Genetic diversity of eight maize (Zea mays) cultivars from East Nusa Tenggara (Indonesia) based on inter simple sequence repeat markers
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Abstract
Abstract. Yani A, Chasani AR, Daryono BS. 2022. Genetic diversity of eight maize Zea mays L. cultivars from East Nusa Tenggara based on inter simple sequence repeat markers. Biodiversitas 23: 4124-4130. East Nusa Tenggara (NTT) is one of Indonesia's island that has many local maize cultivars. However, the existence of this local corn is threatened by the presence of high-yielding maize seeds. Therefore, characterization of local maize cultivars using molecular marker is needed to conserve the germplasm. This study aims to determine the genetic diversity of local maize cultivars (Zea maysL.) from East Nusa Tenggara based on ISSR markers. This research used eight local maize cultivars (Watar Ohaq, Watar Puluq, Wata Bura, Wata Kuma, Wata Bunga, Pena Muti, Boti Pulut, and Latun Wara). Young leaves of maize were used for DNA isolation. Total genomic DNA was isolated using Genomic DNA Mini Kit for Plant (Geneaid). DNA was then amplified using 5 ISSR molecular markers (ISSR-807, ISSR-808, UBC-809, UBC-811, UBC-834). DNA band profiles were scored based on the presence or absence of bands. Genetic variability was analyzed based on the UPGMA method using the MVSP ver application. 3.1. Local maize from NTT has high genetic diversity (similarity index between 0.29-0.65). Local maize cultivars were separated into two main clusters at a similarity index of 0.43 and the grouping pattern was not influenced by the geographic location of
local maize origin.
local maize origin.
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References
Abdel-Latif A, Osman G. 2017. Comparison of three genomic DNA extraction methods to obtain high DNA quality from maize. Plant methods 13(1): 1-9. DOI: 10.1186/s13007-016-0152-4.
Agarwal M, Shrivastava N, Padh H. 2008. Advances in molecular marker techniques and their applications in plant sciences. Plant Cell Rep 27(4): 617-631. DOI: 10.1007/s00299-008-0507-z.
Amoon MH, Abdul-Hamed ZA. 2020. Determination genetic diversity of inbred lines and hybrids of maize using ISSR Technic. Iraqi J Agric Sci 51(1): 269-277. DOI: 10.36103/ijas.v51i1.925.
Amzeri A, Indradewa D, Daryono, BS, Rachmawati, D. 2011. Kekerabatan jagung (Zea mays L.) lokal Madura berdasarkan karakter morfologi dan penanda RAPD. Biota 16 (2): 227-235. DOI: 10.24002/biota.v16i2.104. [Indonesian]
Arif MF, Subositi D, Sari AN, Aristya GR, Lesmana I, Kasiamdari RN. 2020. Genetic diversity of green chireta (Andrographis paniculata (Burm.f.) Wall. Ex Nees.) from Indonesia based on ISSR and RAPD markers. Malays Appl Biol 49(1): 61-68. DOI: 10.55230/mabjournal.v49i1.1655.
BPS NTT [Badan Pusat Statistik Provinsi Nusa Tenggara Timur]. 2020. Statistik Daerah Nusa Tenggara Timur. BPS NTT, Kupang. [Indonesian]
Baldauf, JA, Marcon C, Paschold A, Hochholdinger F. 2016. Nonsyntenic genes drive tissue-specific dynamics of differential, nonadditive, and allelic expression patterns in maize hybrids. Plant Physiol 171(2): 1144-1155. DOI: 10.1104/pp.16.00262.
Bani PW. 2018. Karakterisasi fenotip dan kekerabatan varietas jagung lokal Kabupaten Timor Tengah Utara. Savana Cendana 3(3): 41-42. DOI: 10.32938/sc.v3i03.318. [Indonesian]
Das CH, Balamohan TN, Poornima K, Bergh IVD. 2018. Evaluation of genetic diversity in some banana hybrids using ISSR Markers. Intl J Curr Microbiol App Sci 7(1): 146-157. DOI: 10.20546/ijcmas.2018.701.016.
Govindaraj M, Vetriventhan M, Srinivasan M. 2015. Importance of genetic diversity assessment in crop plants and its recent advances: An overview of its analytical perspectives. Gen Res Intl 431487: 1-14. DOI: 10.1155/2015/431487.
Hapsari L, Wahyudi D, Azrianingsih R, Arumingtyas EL. 2015. Genome identification of bananas (Musa spp.) from East Java assessed with PCR-RFLP of the Internal Transcribed Spacer ribosomal DNA. Intl J Biosci 7(3): 42-52. DOI: 10.12692/ijb/7.3.42-52.
Hermenegildo PDS, Guimarães LMS, Badel JL, Marques AS, Alfenas AC, Velloso-Ferreira MA. 2021. Improved evaluation of the genetic variability of Brazilian strains of Erwinia psidii with newly developed microsatellite markers. Plant Pathol 70(4): 922-931. DOI: 10.1111/ppa.13343.
Idris AE, Abuali AI. 2011. Genetic variability for vegetative and yield traits in maize (Zea mays L.) genotypes. Int J Agric Res 1(10): 408-411.
Jannah N, Pharmawati M, Uslan. 2022. Genetic diversity of Sterculia quadrifida from Kupang based on ISSR profiles, stomatal density, and chlorophyll content. Biodiversitas 23(5): 2690-2698. DOI: 10.13057/biodiv/d230553.
Jiménez A, Mansour H, Keller B, Conti E. 2014. Low genetic diversity and high levels of inbreeding in the Sinai primrose (Primula boveana), a species on the brink of extinction. Plant Syst Evol 300(5): 1199-1208. DOI: 10.1007/s00606-013-0955-y.
Li P, Zhan X, Que Q, Qu W, Liu M, Ouyang K, Li J, Deng X, Zhang J, Liao B, Pian R, Chen X. 2015. Genetic diversity and population structure of Toona ciliata Roem. based on sequence-related amplified polymorphism (SRAP) markers. Forests 6(4): 1094-1106. DOI: 10.3390/f6041094.
Lorenz TC. 2012. Polymerase Chain Reaction: Basic protocol plus troubleshooting and optimization strategies. J Vis Exp 63: 1-14. DOI: 10.3791%2F3998.
Lucena-Aguilar G, Sánchez-López AM, Barberán-Aceituno C, Carrillo-Ávila JA, López-Guerrero JA, Aguilar-Quesada R. 2016. DNA source selection for downstream applications based on DNA quality indicators analysis. Biopreserv Biobank 14(4): 264–270. DOI: 10.1089/bio.2015.0064.
Muhammad RW, Qayyum A, Ahmad MQ, Hamza A, Yousaf M, Ahmad B, Younas M, Malik W, Liaqat S, Noor E. 2017. Characterization of maize genotypes for genetic diversity on the basis of inter simple sequence repeats. Genet Mol Res 16(1): 1-9. DOI: 10.4238/gmr16019438.
Nikmah IA, Azrianingsih R, Wahyudi D. 2016. Genetic diversity of Porang populations (Amorphophallus muelleri Blume) in Central Java and West Java based on LEAFY second intron marker. J Trop Life Sci 6(1): 23-27. DOI: 10.11594/jtls.06.01.05.
Plenk K, Bardy K, Höhn M, Kropf M. 2019. Long?term survival and successful conservation? Low genetic diversity but no evidence for reduced reproductive success at the north?westernmost range edge of Poa badensis (Poaceae) in Central Europe. Biodiv Conserv 28: 1245-1265. DOI: 10.1007/s10531-019-01722-x.
Poerba YS, Martanti D, Ahmad F. 2018. Genetic variation of wild Musa acuminata Colla from Indonesia based on RAPD and ISSR markers. Biotropia 26(2): 1-18. DOI: 10.11598/btb.2019.26.2.896.
Prasanna BM. 2012. Diversity in global maize germplasm: Characterization and utilization. J Biosci 37(5): 843-855. DOI: 10.1007/s12038-012-9227-1
Raji R, Siril EA. 2021. Genetic diversity analysis of promising Ceylon olive (Elaeocarpus serratus L.) genotypes using morphological traits and ISSR markers. Current Plant Biolog 26: 1-11. DOI: 10.1016/j.cpb.2021.100201.
Reddy MP, Sarla N, Siddiq EA. 2002. Inter simple sequence repeats polymorphism and its application in plant breeding. Euphytica 128: 9-17. DOI: 10.1023/A:1020691618797.
Schrader C, Schielke A, Ellerbroek L, Johne R. 2012. PCR inhibitors - occurrence, properties and removal. J Appl Microbiol 113(5): 1014-1026. DOI: 10.1111/j.1365-2672.2012.05384.x.
Sukhumsirichart W. 2018. Polymorphisms. In: Yamin L (ed.). Genetic diversity and disease susceptibility. IntechOpen, Arizona. DOI: 10.5772/intechopen.76728.
Uslan, Pharmawati M. 2020. Genetic diversity of Sterculia quadrifida in Kupang, Indonesia based on RAPD (Random Amplified Polymorphic DNA) markers. Biodiversitas 21 (7): 3407-3414. DOI: 10.13057/biodiv/d210766.
Valiyeva LS, Rahimova GK, Nabiyeva NA. 2019 Application of ISSR markers for study of genetic polymorphism of dark grain maize varieties. In: Kochetov A, Salina E (eds.). Current challenges in plant genetics, genomics, bioinformatics, and biotechnology: proceedings of the fifth international scientific conference PlantGen2019. ICG SB RAS, Novosibirsk. DOI: 10.18699/ICG-PlantGen2019-10.
Wahyudi D, Hapsari L, Sundari. 2020a. RAPD analysis for genetic variability detection of mutant soybean (Glycine max (L.) Merr). J Trop Biodiv Biotechnol 5(1): 68-77. DOI: 10.22146/jtbb.53653.
Wahyudi D, Rifliyah K, Uslan. 2020b. Genome evaluation of banana cultivars based on morphological character and Inter-Simple Sequence Repeat (ISSR) molecular marker. Biodiversitas 21(7): 2982-2990. DOI: 10.13057/biodiv/d210715.
Weising K, Nybom H, Wolff K, Kahl G. 2005. DNA fingerprinting in plants: principles, methods, and applications (2nd Ed.). Taylor and Francis, London.
Widyastuti DA. 2017. Isolasi DNA kromosom Salmonella sp. dan visualisasinya pada elektroforesis gel agarosa. Seminar Nasional Pendidikan Biologi dan Saintek 311-317. [Indonesian]
Yulita KS, Bora CY, Arsa IA, Murniningsih T. 2015. Analisis fenetik jagung ras lokal Nusa Tenggara Timur umur genjah berdasarkan karakter agronomi dan Inter Short Sequence Repeats. Berita Biologi 14(3): 277-286. DOI: 10.14203/beritabiologi.v14i3.1835. [Indonesian]
Yulita KS, Naiola BP. 2013. Keragaman genetik beberapa aksesi jagung dari Nusa Tenggara Timur berdasarkan profil Inter Short Sequence Repeat (ISSR). Jurnal Biologi Indonesia 9 (2): 255-264. DOI: 10.14203/jbi.v9i2.171. [Indonesian]
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