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Meta-QTLs, ortho-MetaQTLs and candidate genes for grain Fe and Zn contents in wheat (Triticum aestivum L.).
Singh, Rakhi; Saripalli, Gautam; Gautam, Tinku; Kumar, Anuj; Jan, Irfat; Batra, Ritu; Kumar, Jitendra; Kumar, Rahul; Balyan, Harindra Singh; Sharma, Shailendra; Gupta, Pushpendra Kumar.
Afiliação
  • Singh R; Department of Genetics and Plant Breeding, Ch. Charan Singh University, 250 004 Meerut, U.P India.
  • Saripalli G; Department of Genetics and Plant Breeding, Ch. Charan Singh University, 250 004 Meerut, U.P India.
  • Gautam T; Department of Plant Science and Landscape Architecture, University of Maryland College Park, MD-20742 College Park, MD United States.
  • Kumar A; Department of Genetics and Plant Breeding, Ch. Charan Singh University, 250 004 Meerut, U.P India.
  • Jan I; Department of Genetics and Plant Breeding, Ch. Charan Singh University, 250 004 Meerut, U.P India.
  • Batra R; Department of Genetics and Plant Breeding, Ch. Charan Singh University, 250 004 Meerut, U.P India.
  • Kumar J; Department of Genetics and Plant Breeding, Ch. Charan Singh University, 250 004 Meerut, U.P India.
  • Kumar R; Dept. of Biotechnology, Govt. of India, National Agri-Food Biotechnology Institute (NABI), Sector 81 (Knowledge City), S.A.S. Nagar, 140306 Mohali, Punjab India.
  • Balyan HS; Department of Genetics and Plant Breeding, Ch. Charan Singh University, 250 004 Meerut, U.P India.
  • Sharma S; Department of Genetics and Plant Breeding, Ch. Charan Singh University, 250 004 Meerut, U.P India.
  • Gupta PK; Department of Genetics and Plant Breeding, Ch. Charan Singh University, 250 004 Meerut, U.P India.
Physiol Mol Biol Plants ; 28(3): 637-650, 2022 Mar.
Article em En | MEDLINE | ID: mdl-35465199
ABSTRACT
Majority of cereals are deficient in essential micronutrients including grain iron (GFe) and grain zinc (GZn), which are therefore the subject of research involving biofortification. In the present study, 11 meta-QTLs (MQTLs) including nine novel MQTLs for GFe and GZn contents were identified in wheat. Eight of these 11 MQTLs controlled both GFe and GZn. The confidence intervals of the MQTLs were narrower (0.51-15.75 cM) relative to those of the corresponding QTLs (0.6 to 55.1 cM). Two ortho-MQTLs involving three cereals (wheat, rice and maize) were also identified. Results of MQTLs were also compared with the results of earlier genome wide association studies (GWAS). As many as 101 candidate genes (CGs) underlying MQTLs were also identified. Twelve of these CGs were prioritized; these CGs encoded proteins with important domains (zinc finger, RING/FYVE/PHD type, flavin adenine dinucleotide linked oxidase, etc.) that are involved in metal ion binding, heme binding, iron binding, etc. qRT-PCR analysis was conducted for four of these 12 prioritized CGs using genotypes which have differed for GFe and GZn. Significant differential expression in these genotypes was observed at 14 and 28 days after anthesis. The MQTLs/CGs identified in the present study may be utilized in marker-assisted selection (MAS) for improvement of GFe/GZn contents and also for understanding the molecular basis of GFe/GZn homeostasis in wheat. Supplementary Information The online version contains supplementary material available at 10.1007/s12298-022-01149-9.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Physiol Mol Biol Plants Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Physiol Mol Biol Plants Ano de publicação: 2022 Tipo de documento: Article