Root-Specific Reduction of Cytokinin Causes Enhanced Root Growth, Drought Tolerance, and Leaf Mineral Enrichment in Arabidopsis and Tobacco

T Werner, E Nehnevajova, I Köllmer, O Novák… - The Plant …, 2010 - academic.oup.com
Optimizing root system architecture can overcome yield limitations in crop plants caused by
water or nutrient shortages. Classic breeding approaches are difficult because the trait is …

[PDF][PDF] Root-Specific Reduction of Cytokinin Causes Enhanced Root Growth, Drought Tolerance, and Leaf Mineral Enrichment in Arabidopsis and Tobacco CW OA

T Schmullinga - academia.edu
Optimizing root system architecture can overcome yield limitations in crop plants caused by
water or nutrient shortages. Classic breeding approaches are difficult because the trait is …

Root-Specific Reduction of Cytokinin Causes Enhanced Root Growth, Drought Tolerance, and Leaf Mineral Enrichment in Arabidopsis and Tobacco (C)(W)(OA)

T Werner, E Nehnevajova, I Köllmer, O Novák… - Plant …, 2010 - search.proquest.com
Optimizing root system architecture can overcome yield limitations in crop plants caused by
water or nutrient shortages. Classic breeding approaches are difficult because the trait is …

Root-Specific Reduction of Cytokinin Causes Enhanced Root Growth, Drought Tolerance, and Leaf Mineral Enrichment in Arabidopsis and Tobacco

T Werner, E Nehnevajova, I Köllmer, O Novák… - The Plant Cell, 2010 - JSTOR
Optimizing root system architecture can overcome yield limitations in crop plants caused by
water or nutrient shortages. Classic breeding approaches are difficult because the trait is …

Root-specific reduction of cytokinin causes enhanced root growth, drought tolerance, and leaf mineral enrichment in Arabidopsis and tobacco.

T Werner, E Nehnevajova, I Köllmer, O Novák… - The Plant …, 2010 - europepmc.org
Optimizing root system architecture can overcome yield limitations in crop plants caused by
water or nutrient shortages. Classic breeding approaches are difficult because the trait is …

[PDF][PDF] Root-Specific Reduction of Cytokinin Causes Enhanced Root Growth, Drought Tolerance, and Leaf Mineral Enrichment in Arabidopsis and Tobacco CW OA

T Schmullinga - core.ac.uk
Optimizing root system architecture can overcome yield limitations in crop plants caused by
water or nutrient shortages. Classic breeding approaches are difficult because the trait is …

[HTML][HTML] Root-Specific Reduction of Cytokinin Causes Enhanced Root Growth, Drought Tolerance, and Leaf Mineral Enrichment in Arabidopsis and Tobacco

T Werner, E Nehnevajova, I Köllmer, O Novák… - The Plant …, 2010 - ncbi.nlm.nih.gov
Optimizing root system architecture can overcome yield limitations in crop plants caused by
water or nutrient shortages. Classic breeding approaches are difficult because the trait is …

Root-Specific Reduction of Cytokinin Causes Enhanced Root Growth, Drought Tolerance, and Leaf Mineral Enrichment in Arabidopsis and Tobacco.

T Werner, E Nehnevajova, I Köllmer, O Novák… - Plant …, 2010 - search.ebscohost.com
Optimizing root system architecture can overcome yield limitations in crop plants caused by
water or nutrient shortages. Classic breeding approaches are difficult because the trait is …

Root-Specific Reduction of Cytokinin Causes Enhanced Root Growth, Drought Tolerance, and Leaf Mineral Enrichment in Arabidopsis and Tobacco

T Werner, E Nehnevajova, I Köllmer, O Novák… - The Plant Cell, 2010 - cir.nii.ac.jp
抄録< jats: title> Abstract</jats: title>< jats: p> Optimizing root system architecture can
overcome yield limitations in crop plants caused by water or nutrient shortages. Classic …