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缺铁条件对磷高效大豆铁吸收和利用的影响。

Effects of Fe-deficient conditions on Fe uptake and utilization in P-efficient soybean.

作者信息

Qiu Wei, Dai Jing, Wang Nanqi, Guo Xiaotong, Zhang Xiaoli, Zuo Yuanmei

机构信息

Key Laboratory of Plant-Soil Interactions, MOE, Centre for Resource, Environment and Food Security, China Agricultural University, Beijing 100193, China.

Key Laboratory of Plant-Soil Interactions, MOE, Centre for Resource, Environment and Food Security, China Agricultural University, Beijing 100193, China.

出版信息

Plant Physiol Biochem. 2017 Mar;112:1-8. doi: 10.1016/j.plaphy.2016.12.010. Epub 2016 Dec 7.

Abstract

Phosphorus (P)-efficient soybean (Glycine max) plants absorb and utilize P with high efficiency. To investigate the effects of iron (Fe)-deficient conditions on the absorption and utilization of Fe in P-efficient soybean plants, two soybean cultivars with different P efficiency, the 03-3 (P-efficient variety) and Bd-2 (P-inefficient variety), were used in this study. The two soybean cultivars were grown in nutrient solution containing Fe concentrations of 0 (Fe0), 20 (Fe20), 40 (Fe40), or 80 (Fe80) μM for 7 days. The Fe reductase activity of roots was higher in 03-3 plants grown under the Fe0, Fe20, and Fe40 treatments than in Bd-2 plants and the total Fe uptake was greater in 03-3 plants under the Fe40 treatment. GmFRD3a was much more highly expressed in the stem of 03-3 than in that of Bd-2, and significantly more iron was transported to 03-3 plant shoots during Fe0 treatment. Chlorosis in young leaves caused by Fe deficiency under the Fe0 and Fe20 treatments was alleviated by increased Fe concentration in shoots. Increased levels of active Fe in young 03-3 leaves under Fe-deprivation conditions (Fe0) and maintenance of stable Fe concentrations in 03-3 shoots subjected to Fe20, Fe40, and Fe80 treatments suggested that the P-efficient 03-3 cultivar is also Fe-efficient. It is suggested that 03-3 soybean cultivar should be a good resource for application to farm field.

摘要

磷(P)高效型大豆(Glycine max)植株能高效吸收和利用磷。为了研究缺铁条件对磷高效型大豆植株中铁吸收和利用的影响,本研究选用了两个磷效率不同的大豆品种,03 - 3(磷高效品种)和Bd - 2(磷低效品种)。这两个大豆品种在铁浓度分别为0(Fe0)、20(Fe20)、40(Fe40)或80(Fe80)μM的营养液中培养7天。在Fe0、Fe20和Fe40处理下生长的03 - 3植株根系的铁还原酶活性高于Bd - 2植株,并且在Fe40处理下03 - 3植株的总铁吸收量更大。GmFRD3a在03 - 3茎中的表达量远高于Bd - 2,并且在Fe0处理期间向03 - 3植株地上部运输的铁显著更多。Fe0和Fe20处理下缺铁导致的幼叶黄化现象通过地上部铁浓度的增加得到缓解。在缺铁条件(Fe0)下03 - 3幼叶中活性铁水平的增加以及在Fe20、Fe40和Fe80处理下03 - 3地上部铁浓度的稳定表明,磷高效型03 - 3品种也是铁高效型的。建议03 - 3大豆品种应是应用于农田的良好资源。

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