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A total of 38 chromosomal regions or quantitative trait loci (QTLs) with negative allelic effects from Nipponbare were detected under the stresses of nitrogen and phosphorus deficiencies.
Nitrogen deficiencies lead to yellow and brown leaves; phosphorus deficiencies cause purple-veined and slow-growing leaves; potassium deficiencies lead to curled, distorted leaves.
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Planch to phosphorus (P) deficiency stress.
Phosphorus (P) deficiency of beech (Fagus sylvatica L). is widespread in Europe.
Phosphorus (P) deficiency is a major constraint for maize production in many low-input agroecosystems.
Phosphorus (P) deficiency in agricultural land is one of the main factors which reduce the crop production and yield.
Transcriptional profiling has identified genes associated with adaptive responses to phosphorus (P) deficiency; however, distinguishing stress response from tolerance has been difficult.
Phosphorus (P) deficiency has in the past been strongly implicated as causing such interaction (Johnson and Burdon 1990 and references therein), but it is something that can be and generally is corrected readily enough.
miR399 and miR827 are both involved in conserved phosphorus (P) deficiency signalling pathways.
Phosphorus (P) deficiency specifically induces miR399 in Arabidopsis and rice [ 6- 8].
Phosphorus (P) deficiency is one of the major nutrient stresses limiting plant growth.
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