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[外源磷对镉胁迫下水稻生长及镉积累与转运的影响]

[Effects of Exogenous Phosphorus on Rice Growth and Cadmium Accumulation and Transportation Under Cadmium Stress].

作者信息

Huo Yang, Qiu Yin-Yan, Zhou Hang, Hu Yu-Dan, Deng Peng-Hui, Wei Bin-Yun, Gu Jiao-Feng, Liu Jun, Liao Bai-Han

机构信息

College of Environmental Science and Engineering, Central South University of Forestry and Technology, Changsha 410004, China.

Hunan Engineering Laboratory for Control of Rice Quality and Safety, Changsha 410004, China.

出版信息

Huan Jing Ke Xue. 2020 Oct 8;41(10):4719-4725. doi: 10.13227/j.hjkx.202003048.

Abstract

In this study, we investigated the effects of exogenous phosphorus on the accumulation and transportation of cadmium in rice plants through a hydroponic experiment. In the experiment, the rice variety was Huanghuazhan, P solution concentrations were 10.0-45.0 mg ·L that was made using NaHPO, and Cd solution concentrations were 0.1 mg ·L and 0.2 mg ·L. The results showed that: ① the biomass in all parts of rice plants and contents of photosynthetic pigment (chlorophyll a, chlorophyll b, and carotenoid) increased gradually with an increase in exogenous P. ② Content of Cd in rice stems, leaves, husk, and brown rice increased gradually with an increase in the amounts of exogenous P. The content of Cd in brown rice increased by 2.8%-22.8% and 40.9%-61.8% when treated with Cd concentrations of 0.1 mg ·L and 0.2 mg ·L in hydroponic solutions, respectively. ③ Cd accumulation in rice plants was accelerated due to the application of exogenous P. Cd accumulating amounts increased from 395.1 μg ·plant to 542.6 μg ·plant and 639.6 μg ·plant to 1082.0 μg ·plant when treated with Cd concentrations of 0.1 and 0.2 mg ·L in hydroponic solutions, respectively. ④ With an increase in the applied amounts of exogenous P, the P/Cd quality ratio in rice roots increased, while those in rice stems, leaves, husks, and brown rice decreased; meanwhile, the Cd transfer coefficients from root to stem (TF) and stem to leaf (TF) increased. This showed that there was a certain synergistic effect between P and Cd in the rice parts. Finally, the application of exogenous P promoted the transfer of Cd from the rice root to other rice tissues, resulting in a synergistic effect on Cd accumulation and transportation in various rice tissues and increased Cd contents in brown rice.

摘要

在本研究中,我们通过水培实验研究了外源磷对水稻植株中镉积累和转运的影响。实验中,水稻品种为黄花占,磷溶液浓度为10.0 - 45.0 mg·L(由NaH₂PO₄配制而成),镉溶液浓度为0.1 mg·L和0.2 mg·L。结果表明:①随着外源磷含量的增加,水稻植株各部位的生物量以及光合色素(叶绿素a、叶绿素b和类胡萝卜素)含量逐渐增加。②水稻茎、叶、稻壳和糙米中的镉含量随着外源磷含量的增加而逐渐增加。当水培溶液中镉浓度分别为0.1 mg·L和0.2 mg·L时,糙米中的镉含量分别增加了2.8% - 22.8%和40.9% - 61.8%。③外源磷的施用加速了水稻植株对镉的积累。当水培溶液中镉浓度为0.1 mg·L和0.2 mg·L时,镉积累量分别从395.1 μg·株增加到542.6 μg·株和639.6 μg·株增加到1082.0 μg·株。④随着外源磷施用量的增加,水稻根中的P/Cd质量比增加,而水稻茎、叶、稻壳和糙米中的P/Cd质量比降低;同时,从根到茎的镉转移系数(TF)和从茎到叶的镉转移系数(TF)增加。这表明在水稻各部位中磷和镉之间存在一定的协同效应。最后,外源磷的施用促进了镉从水稻根向其他水稻组织的转移,导致对镉在水稻各组织中的积累和转运产生协同效应,并增加了糙米中的镉含量。

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