4.5 Article

Development and characterization of nitrogen and phosphorus use efficiency responsive genic and miRNA derived SSR markers in wheat

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HEREDITY
卷 128, 期 6, 页码 391-401

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SPRINGERNATURE
DOI: 10.1038/s41437-022-00506-4

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  1. Department of Molecular Biology, Biotechnology Bioinformatics
  2. CCS Haryana Agricultural University
  3. Council of Scientific & Industrial Research (CSIR), New Delhi, India
  4. Ministry of Education under SPARC project [SPARC/2018-2019/P854/SL]

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Nitrogen and phosphorous are the most limiting factors for wheat production. Marker-assisted selection can be used to identify wheat genotypes with different N/P use efficiency. These markers are valuable for evaluating the N and P use efficiency in wheat germplasm.
Among all the nutrients, nitrogen (N) and phosphorous (P) are the most limiting factors reducing wheat production and productivity world-wide. These macronutrients are directly applied to soil in the form of fertilizers. However, only 30-40% of these applied fertilizers are utilized by crop plants, while the rest is lost through volatilization, leaching, and surface run off. Therefore, to overcome the deficiency of N and P, it becomes necessary to improve their use efficiency. Marker-assisted selection (MAS) combined with traditional plant breeding approaches is considered best to improve the N and P use efficiency (N/PUE) of wheat varieties. In this study, we developed and evaluated a total of 98 simple sequence repeat (SSR) markers including 66 microRNAs and 32 gene-specific SSRs on a panel of 10 (N and P efficient/deficient) wheat genotypes. Out of these, 35 SSRs were found polymorphic and have been used for the study of genetic diversity and population differentiation. A set of two SSRs, namely miR171a and miR167a were found candidate markers able to discriminate contrasting genotypes for N/PUE, respectively. Therefore, these two markers could be used as functional markers for characterization of wheat germplasm for N and P use efficiency. Target genes of these miRNAs were found to be highly associated with biological processes (24 GO terms) as compared to molecular function and cellular component and shows differential expression under various P starving conditions and abiotic stresses.

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