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Effect of Phosphorus Deficiency on Leaf Photosynthesis and Carbohydrates Partitioning in Two Rice Genotypes with Contrasting Low Phosphorus Susceptibility

机译:磷缺乏对两种低磷敏感性水稻基因型叶片光合作用和碳水化合物分配的影响

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摘要

To study the effect of phosphorus (P) deficiency on leaf photosynthesis and carbohydrates partitioning and to determine whether the characteristics of leaf photosynthesis and carbohydrates partitioning are related to iow P tolerance in rice plants, a hydroponic culture experiment supplied with either sufficient P (10 mg/L) or deficient P (0.5 mg/L) was conducted by using two rice genotypes different in their responses to low P stress. Results showed that the plant growth of Zhenongda 454 (low P tolerant genotype) was less affected by P deficiency compared with Sanyang'ai (low P sensitive genotype). Under P-deficient conditions,photosynthetic rates of Zhenongda 454 and Sanyang'ai were decreased by 16% and 35%, respectively, and Zhenongda 454 showed higher photosynthetic rate than Sanyang'ai. Phosphorus deficiency decreased the stomatal conductance for both genotypes, but had no significant influence on leaf internal CO2 concentration (Ci), suggesting that the decrease in leaf photosynthetic rate of rice plants induced by P deficiency was not due to stomatal limitation. Phosphorus deficiency increased the concentration of soluble carbohydrates and sucrose in shoots and roots for both genotypes, and also markedly increased the allocation of soluble carbohydrates and sucrose to roots. Under deficient P supply, Zhenongda 454 had higher root/shoot soluble carbohydrates content ratio and root/shoot sucrose content ratio than Sanyang'ai. In addition, phosphorus deficiency increased the concentration of starch in roots for both genotypes, whereas had no effect on the content of starch in shoots or roots. Compared to genotype Sanyang'ai, the better tolerance to low-P stress of Zhenongda 454 can be explained by the fact that Zhenongda 454 maintains a higher photosynthetic rate and a greater ability to allocate carbohydrates to the roots under P deficiency.
机译:为研究缺磷对水稻叶片光合作用和碳水化合物分配的影响,并确定水稻叶片光合作用和碳水化合物分配的特征是否与低磷耐受性相关,水培培养试验应提供足够的磷(10 mg / L)或低磷(0.5 mg / L)是通过使用两种对低磷胁迫反应不同的水稻基因型进行的。结果表明,与三养爱(低磷敏感基因型)相比,珍农达454(低磷耐受基因型)的植物生长受磷缺乏的影响较小。在缺磷条件下,Zhenongda 454和Sanyang'ai的光合速率分别降低了16%和35%,Zhenongda 454的光合速率高于三阳县。磷缺乏降低了两种基因型的气孔导度,但对叶片内部CO2浓度(Ci)的影响不显着,这表明磷缺乏引起的水稻叶片光合速率的降低并不是由于气孔限制所致。磷缺乏增加了两种基因型的芽和根中可溶性碳水化合物和蔗糖的浓度,也显着增加了可溶性碳水化合物和蔗糖在根中的分配。在磷供应不足的情况下,珍农大454的根/茎可溶性糖含量比和根/茎蔗糖含量比三洋县更高。另外,磷缺乏增加了两种基因型的根中淀粉的浓度,而对芽或根中的淀粉含量没有影响。与基因型三养爱相比,珍农达454对低磷胁迫的耐受性更好,可以解释为:珍农达454在缺磷条件下保持较高的光合速率和向根部分配碳水化合物的能力较高。

著录项

  • 来源
    《水稻科学(英文版)》 |2006年第4期|283-290|共8页
  • 作者单位

    Key Laboratory of Environmental Remediation and Ecosystem Health, Ministry of Education, College of Environmental and Resource Science, Zhejiang University, Hangzhou 310029, China;

    School of Environmental Technology, Zhejiang Forestry College,Lin'an 311300, China;

    Key Laboratory of Environmental Remediation and Ecosystem Health, Ministry of Education, College of Environmental and Resource Science, Zhejiang University, Hangzhou 310029, China;

    College of Agriculture and Biotechnology, Zhejiang University, Hangzhou 310029, China;

    State Key Laboratory of Rice Biology, China National Rice Research Institute, Hangzhou 310006, China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 农作物;
  • 关键词

    carbohydrate; phosphorus deficiency; photosynthesis; rice;

    机译:碳水化合物;磷缺乏;光合作用;水稻;
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