多年CO2浓度升高对水稻子代植株磷素吸收与分配的影响
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S511

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鄂尔多斯市科技重大专项(2022EEDSKJZDZX010)、国家重点研发计划项目(2023YFD1500801)和江苏省重点研发计划(现代农业) (BE2022308)资助


Effects of Elevated CO2 on Phosphorus Uptake and Distribution in Rice for Multiple Generations
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the Erdos City Science and Technology Major Project ,the National Key Research and Development Program, and the Jiangsu Provincial Key Research and Development Program

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    摘要:

    水稻是重要的口粮作物,客观真实地探究其子代磷素吸收与分配对持续多年CO2浓度升高对土壤磷素的管理具有重要意义,有利于农业的可持续发展。在江苏常熟的自由大气CO2富集系统(FACE)中进行子代FACE实验,在正常大气CO2浓度和高CO2浓度(较对照高200 μmol·mol-1)条件下将扬稻6号(籼稻)和武运粳23(粳稻)连续子代培育七代,分析当代和子代在植株磷素浓度、积累量以及分配比例对CO2浓度升高方面的响应差异。结果表明,连续多年CO2浓度升高对扬稻6号和武运粳23当代与子代植株各器官磷含量均无显著性的影响。连续多年CO2浓度升高能显著增加两个品种当代与子代地上部的磷素积累量,扬稻6号子代植株地上部和穗的磷素积累量的增幅要低于当代植株,高CO2浓度对武运粳23号子代植株各器官的磷素积累量的增幅要高于当代植株。高CO2浓度对武运粳23号秸秆磷素分配比例的增幅效应随着母本种子在高CO2浓度处理下的代数的增加而显著线性增加。结果表明,基于过去FACE试验均为当季结果,不能准确反映未来持续高CO2浓度对水稻植株磷素吸收与分配的真实效应。研究对未来CO2浓度升高背景下田间磷素管理具有重要的指导意义。

    Abstract:

    【Objective】 With the intensification of human activities since the Industrial Revolution, there is a continuous rise in carbon dioxide concentration in the atmosphere, which has become the main feature of global climate change. Rice being an important staple crop, it is important to explore its absorption and distribution of phosphorus under a long-term elevated CO2 environment. 【Method】 In this study, a multigenerational experiment was carried out cultivating Yangdao 6(indica) and Wuyunjing 23(japonica) in the Free Atmospheric CO2 Enrichment System (FACE) in Changshu, Jiangsu Province. The experiment was carried out under ambient CO2 and elevated CO2(increased by 200 μmol·mol-1) conditions for seven generations, and the differences in phosphorus concentration, phosphorus uptake, and phosphorus distribution between the single-generation and multigenerational rice plants were evaluated. 【Results】 (1) Long-term elevated CO2 had no significant effect on the phosphorus concentration of multigenerational rice plants in Yangdao 6 and Wuyunjing 23. (2) The long-term elevated CO2 significantly increased the phosphorus uptake of shoots in single-generation and multigenerational rice plants. However, the average increase in phosphorus uptake of the shoot and panicle of the offspring plant of Yangdao 6 was lower than that of the single-generation plant. On the contrary, the average increase in phosphorus uptake of shoot, straw, and panicle of the offspring plant of Wuyunjing 23 was higher than that of the single-generation plant under elevated CO2. (3) The average increasing effect of elevated CO2 on the phosphorus distribution in the straw of Wuyunjing 23 increased significantly with the increase in generations of maternal seeds under elevated CO2. 【Conclusion】 The results indicate that in the past, based on the single-generation short-term FACE studies, the real effect of long-term elevated CO2 on phosphorus uptake and distribution in rice plants could not be accurately predicted in the future. Therefore, this study provides guidelines for field-level phosphorus fertilizer management in a future high-CO2 world.

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顾歆悦,蔡创,尹斌,朱春梧.多年CO2浓度升高对水稻子代植株磷素吸收与分配的影响[J].土壤学报,2026,63(3):867-877. DOI:10.11766/trxb202502280084 GU Xinyue, CAI Chuang, YIN Bin, ZHU Chunwu. Effects of Elevated CO2 on Phosphorus Uptake and Distribution in Rice for Multiple Generations[J]. Acta Pedologica Sinica,2026,63(3):867-877.

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  • 收稿日期:2025-02-28
  • 最后修改日期:2025-08-22
  • 录用日期:2025-11-07
  • 在线发布日期: 2025-12-03
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