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September 16, 2025Indian Journal of Agricultural Research0 citationsOpen Access

Genetic Divergence in Foxtail Millet (Setaria italica L.) Germplasm Accessions for Quality and Yield Contributing Traits

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PSP. SuthamathiMDM. DharnishkumarVSV. Manimozhi Selvi

Key Points

  • Significant genetic diversity was found among foxtail millet accessions, highlighting potential for breeding.
  • Cluster analysis identified six groups, with Cluster III showing superior agronomic traits compared to others.
  • Carotenoid content varied significantly among elite accessions, with some showing high levels beneficial for biofortification.
  • Key traits including plant height and panicle length contributed most to genetic divergence, guiding future breeding efforts.

Abstract

Background: Millets, particularly foxtail millet (Setaria italica L.), are gaining renewed attention for their nutritional, agronomic and ecological advantages. Despite its potential, genetic improvement of foxtail millet has been limited compared to major cereals. This study aims to evaluate the genetic divergence among 72 core germplasm accessions of foxtail millet and quantify carotenoid content in selected high-yielding lines to support future breedin g efforts. Although the genetic resources are large in this crop, it is kept unused and said to be underutilized crop. Thus, it is more important to expose the genetic parameters for the desirable traits in the germplasm accessions to improve its quality with yield. Hence, the evaluation of genetic resources had been taken for future research. Methods: The present study aimed to assess the genetic diversity and carotenoid content among 72 foxtail millet accessions and two check varieties CO (Te) 7 and ATL 1 sourced from the Ramiah Gene Bank. Field evaluations were conducted using a randomized complete block design (RCBD) at the Centre of Excellence in Millets, Tamil Nadu, during the 2023 Rabi season. Nine qualitative and eleven quantitative traits were recorded. Result: Cluster analysis based on Mahalanobis D2 statistics grouped the accessions into six clusters, indicating significant genetic diversity. Cluster III exhibited superior performance for key agronomic traits, while Cluster IV had the lowest mean for days to maturity, suggesting potential for breeding early-maturing, high-yielding varieties. The traits contributing most to genetic divergence included plant height (20.79%), panicle length (15.50%) and single plant stover yield (14.75%). Additionally, carotenoid content analysis in 25 elite accessions revealed a range from 0.18 to 1.68 mg/100 g, with accessions TGP/ISE–26 and TGP/ISE–183/1 showing the highest levels. The findings highlight promising genotypes for genetic improvement programs focused on yield and nutritional enhancement, particularly for biofortification with carotenoids.

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Cite This Study

Suthamathi et al. (2025) studied this question.

synapsesocial.com/papers/68d4565b31b076d99fa5b1f4https://doi.org/10.18805/ijare.a-6338
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