Vegetalika
Vol 15, No 3 (2026): In Publish

Exploring the Diversity of Blast Resistance Genes in Rice Lines Using PCR-Based Functional STS Markers

Amalia Prihaningsih (Direktorat Pengelolaan Laboratorium, Fasilitas Riset dan Kawasan Sains dan Teknologi, BRIN)
Siti Yuriyah (Pusat Riset Tanaman Pangan, Organisasi Riset Pertanian dan Pangan, BRIN)
Joko Prasetyo (Pusat Riset Botani Terapan, Organisasi Riset Hayati Lingkungan, BRIN)
Rerenstradika Tizar Terryana (Pusat Riset Botani Terapan, Organisasi Hayati dan Lingkungan, BRIN)
Sri Utami (Departemen Biologi, Universitas Terbuka)
Yusi Nurmalita Andarini (Research Center for Food Crops, Research Organization for Agriculture and Food, National Research and Innovation Agency (BRIN))



Article Info

Publish Date
31 Aug 2026

Abstract

Rice blast, caused by Pyricularia oryzae (syn. Magnaporthe oryzae), remains one of the most destructive diseases of rice worldwide. Developing resistant varieties is a sustainable strategy for disease management, and information on the diversity of blast resistance genes is important for selecting breeding parents. This study evaluated the effectiveness of functional sequence-tagged site (STS) markers for resolving genetic diversity among advanced rice lines derived from multiple-cross populations. A total of 104 genotypes, comprising 100 advanced lines and four parental varieties (Ciherang, Inpari 13, Inpari 10, and Situ Bagendit), were analyzed using eight gene-specific STS markers associated with four blast resistance genes (Pii, Pia, Pikp, and Pita). Polymorphism information content (PIC) values ranged from 0.80 to 0.96, with a mean of 0.89. UPGMA cluster analysis separated the genotypes into two major groups at a similarity coefficient of 0.90, although most lines occurred in one group and lines with the same parental background were distributed among different subgroups. Observed heterozygosity was low (Ho = 0.09), indicating limited resolution for distinguishing closely related lines despite the high PIC values. Functional STS markers were informative for detecting allelic variation but were insufficient for resolving fine-scale relationships within this genetically narrow breeding population. Combining marker analysis with phenotypic evaluation and higher-resolution markers is therefore recommended to improve selection for blast resistance.

Copyrights © 2026






Journal Info

Abbrev

jbp

Publisher

Subject

Agriculture, Biological Sciences & Forestry

Description

Vegetalika ISSN (Cetak): 2302-4054 dan ISSN (Online): 2622-7452 adalah open access jurnal yang mempublikasikan artikel-artikel ilmiah berupa gagasan dan hasil penelitian. Topik publikasi berkaitan dengan disiplin ilmu Agronomi mencakup Manajemen dan Produksi Tanaman, Hortikultura, Ekologi Tanaman, ...