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Analysis of Sulfate Transporter Gene Family 3 in Rice

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  • 1State Key Laboratory of Efficient Utilization of Arid and Semi-Arid Arable Land in Northern China / Institute of Agricultural Resources and Regional Planning, Chinese Academy of Agricultural Sciences, Beijing 100081, China
    2Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Beijing 100101, China
    3College of Life Sciences, Zhejiang Normal University, Jinhua 321004, China
Xu Lei (xulei@caas.cn);
Zhao Hongyu (hyzhao@genetics.ac.cn)

Received date: 2024-09-29

  Accepted date: 2024-12-31

  Online published: 2025-08-06

Cite this article

Li Ruili, Xu Zhuang, Wang Wanxia, Wang Huang, Zhao Hongyu, Xu Lei, Yi Keke . Analysis of Sulfate Transporter Gene Family 3 in Rice[J]. Rice Science, 2025 , 32(4) : 449 -452 . DOI: 10.1016/j.rsci.2025.02.002

References

[1] Ding G D, Lei G J, Yamaji N, et al. 2020. Vascular cambium-localized AtSPDT mediates xylem-to-phloem transfer of phosphorus for its preferential distribution in Arabidopsis. Mol Plant, 13(1): 99-111.
[2] Kataoka T, Hayashi N, Yamaya T, et al. 2004. Root-to-shoot transport of sulfate in Arabidopsis: Evidence for the role of SULTR3;5 as a component of low-affinity sulfate transport system in the root vasculature. Plant Physiol, 136(4): 4198-4204.
[3] Sara Liyana, Saeheng S, Puttarak P, et al. 2024. Changes in metabolites and allelopathic effects of non-pigmented and black-pigmented lowland indica rice varieties in phosphorus deficiency. Rice Sci, 31(4): 434-448.
[4] Tabatabai M A, Bremner J M. 1970. Arylsulfatase activity of soils. Soil Sci Soc Am J, 34(2): 225-229.
[5] Takahashi H. 2019. Sulfate transport systems in plants: Functional diversity and molecular mechanisms underlying regulatory coordination. J Exp Bot, 70(16): 4075-4087.
[6] Yamaji N, Ma J F. 2017. Node-controlled allocation of mineral elements in Poaceae. Curr Opin Plant Biol, 39: 18-24.
[7] Yamaji N, Takemoto Y, Miyaji T, et al. 2017. Reducing phosphorus accumulation in rice grains with an impaired transporter in the node. Nature, 541: 92-95.
[8] Zhao H J, Frank T, Tan Y Y, et al. 2016. Disruption of OsSULTR3;3 reduces phytate and phosphorus concentrations and alters the metabolite profile in rice grains. New Phytol, 211(3): 926-939.
[9] Zhu J L, Wei R P, Wang X, et al. 2023. Polyphosphate accelerates transformation of nonstructural carbohydrates to improve growth of ppk-expressing transgenic rice in phosphorus deficiency culture. Rice Sci, 30(3): 235-246.
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