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Research Article Open access CC BY 4.0

Genetic Divergence and Strategic Parental Selection for Hybridization in Black Pepper (Piper nigrum L.) Germplasm

H. R. Sri Harsha, Sadashiv Nadukeri

Journal of Advances in Biology & Biotechnology · pp. 606–618 · Published 21 Sep 2026

10.9734/jabb/2026/v29i104453

Abstract

Aims: To quantify genetic divergence among 25 black pepper (Piper nigrum L.) genotypes using Mahalanobis D² statistics, classify the germplasm by Tocher’s method, identify the traits underlying divergence and translate cluster-specific agronomic profiles into a strategic framework for parental selection. Study Design: Field evaluation in a Randomised Complete Block Design, followed by multivariate divergence analysis. Place and Duration of Study: Field genebank at Haalugudde village, Anandapura taluk, Shivamogga district, Karnataka, India (14.15° N, 75.32° E; 640 m above mean sea level), between November 2024 and March 2025. Methodology: Twenty-five genotypes, comprising local landraces, a traditional cultivar, released and hybrid varieties, and farmer selections on six-year-old, stable-bearing vines, were evaluated in three replications. Twenty quantitative agro-morphological, yield and quality traits were subjected to Mahalanobis D² analysis; genotypes were grouped by Tocher’s method, and the relative contribution of each trait to divergence was estimated. Results: The genotypes resolved into six clusters (Cluster III, 9 genotypes; Cluster II, 8; Clusters I and IV, 3 each; and Clusters V and VI, one genotype each: Panniyur-1 and V-2, respectively). Maximum inter-cluster divergence (D² = 6,870.80) occurred between Cluster V and Cluster VI; Clusters II and III were closest (D² = 682.26). Dry berry yield per vine (27.00%), spikes per plagiotropic shoot (17.67%) and laterals m⁻² (16.33%) jointly accounted for 61.00% of divergence. Cluster V combined the highest fresh (32.77 kg) and dry (11.46 kg) berry yields with the longest spikes (21.50 cm); Cluster VI led in plant architecture (27.33 laterals m⁻²; 65.00 spikes m⁻²); Cluster IV combined 105.00 berries per spike with the heaviest fresh berries (16.01 g). Conclusion: Substantial, cluster-structured divergence exists in this germplasm, but the most divergent pair did not automatically coincide with the pair offering the most useful complementarity. Integrating Mahalanobis D², cluster-specific complementarity and defined breeding objectives is proposed as a more defensible basis for prioritising crosses than divergence alone, with Panniyur-1 × V-2 identified as a high-priority combination for experimental hybridisation and progeny evaluation.

Piper nigrum Mahalanobis D² Tocher’s clustering genetic divergence trait complementarity parental selection germplasm hybridization

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