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SABRAO Journal of Breeding and Genetics Vol. 57 No. 2 (April 2025)

2025 | SABRAO Journal of Breeding and Genetics
  • Paperback 1029-7073
  • e-ISSN 2224-8978
English

This issue presents cutting-edge research in plant genetics and breeding, featuring advances in stress tolerance, hybrid performance, molecular characterization, and varietal improvement across major crops like wheat, rice, maize, banana, chickpea, sugarcane, and more. It highlights innovative methods in biotechnology, soil and fertilizer management, and germplasm conservation in diverse agroecological settings.

DOI: http://doi.org/10.54910/sabrao2025.57.2

Table of Contents

  1. Meliev S, Chinikulov B, Ochilov B, Nurmetov KH, Bakhodirov U, Buzurukov S, Matkarimov F, Sobirov F, Turakulov KH, Bozorov T (2025). Wheat resistance to yellow rust based on morphophysiological and yield characteristics. SABRAO J. Breed. Genet. 57(2): 403-413. http://doi.org/10.54910/sabrao2025.57.2.1.
  2. Nurpeissov IA, Kushanova RZH (2025). Analytical review of the breeding aspects in development of the facultative wheat. SABRAO J. Breed. Genet. 57(2): 414422. http://doi.org/10.54910/sabrao2025.57.2.2.
  3. Tokhetova LA, Toktamysov AM, Baimbetova GZ, Tauipbaev ST, Umbetov U, Dosmanbetov D, Snassapova G, Zhanzakov MMMA (2025). Inheritance and selection efficiency in hybrid populations of spring barley (Hordeum vulgare L.) under greenhouse conditions. SABRAO J. Breed. Genet. 57(2): 423-434. http://doi.org/10.54910/sabrao2025.57.2.3.
  4. Chakraborty S, Gain N, Fatima K, Chowdhury AK, Harun-Ur-Rashid MD, Rahman J (2025). Combining ability and heterosis for early maturity and yield contributing traits in field mustard (Brassica rapa L.). SABRAO J. Breed. Genet. 57(2): 435-446. http://doi.org/10.54910/sabrao2025.57.2.4.
  5. Zendrato YM, Azizah YA, Humam BK, Marwiyah S, Ritonga AW, Azrai M, Efendi R, Suwarno WB (2025). Maize hybrids’ response to optimum and suboptimum SABRAO abiotic environmental conditions using genotype by environment interaction analysis. J. Breed. Genet. 57(2): 447-458. http://doi.org/10.54910/sabrao2025.57.2.5.
  6. Kurnianingsih R, Mastuti R, Nikmatullah A, Arumingtyas EL (2025). Internal  Transcribed Spacer 2 (ITS2) variations in several cultivars of ‘Haji’ banana (Musa x paradisiaca L.) from Lombok Island, Indonesia. SABRAO J. Breed. Genet. 57(2): 459-468. http://doi.org/10.54910/sabrao2025.57.2.6.
  7. Margaret S, Pribadi T, Aryanti, Mellawati J, Nasution KY, Sinaga PH, Efendi, Kristamtini, Mejaya MJ, Susanto U (2025). Genetic variability on agronomic traits and grain iron content of Indonesian rice (Oryza sativa L.). SABRAO J. Breed. Genet. 57(2): 469-478. http://doi.org/10.54910/sabrao2025.57.2.7.
  8. Al-Aboud, Okasha SA (2025). Genetic analysis of salinity tolerance in chickpea (Cicer arietinum L.). SABRAO J. Breed. Genet. 57(2): 479-491. http://doi.org/10.54910/sabrao2025.57.2.8.
  9. Syahid SF, Supriadi S, Meilawati NLW, Santoso TJ, Nugroho K, Arlianti T, Bermawie N (2025). Genetic variability developed through mutation in red ginger (Zingiber officinale) based on morphological traits, rhizome yield, and 6-gingerol content. SABRAO J. Breed. Genet. 57(2): 492-503. http://doi.org/10.54910/sabrao2025.57.2.9.
  10. Bunphan D, Wanna R, Kaewduangta W, Monkham T, Malambane (2025). Genetic potential of sugarcane genotypes in acidic soil with low fertility under rainfed conditions. SABRAO J. Breed. Genet. 57(2): 504-515. http://doi.org/10.54910/sabrao2025.57.2.10.
  11. Salimov VS and Huseynov MA (2025). Polymorphism features in grape (Vitis vinifera L.) variety Bayanshira populations. SABRAO J. Breed. Genet. 57(2): 516-528. http://doi.org/10.54910/sabrao2025.57.2.11
  12. Fransiska, Efendi D, Purwoko BS (2025). Induction of embryogenic callus and somatic embryo from anther culture in papaya (Carica papaya L.). SABRAO J. Breed. Genet. 57(2): 529-540. http://doi.org/10.54910/sabrao2025.57.2.12.
  13. Jayadi I, Suprapta DN, Adnyana IM, Sudana IM, Sudantha IM, Sanuriza II, Ihwan K (2025). Fusarium proliferatum as a causative agent of fusarium wilt in shallots (Allium cepa L.) on Lombok Island, West Nusa Tenggara, Indonesia. SABRAO J. Breed. Genet. 57(2): 541-554. http://doi.org/10.54910/sabrao2025.57.2.13.
  14. Novikova AA, Lebedev SV, Glushchenko NN (2025). Spring durum wheat (Triticum durum Desf. L.) response to iron nanoparticles during the juvenile period of development. SABRAO J. Breed. Genet. 57(2): 555-565. http://doi.org/10.54910/sabrao2025.57.2.14.
  15. Babissekova DI, Mazkirat Sh, Khalbaeva ShA, Abdulamonov K, Abdulamonov A, Yespembetova AM, Tukenov AYe, Bulatova KM (2025). Specificity of West Pamir wheat landraces and their allelic variations at the vernalization response (VRN-1), photoperiod sensitivity (PPD-1), and Glu-1 genes. SABRAO J. Breed. Genet. 57(2): 566-577. http://doi.org/10.54910/sabrao2025.57.2.15.
  16. Zumaidar, Hamim N, Fitmawati (2025). Phylogenetic study of Salacca spp. based on trnl-F intergenic spacer sequences obtained from Aceh, Indonesia. SABRAO J. Breed. Genet. 57(2): 578-586. http://doi.org/10.54910/sabrao2025.57.2.16. 
  17. Mahfut, Riniarti M, Kurniawaty E (2025). Morphology and phytochemical characterization of native Dendrobium used as a herbal medicine in Lampung, Indonesia. SABRAO J. Breed. Genet. 57(2): 587-598. http://doi.org/10.54910/sabrao2025.57.2.17.
  18. Fazaa MA, Esmail AM, Rashed MA, Badr AM, Ibrahim KIM, Mohamed AZA, Al Aboud NM, Mansour E (2025). Exploring heat shock protein response in bread wheat with diverse heat sensitivity. SABRAO J. Breed. Genet. 57(2): 599-607. http://doi.org/10.54910/sabrao2025.57.2.18.
  19. Khalaf MA, Jabbar MKH (2025). Chromosomes map, function, classification, and gene detection in proso millet (Panicum miliaceum L.). SABRAO J. Breed. Genet. 57(2): 608-617. http://doi.org/10.54910/sabrao2025.57.2.19.
  20. Al-Mathidy A, Shehab MOM, Al-Doskey ZAS (2025). Rosa L. species identification using the rbcl gene in Kurdistan Region, Iraq. SABRAO J. Breed. Genet. 57(2): 618-627. http://doi.org/10.54910/sabrao2025.57.2.20.
  21. Herlina L, Reflinur R, Istiaji B, Nurcholish W (2025). Profiling key metabolites in shallot under fusarium infection. SABRAO J. Breed. Genet. 57(2): 628-645. http://doi.org/10.54910/sabrao2025.57.2.21.
  22. Ganefianti DW, Aziz SA, Suhaimi NSM, Chozin M (2025). Morphological similarity among wild orchid accessions in Bengkulu, Indonesia. SABRAO J. Breed. Genet. 57(2): 646-657. http://doi.org/10.54910/sabrao2025.57.2.22.
  23. Zhoshibekova B, Abilev S, Sartayeva A (2025). Comparative study of the genotoxicity of 9-Aminoacridine and 8-Methoxypsoralen using a bacterial biosensor. SABRAO J. Breed. Genet. 57(2): 658-667. http://doi.org/10.54910/sabrao2025.57.2.23.
  24. Kurnianingsih R, Mastuti R, Nikmatullah A, Arumingtyas EL (2025). Morphological characterization of the banana indigenous cultivar ‘Haji’ (Musa x paradisiaca) for germplasm development in Indonesia. SABRAO J. Breed. Genet. 57(2): 668-682. http://doi.org/10.54910/sabrao2025.57.2.24.
  25. Podlasova EYU, Grerchishkina OS, Lebedev SV, Novikova AA (2025). Spring barley (Hordeum vulgare L.) assessment for drought resistance under laboratory and field conditions. SABRAO J. Breed. Genet. 57(2): 683-694. http://doi.org/10.54910/sabrao2025.57.2.25. 
  26. Rokhmah DN, Dani, Supriadi H, Syakir M, Rusli, Heryana N, Herman M, Saefudin, Sinaga A (2025). Morphometric and yield characteristics of semi-natural Reutealis trisperma (Blanco) Airy Shaw populations in Garut, West Java, Indonesia. SABRAO J. Breed. Genet. 57(2): 695-707. http://doi.org/10.54910/sabrao2025.57.2.26.
  27. Rudiyanto, Purwito A, Efendi D, Martin AF (2025). Moringa oleifera aluminum tolerance produced by gamma irradiation through in vitro culture. SABRAO J. Breed. Genet. 57(2): 708-718. http://doi.org/10.54910/sabrao2025.57.2.27.
  28. Nazirah L, Hafifah, Nazaruddin M (2025). Shading effect on various traits and their association in rice (Oryza sativa L.). SABRAO J. Breed. Genet. 57(2): 719-728. http://doi.org/10.54910/sabrao2025.57.2.28. 
  29. Zafar A, Sarwar G, Sarfraz M, Manzoor MZ, Gul S, Luqman M (2025). Standardization of phosphorus isotherms through Langmuir and modified Freundlich equation to compute p-doses for different textured soils. SABRAO J. Breed. Genet. 57(2): 729-739. http://doi.org/10.54910/sabrao2025.57.2.29.
  30. Triyanti VR, Rosmayati, Basyuni M, Damanik RIM (2025). Modified biochar’s role in increasing rice (Oryza sativa L.) Production. SABRAO J. Breed. Genet. 57(2): 740-751. http://doi.org/10.54910/sabrao2025.57.2.30.
  31. Carong NFR, Rafiuddin, Mantja K (2025). Arbuscular mycorrhiza fungi and mineral fertilizer effects on growth and production traits of the potato (Solanum tuberosum L.). SABRAO J. Breed. Genet. 57(2): 752-760. http://doi.org/10.54910/sabrao2025.57.2.31.
  32. Songulov Y, Omirzakova A, Delibacak S, Ryspekov T, Yershibulov AK, Karabayev KB, Duisekov SN (2025). Mineralogical studies of the irrigated and non-irrigated sierozem soils in Turkestan Region, Kazakhstan. SABRAO J. Breed. Genet. 57(2): 761-771. http://doi.org/10.54910/sabrao2025.57.2.32.
  33. Aziz A, Tahir MA, Sabah NU, Gul S, Javed MA, Hamza A (2025). Impact of slowrelease nitrogen fertilizer on nitrate leaching, nitrogen distribution, and grain yield of wheat (Triticum aestivum L.). SABRAO J. Breed. Genet. 57(2): 772781. http://doi.org/10.54910/sabrao2025.57.2.33.
  34. Al-Fartossi HFJ, Alrubaiee SHA (2025). Heat accumulation by physiological and yield traits in faba bean (Vicia faba L.). SABRAO J. Breed. Genet. 57(2): 782-791. http://doi.org/10.54910/sabrao2025.57.2.34.
  35. Ydyrys A, Molsadykkyzy M, Syraiyl S, Kidirbayeva Kh, Raimbekova B, Barun S, Aralbaeva A, Atanbaeva G (2025). Ecological and phytochemical composition of Gnaphalium kasachstanicum Kirp. & Kuprian. SABRAO J. Breed. Genet. 57(2): 792-803. http://doi.org/10.54910/sabrao2025.57.2.35. 
  36. Panjaitan RGP, Laurensa KG, Wahyuni ES, Alam MW, Afandi (2025). Medicinal plants used by the Dayak Kayong community, Ketapang regency, Indonesia. SABRAO J. Breed. Genet. 57(2): 804-814. http://doi.org/10.54910/sabrao2025.57.2.36.
  37. Yuniar V, Syam’un E, Syaiful SA (2025). Potato response to liquid organic fertilizer and silica in growth and production. SABRAO J. Breed. Genet. 57(2): 815-822. http://doi.org/10.54910/sabrao2025.57.2.37.
  38. Nisa F, Rafiuddin, Nasaruddin (2025). Response of cocoa (Theobroma cacao L.) productivity to biochar and actinomycetes SPP. SABRAO J. Breed. Genet. 57(2): 823-832. http://doi.org/10.54910/sabrao2025.57.2.38.
  39. Ahmed WA, Almansor AN, Alshummary AM MA (2025). Fertilization effects on growth traits and iron and copper content of broad bean (Vicia faba L.). SABRAO J. Breed. Genet. 57(2): 833-840. http://doi.org/10.54910/sabrao2025.57.2.39.
  40. Al–Zubaidy BHF and Al–Asadi ADK (2025). Biostimulants effect on the antioxidants of date palm (Phoenix dactylifera L.). SABRAO J. Breed. Genet. 57(2): 841-850. http://doi.org/10.54910/sabrao2025.57.2.40. 
  41. Al-Tee EAO, Alamery AA (2025). Effect of sulfur, thiobacillus bacteria, and nano-zinc on biochemical characteristics and grain yield of maize in calcareous soil. SABRAO J. Breed. Genet. 57(2): 851-860. http://doi.org/10.54910/sabrao2025.57.2.41.
  42. Al-Saidan KJY (2025). Effect of rice husk ashes and irrigation water quality on the growth and productivity of wheat. SABRAO J. Breed. Genet. 57(2): 861-869. http://doi.org/10.54910/sabrao2025.57.2.42.
  43. Al-Mawla, Al-Tamimi (2025). Date palm (Phoenix dactylifera L.) response to mineral fertilizer and growth regulator. SABRAO J. Breed. Genet. 57(2): 870-877. http://doi.org/10.54910/sabrao2025.57.2.43. 
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