Arbuscular mycorrhizal fungi (AMF) can promote plant growth and induce stress tolerance. Proline is reported to accumulate in mycorrhizal plants under stressful conditions, such as aluminum (Al) stress. However, the detailed changes induced in proline metabolism under AMF–plant symbiosis has not been studied. Accordingly, this work aimed to study how Al-stressed grass (barley) and legume (lotus) species respond to AMF inoculation at growth and biochemical levels. The associated changes in Al uptake and accumulation, the rate of photosynthesis, and the key enzymes and metabolites involved in proline biosynthesis and degradation pathways were studied. Soil contamination with Al induced Al accumulation in tissues of both species and, consequen...
Aluminum (Al) is an important factor that limits plant growth under acidic soil conditions. However,...
Numerous plant species can release organic acid anions (OA) from their roots in response to toxic al...
We evaluated the impact of low pH and aluminum (Al) on the leaves and roots of Plantago almogravensi...
Aluminium (Al) toxicity is a major problem affecting soil fertility, microbial diversity, and nutrie...
Little is known about how tolerant plants cope with internalized aluminium (Al). Tolerant plants are...
Aluminum (Al) in acidic soils is toxic to plants, affecting growth, water uptake, and nutrient assim...
In acidic soils, aluminum (Al) toxicity is a significant limitation to crop production worldwide. Gi...
Aluminum stress is considered as limiting factor of plant performance. Many studies showed that inoc...
BACKGROUND New evidence has shown that arbuscular mycorrhizal (AM) fungi can contribute to the alumi...
Elevated concentrations of soluble aluminium (Al) reduce root growth in acid soils, but much remains...
Abstract Background Aluminum (Al) toxicity is an important factor limiting crop production on acid s...
Over 40% of arable land in the world is acidic. Al stress has become a global agricultural problem a...
The objective of this research was to identify the existence of root exudation of organic acid in Lo...
the adaptation to Al stress in plants. However, the mechanism by which NO and plant hormones interpl...
Manganese (Mn) and aluminum (Al) toxicities are serious edaphic limitations to crop production in ac...
Aluminum (Al) is an important factor that limits plant growth under acidic soil conditions. However,...
Numerous plant species can release organic acid anions (OA) from their roots in response to toxic al...
We evaluated the impact of low pH and aluminum (Al) on the leaves and roots of Plantago almogravensi...
Aluminium (Al) toxicity is a major problem affecting soil fertility, microbial diversity, and nutrie...
Little is known about how tolerant plants cope with internalized aluminium (Al). Tolerant plants are...
Aluminum (Al) in acidic soils is toxic to plants, affecting growth, water uptake, and nutrient assim...
In acidic soils, aluminum (Al) toxicity is a significant limitation to crop production worldwide. Gi...
Aluminum stress is considered as limiting factor of plant performance. Many studies showed that inoc...
BACKGROUND New evidence has shown that arbuscular mycorrhizal (AM) fungi can contribute to the alumi...
Elevated concentrations of soluble aluminium (Al) reduce root growth in acid soils, but much remains...
Abstract Background Aluminum (Al) toxicity is an important factor limiting crop production on acid s...
Over 40% of arable land in the world is acidic. Al stress has become a global agricultural problem a...
The objective of this research was to identify the existence of root exudation of organic acid in Lo...
the adaptation to Al stress in plants. However, the mechanism by which NO and plant hormones interpl...
Manganese (Mn) and aluminum (Al) toxicities are serious edaphic limitations to crop production in ac...
Aluminum (Al) is an important factor that limits plant growth under acidic soil conditions. However,...
Numerous plant species can release organic acid anions (OA) from their roots in response to toxic al...
We evaluated the impact of low pH and aluminum (Al) on the leaves and roots of Plantago almogravensi...