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Dive into the research topics where S. A. Desai is active.

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Featured researches published by S. A. Desai.


Proceedings of the National Academy of Sciences, India Section B: Biological Sciences | 2017

Phenotypic and Molecular Characterization of Alleles of Grain Quality Genes in Bread Wheat Genotypes

Arati Yadawad; V. Rudra Naik; Suma S. Biradar; S. A. Desai

Grain quality is an important determinant of market value of wheat. Identification of the genes that influence grain quality traits and estimation of effects of alleles of these genes can improve the effectiveness of wheat breeding. Sixty-four bread wheat cultivars from six different agro-climatic zones of India and eleven Australian cultivars were analyzed for the prevalence of Puroindoline (Pin) hardness mutations and Storage Protein Activator (SPA) alleles for detecting allelic diversity among these varieties. Most of the Australian genotypes had soft or semi hard textured grains and amplified both Pina and Pinb genes. In Indian genotypes, most of the genotypes had hard grain texture and the null mutation of Pina and the wild type Pinb allele (Pina-D1b/Pinb-D1a) was the most frequent combination in the Indian wheat germplasm. Predominance of Spa gene was observed in both Australian and Indian genotypes and all these genotypes recorded high grain protein content as compared to genotypes which are having null allele for SpaB gene. This study can provide useful information for the improvement of wheat quality in selecting parental lines for crossing to maximize diversity at these loci and enhance the effectiveness of molecular marker assisted crop breeding.


Indian Journal of Genetics and Plant Breeding | 2017

Pyramiding of leaf rust resistance genes in bread wheat variety DWR 162 through marker assisted backcrossing

Arati Yadawad; Anil Gadpale; R.R. Hanchinal; H. L. Nadaf; S. A. Desai; Suma S. Biradar; V. Rudra Naik

A popular widely grown but leaf rust susceptible Indian bread wheat variety was pyramided with two leaf rust resistance genes, Lr24 and Lr28 by Marker Assisted Backcrossing (MABC). The near isogenic line of PBW 343 introgressed with Lr24 and Lr28 was used as a donor. The MABC approach employed one SSR marker, Xwmc313 and one SCAR marker SCS421 with its locus linked to Lr28 and two SCAR markers, SCS719 and SCS 1302 linked to Lr24 for foreground selection to select plants carrying Lr24 and Lr28 genes. Marker assisted background selection in BC2F2 to recover the genome of recipient parent involving 42 polymorphic SSR markers dispersed throughout the genome facilitated mean recurrent parent genome (RPG) recovery of 80.3% with a range from 67.5–94.7%. BC2F2 plants were characterized for DUS (Distinctiveness Uniformity Stability) for phenotypic identification of plants that mostly resemble DWR 162 variety. Field evaluation of BC2F2 plants for yield and its component traits to assess the effect of these two genes in the background of DWR 162 revealed high yield potential of selected plants along with leaf rust resistance and no yield penalty was apparent. This study successfully demonstrate the practical utility of MABC in wheat rust resistance breeding for developing resistant lines in the background of any elite and popular wheat cultivar with relatively higher speed and precision.


Indian Journal of Genetics and Plant Breeding | 2015

Improvement of leaf rust resistance in bread wheat variety DWR162 (Triticum aestivum L.) through marker assisted selection

Arati Yadawad; R.R. Hanchinal; H. L. Nadaf; S. A. Desai; Suma S. Biradar; V. Rudranaik

SCAR markers SCS1302 and SCS421 linked to leaf rust resistance genes Lr24 and Lr28 used in the present study genetically improved a bread wheat variety DWR162 using marker assisted selection. Evaluation of BC1F2 generation under field conditions indicated that plants with both Lr24 and Lr28 were superior in yield and its components and leaf rust resistance. Twenty six DUS characters used for identification of plants showed close resemblance with recipient variety DWR 162. The availability of a combination of the two major leaf rust resistance genes in desirable background would encourage the genetically enhanced DWR 162 with leaf rust resistance for its cultivation in a large area.


Karnataka Journal of Agricultural Sciences | 2014

Combining ability in tetraploid wheat for yield, yield attributing traits, quality and rust resistance over environments

H. C. Lohithaswa; S. A. Desai; R. R. Hanchinal; Bharati Patil; K. K. Math; I. K. Kalappanavar; T T Bandivadder; C P Chandrashekhara


Karnataka Journal of Agricultural Sciences | 2013

Genetic studies in free threshable advanced segregating population of tetraploid wheat (Triticum dicoccum)

Vijaykumar Hokrani; V. Rudra Naik; H. L. Nadaf; S. A. Desai; S. K. Deshpande; I. K. Kalappanavar; Bharati Patil


Indian Journal of Genetics and Plant Breeding | 2016

Bread wheat variety UAS 347

S. A. Desai; V. Rudra Naik; Suma S. Biradar; R.R. Hanchinal; Ik Kalappanavar; Bharati Patil; Sandeep Singh; Sivasamy M; Somanagouda; Durgannavar; T. A. Malabasari; Kalaghatagi; A. K. Guggari


Journal of Wheat Research | 2014

A high yielding semi-dwarf dicoccum wheat - Nilgiri Khapli (HW 1098) released for cultivation to dicoccum growing areas of India

Sivasamy M; Jagdish Kumar; P Jayaprakash; V K Vikas; Vinod; Sanjay Kumar; Gyanendra Singh; Raman Sharma; Rajbir Yadav; J. B. Sharma; K. Vinod Prabhu; S G Bhagwat; Bikram Das; Sweta Mishra; Hanrao; V. Rudra Naik; S. A. Desai; Kalappanavar; Suma S. Biradar; E Punniakotti; K Sivan; Mohanlal Meena; Rajesh K Meena; Arun Kumar


Indian Journal of Plant Genetic Resources | 2014

UAS-334 (IC0599612; INGR 14027), a Wheat (Triticum aestivum) Germplasm with Resistance to Foot Rot

S. A. Desai; R.R. Hanchinal; Vr Naik; Suma S. Biradar; Ik Kalappanavar; Bn Patil


Indian Journal of Genetics and Plant Breeding | 2014

Variety UAS-304

R.R. Hanchinal; S. A. Desai; Ik Kalappanavar; H.C. Lohitashwa; K.K. Math; K.K. Mirajkar; Bharati Patil; V. Rudra Naik; Suma S. Biradar; C.P. Chandrashekhar; T.T. Bandiwaddar; B.T. Nadagaudar; J.H. Kulkarni; Laxman Padnad


Indian Journal of Genetics and Plant Breeding | 2014

Variety UAS-428

R.R. Hanchinal; S. A. Desai; Ik Kalappanavar; Bharati Patil; V. Rudra Naik; Suma S. Biradar; H.C. Lohitashwa; K.K. Math; K.K. Mirajkar; Venkatesh Kulkarni; C.P. Chandrashekhar; T.T. Bandiwaddar; B.T. Nadagaudar; J.H. Kulkarni; Laxman Padnad

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Suma S. Biradar

University of Agriculture

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V. Rudra Naik

University of Agriculture

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Arati Yadawad

University of Agriculture

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H. L. Nadaf

University of Agricultural Sciences

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Kalappanavar

University of Agriculture

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Bikram Das

National Institute of Technology Agartala

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Gyanendra Singh

Indian Council of Agricultural Research

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J. B. Sharma

Indian Agricultural Research Institute

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K. Vinod Prabhu

Indian Agricultural Research Institute

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Rajbir Yadav

Indian Agricultural Research Institute

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