Journal of Plant Nutrition · 2016 · 10 citations · 40 references
Plant-soil InteractionEngineeringBotanyFertilizer TreatmentsPlant-soil RelationshipArrested GrowthPotassium NutritionAgricultural EconomicsPlant NutritionSoil FertilityDrained SoilRoot AdaptationsPlant PhysiologyNutrient Management
Growth of rice when soil phosphorus (P), potassium (K), and moisture are co-limiting is poorly known. An experiment was conducted using two rice varieties [long (LD) and short (SD) duration], two moisture conditions (continuous flooding and top-soil drained after flowering), and five fertilizer treatments (with and without the applications of P and/or K). Phosphorus uptake rate, translocation of P and K from roots, and retranslocation of P and K from senescing leaves were reduced in drained soil compared with flooded condition. LD had greater- root length, root dry weight, specific root length (m g−1), and increased availability of P in soil than SD. Even though LD was better adapted to co-limitations of P, K, and moisture in soil than SD, those adaptive responses were not sufficient to increase the arrested growth, P and K nutrition when P, K and moisture supply was co-limited than their optimal supply.
40
Roots of the Second Green Revolution
Jonathan P. Lynch · Australian Journal of Botany · 2007 · 1.3K citations
Pot size matters: a meta-analysis of the effects of rooting volume on plant growth
Hendrik Poorter, Jonas Bühler, Dagmar van Dusschoten et al. · Functional Plant Biology · 2012 · 788 citations · Full text
Engineering, Bioenergy, Botany +16
Root biology and genetic improvement for drought avoidance in rice
Veeresh R.P. Gowda, Amelia Henry, Akira Yamauchi et al. · Field Crops Research · 2011 · 464 citations