Indian Journal of Entomology
Open Access
SCOPUSWeb of Science
  • Year: 2026
  • Volume: 88
  • Issue: 1

Biochemical Traits Related to Brown Planthopper Resistance in Rice Landraces

  • Author:
  • Chanchala Meher1,2, Gaurav Kumar1, Arundhati Sasmal2, G Basana-Gowda1, Totan Adak1, Shyamaranjan Das Mohapatra1, Guru-Pirasanna-Pandi Govindharaj1,*
  • Total Page Count: 6
  • Page Number: 166 to 171

1Crop Protection DivisionICAR-National Rice Research Institute, Cuttack753006, Odisha, India

2Odisha University of Agriculture and Technology, Bhubaneswar751003, Odisha, India

*Email: guru.g@icar.gov.in, guruagri@gmail.com (corresponding author):

Online published on 26 February, 2026.

Abstract

Nilaparvata lugens (Stål) is a major pest in rice, causing significant yield losses. This study evaluated 21 rice landraces and resistant varieties, including ASD7, Babawee, Chinasaba, IR36, ARC10550, IR64, IR-71033-121-15, Milyang, MUTNS1, OM4498, Pokkali, Ratu Heenati, RP 2068-18-3-5, Swarna, T12, CR-3006-8-2, CR-317, CR-805, and Salkathi along with resistant check PTB33 and susceptible check TN1, to investigate resistance mechanisms. Damage was assessed on a 1–9 scale: PTB33 and Salkathi were highly resistant (score 1, <8.5% damage), while TN1 and Swarna were fully susceptible (score 9, 100% damage).Resistant genotypes exhibited lower honeydew excretion (PTB33: 45.33 mm2; Salkathi: 52 mm2;) and reduced nymphal survival (PTB33: 21%; Salkathi: 24.67%), compared to susceptible varieties (TN1: 197.33 mm2; 91.33%). Biochemical analysis revealed that BPH infestation reduced sugar and protein levels, with minimal losses in resistant genotypes (PTB33: 27.44% sugars, 8.95 % proteins) and significant reduction in TN1 (67.82% sugars, 53.82% proteins). Phenol levels increased post-infestation, with the highest increment in susceptible genotypes (TN1:52.19%; Swarna: 50.55%) and the lowest in resistant genotype (PTB33: 4.34%; Salkathi: 4.43%).These findings suggest that reduced sugar and protein levels and high phenol contentin plants contribute to antibiosis-based resistance in resistant genotypes. This study highlights the importance of resistant landraces in sustainable pest management for rice cultivation.

Keywords

Cereals, Honeydew, Hoppers, Hemiptera, Insects, Paddy, Phenol, Protein, Sucking pest, Sugar