DAFTAR PUSTAKA
Abrol, I. P. 1986. Salt-Affected Soils: Problems and Prospects in Developing Countries. In : Glo bal Aspects of Food Production. P: 283-305 Alam, M. Z. T. Stuchburry ; R. E. L. Naylor and M. A. Rashid. 2004. Effect of Salinity on Growth of Some Modern Rice Cultivars. Journal of Agronomy. 3, 1-10. Ali, Y., Aslam, Z., M. Y. Ashraf and G. R. 2004. Effect of Salinity on Chlorophyll Concentration, Leaf Area, Yield and Yield Components of Rice Genotypes Grown Under Saline Environment. International Journal of Environmental Science and Technology. Vol. 1, No : 3, pp. 221 – 225. Ali, Y. and Z. Aslam. 2005. Use of Environmental Friendly Fertilizers in Saline and Saline Sodic Soils. International Journal Environment Science Technology. Vol. 2, No. 1, pp. 97-98, Spring . Nuclear Institute for Agriculture and Biology, Faisalabad, Pakistan. Allard, R,W,. 2005. Principles of Plant Breeding. John Wiley and Sons, New York. Almansouri, M., J.M. Kinet and S. Lutts. 2001. Effect of salt osmotic stresses on germination in durum wheat (Triticum durum Desf.). Plant and Soil, 231: 243-254. Aref, Farshid and Hassan Ebrahimi Rad. 2012. Physiological Characterization of Rice Under Salinity Stress During Vegetative and Reproductive Stages.Indian Journal of Science and Technology. Vol. 5 No. 4. ISSN: 0974- 6846. Arifin, Zainal Arifin dan Sugiono. 2010.Uji Efektivitas Pupuk Fosfat terhadap Pertumbuhan dan Hasil Padi Sawah. Balai Pengkajian Teknologi Pertanian Jawa Timur. Arsyad, M., M. Aslan, and Irshad, M. 2007. Genetic Variability and Character Association among Morphological Ttraits of Mungbean Genotypes. Journal of Agricultural Research. p.14-18. Asada, K. 1999. The Water-Water Cycle in Chloroplast : Scavenging of Active Oxygens and Dissipation of Excess Photons. Annual Review Plant Physiology and Plant Moluculer Biology. 50 : 601 – 639. Asada, K. 2006. Production and Scavening of Reactive Oxygen Species in Chloroplasts and Their Functions. Plant Physiology., 141: 391 – 396. Ashraf, M.Y., R. Afaf, M.S. Qureshi, G. Sarwar and M.H. Naqvi. 2002. Salinity induced changes in alpha-amylase and protease activities and associated metabolism in cotton varieties during germination and early seedling growth stages. Acta Physiol. Plant., 24(1): 37-44 180
Ashraf, M. 2004. Some Important Physiological Selection Criteria For Salt Tolerance in Plants. Flora, 199 : 361-376. Ashraf, M and M. R. Foolad. 2005. “Pre-Sowing Seed Treatment-A Shotgun Approach to Improve Germination, Plant Growth, and Crop Yield Under Saline and Non-Saline Conditions,” Advances in Agronomy, vol. 88, pp. 223–271. Balitpa. 2008. Padi : Inovasi teknologi Produksi. Balai Besar Penelitian Tanaman Padi, Sukamandi. Balitpa. 2010. Deskripsi Varietas Padi. Balai Besar Penelitian Tanaman Padi, Sukamandi. Bari, A. S., S. Musa., dan E. Sjamsudin., 1982. Pengantar Pemuliaan Tanaman. Fakultas Pertanian Institut Pertanian Bogor. Bogor. Biro
Pusat Statistik. 2008. Produksi dan http//www.bps.go.id.[ 16 Nopember 2008 ].
produktivitas
tanaman
Pangan.
Biro
Pusat Statistik. 2013. Produksi dan produktivitas http/qqwawqwa/www.bps.go.id.[ 11 Oktober 2014 ].
tanaman
Pangan.
Blokhina, O.; Virolainen, E. and Fagerstedt,c K. V. (2003). Antioxidant, Oxidative Damage and Oxygen Deprivations Stress. A Review Ann. Bot., 91: 179-194. Bohnert H. J, Nelson D.E, Jensen RG. 1995. Adaptation s to Environmental Stresses. The Plant Cell 7: 1099-111. Bohra dan Doerffling. 1993. Potassium Nutrition of Rice Varieties Under NaCl Salinity. Plant Soil, 152 (2) : 299-303.
(Oryza sativa L.)
Bray E. 1997. Plant Responses to Water Deficit. Trends Plant Sci 2: 48-54. Cardon, G. E. ; J. G. Davis ; T. A. Bauder and R. M. Waskom. 2010. Managing Saline Soils. Colorado State University. 1-6. Cavusoglu, K, S. Kilic and K. Kabar. 2007. Effects of Pretreatments of Some Growth Regulators on the Stomata Movements of Barley Seedlings Grown Under Saline (NaCl) Conditions. Plant Soil Environment, 53, 2007 (12): 524–528. Ceyhan, T. and I. Ali. 2002. Changes Induced by salinity, demarcating specific Ion ratio (Na/Cl) and osmolality in ion and proline accumulation, nitrate reductase activity and growth performance of lettuce. J. Plant Nutr. 25:27-41. Cha-um, Trakulyingcharoen, Smitamana dan Kirdmanee. 2009. Salt Tolerance in Two Rice Cultivars Differing Salt Tolerant Abilities in Responses to Iso-Osmotic Stress. Australian Journal of Crop Science. Vol. 3(4):221-230. Chen, Z. and Gallie, D.R. (2004). The Ascorbic Acid Redox State Controls Guard Cell Signaling an Stomata Movement. The Plant Cell 16: 1143–1162. 181
Chinnusamy, V., J. Andre, and J. K. Zhu. 2005. Understanding and Improving Salt Tolerance in Plants. Crop Sci. 45:437-448. Choi, W. Y., K. S. Lee, J. K., S. Y. Choi and D. H. Choi. 2003. Critical Saline Concentration of Soil and Water for Rice Cultivation on a Reclaimed Saline Soil. Korean Journal Crop Science. 48, 238-242. Chourey K, Ramani S, Apte SK. 2003. Accumulation of LEA proteins in salt (NaCL) stressed young seedlings of rice (Oryza sativa L.) cultivar Bura Rata and their degradation during recovery from salinity stress. J. Plant Physiol. 160, 1165-1174. Cicek, N. and H. Cakirlar. 2002. The Effect of Salinity on Some Physiological Parameters in Two Maize Cultivar. Bulg. J. Plant Physiol. 28:66-74. Cramer, G.R., A. Lauchli and V.S. Polito, 1985. Displacement of Ca2+ from the Plasmalemma of Root Cells. Plant Physiol., 77: 563-578. De Datta, Surajit, K. 1993. Principles and Practise of Rice Production. Head, Department of Agronomy, Los Banos, The Philippines. The International Rice Research Institute. Dionisio-Sese, M. L. and Tobita, S. (1998). Antioxidant Seedlings to Salinity Stress. Plant Science 135: 1–9.
Responses
of
Rice
Departemen Petanian. 2004. Ekonomi padi dan Beras Indonesia. Badan Penelitian dan Pengembangan Pertanian. Delvian. 2004. Respon Pertumbuhan dan Perkembangan Cendawan Minoriza Arbuskula dan Tanaman terhadap salinitas Tanah. Karya tulis. Jurusan kehutanan. Fakultas Pertanian. Universitas Sumatera Utara. Dinata, Ketut Kartha. 1985. Pengaruh Salinitas terhadap Pertumbuhan dan Produksi Padi Varietas Atomita II dan IR 32. Digby, C. S. and D. C Timothy. 1999. Salt tolerance in the Halophyte Halosarcia pergranulata subsp. pergranulata, Ann.Bot. 83:207-213. Djufry, Fadjry ; Sudarsono ; Martina S. Lestari. 2011. Tingkat Toleransi Beberapa Galur Harapan Padi pada Kondisi Salinitas Di Lahan Rawa Pasang Surut. Jurnal Agrivigor 10(2) : 196-207. Dure L III. 1992. The LEA proteins of higher plants. In: Verma DPS (ed) Control of Plant Gene Expression. CRC Press, Boca Raton, FL, pp 325-369. Dobermann, A and T. Fairhurst. 2000. Rice. Nutrient disorders & nutrient management. International Rice Research Institute (IRRI). Potash & Phophate Institute/Potash & Phosphate Institute of Canada. p: 139-144.
182
El-Fouly, M.M., M.M. Zeinab and Z.A. Salama, 2002. Micronutrient Foliar Application Increases Salt Stress Tolerance of Tomato Seedlings. Acta Hortic., 573: 467-474. Engels, C. and H. Marschner, 1992. Adaptation of Potassium Translocation into the Shoot of Maize (Zea mays L.) to Shoot Demand: Evidence of Xylem Loading as a Regulating Step. Physiol. Plant, 86: 263-268. Fagi, A. M., Hasanuddin. A, Soenarjo, E. 2004. Penelitian Padi Mendukung Pelestarian Swasembada Beras. Dalam Innováis teknologi Pertanian Buku I. Badan Penelitian dan Pengembangan Pertanian. Departemen Pertanian. Fajar, Yuli Surya. 2008. Penelitian Irigasi Hemat Air pada Budidaya Tanaman Padi dengan Metode SRI (System of Rice Intensification) di Daerah Irigasi Ciramajaya, Desa Salebu, Kecamatan Mangunreja, kabupaten Tasikmalaya, Jawa Barat. Institut Pertanian Bogor. Ebrahimi, Reyhaneh ; Parvaneh Rahdari ; Hassan Shokri Vahed ; Parisa Shahinrokhsar and Shahryar Babazadeh. 2012. Rice Response to Different Methods of Potassium Application Under Salinity Stress Condition. American-Eurasian Journal Agriculture and Environment Science 12 (11) : 1441-1445.
FAO. 2005. Salinityhttp://www.fao.com.
FAO. 2008. 20 Things on salinity. http://www.fao.com. [30 Januari 2009].
Fatimah, Siti. 2010. Pengujian Toleransi Genotipe Padi (Oryza sativa L.) terhadap Salinitas pada Fase Perkecambahan. Institut Pertanian Bogor. 45 Halaman.
Ferdose, Kawasaki, Taniguchi dan Miyake. 2009. Differential Sensitivity of Rice Cultivars to Salinity and Its Relation to Ion Accumulation and Root Tip Structure. Plant Production Science.Vol. 12 No. 4 453-461.
Flowers, T. J. 2004. Improving Crop Salt Tolerance. Journal Exp. Botany., 55, 307-319.
Fukuda A, Nakamura A, Tagiri A, Tanaka H, Miyao A, Hirochika H, and Tanaka Y. 2004. Function, Intracellular Localization and the Importance in Salt Tolerance of a Vacuolar Na+/H+ antiporter from Rice. The Plant Cell Physio. 45(2): 146-159.
183
Garciadeblas B, Senn ME, Bañuelos MA, and Rodriquez-Navarro A. 2003. Sodium transport and HKT transporters: the rice model. The Plant Journal. 34, 788-801.
Garg AK, Kim J-K, Owens TG, Ranwala AP, Choi YD, Kochian LV, Wu RJ. 2002. Trehalose accumulation in rice plants confers high tolerances levels to different abiotic stresses. Proceedings of the National Academy of Sciences of the USA 99: 15898-15903.
Gomez, K. A., and A. A. Gomez. 1984. Statistical Procedures for Agricultural Research. 2nd ed. John Wiley & Sons. 680p.
Greenway, H. and Munns, R. (1980). Mechanisms of Salt Tolerance in Non Halophytes.Ann.Rev. Plant Physiol., 31:149-160.
Gregorio, Glenn B. : Dharmawansa Senadhira dan Rhulyx D. Mendoza. 1997. International Rice Research Instititute, Manila. Philippines.
Hadiati, S., Mudaningsih, H. K., A. Baihaki., dan N. Rostini., 2003. Parameter Genetik Karakter Komponen Buah pada Beberapa Aksesi Nanas. Zuriat 14 (2) : 47-52.
Hakim, M.A.; A.S. Juraimi ; M. Begum ; M. M. Hanafi ; Mohd. R. Ismail and A. Selamat, 2010. Effect of Salt Stress on Germination and Early Seedling Growth of Rice (Oryza sativa L.). African Journal of Biotechnology Vol. 9 (13), pp. 19111918.
Harjadi dan Yahya. 1988. Fisiologi Stress Lingkungan. Pusat Antar Universitas. Institut Pertanian Bogor, Bogor.
Hidayat. 2008. Potensi Lahan Basah. Fakultas Pertanian. Universitas Tanjung Pura. Akta Agrosia. Volume 5 (1:60-67).
184
Hideg, E. (1999).Free Radical Production in Photosynthesis Under Stress Conditions. In : Pessarakli M, ed. Handbook of plant and Crop Stress. New York: Marcel Dekker, 911– 930.
http://balitpa.litbang.deptan.go.id. Desember 2009.
Deskripsi
Varietas
Padi.
Diakses
tanggal
22
http://st284855.sitekno.com/article/12631/ pentingnya-menjaga-keseimbangan-unsurhara-makro-dan-mikro-untuk-tanaman.html.(Diakses Tanggal 12 Oktober 2010).
http://www.articlesbase.com/science-articles/stress-tolerance-in-plants-596380.html" akses tanggal 2 Januari 2010.
di
htpp://www.puslittan.bogor.net. Desember 2009.
22
www.litbang.deptan.go.id.
Diakses
tanggal
http://www.articlesbase.com/science-articles/stress-tolerance-in-plants596380.html"Stress Tolerance in Plants. Diakses tanggal 22 Desember 2009.
http://www.harian-global.com/index.php? Sumut Perluas Areal Pertanian Padi. Diakses pada Tanggal 5 Agustus 2010.
Hussain, Khalid ; M. Farrukh Nisar1; Abdul Majeed ; Khalid Nawaz ; Khizar Hayat Bhatti1; Shahid Afghan ; Aamir Shahazad and Syed Zia-ul-Hussnian. 2010. What molecular mechanism is adapted by plants during salt stress tolerance?. African Journal of Biotechnology Vol. 9 (4), pp. 416-422.
Hussein; Shaaban and El-Saady, 2008. Response of Cowpea Plants Grown Under Salinity Stress to PK-Foliar Applications. American Journal Plant Physiology. Vol. 3 : 81-88.
185
Hussein, M.M, K.M. Abd El-Rheem, S.M. Khaled, dan R.A. Youssef. 2011. Growth and Nutrients Status of Wheat as Affected by Ascorbic Acid and Water Salinity. Nature and Science 9 (10) : 64 – 69.
IRRI. 1988. Standard evaluation system for rice (1988). 3rd Edition, IRRI, Philippines.
IRRI.1997. Program report for 1996. IRRI, Philippines.
Iqbal, M ; M. Ashraf ;A. Jamil, and S. ur-Rehman. 2006. “Does Seed Priming Induce Changes in the Levels of Some Endogenous plant Hormones in Hexaploid Wheat Plants Under Salt Stress?” Journal of Integrative Plant Biology, vol. 48, no. 2, pp. 181–189.
Jafar, M.Z. ; M. Farooq and M. A. Cheema. 2012. “Improving the Performance of Wheat by Seed Priming Under Saline Conditions,” Journal of Agronomy & Crop Science, vol. 198, pp. 38–45, 2012. Jaleel, C. A., S. Beemarao, S. Ramalingam, and P. Rajaram. 2008. Soil Salinity Alters Growth, Chlorophyll content and secondary metabolite accumulation in Catharanthus roseus, Turk. J. Biol. 32:79-83. Jouyban, Zeinolabedin. 2012. The Effects of Salt Stress on Plant Growth. Technical Journal of Engineering and Applied Sciences. 2(1) : 7-10.
Kant, Surya and Uzi Kafkafi. 200. Potassium and Abiotic Stresses in Plants. The Hebrew University of Jerusalem, Faculty of Agricultural, Food and Environmental Quality Sciences, Rehovot, Israel.
Karyudi dan R. Fletcher. 2002. Osmoregulative Capacity in Birdseed Miller Under Conditions of Water Stress. I. Variation in Setaria italica and Panicum miliaceum. Euphytica (125) : 337 – 348.
Kao, W.Y., T.T. Tsai, H.C. Tsai, dan C. N. Shih. 2006. Response of three Glycine species to salt stress. Environmental and Experimental Botany 56 (2006) : 120 – 125.
186
Khalil, S.E., N.G.A. El- Aziz dan B.H. A. Leila. 2010. Effect of Water Stress, Ascorbic Acid and Spraying Time on Some Morphological and Biochemical Composition of Ocimum basilicum plant. Journal of American Science 6 (12) : 33- 44
Khan, A., M.S.A. Ahmad, H.U Athar dan M. Ashraf. 2006. Interactive Effect of foliarly applied ascorbic acid and salt stess on wheat (Triticum aestivum L) at the seedling stage. Pak. J. Bot., 38(5): 1407-1414, 2006.
Khan, T.A., M. Mazid. dan F. Mohammad. 2011. A review of ascorbic acid potentialities against oxidative stress induced in plants. Journal of Agrobiology, 28(2) : 97–111
Khan, Ameer : Zara Shaheen and Maria Nawaz. 2013. Ameloration of Salt Stress in Wheat (Triticum aestivum L.) by Foliar Application of Nitroen and Potassium. Science Technoloy and Development. 32(2) : 85-98.
Khan, H.A. ; C. M. AyubM. A ; Pervez ; R. M. Bilal ; M. A. Shahid, and K. Ziaf, “Effect of Seed Priming with NaCl on Salinity Tolerance of Hot Pepper (Capsicum annuum L.) at Seedling Stage,” Soil & Environment, vol. 28, no. 1, pp. 81–87, 2009.
Kirkhm, M.B. 1990. Plant response to water deficits. In B.A. Steward (Ed). Irrigation of agricultural crops. Madison. Wisconsin. USA. p 323 – 342. Kirk, J. O. T. and R. L. Allen. 1965. Dependence of salinity stress on the activity of glutamine synthatase and glutamate dehydrogenase in triticale seedlings. Polish J. Env. Studies. 14:523-530. Kishor P. B. K., S. Sangam, R. N. Amrutha, P.S. Laxmi, K.R. Naidu, K.R.S.S. Rao, S. Rao, K..J. Reddy, P. Theriappan dan N. Sreenivasulu. 2005. Regulation of Proline Biosynthesis, Degradation, Uptake and Transport in Higher Plants: Its Implications in Plant growth and abiotic stress tolerance. Current Science 88 (3) : 424 – 438 Kojo, S. 2004. Vitamin C: Basic metabolism and its function as an index of Oxidative Stress. Curr. Med. Chem. 11:1041-1064. Kurniasih, Tarono dan Toekidjo. 2008. Keragaan Beberapa Varietas Padi (Oryza spp) pada Kondisi Kekeringan dan Salinitas. Ilmu Pertanian vol. 15 No. 1 : 49-58.
187
Kusmiyati, F.E, Purbajanti dan Kristanto. 2009. Karakter Fisiologis, Pertumbuhan dan Produksi Legum Pakan Pada Kondisi Salin (Physiology, Growth and Production of Leguminoceae for Feed on Saline Condition).Fakultas Peternakan, Universitas Diponegoro, hal 302-309. Seminar Nasional Kebangkitan Peternakan – Semarang, 20 Mei 2009.
Lacerda, C. F., J. Canbrain, M. A. Cano, H. A. Ruiz and J. T. Prisco. 2003. Solute Accumulation and Distribution During Shoot and Leaf Development in Two Shorgum Genotypes Under Salt Stres. Environ. Exp. Bot., 49 (2) : 107 – 120.
Lee S. S. and J. H. Kim, “Total Sugars, α-Amylase Activity, and Germination After Priming of Normal and Aged Rice Seeds,” Korean Journal of Crop Science, vol. 45, no. 2, pp. 108–111, 2000.
Lestari, E.G. 2006. Hubungan antara Kerapatan Stomata dengan Ketahanan Kekeringan pada Somaklon Padi Gajahmungkur, Towuti, dan IR 64. Jurnal Biodiversitas 7(1): 44-48.
Lin, C. C. and Kao, C. H. (2000).Effect ofNaCl Stress on H2O2 Metabolism in Rice Leaves. Plant Growth Regulators 30: 151– 155.
Lodhi, A., M.H. Sajjad, A. Mahmood, S. Tahir and F. Azam. 2009. Photosynthate partitioning in wheat (Triticum aestivum L.) as affected by root zone salinity and form of N. Pak J. Bot., 41(3): 1363-1372.
Lutts, S., V. Majerus, dan J.M. Kinet. 1999. NaCl effects on proline metabolism in rice (Oryza sativa) seedlings. Physiol. Plant 105 (3) : 450 – 458..
188
Madan S, H.S. Nainawatee, R.K. Jain, dan J.B. Chowdhury. 1995. Proline and Proline Metabolising Enzymes in Vitro Selected NaCl-Tolerant Brassica juncea L. Under Salt Stress. Annals of Botany 76:51-57.
Marambe, B. and T. Ando. 2008. Physiological basis of salinity tolerance of Sorghum Seeds During Germination. J. Agron. & Crop Sci., 174(5): 291-296.
Mahmood, Imdad Ali ; S. Nawaz and M. Aslam. 2000. Screening of Rice (Oryza sativa L.) Genotypes Against NaCl Salinity.
Marsi. Sabaruddin, N. Govar, S. J. Priatna dan R. Suwignyo. 2003. salinitas dan Oksidasi Pirit pada Lahan Pasang Surut Pantai Timur Sumatera Selatan.
Marshcner, H. 1995. Mineral Nutrition of Higher Plant. 2nd. Academic Press Herecurt Brace and Company. Publishing London. San Diego New York, pp.889.
Mattioli R. , P. Costantino dan M. Trovato. 2009. Proline accumulation in plants. Plant Signaling and Behavior 4:11, 1016-1018
Mishra, B., Singh, R. K. and Bhattacharya, R. K. 1992. CSR10, a newly released Dwarf Rice for Salt Affected Soils. IRRN, 17(1):19.
Mishra, B., Singh, R. K. and Jetly, Vandna. 1998. Inheritance pattern of salinity tolerance in rice. Journal of Genetics & Breeding (Rome) 52: 325-331.
Mittler, Ron., Sandy Vanderauwera, Martin Gollery and Frank Van Breusegem. 2004. Reactive Oxygen Gene Network of Plants. TRENDS in Plant Science Vol.9 No.10. Mittler, R. 2002. Oxidative stress, anioxidants and stress tolerance, Trends Plant Sci. 7 :405-410.
Mohammad M.J, S.R. Hamad , dan H.I. Malkani. 2003. Population of arbuscular mycorrhizal fungi in semi-arid environment of Jordan as influenced by biotic and abiotic factors. Journal of Arid Environments 53: 409–417. 189
Moller, I.M. 2001. Plant mitochondria and oxidative stress: electron transport, NADPH turnover, and metabolism of reactive oxygen species. Annual Review of Plant Physiology and Plant Molecular Biology 52: 561–591.
Mooney, H. A., R.W. Pearcy, . dan J. Ehleringer. 1987. Plant physiological ecology today. Bioscience 37, 18–20.
Moosavi, Seyyed Gholamreza ; Mohamad Javad Seghatoleslami ; Zeinolabedin Jouyban Hamed Javadi. Effect of salt stress on germination and early seedling growth of Nigella sativa L. International Journal of Traditional and Herbal Medicine. Vol., 1 (2),45-48, 2013.Available online at http://www.ijthmjournal.com. ISSN 2345-3249.
Motamed, M. K.; R. Asadi ; M. Rezaei and E. Amiri. 2008. Response of High Yielding Rice Varieties to NaCl Salinity in Greenhouse Circumstances. African Journal of Biotechnology, Volume 7 (21) pp. 3866-3873.
Mukerji, K.G., R. Jagpal, M. Bali dan R. Rani. 1991. The importance of mycorrhiza for roots, p. 290-308. In B.L. McMichael & H. Persson (eds.). Plant roots and their environment, Elsevier, Amsterdam, Netherlands.
Munns, R. 2002. Comparative Physiology of Salt and Water Stress. Plant Cell and Development. 25 239-250pp.
Munns, R. 2005. Genes and salt tolerance: bringing them together. New Phytologist 167 (3) : 645 – 663.
Munns, R., R. A. James and A. Lauchli. 2006. Approaches to Increasing The Salt Tolerance of Wheat and Other Cereals. J. Exp.Bot., 57(5) 1025-1043.
Munns, R. and M. Tester. 2008 Mechanism of salinity tolerance. Annual Review of Plant Biol., 59: 651-681.
190
Murtaza, Ghulam ; Nadeem Hussain and Abdul Ghafoor. 2000. International Journal of Agriculture and Biology. Vol. 2, No. 3.
Naheed Gulshan, Muhammad Shahbaz and Nudrat Aisha Akram. 2008. Interactive Effect of Rooting Medium Application of Phosporus and NaCl on Plant Biomass and Mineral Nutrients of Rice (Oryza sativa L.) Pakistan. Journal Botany, 40(4): 16011608, 2008.
Naiola, B. Paul. 1996. Regulasi Osmosis pada Tumbuhan Tinggi (Osmotic Adjustment in Higher Plants). Jurnal Hayati. Volume 3 No: 1.Juni 1996, hlm. 01-06.
Ninsuwan, Unchalee ; Phussadee Pornsirikarn ; Neerawan Jundee and Napaporn Puima, 2013. Identification of Salt Tolerance in Thai Indigenous Rice on the Basis of the Na/K Ratio and Salt Stress Responses. Asian Journal of Plant Sciences, 12: 247251.
Nursyamsi, Dedi. 2009. Pengaruh Kalium dan Varietas Jagung terhadap Eksudat Asam Organik dari Akar, Serapan N, P dan K Tanaman dan Produksi Brangkasan Jagung (Zea mays L.).
Orcutt, D. M. and Nilsen, E. T. (2000). Salinity. In: Physiology of Plants Under Stress, Soil and Biotic Factors. John Wiley & Sons, 177–237.
Patel, Prakash ; R. Sushil S. Kajal ; Vinary R. Patel ; Vimal J. Patel and Sunil M. Khristi. 2010. Impact of Salt Stress on Nutrient Uptake and Growth of Cowpea. Brazilian Journal of Plant Physiology. 22 (1) : 43-48.
Pattanagul, W. and M. Thitisaksakul. 2008. Effect of salinity stress on growth and carbohydrate metabolism in three rice (Oryza sativa L.) cultivars differing in salinity tolerance. Indian J. Exp. Biol., 46(10): 736-42.
Phang, T.H., G. Shao and H.M. Lam. 2008. Salt tolerance in Soybean. Journal of Integrative Plant Biology 50 (10) : 1196-1212.
191
Pignocchi, C. dan C. H. Foyer (2003). Apoplastic ascorbate metabolism and its role in the regulation of cell signaling. Curr Opin in Plant Biol. 6:379-389.
Polle, A. 2001. Dissecting the superoxide dismutase-ascorbate-glutathione-pathway in chloroplasts by metabolic modeling, Computer simulations as a step towards flux analysis, Plant Physiol. 126. 445-462.
Qui Q-S, Guo Y, Dietrich MA, Schumaker KS, Zhu J-K. 2002. regulation of SOS1, a plasma membrane Na+/H+ exchanger in Arabidopsis thaliana, by SOS2 and SOS3. Proceedings of the National Academy of Sciences of the USA 99: 8436-8441.
Quintero FJ, Ohta M, Shi H, Zhu J-K, Pardo JM. 2002. Reconstitution in yeast of the Arabidopsis SOS signaling pathway for Na+ homeostasis. Proceedings of the National Academy of Sciences of the USA 99: 9061-9066.
Rajendran, K., M. Tester and S.J. Roy. 2009. Quantifying the three main components of salinity tolerance in cereals. Plant, Cell and Environ., 32: 237-247.
Rafiq, S.,: Iqbal: A. Hameed : R. Zulfiqar Ali, and N. Rafiq, “Morphobiochemical analysis of salinity stress response of wheat,” Pakistan Journal of Botany, vol. 38, no. 5, pp. 1759–1767, 2006.
Rodriguez, A. A ; A. M. Stella ; M. M. Storni ; G. Zulpa and M. C. Zaccaro. 2006. http://www.salinesystems.org/content.
Roy, P., Niyogi, K., SenGupta, D.N. and Gosh, B., 2005. Spermidine Treatment to Rice Seedling Recovers Salinity Stress-Induced Damage of Plasma Membrane and PMBound H+ATPase in Salt-Tolerant and Salt-Sensitive Rice Cultivars. Plant Sci., 168 : 583-591.
Sairam, R.K. and A. Tyagi, 2004. Physiology and Molecular Biology of Salinity Stress Tolerance in Plants. Curr. Sci., 86: 407-421.
192
Salisbury, F. B. dan C. W. Ross. 1992. Fisiologi Tumbuhan. Penerbit ITB. Bandung.
Santun. 2004. Pemanfaatan Lahan Rawa untuk Pemenuhan Kekurangan Pangan Di Pemukiman Transmigrasi. Penelitian dan Pengembangan Pertanian. Departemen Pertanian.
Seki M, Narusaka M, Abe H, Kasuga M, Yamaguchi-Shinozaki K, Carninci P, Hayashizaki Y, and Shinozaki K. 2001. Monitoring the expression pattern of 1300 Arabidopsis genes under drought and cold stresses by using a full-length cDNA microarray. Plant Cell 13: 61-72.
Sembiring, Hasil dan A. Gani. 2005. Adaptasi varietas padi pada tanah terkena tsunami. http://io.ppi.jepang.org. [16 Nopember 2008]
Seraz, Zeba I. and M. Abdus Salam. 2008. Growing Rice in Saline Soil. Department of Biochemistry. University of Dhaka, Bangladesh.
Sevengor, S., F. Yasar, S. Kusvuran dan S. Ellialtioglu. 2011. The effect of salt stress on growth, chlorophyll content, lipid peroxidation and antioxidative enzymes of pumpkin seedling. African Journal of Agricultural Research Vol. 6(21) : 49204924
Shabala, S., Y. Hariadi, dan E. Jacobsen. 2013. Genotypic difference in salinity tolerance in quinoa is determined by differential control of xylem Na+ loading and stomatal density. Journal of Plant Physiology 170 : 906–914
Shao, G.H., J.Z. Song , dan H.L. Liu. 1986. Preliminary studies on the evaluation of salt tolerance in soybean varieties. Acta Agron. Sin. 6, 30 - 35.
Shao, H.B., L.Y. Chu, H.L. Zhao, dan C. Kang . 2008. Primary antioxidant free radical scavenging and redox signalling pathways in higher plant cells. Int J Biol Sci 4: 8–14.
193
Sembiring, Hasil dan A. Gani. 2005. Adaptasi varietas padi pada tanah terkena tsunami. http://io.ppi.jepang.org. [16 Nopember 2008]
Seraz, Zeba I. and M. Abdus Salam. 2008. Growing Rice in Saline Soil. Department of Biochemistry. University of Dhaka, Bangladesh.
Sevengor, S., F. Yasar, S. Kusvuran dan S. Ellialtioglu. 2011. The effect of salt stress on growth, chlorophyll content, lipid peroxidation and antioxidative enzymes of pumpkin seedling. African Journal of Agricultural Research Vol. 6(21) : 49204924
Shaaban, M.M., M.M. El-Fouly, E.A.A. Abou El-Nour and A.A. Abdel-Maguid, 2004. Halophytes and Foliar Fertilization as Useful Techniques for Growing Processing Tomatoes in the Saline Affected Soils. Pakistan Journal Biological Science, 7: 503507.
Shabala, S., Y. Hariadi, dan E. Jacobsen. 2013. Genotypic difference in salinity tolerance in quinoa is determined by differential control of xylem Na+ loading and stomatal density. Journal of Plant Physiology 170 : 906–914
Shao, G.H., J.Z. Song , dan H.L. Liu. 1986. Preliminary studies on the evaluation of salt tolerance in soybean varieties. Acta Agron. Sin. 6, 30 - 35.
Shao, H.B., L.Y. Chu, H.L. Zhao, dan C. Kang . 2008. Primary antioxidant free radical scavenging and redox signalling pathways in higher plant cells. Int J Biol Sci 4: 8–14.
Sheeren, A. ; R. Ansari ; S. Raza ; S. Mumtaz ; M.A. Khan and M. Ali Khan. 2011. Salinity Induced Metabolic Changes in Rice (Oryza sativa L.) Seeds During Germation. Pakistan Journal of Botany. 43(3) : 1659-1661Pp.
Shinozaki K, and Yamaguchi Shinozaki Y. 2000. Molecular responses to dehydration and low temperature: differences and cross-talk between two stress signaling pathways. Plant Biol. 3: 217-223. 194
Singh, K. Anil., Muhammad W. Ansari, Ashwani Pareek and Sneh L. Singla – Pareek. 2008. Raising Salinity Tolerant Rice : Recent Progress and Future Perspective. Physiology. Moleculer, Biologyy. Plants. 14 (1&2) – Jan. &April., 137-153.
Sipayung, R. 2003. Stress Garam dan Mekanisme Toleransi Tanaman. Fakultas Pertanian. Jurusan Budidaya Pertanian. Universitas Sumatera Utara, Medan.
Sitompul, S.M dan B. Guritno. 1995. Analisis Pertumbuhan Tanaman. Gadjah Mada University Press. Yogyakarta.
Situmorang, Apriadi, Anky Zannati, Dwi Widjayantie dan Satya Nugroho. 2010. Seleksi Genotipe Padi Mutan Insersi Toleran Cekaman Salinitas Berdasarkan Karakter Pertumbuhan dan Biokimia. Jurnal Agronomi Indonesia. Volume 38 No : 1 Halaman 8 – 14.
Smirnoff, N. 2000. Ascorbate biosynthesis and function in photoprotection. Phil Trans R.Soc. Lond B 355 : 1455 – 1464.
Sopandie, D. 2003. Toksisitas Hara dan Mekanisme Transportasi Ion Melalui Membran Tonoplas. Bahan Kuliah Program Pasca Sarjana. Institut Pertanian Bogor.
Steel, R.G.D. dan J.H. Torrie. 1993. Prinsip dan Prosedur Statistika Suatu Pendekatan Biometrik. Terjemahan Ir. Bambang Sumantri. IPB Press. Bogor. Sulistiani, Rini. 2010. Respon Pertumbuhan dan Produksi Beberapa Varietas padi Akibat Ameliorasi dan Pemupukan Spesifik Lokasi pada Tanah Salin. Tesis Pasca Sarjana. Fakultas Pertanian. Universitas Sumatera Utara.
Sunadi. 2008. Modifikasi Paket Teknologi (The System of Rice Intensification) SRI untuk Meningkatkan Hasil Padi Sawah (Oryza sativa L.) Disertasi. PPS Unand, Padang.
195
Suriadikarta, Didi Ardi. 2005. Pengelolaan Lahan Sulfat Masam untuk Usaha Pertanian. Pusat Penelitian dan Pengembangan Tanah dan Agroklimat. Tatar, Ozgur ; Holger Brueck ; Mithat Nuri Gevrek and Folkard ASCH2. Turk. J. Agric For 34 (2010) 451-459. Tehrani, M.M. and M.L. Malakouti, 1997. Effects of K+ and micronutrients on increase of Sugar Content of Beets in Iran. Proceedings of IPI Regional Workshop on Food Security in the WANA Region. The Essential Need for Balance Fertilization, May 26-30, Bronona, Izmir, Turkey, pp: 220-223.
Tigabu, Endalew ; Mebeaselassie Andargi and Kindie Tesfaye . 2013. Genotypic Variation for Salinity Tolerance in Shorgum (Sorghum bicolor (L.) Moench) Genotypes at Early Growth Stages. Journal of Stress Pyhisiology and Biochemistry, Vol. 9 No: 2, pp. 253-262.
Turan, S., K. Cornish, and S. Kumar. 2012. Salinity tolerance in plants: Breeding and genetic engineering. AJCS 6(9):1337-1348
Uddin, K. M., A. S. Juraimi, M. R. Ismail, R. Othman, dan A. A. Rahim. 2011. Relative salinity tolerance of warm season turf grass species. Journal Environmental Biology 32: 309–312. Utama, M.Z.H., W. Haryoko, R. Munir dan Sunadi. 2009. Penapisan varietas padi toleran salinitas pada lahan rawa di Kabupaten Pesisir Selatan. Journal Agronomi Indonesia 37 (2) : 101 – 106.
Yu, Q. dan Z. Rengel. 1999. Drought and salinity differentially influence activities of superoxide dismutase in narrow-leafed lupins. Plant Sci 142: 1–11.
Yuniati, R. 2004. Penapisan Galur Kedelai (Glycine max (L.) Merrill) Toleran terhadap NaCl untuk Penanaman di Lahan Salin. Makara Sains Vol. 8 No. 1 : 21 – 24.
196
Zhang, S., J. Weng, J. Pan, T. Tu, S. Yao dan C. Xu. 2003. Study on the photogeneration of superoxide radicals in Photosystem II with EPR spin trapping techniques. Photosynth Res. 75:41–48.
Zhang, G., M. Chen, L. Li, Z. Xu, X. Chen, J. Guo dan Y. Ma. 2009. Overexpression of the soybean GmERF3 gene, an AP2/ERF type transcription factor for increased tolerances to salt, drought, and diseases in transgenic tobacco. Journal of Experimental Botany, Vol. 60, No. 13 : 3781–3796
Zhu, X.C., F.B. Song, S.Q. Liu, T.D. Liu, dan X. Zhou. 2012. Arbuscular mycorrhizae improves photosynthesis and water status of Zea mays L. under drought stress. Plant Soil Environ. 58 (4): 186–191
Zou, Y.N. dan Q.S. Wu, 2011. Efficiencies of five arbuscular mycorrhizal fungi in alleviating salt stress of trifoliate orange. Int. J. Agric. Biol., 13: 991–995
Zuccarini, P. 2007. Mycorrhizal infection ameliorates chlorophyll content and nutrient uptake of lettuce exposed to saline irrigation. Plant, Soil and Environment 53: 283–289.
Zuccarini, P dan P. Okurowska. 2008. Effects of mycorrhizal colonization and fertilization on growth and photosynthesis of sweet basil under salt stress. Journal of Plant Nutrition 31: 497–513.
Wolucka, B. A.; Goossens, A. and Inze, D. (2005). Methyl Jasmonate Stimulates the de novo Biosynthesis of Vitamin C in Plant Cell Suspensions. J. Exp. Botany, 56: 2527–2538.
Xiong, L. and Zhu, J. K. (2002). Moleculer and Genetic Aspects of Plant Responses to Osmotic Stress. Plant Cell Environment., 25 : 131 – 139. YE, W., N. PANG, J. WANG, and B. FAN. 2006. Characteristics of absorbing, ccumulating, and distributing of Na+ under the salinity stress of cotton. Cotton Science. 18(5): 279-283.
197
Yoshida, S. 1981. Fundamentals of Rice Crop Science. IRRI. Los Banos. Laguna, Philippines. Yuniati, Ratna. 2004. Penapisan Galur Kedelai (Glycine max L. Merrill) Toleran Terhadap NaCl untuk Penanaman Di Lahan Salin. Makara Sains, Volume 8 No : 1, April. Halaman 21 – 24. Zeid, Fraghal A.; Osama M. El Shihy ; Abd El Rahman M. Ghallab and Fatma El Zahraa A. Ibrahim. 2008. Effect of exogenous ascorbic acid on wheat tolerance to salinity stress conditions. Department of Agricultural Botany, Faculty of Agriculture, Cairo University. El Gamaa St., Giza, 12613, Egypt. Arab J. Biotech., Vol. 12, No. (1) Jan. (2009): 149-174.
Zhang H-X, Blumwald E. 2001. Transgenic salt-tolerant tomato plants accumulate salt in foliage but not in fruit. Nature Biotechnology 19: 765-768.
Zhang H-X, Hodson JN, Williams JP, Blumwald E. 2001. Engineering salt-tolerant Brassica plants: Characterization of yield and seed oil quality in transgenic plants with increased vacuolar sodium accumulation. Proceedings of the National Academy of Sciences of the USA 98: 12832-12836.
198