Abdul Rahim Harun
Malaysian Nuclear Agency
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Journal of Zhejiang University-science B | 2013
Anna Pick Kiong Ling; Ying Chian Ung; Sobri Hussein; Abdul Rahim Harun; Atsushi Tanaka; Hase Yoshihiro
ObjectiveHeavy ion beam, which has emerged as a new mutagen in the mutation breeding of crops and ornamental plants, is expected to result in the induction of novel mutations. This study investigates the morphological and biochemical responses of Oryza sativa toward different doses of carbon ion beam irradiation.MethodsIn this study, the dry seeds of O. sativa were irradiated at 0, 20, 40, 60, 80, 100, and 120 Gy, followed by in-vitro germination under controlled conditions. Morphological and biochemical studies were conducted to investigate the morphological and physiological responses of O. sativa towards ion beam irradiation.ResultsThe study demonstrated that low doses (10 Gy) of ion beam have a stimulating effect on the height, root length, and fresh weight of the plantlets but not on the number of leaves. Meanwhile, doses higher than 10 Gy caused reductions in all the morphological parameters studied as compared to the control samples. The highest total soluble protein content [(2.11±0.47) mg/g FW] was observed in plantlets irradiated at 20 Gy. All irradiated plantlets were found to have 0.85% to 58.32% higher specific activity of peroxidase as compared to the control samples. The present study also revealed that low doses of ion beam (10 and 20 Gy) had negligible effect on the total chlorophyll content of O. sativa plantlets while 40 Gy had a stimulating effect on the chlorophyll content. Plantlets irradiated between 40 to 120 Gy were shown to be 0.38% to 9.98% higher in total soluble nitrogen content which, however, was not significantly different from the control samples.ConclusionsCarbon ion beam irradiation administered at low to moderate doses of 10 to 40 Gy may induce O. sativa mutants with superior characteristics.
Entomologia Experimentalis Et Applicata | 2017
Mahmoodreza Shabanimofrad; M. Y. Rafii; Sadegh Ashkani; M. M. Hanafi; Nur Azura Adam; Abdul Rahim Harun; M. A. Latif; Gous Miah; Mahbod Sahebi; Parisa Azizi
Brown planthopper (BPH), Nilaparvata lugens Stål (Hemiptera: Delphacide), is a destructive insect pest of rice, Oryza sativa L. (Poaceae), in rice‐producing areas worldwide. Host plant resistance is a major aspect of managing this pest. In this study, a mapping population consisting of 150 F3 lines, derived from a cross of MR276 and Rathu Heenati, was used to detect and analyse quantitative trait loci (QTLs) for the resistance to BPH. Composite Interval Mapping (CIM) was used for QTL detection. In total 10 QTLs controlling BPH resistance were mapped on chromosomes 1, 3, 6, 7, 9, 10, and 12. Four QTLs – qBph‐1‐1, qBph‐3‐1, qBph‐6‐1, and qBph‐7‐1 – were mapped on chromosomes 1, 3, 6, and 7 in the standard seedbox screening test, explaining 41% of the phenotypic variance. Two QTLs, qBph‐6‐1 and qBph‐9‐1, were detected on chromosomes 6 and 9 in the honeydew test, accounting for 32% of the total phenotypic variance. Moreover, four QTLs – qBph‐3‐1, qBph‐6‐1, qBph‐10‐1, and qBph‐12‐1 – were identified on chromosomes 3, 6, 10, and 12 expressing antixenosis to BPH and explaining 41% of the phenotypic variance. QTL qBph‐3‐1 was located in the chromosomal region between markers RM231 and RM3872 on chromosome 3, and QTL qBph‐6‐1 was located in the region between RM588 and RM204 on chromosome 6, indicating that these regions have a major effect in controlling the resistance to BPH in the population studied. The molecular markers linked to QTLs that are identified will be useful in the development of varieties resistant to BPH. Our study contributes to the development of genetic material for breeding programmes and marker‐assisted selection (MAS) in rice to improve BPH resistance.
THE 2015 UKM FST POSTGRADUATE COLLOQUIUM: Proceedings of the Universiti Kebangsaan Malaysia, Faculty of Science and Technology 2015 Postgraduate Colloquium | 2015
Ahmad Nazrul Abd Wahid; Sahibin Abd Rahim; Khairuddin Abdul Rahim; Abdul Rahim Harun
This study was carried out to evaluate the efficiency use of the nitrogen fertilizer on aerobic rice varieties MR219-4 and MR219-9 which were grown aerobically under field capacity water potential at the controlled environment area or shield house. Direct 15N isotope tracer method was used in this study, whereby the 15N isotope was utilized as a tracer for nitrogen nutrient uptake. 15N isotope presence in the samples is determined by using emission spectrometer analysis and percentage of total nitrogen is determined by using Kjeldahl method. 15N atom access value contained in the sample will be used in determining the effectiveness of the use of nitrogen in fertilizers through the specific calculation formulas. In this work, the data several data of nitrogen derived from fertilizer (Ndff), total nitrogen, nitrogen uptake and nitrogen use efficiency was obtained.
American-Eurasian Journal of Sustainable Agriculture | 2008
Kiong LingPick; A. G. Lai; Sobri Hussein; Abdul Rahim Harun
Archive | 2008
Anna Pick; Kiong Ling; Jing Yi Chia; Sobri Hussein; Abdul Rahim Harun; Tunku Abdul
Turkish Journal of Biology | 2015
Mahmoodreza Shabanimofrad; Mohd Rafii Yusop; Sadegh Ashkani; Mohamed Hanafi Musa; Nur Azura Adam; Iffah Haifa; Abdul Rahim Harun; M. A. Latif
Journal of Phytopathology | 2015
Sadegh Ashkani; Mohd Rafii Yusop; Mahmoodreza Shabanimofrad; Abdul Rahim Harun; Mahbod Sahebi; M. A. Latif
Jurnal Sains Nuklear Malaysia | 2018
Faiz Ahmad; Zaiton Ahmad; Affrida Abu Hassan; Sakinah Ariffin; Norazlina Noordin; Shakinah Salleh; Sobri Hussein; Mustapha Akil; Mohd Zulmadi Sani; Abdul Rahim Harun; Khairuddin Abdul Rahim
International Journal on Advanced Science, Engineering and Information Technology | 2018
Shamsiah Abdullah; Nor Yusliza Kamaruddin; Abdul Rahim Harun
Sains Malaysia | 2017
Cosmas Mojulat Welland; Mohd Rafii Yusop; Mohd Razi Ismail; Abdul Shukor Juraimi; Abdul Rahim Harun; Fahim Ahmed; Fatah A. Tanweer; Abdul Latif