Genotyping by Sequencing for Crop Improvement. Группа авторов
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Название: Genotyping by Sequencing for Crop Improvement

Автор: Группа авторов

Издательство: John Wiley & Sons Limited

Жанр: Биология

Серия:

isbn: 9781119745679

isbn:

СКАЧАТЬ the doorway to the unexplored genomics of non‐model plants. Frontiers in Plant Science 6: 1074.

      46 Varshney, R.K., Saxena, R.K., Upadhyaya, H.D. et al. (2017). Whole‐genome resequencing of 292 pigeonpea accessions identifies genomic regions associated with domestication and agronomic traits. Nature Genetics 49: 1082.

      47 Varshney, R.K., Thudi, M., Roorkiwal, M. et al. (2019). Resequencing of 429 chickpea accessions from 45 countries provides insights into genome diversity, domestication and agronomic traits. Nature Genetics 51: 857–864.

      48 Vasupalli, N., Koramutla, M.K., Aminedi, R. et al. (2020). Omics approaches and biotechnological perspectives of arsenic stress and detoxification in plants. In: Metalloids in Plants: Advances and Future Prospects, 249–273. Wiley.

      49 Vats, S., Kumawat, S., Kumar, V. et al. (2019). Genome editing in plants: exploration of technological advancements and challenges. Cells 8: 1386.

      50 Weigel, D. and Mott, R. (2009). The 1001 genomes project for Arabidopsis thaliana. Genome Biology 10: 1–5.

      51 Xie, W., Feng, Q., Yu, H. et al. (2010). Parent‐independent genotyping for constructing an ultrahigh‐density linkage map based on population sequencing. Proceedings of the National Academy of Sciences of the United States of America 107: 10578–10583.

      52 Xu, X., Zeng, L., Tao, Y. et al. (2013). Pinpointing genes underlying the quantitative trait loci for root‐knot nematode resistance in palaeopolyploid soybean by whole genome resequencing. Proceedings of the National Academy of Sciences of the United States of America 110: 13469–13474.

      53 Yu, Y., Fu, J., Xu, Y. et al. (2018). Genome re‐sequencing reveals the evolutionary history of peach fruit edibility. Nature Communications 9: 1–13.

      54 Yuan, J., Wang, X., Zhao, Y. et al. (2020). Genetic basis and identification of candidate genes for salt tolerance in rice by GWAS. Scientific Reports 10: 9958.

      55 Zargar, S.M., Raatz, B., Sonah, H. et al. (2015). Recent advances in molecular marker techniques: insight into QTL mapping, GWAS and genomic selection in plants. Journal of Crop Science and Biotechnology 18: 293–308.

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