Nutrient Uptake, Chlorophyll Content, and Yield of Rice (Oryza sativa L.) Under the Application of PGPR Consortium
(1) Department of Agrotechnology, Faculty of Agriculture, Universitas Jenderal Soedirman
(2) Department of Agrotechnology, Faculty of Agriculture, Universitas Jenderal Soedirman
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Adedeji, A. A., Häggblom, M. M., & Babalola, O. O. (2020). Sustainable agriculture in Africa: Plant growth-promoting rhizobacteria (PGPR) to the rescue. Scientific African, 9, e00492. https://doi.org/10.1016/j.sciaf.2020.e00492
Arif, S., Isdijoso, W., Fatah, A. R., & Tamyis, A. R. (2020). Strategic Review of Food Security and Nutrition in Indonesia.
Backer, R., Rokem, J. S., Ilangumaran, G., Lamont, J., Praslickova, D., Ricci, E., Smith, D. L. (2018). Plant growth-promoting rhizobacteria: Context, mechanisms of action, and roadmap to commercialization of biostimulants for sustainable agriculture. Frontiers in Plant Science, 871(October), 1–17. https://doi.org/10.3389/fpls.2018.01473
Bashir, A., & Yuliana, S. (2019). Identifying factors influencing rice production and consumption in Indonesia. Jurnal Ekonomi Pembangunan: Kajian Masalah Ekonomi Dan Pembangunan, 19(2), 172–185. https://doi.org/10.23917/jep.v19i2.5939
Bhattacharyya, R., Kundu, S., Thind, H. S., Ghosh, B. N., Sarkar, D., Batabyal, K., Lalitha, M. (2017). Nitrogen and Soil Quality. The Indian Nitrogen Assessment: Sources of Reactive Nitrogen, Environmental and Climate Effects, Management Options, and Policies. Elsevier Inc. https://doi.org/10.1016/B978-0-12-811836-8.00015-X
Croft, H., & Chen, J. M. (2017). Leaf pigment content. Comprehensive Remote Sensing (Vol. 1–9). Elsevier. https://doi.org/10.1016/B978-0-12-409548-9.10547-0
Delory, B.M., E.W.A. Weidlich, L. Meder, A. Lutje, R. van Duijnen, R. Weidlich & V.M. Temperton (2017). Accuracy and bias ofmethods used for root length measurements in functional root research. Methods in Ecology and Evolution, 8: 1594-1606.
Esfahani, M., Abbasi, H. R. A., Rabiei, B., & Kavousi, M. (2008). Improvement of nitrogen management in rice paddy fields using chlorophyll meter (SPAD). Paddy and Water Environment, 6(2), 181–188. https://doi.org/10.1007/s10333-007-0094-6
Fiorentini, M., Zenobi, S., Giorgini, E., Basili, D., Conti, C., Pro, C., Orsini, R. (2019). Nitrogen and chlorophyll status determination in durum wheat as influenced by fertilization and soil management: Preliminary results. PLoS ONE, 14(11), 1–16. https://doi.org/10.1371/journal.pone.0225126
Gholizadeh, A., Saberioon, M., Borůvka, L., Wayayok, A., & Mohd Soom, M. A. (2017). Leaf chlorophyll and nitrogen dynamics and their relationship to lowland rice yield for site-specific paddy management. Information Processing in Agriculture, 4(4), 259–268. https://doi.org/10.1016/j.inpa.2017.08.002
Hasanah, N.A.U., P. Harsono, Samanhudi & E Purwanto (2021). Evaluation of growth and biomass production of sorghum on cadmium contaminated paddy field. IOP Conf. Series: Earth and Environmental Science, 637: 1-6.
Hatta, M., & Sulakhudin, S. (2016). Site-Specific Fertilization for lowland rice production in West Kalimantan. Sains Tanah - Journal of Soil Science and Agroclimatology, 13(1), 1. https://doi.org/10.15608/stjssa.v13i1.473
Islam, A. K. M. S., Rana, M. S., Rahman, D. M. M., Abedin Mian, M. J., Rahman, M. M., Rahman, M. A., & Naher, N. (2016). Growth, Yield and nutrient uptake capacity of rice under different sulphur levels. Turkish Journal of Agriculture - Food Science and Technology, 4(7), 557. https://doi.org/10.24925/turjaf.v4i7.557-565.709
Jha, M., Chourasia, S., & Sinha, S. (2013). Microbial consortium for sustainable rice production. Agroecology and Sustainable Food Systems, 37(3), 340–362. https://doi.org/10.1080/10440046.2012.672376
Jiang, B., Tsao, R., Li, Y., & Miao, M. (2014). Food Safety: Food Analysis Technologies/Techniques. Encyclopedia of Agriculture and Food Systems, 3, 273–288. https://doi.org/10.1016/B978-0-444-52512-3.00052-8
Liu, C., Liu, Y., Lu, Y., Liao, Y., Nie, J., Yuan, X., & Chen, F. (2019). Use of a leaf chlorophyll content index to improve the prediction of above-ground biomass and productivity. PeerJ, 2019(1), 1–15. https://doi.org/10.7717/peerj.6240
Mariyono, J. (2014). Rice production in Indonesia: policy and performance. Asia Pacific Journal of Public Administration, 36(2), 123–134. https://doi.org/10.1080/23276665.2014.911489
Oluwambe, T. M. (2016). Comparison of single culture and the consortium of growth-promoting rhizobacteria from three tomato (Lycopersicon esculentum Mill) varieties. Advances in Plants & Agriculture Research, 5(1), 448–455. https://doi.org/10.15406/apar.2016.05.00167
Osman, J. R., Fernandes, G., & DuBow, M. S. (2017). Bacterial diversity of the rhizosphere and nearby surface soil of rice (Oryza sativa) growing in the Camargue (France). Rhizosphere, 3, 112–122. https://doi.org/10.1016/j.rhisph.2017.03.002
Pandey, P., Sandeep Bisht, AnchalSood, Abjinav Aeron, G.D. Sharma, D. . maheswari. (2012). Bacteria in agrobiology: Plant probiotics. In Consortium of Plant-Growth-Promoting Bacteria: Future Perspective in Agriculture (Vol. 9783642275, pp. 1–371). https://doi.org/10.1007/978-3-642-27515-9
Paul, D., & Y. R. Sarma. 2006. Plant growth promoting rhizhobacteria (PGPR)-mediated root proliferation in black pepper (Piper nigrum L.) as evidenced through GS Root software. Archives of Phytopathology and Plant Protection, 39(4): 311 – 314.
Pramanik, K., & Bera, A. K. (2013). Effect of seedling age and nitrogen fertilizer on growth, chlorophyll content, yield and economics of hybrid rice (Oryza sativa L.). International Journal of Agronomy and Plant Production, 4(S), 3489–3499.
Proklamasiningsih, E., Irfan Dwidya Priyambada, Diah Rachmawati, R. P. S. (2013). Laju Fotosintesis dan kandungan klorofil kedelai pada media tanam masam dengan pemberian garam aluminium. Agrotrop: Journal on Agriculture Science, 2(1), 17–24.
Purwanto, Agustono, T., Mujiono, Widiatmoko, T., & Widjonarko, B. R. (2019a). The Effect of plant growth promotion rhizobacteria inoculation to agronomic traits of aromatic rice (Oryza sativa cv. Inpago Unsoed 1). IOP Conference Series: Earth and Environmental Science, 255(1). https://doi.org/10.1088/1755-1315/255/1/012023
Purwanto, P., Agustono, T., Widjonarko, B. R., & Widiatmoko, T. (2019b). indol acetic acid production of indigenous plant growth promotion rhizobacteria from paddy soil. Planta Tropika: Journal of Agro Science, 7(1), 1–7. https://doi.org/10.18196/pt.2019.087.1-7
Purwanto, Yuwariah, Y., Sumadi, S., & Simarmata, T. (2017). Nitrogenase activity and IAA production of indigenous diazotroph and its effect on rice seedling growth. Agrivita, 39(1), 31–37. https://doi.org/10.17503/agrivita.v39i1.653
Safriani,S.R., L. Fitri, & Y.S. Ismail. (2020). Isolation of potential plant growth promoting rhizobacteria (PGPR) from cassava (Manihot esculenta) rhizosphere soil. Biosaintifika 12(3): 459-468.
Santosa, S., Sutarno, Purwanto, E. D. I., Suranto, & Sajidan. (2018). Molecular characterization of plant growth promoting rhizobacteria using 16s rRNA sequences in the organic rice field of Sukorejo village, central Java, Indonesia. Biodiversitas, 19(6), 2157–2162. https://doi.org/10.13057/biodiv/d190623
Setiawati, M.R, Emma Trinurani S, Z. M. (2016). Pengaruh pupuk hayati padat terhadap serapan N dan P tanaman, komponen hasil dan hasil padi sawah ( Oryza sativa L.). Jur Agroekotek, 8(2), 120–130.
Sharma, A., Shankhdhar, D., Sharma, A., & Shankhdhar, S. C. (2014). Growth promotion of the rice genotypes by pgprs isolated from rice rhizosphere. Journal of Soil Science and Plant Nutrition, 14(2), 505–517. https://doi.org/10.4067/S0718-95162014005000040
Sikuku, P., Kimani J M, Ka, au J W, N. S. (2015). Influence of nitrogen supply on photosynthesis, chlorophyll content and yield of improved rice varieties under upland conditions. In 4th International Conference on Agriculture & Horticulture (Vol. 4, p. 9881).
Simarmata, T., Hersanti, Turmuktini, T., Fitriatin, B. N., Setiawati, M. R., & Purwanto. (2016). Application of bioameliorant and biofertilizers to increase the soil health and rice productivity. HAYATI Journal of Biosciences, 23(4), 181–184. https://doi.org/10.1016/j.hjb.2017.01.001
Suharjo & Sutarno. (2009). Biomass, chlorophyll and nitrogen content of leaves of two chili pepper varieties (Capsicum annum) in different fertilization treatments. Nusantara Bioscience, 1(1), 9–16. https://doi.org/10.13057/nusbiosci/n010102
Tabassum, B., Khan, A., Tariq, M., Ramzan, M., Iqbal Khan, M. S., Shahid, N., & Aaliya, K. (2017). Bottlenecks in commercialisation and future prospects of PGPR. Applied Soil Ecology, 121(September), 102–117. https://doi.org/10.1016/j.apsoil.2017.09.030
Tennakoon, P. L. K., Rajapaksha, R. M. C. P., & Hettiarachchi, L. S. K. (2019). Tea yield maintained in PGPR inoculated field plants despite significant reduction in fertilizer application. Rhizosphere, 10, 100146. https://doi.org/10.1016/j.rhisph.2019.100146.
Vacheron, J., Guilhem Desbrosses, Marie-Lara Boufaud, Bruno Touraine, Yvan Moenne-Loccoz, Daniel Muller, Laurent Legendre, Florence Wishiewski, C.-C. (2013). Plant growth-promoting rhizobacteria and root system functioning, 4(September), 1–19. https://doi.org/10.3389/fpls.2013.00356
Zhou, J., Jiang, X., Wei, D., Zhao, B., Ma, M., Chen, S., … Li, J. (2017). Consistent effects of nitrogen fertilization on soil bacterial communities in black soils for two crop seasons in China. Scientific Reports, 7(1), 1–10. https://doi.org/10.1038/s41598-017-03539-6
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