Skip to content
Research Article Open access CC BY 4.0

Morpho-physiological and Biochemical Screening of Advanced Grass Pea Lines for Drought Stress Tolerance

Arpita Sen, Md. Azadul Haque, Sayed Eshtiak Akter, Kazi Tahmina Akter, Mir Obaidur Rahman

Asian Journal of Research in Crop Science · pp. 187–200 · Published 25 Aug 2025

10.9734/ajrcs/2025/v10i3385

Abstract

Drought stress significantly affects the growth, physiology, and yield of leguminous crops like grass pea (Lathyrus sativus L.). This study evaluated the drought tolerance of five grass pea genotypes (GM-04, GM-02, GM-03, BARI Khesari-2, and BINA Khesari-2) under three water regimes: control, 60%, and 40% field capacity. Key physiological traits—chlorophyll content (SPAD), proline and soluble sugar levels, oxidative stress (MDA), and yield components were analyzed. GM-04 statistically outperformed other genotypes, maintaining higher SPAD values, increased proline and sugar accumulation, and lower MDA levels under stress, indicating effective osmotic adjustment and oxidative stress tolerance. It also achieved the highest yield under both moderate and severe drought, reflecting superior water-use efficiency. In contrast, BINA Khesari-2 showed poor drought response, with significant physiological damage and yield decline. These results suggest GM-04 as a promising drought-tolerant genotype suitable for cultivation in water-limited areas and valuable for breeding programs aimed at enhancing grass pea resilience to climate stress.

Genotype drought physiological biochemical analysis yield

Cited by 0

No indexed citations yet.

Article metrics

Real usage data collected on this platform.

0

Page views

0

PDF downloads

0

Outbound clicks

0

Citations

Views by country

Approximate, from request IP at view time — not citizenship or institution. Countries with fewer than 5 views are grouped as "Other".

No views recorded yet.

Traffic sources

Referring site, by host.

No traffic recorded yet.

Views and downloads exclude known bots/crawlers. Citations combines this platform's own DOI-resolved index with each external source's own reported total — see Cited by above for individually listed citing works. Last refreshed 0 seconds ago.