambian Copperbelt province, was studied. The tailings consist of two types of material with distinct chemical composition: (1) reddish-brown tailings rich in As, iron ...

Journal: :Challenges 2023

Soil pollution is a threat to food security and ecological human health. Cd one of the most common pollutants in agricultural soil and, due its toxicity, hazardous. Amaranth documented hyperaccumulator other pollutants, it commonly grown Asia South America. A considerable amount amaranth suboptimal conditions, including nutrient-poor acidic soils. The objective this experimental study was exami...

Arsenic is considered as one of the most important environmental contaminant elements. Some plant species can grow in arsenic contaminated soils and they are able to reduce arsenic toxicity. In this study, a hydroponic experiment was conducted on Isatis cappadocica, a newly-discovered As hyperaccumulator. Accordingly, we conducted this experiment to compare the interaction of effect of arsenic ...

Journal: :Applied and environmental microbiology 2004
Rughia Idris Radoslava Trifonova Markus Puschenreiter Walter W Wenzel Angela Sessitsch

Thlaspi goesingense is able to hyperaccumulate extremely high concentrations of Ni when grown in ultramafic soils. Recently it has been shown that rhizosphere bacteria may increase the heavy metal concentrations in hyperaccumulator plants significantly, whereas the role of endophytes has not been investigated yet. In this study the rhizosphere and shoot-associated (endophytic) bacteria colonizi...

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