Register      Login
Functional Plant Biology Functional Plant Biology Society
Plant function and evolutionary biology
RESEARCH ARTICLE

Assessing genetic diversity and population structure of Iranian melons (Cucumis melo) collection using primer pair markers in association with resistance to Fusarium wilt

Neda Sadeghpoor A , Hosseinali Asadi Gharneh A , Mehdi Nasr-Esfahani https://orcid.org/0000-0001-6753-147X B * , Hamed Hassanzadeh Khankahdani C and Maryam Golabadi D
+ Author Affiliations
- Author Affiliations

A Horticulture Department, College of Agriculture, Esfahan Branch (Khorasgan), Islamic Azad University, Isfahan, Iran.

B Plant Protection Research Department, Esfahan Agriculture and Natural Resource Research and Education Center, AREEO, Esfahan, Iran.

C Horticulture Crops Research Department, Hormozgan Agricultural and Natural Resources Research and Education Center, AREEO, Bandar Abbas, Iran.

D Department of Agronomy and Plant Breeding, College of Agriculture, Isfahan (Khorasgan) Branch, Islamic Azad University, Isfahan, Iran.


Handling Editor: Sergey Shabala

Functional Plant Biology 50(5) 347-362 https://doi.org/10.1071/FP22131
Submitted: 17 June 2022  Accepted: 12 February 2023   Published: 22 March 2023

© 2023 The Author(s) (or their employer(s)). Published by CSIRO Publishing

Abstract

We evaluated genetic diversity and population structure of Iranian melons (Cucumis melo L.) using combinations of 35 primer pairs: 15 Simple-Sequence-Repeats (SSR); 10 Inter-Simple-Sequence-Repeats (ISSR); and 10 Sequence-related amplified polymorphism (SRAP) markers in association with resistance to melon Fusarium wilt, caused by Fusarium oxysporum f. sp. melonis (FOM). Genetic similarity was determined by simple matching coefficient (SSM) and dendrogram by clustering-analysis with unweighted pair groups using arithmetic averages (UPGMA). By combining ISSR-SSR-SRAP markers, a high degree of variation among the melons was detected. The mean polymorphism information content (PIC), marker index (MI), effective-number of alleles (I), expected heterozygosity (H), and Nei’s gene diversity parameters were 0.392, 0.979, 1.350, 0.551 and 0.225, respectively. According to MI, PIC, I, H, and Nei indices evaluation, ISSR6, ISSR9, SRAP3, SRAP5, SSR3 and SSR6 had the best performance in genetic diversity of the related melons population. The 35 primers yielded a total of 264 bands, of which 142 showed polymorphism. Clustering of genotypes based on resistance to Fusarium wilt, and comparison with grouping on SSR, SRAP and ISSR marker revealed a significant compliance between disease severity and molecular marker dendrograms. Thus, increasing the number of molecular markers for genetic diversity provides a powerful tool for future agricultural and conservation tasks.

Keywords: breeding lines, Fusarium oxysporum f.sp. melonis, ISSR, landraces, molecular markers, SRAP, SSR, UPGMA.


References

Alizadeh-Moghaddam G, Rezayatmand Z, Esfahani MN, Khozaei M (2020) Bio-genetic analysis of resistance in tomato to early blight disease, Alternaria alternata. Phytochemistry 179, 112486
Bio-genetic analysis of resistance in tomato to early blight disease, Alternaria alternata.Crossref | GoogleScholarGoogle Scholar |

Alizadeh-Moghaddam G, Nasr-Esfahani M, Rezayatmand Z, Khozaei M (2022) Genomic markers analysis associated with resistance to Alternaria alternata (fr.) keissler-tomato pathotype, Solanum lycopersicum L. Breeding Science 72, 285–296.
Genomic markers analysis associated with resistance to Alternaria alternata (fr.) keissler-tomato pathotype, Solanum lycopersicum L.Crossref | GoogleScholarGoogle Scholar |

Amorim CC, Silva FD, Bordallo PN, Aragão FAS, Queiróz MA (2022) Genetic divergence between sub-accessions of the melon using molecular markers. Revista Ciência Agronômica 53, e20218007
Genetic divergence between sub-accessions of the melon using molecular markers.Crossref | GoogleScholarGoogle Scholar |

Araújo MBM, Moreira GM, Nascimento LV, et al. (2022) Fusarium rot of melon is caused by several Fusarium species. Plant Pathology 70, 712–721.
Fusarium rot of melon is caused by several Fusarium species.Crossref | GoogleScholarGoogle Scholar |

Bagheri LM, Nasr-Esfahani M, Abdossi V, Naderi D (2020) Analysis of candidate genes expression associated with defense responses to root and collar rot disease caused by Phytophthora capsici in peppers Capsicum annuum. Genomics 112, 2309–2317.
Analysis of candidate genes expression associated with defense responses to root and collar rot disease caused by Phytophthora capsici in peppers Capsicum annuum.Crossref | GoogleScholarGoogle Scholar |

Chikh-Rouhou H, Tlili I, Ilahy R, R’Him T, Sta-Baba R (2021) Fruit quality assessment and characterization of melon genotypes. International Journal of Vegetable Science 27, 3–19.
Fruit quality assessment and characterization of melon genotypes.Crossref | GoogleScholarGoogle Scholar |

FAO (2018) FAOSTAT agricultural database. Available at http://faostat.fao.org/site/339/default.aspx

Forghani D, Bazgir E, Nasr Esfahani M, Darvishnia M (2021) Genomic structure of novel Iranian Rhizoctonia solani AG-3PT isolates on potato, Solanum tuberosum. Sydowia 73, 217–238.

Garcia-Mas J, Monforte AJ, Arús P (2004) Phylogenetic relationships among Cucumis species based on the ribosomal internal transcribed spacer sequence and microsatellite markers. Plant Systematics and Evolution 248, 191–203.
Phylogenetic relationships among Cucumis species based on the ribosomal internal transcribed spacer sequence and microsatellite markers.Crossref | GoogleScholarGoogle Scholar |

Ghasemi AR, Golparvar AR, Isfahani MN (2014) Analysis of genetic diversity of sugar beet genotypes using random amplified polymorphic DNA marker. Genetika 46, 975–984.
Analysis of genetic diversity of sugar beet genotypes using random amplified polymorphic DNA marker.Crossref | GoogleScholarGoogle Scholar |

Gholamaliyan A, Nasr Esfahani M, Dababat AA (2021) Novel Iranian wheat cultivars resistant to Bipolaris sorokiniana. Sydowia 73, 257–269.

González V, García-Martínez S, Ruiz JJ, Flores-León A, Picó B, Garcés-Claver A (2020) First report of Neocosmospora falciformis causing wilt and root rot of muskmelon in Spain. Plant Disease 104, 1256
First report of Neocosmospora falciformis causing wilt and root rot of muskmelon in Spain.Crossref | GoogleScholarGoogle Scholar |

Gonzalo J, Perea A, Babonneau D, Afonso CN, Beer N, Barnes JP, Petford-Long AK, Hole DE, Townsend PD (2005) Competing processes during the production of metal nanoparticles by pulsed laser deposition. Physical Review B 71, 125420
Competing processes during the production of metal nanoparticles by pulsed laser deposition.Crossref | GoogleScholarGoogle Scholar |

Guidoti DT, Gonela A, Vidigal MCG, Conrado TV, Romani I (2018) Interrelationship between morphological, agronomic and molecular characteristics in the analysis of common bean genetic diversity. Acta Scientiarum. Agronomy 40, e33032
Interrelationship between morphological, agronomic and molecular characteristics in the analysis of common bean genetic diversity.Crossref | GoogleScholarGoogle Scholar |

Hashemi L, Golparvar AR, Nasr Esfahani M, Golabadi M (2019) Correlation between cucumber genotype and resistance to damping-off disease caused by Phytophthora melonis. Biotechnology & Biotechnological Equipment 33, 1494–1504.
Correlation between cucumber genotype and resistance to damping-off disease caused by Phytophthora melonis.Crossref | GoogleScholarGoogle Scholar |

Hashemi L, Golparvar AR, Nasr-Esfahani M, Golabadi M (2020) Expression analysis of defense-related genes in cucumber (Cucumis sativus L.) against Phytophthora melonis. Molecular Biology Reports 47, 4933–4944.
Expression analysis of defense-related genes in cucumber (Cucumis sativus L.) against Phytophthora melonis.Crossref | GoogleScholarGoogle Scholar |

Ibrahim K, Mohamed FH, Abo-Zeid AI, Elwan WM, Abdel Salam M (2020) Genetic diversity in Egyptian snake melon accessions as revealed by inter simple sequence repeat (ISSR) markers. Catrina: The International Journal of Environmental Sciences 22, 71–76.
Genetic diversity in Egyptian snake melon accessions as revealed by inter simple sequence repeat (ISSR) markers.Crossref | GoogleScholarGoogle Scholar |

Li G, Quiros CF (2001) Sequence-Related amplified polymorphism (SRAP), a new marker system based on a simple PCR reaction: its application to mapping and gene tagging in Brassica. Theoretical and Applied Genetics 103, 455–461.
Sequence-Related amplified polymorphism (SRAP), a new marker system based on a simple PCR reaction: its application to mapping and gene tagging in Brassica.Crossref | GoogleScholarGoogle Scholar |

Lu X, Gentekaki E, Xu Y, Huang L, Li Y, Lu X, Zhao Y, Lin X, Yi Z (2019) Intra-population genetic diversity and its effects on outlining genetic diversity of ciliate populations: using Paramecium multimicronucleatum as an example. European Journal of Protistology 67, 142–150.
Intra-population genetic diversity and its effects on outlining genetic diversity of ciliate populations: using Paramecium multimicronucleatum as an example.Crossref | GoogleScholarGoogle Scholar |

Luongo L, Ferrarini A, Haegi A, Vitale S, Polverari A, Belisario A (2015) Genetic diversity and pathogenicity of Fusarium oxysporum f. sp melonis races from different areas of Italy. Journal of Phytopathology 163, 73–83.
Genetic diversity and pathogenicity of Fusarium oxysporum f. sp melonis races from different areas of Italy.Crossref | GoogleScholarGoogle Scholar |

Maleki M, Shojaeiyan A, Rashidi Monfared S (2018) Population structure, morphological and genetic diversity within and among melon (Cucumis melo L.) landraces in Iran. Journal of Genetic Engineering and Biotechnology 16, 599–606.
Population structure, morphological and genetic diversity within and among melon (Cucumis melo L.) landraces in Iran.Crossref | GoogleScholarGoogle Scholar |

Mandoulakani BA, Sadigh P, Azizi H, Piri Y, Nasri Sh, Arzhangh S (2015) Comparative assessment of IRAP, REMAP, ISSR, and SSR markers for evaluation of genetic diversity of Alfalfa (Medicago sativa L.). Journal of Agricultural Science and Technology 17, 999–1010.

Merheb J, Pawełkowicz M, Branca F, Bolibok-Bragoszewska H, Skarzynska A, Plader W, Chalak L (2020) Characterization of Lebanese germplasm of snake melon (Cucumis melo subsp. melo var. flexuosus) using morphological traits and SSR Markers. Agronomy 10, 1293
Characterization of Lebanese germplasm of snake melon (Cucumis melo subsp. melo var. flexuosus) using morphological traits and SSR Markers.Crossref | GoogleScholarGoogle Scholar |

Moghaddam GA, Rezayatmand Z, Nasr Esfahani M, Khozaei M (2019) Genetic defense analysis of tomatoes in response to early blight disease, Alternaria alternata. Plant Physiology and Biochemistry 142, 500–509.
Genetic defense analysis of tomatoes in response to early blight disease, Alternaria alternata.Crossref | GoogleScholarGoogle Scholar |

Mohammadbagheri L, Nasr-Esfahani M, Abdossi V, Naderi D (2021) Genetic diversity and biochemical analysis of Capsicum annuum (Bell pepper) in response to root and basal rot disease, Phytophthora capsici. Phytochemistry 190, 112884
Genetic diversity and biochemical analysis of Capsicum annuum (Bell pepper) in response to root and basal rot disease, Phytophthora capsici.Crossref | GoogleScholarGoogle Scholar |

Mohammadbagheri L, Nasr-Esfahani M, Al-Sadi AM, Khankahdani HH, Ghadirzadeh E (2022) Screening for resistance and genetic population structure associated with Phytophthora capsici-pepper root and crown rot. Physiological and Molecular Plant Pathology 122, 101924
Screening for resistance and genetic population structure associated with Phytophthora capsici-pepper root and crown rot.Crossref | GoogleScholarGoogle Scholar |

Monazzah M, Nasr Esfahani M, Tahmasebi Enferadi S (2022) Genetic structure and proteomic analysis associated in potato to Rhizoctonia solani AG-3PT-stem canker and black scurf. Physiological and Molecular Plant Pathology 122, 101905
Genetic structure and proteomic analysis associated in potato to Rhizoctonia solani AG-3PT-stem canker and black scurf.Crossref | GoogleScholarGoogle Scholar |

Moon HS, Nicholson JS, Lewis RS (2008) Use of transferable Nicotiana tabacum L. microsatellite markers for investigating genetic diversity in the genus Nicotiana. Genome 51, 547–559.
Use of transferable Nicotiana tabacum L. microsatellite markers for investigating genetic diversity in the genus Nicotiana.Crossref | GoogleScholarGoogle Scholar |

Motamedi M, Nasr esfahani M, Bbazgir E, Tanha MZ, Dababat AA (2020) Evaluation of wheat resistance in response to cereal cyst nematodes, Heterodera filipjevi. Indian Journal of Nematology 50, 134–145.

Naderi R, Esfahani MN, Khaniki GB (2020) Analysis of molecular characterizations of beets, Beta vulgaris in response to cyst nematodes, Heterodera schachtii. Physiological and Molecular Plant Pathology 112, 101518
Analysis of molecular characterizations of beets, Beta vulgaris in response to cyst nematodes, Heterodera schachtii.Crossref | GoogleScholarGoogle Scholar |

Nasehi A, Kadir J, Nasr-Esfahani M, Abed-Ashtiani F, Golkhandan E, Ashkani S (2016) Identification of the New Pathogen (Stemphylium lycopersici) Causing Leaf Spot on Pepino (Solanum muricatum). Journal of Phytopathology 164, 421–426.
Identification of the New Pathogen (Stemphylium lycopersici) Causing Leaf Spot on Pepino (Solanum muricatum).Crossref | GoogleScholarGoogle Scholar |

Nasr Esfahani M, Ansari Pour B (2008) Differences in resistance in onion cultivars to pink root rot disease in Iran. Journal of General Plant Pathology 74, 46–52.
Differences in resistance in onion cultivars to pink root rot disease in Iran.Crossref | GoogleScholarGoogle Scholar |

Omari S, Kamenir Y, Benichou JIC, Pariente S, Sela H, Perl-Treves R (2018) Landraces of snake melon, an ancient Middle Eastern crop, reveal extensive morphological and DNA diversity for potential genetic improvement. BMC Genetics 19, 34
Landraces of snake melon, an ancient Middle Eastern crop, reveal extensive morphological and DNA diversity for potential genetic improvement.Crossref | GoogleScholarGoogle Scholar |

Park H, Yokota A, McFarland E (2005) Diagnostic accuracy of clinical tests for the different degrees of subacromial impingement syndrome. The Journal of bone and Joint Surgery 87, 144–655.
Diagnostic accuracy of clinical tests for the different degrees of subacromial impingement syndrome.Crossref | GoogleScholarGoogle Scholar |

Parvathaneni RK, Natesan S, Devaraj AA, Muthuraja R, Venkatachalam R, Subramani AP, Laxmanan P (2011) Fingerprinting in cucumber and melon (Cucumis spp.) genotypes using morphological and ISSR markers. Journal of Crop Science and Biotechnology 14, 39–43.
Fingerprinting in cucumber and melon (Cucumis spp.) genotypes using morphological and ISSR markers.Crossref | GoogleScholarGoogle Scholar |

Pitrat M (2016) Melon genetic resources: phenotypic diversity and horticultural taxonomy. In ‘Genetics and genomics of Cucurbitaceae. Vol. 3’. (Eds R Grumet, N Katzir, J Garcia-Mas) pp. 25–60. (Springer: Cham, Switzerland)

Pulela PL, Maboko MM, Soundy P, Amoo SO (2020) Development, yield and quality of Cantaloupe and Honeydew melon in soilless culture in a non-temperature controlled high tunnel. International Journal of Vegetable Science 26, 292–301.
Development, yield and quality of Cantaloupe and Honeydew melon in soilless culture in a non-temperature controlled high tunnel.Crossref | GoogleScholarGoogle Scholar |

Sadeghpour N, Asad-Gharne HA, Nasr-Esfahani M, Khankahdani HH, Golabadi M (2022) Antioxidant enzymes associated with resistance to Fusarium oxysporum f. sp. melonis race 1.2 in melon. Physiological and Molecular Plant Pathology 121, 101880
Antioxidant enzymes associated with resistance to Fusarium oxysporum f. sp. melonis race 1.2 in melon.Crossref | GoogleScholarGoogle Scholar |

Sebastiani SM, Bagnaresi P, Sestili S, et al. (2017) Corrigendum: Transcriptome analysis of the melon-Fusarium oxysporum f. sp. melonis race 1.2 pathosystem in susceptible and resistant plants. Frontiers in Plant Science 8, 922
Corrigendum: Transcriptome analysis of the melon-Fusarium oxysporum f. sp. melonis race 1.2 pathosystem in susceptible and resistant plants.Crossref | GoogleScholarGoogle Scholar |

Silva SGA, Costa MM, Cardoso AMS, et al. (2023) Fusarium falciforme and Fusarium suttonianum cause root rot of melon in Brazil. Plant Pathology 72, 307–319.
Fusarium falciforme and Fusarium suttonianum cause root rot of melon in Brazil.Crossref | GoogleScholarGoogle Scholar |

Singh D, Leskovar DI, Sharma SP, Sarao NK, Vashisht VK (2020) Genetic diversity and interrelationship among Indian and exotic melons based on fruit morphology, quality components and microsatellite markers. Physiology and Molecular Biology of Plants 26, 985–1002.
Genetic diversity and interrelationship among Indian and exotic melons based on fruit morphology, quality components and microsatellite markers.Crossref | GoogleScholarGoogle Scholar |

Soltani F, Shajari M, Mirbehbahani GS, Bihamta MR (2022) Assessment of melon genetic diversity based on fruit phenotypic traits and flowering habits. International Journal of Horticultural Science and Technology 9, 97–116.
Assessment of melon genetic diversity based on fruit phenotypic traits and flowering habits.Crossref | GoogleScholarGoogle Scholar |

Stone S, Boyhan G, McGregor C (2019) Inter- and intra-cultivar variation of heirloom and open-pollinated watermelon cultivars. HortScience 54, 212–220.
Inter- and intra-cultivar variation of heirloom and open-pollinated watermelon cultivars.Crossref | GoogleScholarGoogle Scholar |

Szpiech ZA, Rosenberg NA (2011) On the size distribution of private microsatellite alleles. Theoretical Population Biology 80, 100–113.
On the size distribution of private microsatellite alleles.Crossref | GoogleScholarGoogle Scholar |

Yildiz M, Ekbic E, Kelesc D, Sensoy S, Abak K (2011) Use of ISSR, SRAP, and RAPD markers to assess genetic diversity in Turkish melons. Scientia Horticulturae 130, 349–353.
Use of ISSR, SRAP, and RAPD markers to assess genetic diversity in Turkish melons.Crossref | GoogleScholarGoogle Scholar |

Zolfaghary Z, Nasr Esfahan M, Nourollahi K, Akbarzadeh H (2021) Genetic diversity and virulence of Iranian Bipolaris sorokiniana isolates causing common root rot disease of wheat. Sydowia 74, 107–119.
Genetic diversity and virulence of Iranian Bipolaris sorokiniana isolates causing common root rot disease of wheat.Crossref | GoogleScholarGoogle Scholar |