A vacuolar transporter plays important roles in zinc and cadmium accumulation in rice grain

Author:

Ning Min1ORCID,Liu Shi Jia1,Deng Fenglin23ORCID,Huang Liyu1ORCID,Li Hu1,Che Jing4ORCID,Yamaji Naoki5ORCID,Hu Fengyi1ORCID,Lei Gui Jie156ORCID

Affiliation:

1. State Key Laboratory for Conservation and Utilization of Bio‐Resources in Yunnan, Key Laboratory of Biology and Germplasm Innovation of Perennial Rice, Key Laboratory of Crop Quality Improvement of Yunnan Higher Education Institutes, School of Agriculture Yunnan University Kunming 650500 China

2. MARA Key Laboratory of Sustainable Crop Production in the Middle Reaches of the Yangtze River (Co‐construction by Ministry and Province), College of Agriculture Yangtze University Jingzhou 434025 China

3. Hubei Hongshan Laboratory Wuhan 430070 China

4. State Key Laboratory of Soil and Sustainable Agriculture, Institute of Soil Science Chinese Academy of Sciences Nanjing 210008 China

5. Institute of Plant Science and Resources Okayama University Kurashiki 710‐0046 Japan

6. Institute of International Rivers and Eco‐security Yunnan University Kunming 650500 China

Abstract

Summary Rice grain is a poor dietary source of zinc (Zn) but the primary source of cadmium (Cd) for humans; however, the molecular mechanisms for their accumulation in rice grain remain incompletely understood. This study functionally characterized a tonoplast‐localized transporter, OsMTP1. OsMTP1 was preferentially expressed in the roots, aleurone layer, and embryo of seeds. OsMTP1 knockout decreased Zn concentration in the root cell sap, roots, aleurone layer and embryo, and subsequently increased Zn concentration in shoots and polished rice (endosperm) without yield penalty. OsMTP1 haplotype analysis revealed elite alleles associated with increased Zn level in polished rice, mostly because of the decreased OsMTP1 transcripts. OsMTP1 expression in yeast enhanced Zn tolerance but did not affect that of Cd. While OsMTP1 knockout resulted in decreased uptake, translocation and accumulation of Cd in plant and rice grain, which could be attributed to the indirect effects of altered Zn accumulation. Our results suggest that rice OsMTP1 primarily functions as a tonoplast‐localized transporter for sequestrating Zn into vacuole. OsMTP1 knockout elevated Zn concentration but prevented Cd deposition in polished rice without yield penalty. Thus, OsMTP1 is a candidate gene for enhancing Zn level and reducing Cd level in rice grains.

Funder

National Natural Science Foundation of China

Yunnan Provincial Science and Technology Department

Publisher

Wiley

Subject

Plant Science,Physiology

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