Cadmium uptake via apoplastic bypass flow in Oryza sativa

被引:0
作者
Izumi C. Mori
Carlos Raul Arias-Barreiro
Lia Ooi
Nam-Hee Lee
Muhammad Abdus Sobahan
Yoshimasa Nakamura
Yoshihiko Hirai
Yoshiyuki Murata
机构
[1] Okayama University,Institute of Plant Science and Resources
[2] Sorbonne University,Department of Life Sciences, Faculty of Science and Engineering
[3] Okayama University,Graduate School of Environmental and Life Science
来源
Journal of Plant Research | 2021年 / 134卷
关键词
Apoplastic bypass flow; Cadmium; Rice;
D O I
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中图分类号
学科分类号
摘要
It is known that rice roots take up cadmium (Cd) via the symplastic route mediated by membrane-bound mineral transporters. Here we provide evidence that apoplastic bypass flow is another Cd uptake route in rice. High concentrations of Cd rendered apoplastic bypass flow rate increased in rice seedlings. These concentrations of Cd compromised membrane integrity in the root meristem and transition zone. Polyethleneglycol and proline inhibited the Cd-induced apoplastic bypass flow and Cd transfer to the shoots. Loss-of-function mutant of the Cd uptake transporter, nramp5, showed Cd transport to the shoot comparable to the wild type. At a low Cd concentration, increased apoplastic bypass flow rate by NaCl stress resulted in an elevation of Cd transport to shoots both in the wildtype and nramp5. These observations indicate that apoplastic bypass flow in roots carries Cd transport leading to xylem loading of Cd in addition to the symplastic pathway mediated by mineral transporters under stressed conditions.
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页码:1139 / 1148
页数:9
相关论文
共 172 条
[31]  
Flowers TJ(2007)Characterization of the Na J Exp Bot 58 2939-336
[32]  
Yeo AR(1996) delivery from roots to shoots in rice under saline stress: excessive salt enhances apoplastic transport in rice plants Plant Cell Environ 19 329-227
[33]  
Fritz M(2021)Manganese efficiency in barley: Identification and characterization of the metal ion transporter HIRT1 Plant Physiol Biochem 158 219-1153
[34]  
Ehwald R(1987)Cadmium toxicity and tolerance in vascular plants J Exp Bot 38 1141-565
[35]  
Garcia A(1999)The role of root apoplastic barriers in cadmium translocation and accumulation in cultivars of rice ( Plant Cell Environ 22 559-D748
[36]  
Rizzo CA(2006) L.) with different Cd-accumulating characteristics Nucleic Acids Res 34 D745-undefined
[37]  
Ud-Din J(undefined)Blockage of apoplastic bypass-flow of water in rice roots by insoluble salt precipitates analogous to a Pfeffer cell undefined undefined undefined-undefined
[38]  
Bartos SL(undefined)Nramp5 is a major transporter responsible for manganese and cadmium uptake in rice undefined undefined undefined-undefined
[39]  
Senadhira D(undefined)Effect of cadmium on proline accumulation and ribonuclease activity in rice seedlings: role of proline as a possible enxyme protectant undefined undefined undefined-undefined
[40]  
Flowers TJ(undefined)The significance of amino acid and amino acid-derived molecules in plant responses and adaptation to heavy metal stress undefined undefined undefined-undefined