Studi Ttranslokasi Asimilat pada Padi: Pendekatan Untuk Meningkatkan Produktivitas di Lingkungan Optimal

Authors

  • Restu Mumpuni IPB

DOI:

https://doi.org/10.51179/jsp.v9i2.3216

Keywords:

efficiency, nitrogen, nutrition, sink, source

Abstract

The rice productivity can be increased by improving the efficiency of absorbing translocation in plants. In rice, assimilates are translocated from the leaves to the plant's stem, roots, and panicles. Effective coordination among plant components is necessary for this process to guarantee that assimilation is distributed efficiently by plant growth and development requirements. This mini-review aims to provide additional information regarding the behavior and process of assimilate translocation in rice under optimum circumstances, which may be utilized as a guide in increasing rice productivity. Sink strength, spikelet partitioning in panicles, blooming duration, and the presence of certain genes in rice cultivars are some factors that influence the translocation of assimilate in rice plants. The features of rice varieties, the availability of nitrogen, and the soil's fertility can all be considered when optimizing the relationship between source and sink to maximize production and resource utilization in rice cultivation. In assimilate translocation, nutrients can be managed by applying nutrients at the right time, strengthening sources and sinks, and enhancing non-structural carbohydrates. Increased plant population, application of organic fertilizer, use of intermittent irrigation patterns, and application of nitrogen fertilizer are among the cultivation techniques that can enhance source and sink interactions in rice.

Author Biography

  • Restu Mumpuni, IPB

    Sekolah Vokasi IPB University

References

BPS. (2022). Luas Panen, Produksi, dan Produktivitas Padi Menurut Provinsi 2018-2022. Badan Pusat Statistik. Jakarta

Chen, L., Deng, Y., Zhu, H., Hu, Y., Jiang, Z., Tang, S., Wang, S., & Ding, Y. (2019). The Initiation of Inferior Grain Filling is Affected by Sugar Translocation Efficiency in Large Panicle Rice. Rice (New York, N.Y.), 12(1), 75. https://doi.org/10.1186/s12284-019-0333-7

Chen, T., Li, G., Islam, M.R. (2019). Abscisic acid synergizes with sucrose to enhance grain yield and quality of rice by improving the source-sink relationship. BMC Plant Biol 19, 525. https://doi.org/10.1186/s12870-019-2126-y

Fei, L., Pan, Y., Ma, H., Guo, R., Wang, M., Ling, N., Shen, Q. and Guo, S. (2024). Optimal organic-inorganic fertilization increases rice yield through source-sink balance during grain filling. Field Crops Research, 308, p.109285. https://doi.org/10.1016/j.fcr.2024.109285.

He, H., Hu, C., Xu, H., Yang, R., You, C., Ke, J., Zhang, Q. and Wu, L. (2024). High yield, good eating quality, and high N use efficiency for medium hybrid indica rice: From the perspective of balanced source-sink relationships at heading. European Journal of Agronomy, 159, p.127281. https://doi.org/10.1016/j.eja.2024.127281.

He, H., Wang, Q., Yang, K., Niu, M., Wang, L., Wu, H., You, C., Ke, J., Zhu, D., & Wu, L. (2021). Optimizing nitrogen distribution in source-sink organs at heading for high grain yield and high nitrogen use efficiency in Japonica rice. Agronomy Journal. 113: 4832–4849. https://doi.org/10.1002/agj2.20854

Khaliq, M., A., B. James, Y., H., Chen, H., S., A., Saqib, H., H., Li, P., Jayasuriya, W., Guo. (2019). Uptake, translocation, and accumulation of Cd and its interaction with mineral nutrients (Fe, Zn, Ni, Ca, Mg) in upland rice. Chemosphere. 215:916-924. https://doi.org/10.1016/j.chemosphere.2018.10.077.

Li, X., Y., Zhou, P., Shuai, X., Wang, S., Peng, and F., Wang. (2023). Source–sink balance optimization depends on soil nitrogen condition so as to increase rice yield and N use efficiency. Agronomy 13, no. 3: 907. https://doi.org/10.3390/agronomy13030907

Lu, B., Xu, C., Li, Z., Tang, X., Yang, F., Xu, D., Zhu, G., Zhang, J., Jiang, Y., Li, W. and Liu, Z. (2024). Influence of the temperature during grain filling stage and nitrogen application rate on yield and quality of indica hybrid rice. Field Crops Research, 309, p.109333. https://doi.org/10.1016/j.fcr.2024.109333

Miras, M., M., Pottier, T., M., Schladt, J., O., Ejike, L., Redzich, Wolf B., Frommer, J., Y., Kim. (2022) .Plasmodesmata and their role in assimilate translocation. Journal of Plant Physiology 207: 153633 https://doi.org/10.1016/j.jplph.2022.153633

Mumpuni, R., P., and Rohmah, A., J., (2021). Application of biological control Paenibacillus polymyxa toward bacterial leaf blight disease in rice plant. In IOP Conference Series: Earth and Environmental Science (Vol. 637, No. 1, p. 012040). IOP Publishing. http://dx.doi.org/10.1088/1755-1315/637/1/012040

Noor, M., Zheng, Y., Nabi, F., Yang, G., Sajid, S., Hakeem, A. (2022). Responses of nitrogen accumulation and translocation in five cytoplasmic hybrid rice cultivars. Plant Soil Environ. 68(2):73-81. doi: 10.17221/354/2021-PSE

Tsukaguchi, T., K., Murakami, T., Michimoto. (2016). A quantitative measure for assimilate partitioning efficiency in rice (Oryza sativa L.), Field Crops Research 198: 122-130 https://doi.org/10.1016/j.fcr.2016.08.033

Pan, Y., Guo, J., Fan, L., Ji, Y., Liu, Z., Wang, F., Pu, Z., Ling, N., Shen, Q. and Guo, S., (2022). The source–sink balance during the grain filling period facilitates rice production under organic fertilizer substitution. European Journal of Agronomy, 134, p.126468. https://doi.org/10.1016/j.eja.2022.126468

Phung. H., D., D., Sugiura, H., Sunohara, D., Makihara, M., Kondo, S., Nishiuchi, K., Doi, D., E., Eghdami, A., and Houshmandfar, A., (2011). Evaluation of sink and source relationship in different rice (Oryza sativa L.) Cultivars. Advances in Environmental Biology, pp.912-920. https://doi.org/10.1270/jsbbs.18203

Tu, D., Jiang, Y., Salah, A., Cai, M., Peng, W., Zhang, L., Li, C. and Cao, C., (2022). Response of source-sink characteristics and rice quality to high natural field temperature during reproductive stage in irrigated rice system. Frontiers in Plant Science, 13, p.911181. doi: 10.3389/fpls.2022.911181

Wei., H., T., Meng, C., Li, K., Xu, Z., Huo, H., Wei, B., Guo, H., Zhang, Q., Dai. (2017). Comparisons of grain yield and nutrient accumulation and translocation in high-yielding japonica/indica hybrids, indica hybrids, and japonica conventional varieties. Field Crops Research 204: 101-109 https://doi.org/10.1016/j.fcr.2017.01.001.

Wei., H, Meng, T., Li, X., Dai, Q., Zhang, H., and Yin, X. (2018). Sink-source relationship during rice grain filling is associated with grain nitrogen concentration. Field Crops Research. 215: 23-38.

Wu, H., Xiang, J., Zhang, Y. (2018). Effects of post-anthesis nitrogen uptake and translocation on photosynthetic production and rice yield. Sci Rep 8, 12891. https://doi.org/10.1038/s41598-018-31267-y

Xu, Z., He, P., Yin, X. and Struik, P.C., (2024). Smart nutrient management Nutrient Expert® enhances rice productivity through adjusting source-sink relationships during grain filling. Field Crops Research, 316, p.109479. https://doi.org/10.1016/j.fcr.2024.109479.

Xu, H., Wang, Z., Xiao, F., Yang, L., Li, G., Ding, Y., Paul, M.J., Li, W. and Liu, Z., (2021). Dynamics of dry matter accumulation in internodes indicates source and sink relations during grain-filling stage of japonica rice. Field Crops Research, 263, p.108009.https://doi.org/10.1016/j.fcr.2020.108009

Yagioka, A., S., Hayashi, K., Kimiwada, M., Kondo. (2021). Sink production and grain-filling ability of a new high-yielding rice variety, Kitagenki. Field Crops Research 260: 10799. https://doi.org/10.1016/j.fcr.2020.107991.

Yang, J., Peng, S., Zhang, Z., Wang, Z., Visperas, R.M. and Zhu, Q. (2002). Grain and dry matter yields and partitioning of assimilates in japonica/indica hybrid rice. Crop Science, 42: 766-772. https://doi.org/10.2135/cropsci2002.7660

Yi, J., Gao, J., Zhang, W., Zhao, C., Wang, Y., Zhen, X. (2019). Differential uptake and utilization of two forms of nitrogen in japonica rice cultivars from north-eastern China. Front Plant Sci. 10 https://doi.org/10.3389/fpls.2019.01061

Zhang, H., W., Jing, B., Zhao, W., Wang, Y., Xu, W., Zhang, J., Gu, L., Liu, Z., Wang, J., Yang. (2021). Alternative fertilizer and irrigation practices improve rice yield and resource use efficiency by regulating source-sink relationships, Field Crops Research 2yi65: 108124 https://doi.org/10.1016/j.fcr.2021.108124.

Zhu, T., Yin, C., Zhu, T., Zhou, P., Wu, L., Wang, G., He, H., You, C., Zhang, Q. and Ke, J., (2024). Delaying panicle nitrogen application to emergence of 3rd leaf from flag leaf increases the grain-filling ability and yield of large-panicle rice by increasing stem nonstructural carbohydrates at heading. Field Crops Research, 312, p.109405. https://doi.org/10.1016/j.fcr.2024.109405

Downloads

Published

2025-02-28

Issue

Section

Articles

How to Cite

Studi Ttranslokasi Asimilat pada Padi: Pendekatan Untuk Meningkatkan Produktivitas di Lingkungan Optimal. (2025). Jurnal Sains Pertanian, 9(2), 52-58. https://doi.org/10.51179/jsp.v9i2.3216