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Nutrient partitioning and stoichiometry in soybean: A synthesis-analysis

Resumen
On-farm attainable soybean yields are primarily limited by nutrient and water supply. High-yielding soybeans is related to high nutrient uptake. A proposed theoretical framework underpinning yield formation includes plant nitrogen (N) uptake, N harvest index (NHI), and N seed concentration (%Nseeds). The objectives of this study were focused on (i) investigating the effect of NHI and %Nseed on yield-to-uptake relation for N, and (ii) analyzing dry mass [ver mas...]
On-farm attainable soybean yields are primarily limited by nutrient and water supply. High-yielding soybeans is related to high nutrient uptake. A proposed theoretical framework underpinning yield formation includes plant nitrogen (N) uptake, N harvest index (NHI), and N seed concentration (%Nseeds). The objectives of this study were focused on (i) investigating the effect of NHI and %Nseed on yield-to-uptake relation for N, and (ii) analyzing dry mass and N partitioning and extending this analysis to phosphorous (P) and potassium (K) uptake and (iii) studying the influence of specific seed:stover ratios on the relationship of N with P, and K uptake. Metadata on yield, nutrient uptake and specific-organ nutrient concentration (%nutrient) was summarized from experiments located in three different environments: Indiana, Kansas (both US), and Argentina (herein termed as IN, KS, and ARG, respectively). The main outcomes from this research were: 1) the yield-to-uptake relation for N was primarily explained by NHI; 2) the algebraic model proposed by Sinclair (1998), that includes each specific-organ %nutrient explained consistently nutrient (N, P or K) HI as a function of HI with different trend, and 3) plant nutrient ratios were primarily governed by vegetative %nutrient (stover fraction), acting as a nutrient reservoir or supply depending on the demand of nutrient in the seed. Further research on the nutrient and biomass partitioning should focus on examining the NHI:HI relationship under varying genotype x environment x management interaction. [Cerrar]
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Autor
Tamagno, S.;   Balboa, Guillermo R.;   Assefa, Yared;   Kovács, P.;   Casteel, S.N.;   Salvagiotti, Fernando;   García, Fernando O.;   Stewart, W.M.;   Ciampitti, Ignacio A.;  
Fuente
Field crops research 200 : 18-27. (January 2017)
Fecha
2017-01
ISSN
0378-4290
URI
https://www.sciencedirect.com/science/article/pii/S0378429016303690#!
http://hdl.handle.net/20.500.12123/2269
DOI
https://doi.org/10.1016/j.fcr.2016.09.019
Formato
pdf
Tipo de documento
artículo
Palabras Claves
Soja; Soybeans; Nutrientes; Nutrients; Rendimiento; Yields; Nutrición de las Plantas; Plant Nutrition; Nitrógeno; Nitrogen; Fósforo; Phosphorus; Potasio; Potassium;
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Excepto donde se diga explicitamente, este item se publica bajo la siguiente descripción: Creative Commons Attribution-NonCommercial-ShareAlike 2.5 Unported (CC BY-NC-SA 2.5)
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