One of the major limitations to crop growth on acid soils is the prevalence of soluble aluminum ions (Al3+). Rice (Oryza sativa L.) has been reported to be highly Al tolerant; however, large-scale proteomic data of rice in response to Al3+ are still very scanty. Here, we used an iTRAQ-based quantitative proteomics approach for comparative analysis of the expression profiles of proteins in rice roots in response to Al3+ at an early phase. A total of 700 distinct proteins (homologous proteins grouped together) with >95% confidence were identified. Among them, 106 proteins were differentially expressed upon Al3+ toxicity in sensitive and tolerant cultivars. Bioinformatics analysis indicated that glycolysis/gluconeogenesis was the most signi...
Aluminum (Al) toxicity significantly restricts crop production on acidic soils. Although rice is hig...
In this paper, we report on aluminum (Al)-induced root proteomic changes in switchgrass. After growt...
Aluminum (Al3+) toxicity is one of the most important limitations to agricultural production worldwi...
The prevalence of soluble aluminum (Al) ions is one of the major limitations to crop production worl...
Aluminum (Al) toxicity is one of the primary factors limiting crop production on acid sulfate soils....
Rice (Oryza sativa) is the most aluminum (Al)-tolerant crop among small-grain cereals, but the mecha...
Aluminum (Al) is the most abundant metal in the earth's crust and is predominantly found as a key co...
<div><p>Rice (<em>Oryza sativa</em>) is the most aluminum (Al)-tolerant crop among small-grain cerea...
Abstract Aluminium (Al) is the third most abundant element in the Earth's crust. Globally, acidic so...
<div><p>Aluminum (Al) toxicity is a major limiting factor for plant production in acid soils. Wild b...
Aluminum (Al) at high concentrations inhibits root growth, damage root systems, and causes significa...
Aluminum (Al) toxicity is a major limiting factor for plant production in acid soils. Wild barley ge...
Acidic soils inhibit crop yield and reduce grain quality. One of the major contributing factors to a...
Aluminum (Al) is a major limiting factor for plant growth and development on acidic soil when the pH...
Aluminum (Al) toxicity is a major limiting factor for plant production in acid soils. Wild barley ge...
Aluminum (Al) toxicity significantly restricts crop production on acidic soils. Although rice is hig...
In this paper, we report on aluminum (Al)-induced root proteomic changes in switchgrass. After growt...
Aluminum (Al3+) toxicity is one of the most important limitations to agricultural production worldwi...
The prevalence of soluble aluminum (Al) ions is one of the major limitations to crop production worl...
Aluminum (Al) toxicity is one of the primary factors limiting crop production on acid sulfate soils....
Rice (Oryza sativa) is the most aluminum (Al)-tolerant crop among small-grain cereals, but the mecha...
Aluminum (Al) is the most abundant metal in the earth's crust and is predominantly found as a key co...
<div><p>Rice (<em>Oryza sativa</em>) is the most aluminum (Al)-tolerant crop among small-grain cerea...
Abstract Aluminium (Al) is the third most abundant element in the Earth's crust. Globally, acidic so...
<div><p>Aluminum (Al) toxicity is a major limiting factor for plant production in acid soils. Wild b...
Aluminum (Al) at high concentrations inhibits root growth, damage root systems, and causes significa...
Aluminum (Al) toxicity is a major limiting factor for plant production in acid soils. Wild barley ge...
Acidic soils inhibit crop yield and reduce grain quality. One of the major contributing factors to a...
Aluminum (Al) is a major limiting factor for plant growth and development on acidic soil when the pH...
Aluminum (Al) toxicity is a major limiting factor for plant production in acid soils. Wild barley ge...
Aluminum (Al) toxicity significantly restricts crop production on acidic soils. Although rice is hig...
In this paper, we report on aluminum (Al)-induced root proteomic changes in switchgrass. After growt...
Aluminum (Al3+) toxicity is one of the most important limitations to agricultural production worldwi...