2004Journal of Agronomy and Crop ScienceRequires access

Nutrient Management Effects on Light Interception, Photosynthesis, Growth, Dry‐matter Production and Yield of Indian Mustard (Brassica juncea)

K. G. Mandal, A. C. Sinha

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Abstract

Abstract A field experiment was conducted on sandy loam acidic soil to study the effect of nutrient managements on light interception, photosynthesis, growth, biomass production and yield of Indian mustard [Brassica juncea (L.) Czern & Coss.]. Plant height, number of branches per plant, number of siliqua per plant, number of seeds per siliquae, 1000‐seed weight, seed and oil yield of Indian mustard improved at 100 % recommended rates of NPK (N‐P‐K at 80‐17.2‐33.2 kg ha−1) + 10 t ha−1 farmyard manure (FYM) (T3) compared with 100 % NPK rate (T2). It was also at par with 100 % NPK + 10 kg ha−1 borax + 20 kg ha−1 ZnSO4 (T6) and 50 % NPK + 10 t ha−1 FYM +10 kg ha−1 borax + 20 kg ha−1 ZnSO4 (T10). The rate of photosynthesis increased due to appropriate nutrient management treatments (T3, T6 or T10) with concomitant increase in photosynthetically active radiation, internal CO2 concentration and rate of transpiration and decrease in stomatal resistance. Consequent upon the higher rate of photosynthesis, dry‐matter accumulation increased. The crop receiving nutrient treatment T3 or T6 maintained higher light interception ratio (LIR), leaf area index (LAI), biomass production, crop growth rate (CGR) and net assimilation rate (NAR) that resulted in greater rate of photosynthesis, harvest index and seed yield. Similarly, T10 was equally efficient in registering greater LIR, LAI, CGR, NAR and seed yield of mustard. The average seed yields were 1692, 1683 and 1668 kg ha−1 in T3, T6 and T10, respectively, and these three treatments were significantly superior to T2 (1332 kg ha−1), control (723 kg ha−1) and other treatments. Significantly greater seed oil contents of 41.30, 40.60 and 41.07 % were recorded in T3, T6 and T10, respectively. Thus, significant improvement due to appropriate combination of NPK, FYM, borax and ZnSO4 was observed for uptake of nutrients.

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Abstract A field experiment was conducted on sandy loam acidic soil to study the effect of nutrient managements on light interception, photosynthesis, growth, biomass production and yield of Indian mustard [Brassica juncea (L.) Czern & Coss.]. Plant height, number of branches per plant, number of siliqua per plant, number of seeds per siliquae, 1000‐seed weight, seed and oil yield of Indian mustard improved at 100 % recommended rates of NPK (N‐P‐K at 80‐17.2‐33.2 kg ha−1) + 10 t ha−1 farmyard manure (FYM) (T3) compared with 100 % NPK rate (T2). It was also at par with 100 % NPK + 10 kg ha−1 borax + 20 kg ha−1 ZnSO4 (T6) and 50 % NPK + 10 t ha−1 FYM +10 kg ha−1 borax + 20 kg ha−1 ZnSO4 (T10). The rate of photosynthesis increased due to appropriate nutrient management treatments (T3, T6 or T10) with concomitant increase in photosynthetically active radiation, internal CO2 concentration and rate of transpiration and decrease in stomatal resistance. Consequent upon the higher rate of photosynthesis, dry‐matter accumulation increased. The crop receiving nutrient treatment T3 or T6 maintained higher light interception ratio (LIR), leaf area index (LAI), biomass production, crop growth rate (CGR) and net assimilation rate (NAR) that resulted in greater rate of photosynthesis, harvest index and seed yield. Similarly, T10 was equally efficient in registering greater LIR, LAI, CGR, NAR and seed yield of mustard. The average seed yields were 1692, 1683 and 1668 kg ha−1 in T3, T6 and T10, respectively, and these three treatments were significantly superior to T2 (1332 kg ha−1), control (723 kg ha−1) and other treatments. Significantly greater seed oil contents of 41.30, 40.60 and 41.07 % were recorded in T3, T6 and T10, respectively. Thus, significant improvement due to appropriate combination of NPK, FYM, borax and ZnSO4 was observed for uptake of nutrients.

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Available abstract

Abstract A field experiment was conducted on sandy loam acidic soil to study the effect of nutrient managements on light interception, photosynthesis, growth, biomass production and yield of Indian mustard [Brassica juncea (L.) Czern & Coss.]. Plant height, number of branches per plant, number of siliqua per plant, number of seeds per siliquae, 1000‐seed weight, seed and oil yield of Indian mustard improved at 100 % recommended rates of NPK (N‐P‐K at 80‐17.2‐33.2 kg ha−1) + 10 t ha−1 farmyard manure (FYM) (T3) compared with 100 % NPK rate (T2). It was also at par with 100 % NPK + 10 kg ha−1 borax + 20 kg ha−1 ZnSO4 (T6) and 50 % NPK + 10 t ha−1 FYM +10 kg ha−1 borax + 20 kg ha−1 ZnSO4 (T10). The rate of photosynthesis increased due to appropriate nutrient management treatments (T3, T6 or T10) with concomitant increase in photosynthetically active radiation, internal CO2 concentration and rate of transpiration and decrease in stomatal resistance. Consequent upon the higher rate of photosynthesis, dry‐matter accumulation increased. The crop receiving nutrient treatment T3 or T6 maintained higher light interception ratio (LIR), leaf area index (LAI), biomass production, crop growth rate (CGR) and net assimilation rate (NAR) that resulted in greater rate of photosynthesis, harvest index and seed yield. Similarly, T10 was equally efficient in registering greater LIR, LAI, CGR, NAR and seed yield of mustard. The average seed yields were 1692, 1683 and 1668 kg ha−1 in T3, T6 and T10, respectively, and these three treatments were significantly superior to T2 (1332 kg ha−1), control (723 kg ha−1) and other treatments. Significantly greater seed oil contents of 41.30, 40.60 and 41.07 % were recorded in T3, T6 and T10, respectively. Thus, significant improvement due to appropriate combination of NPK, FYM, borax and ZnSO4 was observed for uptake of nutrients.

Key concepts: Brassica, Photosynthesis, Agronomy, Dry matter, Interception, Nutrient management, Leaf area index, Nutrient

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Nutrient Management Effects on Light Interception, Photosynthesis, Growth, Dry‐matter Production and Yield of Indian Mustard (Brassica juncea) — Research Paper | ScholarLens