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    Peroxidase gene markers revealed genetic diversity and population structure in okra germplasm

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    https://www.riss.kr/link?id=A108503471

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    Okra is a widely grown vegetable crop in various regions of the world and provides significant amounts of vitamins and minerals. Numerous researchers have documented the efficacy of phenotypic and molecular classification of the diverse okra germplasm collections found throughout the world. The genetic variation of Turkish okra germplasm, which included 39 genotypes, was characterized using 14 POGP (peroxidase gene polymorphism) primer pairs in comparison to other world okra genotypes and accessions, which contained 27 genotypes. A total of 84 bands were generated using 14 POGP primer pairs, with 43 (51%) of them being polymorphic between okra accessions. The values of polymorphism information content ranged from 0.03 to 0.99, with an average of 0.48. The range and mean values for gene diversity (h) were 0.03–0.42 and 0.25, respectively. Shannon’s information index (I) varied between 0.07 and 0.62 for each POGP marker, with a mean of 0.40. The most divergent genotypes were found to have a GS value of 0.23, with IN-7 and TR20-3 being the genetically most distant. The STRUCTURE, PCoA and Neighbor-joining analysis separated the okra germplasm into three populations. AMOVA revealed 23 and 77% variance across and within populations, respectively. Although the germplasm of okra is generally homogenous, the influence of shared genes is more significant. For the first time, the genetic composition of okra was determined using peroxidase gene markers.
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    Okra is a widely grown vegetable crop in various regions of the world and provides significant amounts of vitamins and minerals. Numerous researchers have documented the efficacy of phenotypic and molecular classification of the diverse okra germplasm...

    Okra is a widely grown vegetable crop in various regions of the world and provides significant amounts of vitamins and minerals. Numerous researchers have documented the efficacy of phenotypic and molecular classification of the diverse okra germplasm collections found throughout the world. The genetic variation of Turkish okra germplasm, which included 39 genotypes, was characterized using 14 POGP (peroxidase gene polymorphism) primer pairs in comparison to other world okra genotypes and accessions, which contained 27 genotypes. A total of 84 bands were generated using 14 POGP primer pairs, with 43 (51%) of them being polymorphic between okra accessions. The values of polymorphism information content ranged from 0.03 to 0.99, with an average of 0.48. The range and mean values for gene diversity (h) were 0.03–0.42 and 0.25, respectively. Shannon’s information index (I) varied between 0.07 and 0.62 for each POGP marker, with a mean of 0.40. The most divergent genotypes were found to have a GS value of 0.23, with IN-7 and TR20-3 being the genetically most distant. The STRUCTURE, PCoA and Neighbor-joining analysis separated the okra germplasm into three populations. AMOVA revealed 23 and 77% variance across and within populations, respectively. Although the germplasm of okra is generally homogenous, the influence of shared genes is more significant. For the first time, the genetic composition of okra was determined using peroxidase gene markers.

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    참고문헌 (Reference)

    1 Andeden EE, "iPBSretrotransposons- based genetic diversity and relationship among wild annual Cicer species" 22 : 453-466, 2013

    2 Martin FW, "Variation in okra" 30 : 697-705, 1981

    3 Sawadogo M, "The use of cross species SSR primers to study genetic diversity of okra from Burkina Faso" 8 : 2476-2482, 2009

    4 Duroux L, "The peroxidase gene family in plants: a phylogenetic overview" 57 : 397-407, 2003

    5 Schafleitner R, "The okra (Abelmoschus esculentus) transcriptome as a source for gene sequence information and molecular markers for diversity analysis" 517 : 27-36, 2013

    6 Mahajan RK, "Studies on South Asian okra collection: methodology for establishing a representative core set using characterization data" 43 : 249-325, 1996

    7 Francis RM, "Pophelper: an R package and web app to analyse and visualize population structure" 2017 : 27-32, 2017

    8 Yeh FC, "Pop Gene32 Microsoft windows-based freeware for population genetic analysis Version1.32"

    9 Gulsen O, "Polyploidy creates higher diversity among Cynodon accessions as assessed by molecular markers" 118 : 1309-1319, 2009

    10 Düzyaman E, "Phenotypic diversity within a collection of distinct okra (Abelmoschus esculentus) cultivars derived from Turkish land races" 52 : 1019-1030, 2005

    1 Andeden EE, "iPBSretrotransposons- based genetic diversity and relationship among wild annual Cicer species" 22 : 453-466, 2013

    2 Martin FW, "Variation in okra" 30 : 697-705, 1981

    3 Sawadogo M, "The use of cross species SSR primers to study genetic diversity of okra from Burkina Faso" 8 : 2476-2482, 2009

    4 Duroux L, "The peroxidase gene family in plants: a phylogenetic overview" 57 : 397-407, 2003

    5 Schafleitner R, "The okra (Abelmoschus esculentus) transcriptome as a source for gene sequence information and molecular markers for diversity analysis" 517 : 27-36, 2013

    6 Mahajan RK, "Studies on South Asian okra collection: methodology for establishing a representative core set using characterization data" 43 : 249-325, 1996

    7 Francis RM, "Pophelper: an R package and web app to analyse and visualize population structure" 2017 : 27-32, 2017

    8 Yeh FC, "Pop Gene32 Microsoft windows-based freeware for population genetic analysis Version1.32"

    9 Gulsen O, "Polyploidy creates higher diversity among Cynodon accessions as assessed by molecular markers" 118 : 1309-1319, 2009

    10 Düzyaman E, "Phenotypic diversity within a collection of distinct okra (Abelmoschus esculentus) cultivars derived from Turkish land races" 52 : 1019-1030, 2005

    11 Hinman RL, "Peroxides catalyzed oxidation of indole-3-acetic acid" 4 : 144-158, 1965

    12 Passardi F, "Peroxidases have more functions than a swiss army knife" 24 : 255-265, 2005

    13 Uzun A, "Peroxidase gene-based estimation of genetic relationships and population structure among Citrus spp and their relatives" 61 : 1307-1318, 2014

    14 Gulsen O, "Peroxidase gene polymorphism in buffalograss and other grasses" 47 : 767-772, 2007

    15 Çankaya AÖ, "Peroxidase gene based genetic relationships among safflower genotypes" 14 (14): 367-373, 2019

    16 Chittoor JM, "Pathogenesis-related proteins in plants" CRC Press 171-193, 1999

    17 Düzyaman E, "Okra: botany and horticulture" 21 : 41-72, 1997

    18 Düzyaman E, "Okra handbook: global production, processing, and crop improvement" HNB Publishing 323-333, 2009

    19 Dhankhar BS, "Okra handbook: global production, processing, and crop improvement" HNB Publishing 3-23, 2009

    20 Ariyo OJ, "Numerical analysis of variation among accessions of okra (Abelmoschus esculentus (L.) Moench)" 67 : 527-531, 1991

    21 Jaccard P, "Nouvelles recherchers sur la distribution forale" 44 : 233-270, 1908

    22 Dash GB, "Multivariate analysis in okra (Abelmoschus esculentus (L.) Moench)" 15 : 332-334, 1997

    23 Ariyo OJ, "Multivariate analysis and the choice of parents for hybridization in okra (Abelmoschus esculentus (L.) Moench)" 74 : 361-363, 1987

    24 Hamon S, "Large variation of okra collected in Benin and Togo" 56 : 52-58, 1983

    25 Doyle JJ, "Isolation of plant DNA from fresh tissue" 12 : 13-15, 1990

    26 Amaya I, "Improved germination under osmotic stress of tobacco plants over expressing a cell wall peroxidase" 457 : 80-84, 1999

    27 Espelie KE, "Immunocytochemical localization and time course of appearance of an anionic peroxidase associated with suberization in wound-healing potato tuber tissue" 81 : 487-492, 1986

    28 Aladele SE, "Genetic relationship among West African okra (Abelmoschus caillei) and Asian genotypes (Abelmoschus esculentus) using RAPD" 7 : 1426-1431, 2008

    29 Ocal N, "Genetic diversity, population structure and linkage disequilibrium among watermelons based on peroxidase gene markers" 176 : 151-161, 2014

    30 Yıldız M, "Genetic bottlenecks in Turkish okra germplasm and utility of iPBS retrotransposon markers for genetic diversity assessment" 14 (14): 10588-10602, 2015

    31 Nemli S, "Genetic assessment of common bean (Phaseolus vulgaris L.) accessions by peroxidase gene-based markers" 94 (94): 1672-1680, 2014

    32 Yıldız M, "Genetic and phenotypic variation of Turkish okra (Abelmoschus esculentus L. Moench) accessions and their possible relationship with American, Indian and African germplasms" 25 (25): 234-244, 2016

    33 Kyriakopoulou OG, "Genetic and morphological diversity of okra (Abelmoschus esculentus L. Moench) genotypes and their possible relationships, with particular reference to Greek landraces" 171 : 58-70, 2014

    34 Pinar H, "Genetic analysis of selected almond genotypes and cultivars grown in Turkey using peroxidase-gene-based markers" 27 (27): 747-754, 2016

    35 Gulsen O, "Genetic analysis of Turkish apple germplasm using peroxidase gene-based markers" 125 : 368-373, 2010

    36 Peakall R, "GenAlEx 6.5: genetic analysis in Excel. Population genetic software for teaching and research—an update" 28 (28): 2537-2539, 2012

    37 "FAOSTAT"

    38 Akyavuz R, "Exploring the genetic variations and population structure of Turkish pepper (Capsicum annuum L) genotypes based on peroxidase gene markers" 8 : 355-, 2018

    39 Boiteux LS, "Effects of plant tissue and DNA purification methods on randomly amplified polymorphic DNA-based genetic fingerprinting analysis in carrot" 124 : 32-38, 1999

    40 Gulsen O, "Diversity and relationships among Turkish okra germplasm by SRAP and phenotypic marker polymorphism" 62 : 41-45, 2007

    41 Düzyaman E, "Different approaches in the improvement process of local okra varieties" 579 : 139-144, 2002

    42 Evanno G, "Detecting the number of clusters of individuals using the software structure: a simulation study" 14 : 2611-2620, 2005

    43 Vural H, "Cultivated vegetables (vegetable production)" Ege University Press 2000

    44 Smith JSC, "An evaluation of the utility of SSR loci as molecular markers in maize (Zea mays L.): comparisons with data from RFLPs and pedigree" 95 (95): 163-173, 1997

    45 Zhang L, "A survey of the molecular evolutionary dynamics of twenty-five multigene families from four taxa" 52 : 144-156, 2001

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