SPAD values and nitrogen nutrition index for the evaluation of rice nitrogen status

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Abstract

Plant-based diagnosis is one of the most important methods to determine nitrogen (N) content of crops. Our objective was to establish the relationship between soil-plant analysis development (SPAD) values and N nutrition index (NNI) during the three developmental stages of rice and apply the SPAD meter as diagnostic tools for predicting grain yield response to N fertilization. We determined the SPAD values of four uppermost fully expanded leaves of two rice cultivars at six N fertilization levels at three growth stages and examined the relationship between SPAD values and NNI. The critical N concentration (Nc) was 5.31 W-0.5 in Xiushui63*and 5.38 W-0.49 in Hang43*where W is the total shoot biomass. The correlation between SPAD value and NNI varied with the leaf position*developmental stage*and variety. The lower leaf appeared to be more sensitive to the N level than the upper leaf in the response of biomass*and could be more suitable as a test sample for N status diagnosis*especially in the booting and heading stage. The dependence of grain yield on SPAD values of the fourth fully expanded leaf (L4) was significant at booting stage (R2L4 = 0.82** in 2011*R2L4 = 0.72** in 2012). Ratio of SPAD values of L4 to that in the N-saturated plot (RSPAD) (R2L4 = 0.92** in 2011*R2L4 = 0.77** in 2012) and NNI (R2 = 0.96** in 2011*R2 = 0.86** in 2012) at booting stage demonstrated a closer relationship with grain yield.

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Yang, H., Yang, J., Lv, Y., & He, J. (2014). SPAD values and nitrogen nutrition index for the evaluation of rice nitrogen status. Plant Production Science, 17(1), 81–92. https://doi.org/10.1626/pps.17.81

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