Indian Journal of Plant Genetic Resources
  • Year: 2025
  • Volume: 38
  • Issue: 1

Changes in morpho-physiological attributes and gene expression in pearl millet parental lines during seedling stage drought stress

  • Author:
  • A Govardhani1, SNCVL Pushpavalli1,*, S Vanisri2, T Nepolean3, A Geetha4
  • Total Page Count: 11
  • Published Online: Aug 2, 2025
  • Page Number: 47 to 57

1Institute of Biotechnology, Professor Jayashankar Telangana State Agricultural University, Rajendranagar, Hyderabad, Telangana, India

2Regional Agricultural Research Station, Palem, Professor Jayashankar Telangana State Agricultural University, Rajendranagar, Hyderabad, Telangana, India

3ICAR-Indian Institute of Millets Research, Rajendranagar, Hyderabad, Telangana, India

4College of Agriculture, Rajendranagar, Professor Jayashankar Telangana State Agricultural University, Rajendranagar, Hyderabad, Telangana, India

*Author for correspondence: pushpapjtsau@gmail.com

Online published on 2 August, 2025.

Abstract

Drought, being a devastating abiotic factor, affects the productivity of many crops. Being a climate-resilient crop, pearl millet’s adaptability towards arid regions attracts us to examine morpho-physiological and molecular mechanisms during seedling drought stress. The experimental material consisted of 41 genotypes subjected to drought stress at the seedling stage. Significant differences for morpho-physiological traits such as SL, R/S, RWC, RL (except treatments), and WRC (except-G×T interaction) were observed. Two tolerant and two susceptible genotypes were selected based on RWC under drought conditions. A set of seven genes (ST, NAC, 26S, TD, WD-40, GAUT and ASR) of drought-related pathways were selected and their expression patterns were analyzed in these genotypes. The expression of drought-related genes was in confirmation with the morpho-physiological traits. Our study suggests that drought screening at the early seedling stage for morpho-physiological traits will aid the breeders in the development of drought-tolerant parental lines and hybrids.

Keywords

Relative water content, Root length, Root/shoot ratio, Shoot length, Water retention capacity