Biodiversitas Journal of Biological Diversity
Vol. 27 No. 4 (2026)

Biochemical responses of a wild and a cultivated accession of Momordica charantia under contrasting soil moisture regimes

THUAN VAN NGUYEN (Doctoral Program in Agricultural Science, Faculty of Agriculture, Universitas Andalas. Jl. Limau Manis, Kampus Unand Limau Manis, Padang 25163, West Sumatra, Indonesia)
MUSLIAR KASIM (Faculty of Agricultural Technology, Universitas Andalas. Jl. Limau Manis, Kampus Unand Limau Manis, Padang 25163, West Sumatra, Indonesia)
TUTY ANGGRAINI (Faculty of Agricultural Technology, Universitas Andalas. Jl. Limau Manis, Kampus Unand Limau Manis, Padang 25163, West Sumatra, Indonesia)
LINH NHUT DOAN (Faculty of Agricultural and Rural Development, Kien Giang University. 320A National Highway 61, Chau Thanh, Kien Giang Province 92000, Vietnam)
NHA VAN DUONG (Faculty of Agricultural and Rural Development, Kien Giang University. 320A National Highway 61, Chau Thanh, Kien Giang Province 92000, Vietnam)
THI CAM THI VO (Faculty of Food Science and Health, Kien Giang University. 320A National Highway 61, Chau Thanh, Kien Giang Province 92000, Vietnam)
SANG TRONG DO (Faculty of Food Science and Health, Kien Giang University. 320A National Highway 61, Chau Thanh, Kien Giang Province 92000, Vietnam)



Article Info

Publish Date
14 May 2026

Abstract

Abstract. Nguyen TV, Kasim M, Anggraini T, Doan LN, Duong NV, Vo TCT, Do ST. 2026. Biochemical responses of a wild and a cultivated accession of Momordica charantia under contrasting soil moisture regimes. Biodiversitas 27 (4): d270403. https://doi.org/10.13057/biodiv/d270403. Water deficit is a major abiotic constraint affecting plant growth, functional traits, and genotype-level variation under field conditions. This study evaluated growth performance and antioxidant-related biochemical traits of a wild and a cultivated accession of bitter melon (Momordica charantia) under three soil moisture regimes (80%, 65%, and 50% field capacity) using a split-plot field design. Total Phenolic Content (TPC), Total Flavonoid Content (TFC), antioxidant activity (DPPH radical scavenging), and biomass-related traits were quantified in leaves at defined crop ages and in fruits at commercial maturity, and yield-based biochemical indices were calculated to integrate concentration and dry matter accumulation. Moderate moisture deficit (65% field capacity) was associated with increased TPC, TFC, and antioxidant activity in several instances, while severe deficit (50% field capacity) reduced biomass stability and biochemical performance, particularly in the cultivated accession. Fruits accumulated greater absolute biochemical yields per plant, whereas leaves exhibited stronger concentration-based responsiveness to moisture variation. The wild accession generally showed greater biochemical plasticity and higher yield-integrated metabolite production than the cultivated accession under moisture stress. These findings demonstrate a clear trade-off between metabolite concentration and biomass accumulation under drought conditions, with moderate stress generally supporting higher biochemical performance. The results highlight the importance of genotype selection and irrigation management in maximizing functional traits and support the use of wild germplasm in breeding strategies for improved drought adaptation in bitter melon.

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Journal Info

Abbrev

biodiv

Publisher

Subject

Agriculture, Biological Sciences & Forestry Biochemistry, Genetics & Molecular Biology

Description

The Biodiversitas Journal was first published in 2000 by the Department of Biology, FMNS, Universitas Sebelas Maret, Surakarta, Indonesia, then in 2006 it was co-published by the Society for Indonesian Biodiversity and that department; since 2017 it was also hosted by Smujo. From 2003-2012 it was ...