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Molecular mapping of QTLs for grain dimension traits in Basmati rice. | LitMetric

AI Article Synopsis

  • Basmati rice is characterized by its long grains, unique cooking qualities, and strong aroma, making the development of high-yielding varieties a significant challenge.
  • The study involved creating a population of recombinant inbred lines (RIL) from two rice varieties and revealed correlations between grain dimensions, leading to the identification of four major genomic regions linked to milled and cooked kernel lengths.
  • Among these, two QTLs were previously known while two were novel, with one genomic region containing 18 gene models that may play a role in the traits studied, including a new QTL related to kernel elongation ratio.

Article Abstract

Basmati rice is known for its extra-long slender grains, exceptional kernel dimensions after cooking, high volume expansion, and strong aroma. Developing high yielding Basmati rice varieties with good cooking quality is a gigantic task. Therefore, identifying the genomic regions governing the grain and cooked kernel dimension traits is of utmost importance for its use in marker-assisted breeding. Although several QTLs governing grain dimension traits have been reported, limited attempts have been made to map QTLs for grain and cooked kernel dimension traits of Basmati rice. In the current study, a population of recombinant inbred lines (RIL) was generated from a cross of Sonasal and Pusa Basmati 1121 (PB1121). In the RIL population, there was a significant positive correlation among the length (RRL: rough rice length, MRL: milled rice length, CKL: cooked kernel length) and breadth (RRB: rough rice breadth, MRB: milled rice breadth and CKB: cooked kernel breadth) of the related traits, while there was significant negative correlation between them. QTL mapping has led to the identification of four major genomic regions governing MRL and CKL. Two QTLs co-localize with the earlier reported major gene and a QTL while the remaining two QTLs () and () were novel. The QTL has been bracketed to a genomic region of 0.78 Mb between the markers RM15247 and RM15281. Annotation of this region identified 18 gene models, of which the genes predicted to encode pentatricopeptides and brassinosteroid insensitive 1-associated receptor kinase 1 precursor may be the putative candidate genes. Furthermore, we identified a novel QTL governing kernel elongation ratio (KER) in Basmati rice.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9379801PMC
http://dx.doi.org/10.3389/fgene.2022.932166DOI Listing

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