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Random Amplification Polymorphic DNA and Agro-Morphological Traits-Based Fingerprinting for Detection of Genetic Divergence in Indian Black Rice

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  • 1Amity Institute of Biotechnology, Amity University Uttar Pradesh, Sector-125, UP 201313, India
    2Department of Botany, Hansraj College, University of Delhi, Delhi 110007, India

Received date: 2023-08-28

  Accepted date: 2024-01-30

  Online published: 2024-03-08

Cite this article

Manisha Sharma, Dhananjay Raturi, Vijay Rani Rajpal, Manju Chaudhary, Soom Nath Raina, Apekshita Singh . Random Amplification Polymorphic DNA and Agro-Morphological Traits-Based Fingerprinting for Detection of Genetic Divergence in Indian Black Rice[J]. Rice Science, 2024 , 31(4) : 366 -370 . DOI: 10.1016/j.rsci.2024.03.002

References

[1] Azam M G, Hossain M A, Sarker U, Alam A K M M, Nair R M, Roychowdhury R, Ercisli S, Golokhvast K S. 2023. Genetic analyses of mungbean [Vigna radiata (L.) wilczek] breeding traits for selecting superior genotype(s) using multivariate and multi-traits indexing approaches. Plants, 12(10): 1984.
[2] Blakeney M, Krishnankutty J, Raju R K, Siddique K H M. 2020. Agricultural innovation and the protection of traditional rice varieties: Kerala a case study. Front Sustain Food Syst, 3: 116.
[3] Chakrabarty T, Sarker U, Hasan M, Rahman M M. 2018. Variability in mineral compositions, yield and yield contributing traits of stem amaranth (Amaranthus lividus). Genetika-Belgrade, 50(3): 995-1010.
[4] Choudhury P R, Kohli S, Srinivasan K, Mohapatra T, Sharma R P. 2001. Identification and classification of aromatic rices based on DNA fingerprinting. Euphytica, 118(3): 243-251.
[5] Davierwala A P, Chowdari K V, Kumar S, Reddy A P, Ranjekar P K, Gupta V S. 2000. Use of three different marker systems to estimate genetic diversity of Indian elite rice varieties. Genetica, 108(3): 269-284.
[6] Epe I A, Bir M S H, Choudhury A K, Khatun A, Aktar M M, Arefin M S, Islam M A, Park K W. 2021. Genetic diversity analysis of high yielding rice (Oryza sativa) varieties cultivated in Bangladesh. Korean J Agric Sci, 48(2): 283-297.
[7] Hasan-Ud-Daula H, Sarker U. 2020. Variability, heritability, character association, and path coefficient analysis in advanced breeding lines of rice (Oryza sativa L.). Genetika-Belgrade, 52(2): 711-726.
[8] Jahan N, Sarker U, Hasan Saikat M M, Hossain M M, Azam M G, Ali D, Ercisli S, Golokhvast K S. 2023. Evaluation of yield attributes and bioactive phytochemicals of twenty amaranth genotypes of Bengal floodplain. Heliyon, 9(9): e19644.
[9] Kanawapee N, Sanitchon J, Srihaban P, Theerakulpisut P. 2011. Genetic diversity analysis of rice cultivars (Oryza sativa L.) differing in salinity tolerance based on RAPD and SSR markers. Electron J Biotechnol, 14(6): 2.
[10] Kiani G, Katalani C. 2018. Divergence in hybrid rice parental lines detected by RAPD and ISSR markers. Acta Agric Slov, 111(2): 369-376.
[11] Krishnankutty J, Raju R K, Blakeney M, Siddique K H M. 2021. Is traditional rice reviving? An exploratory study in Kerala, India. Int J Agric Resour Gov Ecol, 17(1): 15-37.
[12] Medhabati K, Rajiv Das K, Rohinikumar M, Sunitibala H, Dikash Singh T. 2013. Genetic divergence in indigenous wild and cultivated rice species of Manipur valley. ISRN Genet, 2013: 651019.
[13] Qiu L C, Pan J, Duan B W. 1993. The mineral nutrient component and characteristics of color and white brown rice. Chin J Rice Sci, 7(2): 95-100.(in Chinese with English abstract)
[14] Rashad M M I, Sarker U. 2020. Genetic variations in yield and yield contributing traits of green amaranth. Genetika-Belgrade, 52(1): 393-407.
[15] Raturi D, Chaudhary M, Bhat V, Goel S, Raina S N, Rajpal V R, Singh A. 2022. Overview of developed core and mini core collections and their effective utilization in cultivated rice and its related species (Oryza sp.): A review. Plant Breed, 141(4): 501-512.
[16] Rekha T, Martin K P, Sreekumar V B, Madassery J. 2011. Genetic diversity assessment of rarely cultivated traditional indica rice (Oryza sativa L.) varieties. Biotechnol Res Int, 2011: 784719.
[17] Sarif H M, Rafii M Y, Ramli A, Oladosu Y, Musa H M, Rahim H A, Zuki Z M, Chukwu S C. 2020. Genetic diversity and variability among pigmented rice germplasm using molecular marker and morphological traits. Biotechnol Biotechnol Equip, 34(1): 747-762.
[18] Sarker U, Islam M T, Rabbani M G, Oba S. 2015a. Variability, heritability and genetic association in vegetable amaranth (Amaranthus tricolor L.). Span J Agric Res, 13(2): e0702.
[19] Sarker U, Islam T, Rabbani G, Oba S. 2015b. Genotype variability in composition of antioxidant vitamins and minerals in vegetable amaranth. Genetika-Belgrade, 47(1): 85-96.
[20] Sarker U, Islam T, Rabbani G, Oba S. 2018. Antioxidant leaf pigments and variability in vegetable amaranth. Genetika-Belgrade, 50(1): 209-220.
[21] Sarker U, Azam M G, Talukder M Z A. 2022. Genetic variation in mineral profiles, yield contributing agronomic traits, and foliage yield of stem amaranth. Genetika-Belgrade, 54(1): 91-108.
[22] Saxena R R, Mohan P V, Sahu H, Sahu P K, Rawte S, Sao R, Saxena R R, Verulkar S B. 2020. Genetic structure and association analysis of yield and grain length traits in rice germplasm accessions. J Exp Biol Agric Sci, 8(3): 241-252.
[23] Sharma S, Chunduri V, Kumar A, Kumar R, Khare P, Kondepudi K K, Bishnoi M, Garg M. 2018. Anthocyanin bio-fortified colored wheat: Nutritional and functional characterization. PLoS One, 13(4): e0194367.
[24] Sholikhah U, Parjanto, Handoyo T, Yunus A. 2019. Morphological characters of several black and aromatic rice (Oryza sativa L.) in Indonesia. AIP Conf Proc, 2120(1): 030029.
[25] Virk P S, Newbury H J, Jackson M T, Ford-Lloyd B V. 1995. The identification of duplicate accessions within a rice germplasm collection using RAPD analysis. Theor Appl Genet, 90(7): 1049-1055.
[26] Yamuangmorn S, Prom-U-Thai C. 2021. The potential of high- anthocyanin purple rice as a functional ingredient in human health. Antioxidants, 10(6): 833.
[27] Zakiyah N M, Handoyo T, Kim K M. 2019. Genetic diversity analysis of Indonesian aromatic rice varieties (Oryza sativa L.) using RAPD. J Crop Sci Biotechnol, 22(1): 55-63.
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