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Effect of sulphur and growth regulators on growth and yield of groundnut (Arachis hypogea L.)

International Journal of Research in Agronomy · 2024 · Vol. 7(6S) · pp. 17–20
Saikat Shubhra MaindarC. UmeshaChirumella JoharikaPriya Maji

Abstract

The field experiment was conducted at Crop Research Farm, Department of Agronomy, SHUATS, Prayagraj (U.P) during Kharif, 2023. The treatments consisted of three levels of sulphur (10, 25 & 40 kg/ha) and three levels of plant growth regulator (GA3 50 ppm, NAA 100 ppm, GA3 25 ppm + NAA 50 ppm). The experiment was laid out in a Randomized Block Design with ten treatments each replicated thrice. The treatments which are T1: 10 kg/ha Sulphur + GA3 50 ppm, T2: 10 kg/ha Sulphur + NAA 100 ppm, T3: 10 kg/ha Sulphur + GA3 25 ppm + NAA 50 ppm, T4: 25 kg/ha Sulphur + GA3 50 ppm, T5: 25 kg/ha Sulphur + NAA 100 ppm, T6: 25 kg/ha Sulphur + GA3 25 ppm + NAA 50 ppm, T7: 40 kg/ha Sulphur + GA3 50 ppm, T8: 40 kg/ha Sulphur + NAA 100 ppm, T9: 40 kg/ha Sulphur + GA3 25 ppm + NAA 50 ppm, T10: Control (NPK 20:60:40 kg/ha). The results showed that application of sulphur at 25 kg/ha with GA3 25 ppm and NAA 50 ppm (Treatment-6) recorded highest maximum plant height (44.85 cm), plant dry weight (34.29 g), number of pods per plant (11.67), number of kernels per pod (2.20), seed index (34.10 g), seed yield (1.94 t/ha), shelling Percentage (69.23%) and haulm yield (5.67 t/ha).

Peanut Plant Research StudiesNitrogen and Sulfur Effects on BrassicaAgricultural Science and FertilizationArachisYield (engineering)SulfurAgronomyChemistryBiologyMaterials scienceOrganic chemistry
Citations
0
FWCI
0.00
field-weighted impact
References
11
Percentile
4%
vs. same field & year
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