Background: Yield improvement in hybrid rice depends on identifying component traits that are reliably associated with productivity.
Aims: This study aimed to determine the nature and magnitude of genotypic associations and to assess the direct and indirect effects of yield-attributing traits on single-plant yield in rice.
Study Design: The experimental material comprised 39 F₁ hybrids, three CMS lines (evaluated through their respective maintainer lines), 13 restorer lines, and four checks. The hybrids were developed during Kharif 2025 using a Line × Tester mating design and evaluated in a Randomised Block Design with three replications.
Place and Duration of Study: The hybrids were developed during Kharif 2025 and evaluated during Rabi 2025–2026 at the experimental farm of ICAR–Indian Institute of Rice Research, Hyderabad.
Methodology: Observations were recorded for eight traits: days to 50% flowering, plant height (cm), number of productive tillers, panicle length (cm), number of filled grains per panicle, spikelet fertility (%), thousand-grain weight (g), and single-plant yield (g).
Results: Among the traits studied, the number of productive tillers exhibited the highest positive correlation with single-plant yield (r = 0.72, P < 0.01), followed by plant height (r = 0.45, P < 0.01), panicle length (r = 0.34, P < 0.01), and days to 50% flowering (r = 0.29, P < 0.05). Path coefficient analysis revealed positive direct effects on single-plant yield through the number of productive tillers (0.66987), panicle length (0.14114), number of filled grains per panicle (0.13347), and plant height (0.09584), indicating their contribution to yield improvement.
Conclusion: Therefore, prioritising the number of productive tillers, panicle length, and number of filled grains per panicle as key selection criteria could facilitate the development of high-yielding hybrid rice cultivars and contribute to sustainable improvements in rice productivity.
C. Sankaran, Ch. Damodar Raju, K. Sruthi et al.· Journal of Advances in Biolo...· 0 citations
The imprecise breeding methods including recombination breeding, physical/chemical mutagenesis, and marker‐assisted breeding have been extensively utilized for trait improvement of rice crop. Despite tremendous progress made through these breeding methods, the critical issues, such as linkage drag, unintended phenotype, and longer duration of time required to breed a cultivar, have been the major limitations. Among the new breeding technologies, genome editing (GE) has become the most promising approach because of its specificity, precision, and speed. Despite its transformative potential, genome editing continues to face several limitations in crop improvement. These include well‐recognized policy challenges, such as biosafety regulations and intellectual property constraints, alongside technical barriers like inefficient tissue culture and transformation systems. Additionally, researchers remain constrained by the limited availability of precise gene information necessary for accurate targeted editing and effective trait enhancement. This review presents an analysis of genes that regulate abiotic and biotic stresses, yield, grain quality and nutrition, plant architecture, nutrient absorption and use efficiency, and other agronomically important traits of rice. The trait‐wise probable target genes for genome editing have been discussed in detail. This review will serve as a ready reckoner for rice researchers and funding agencies.
Manish Solanki, Faisal Yousuf, Akanksha Srivastava et al.· Physiologia Plantarum : An I...· 2 citations
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