Ectopic Expression of PvHMA2.1 Enhances Cadmium Tolerance in Arabidopsis thaliana
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Published:2023-02-10
Issue:4
Volume:24
Page:3544
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ISSN:1422-0067
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Container-title:International Journal of Molecular Sciences
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language:en
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Short-container-title:IJMS
Author:
Zang Hui1, He Junyi1, Zhang Qi1, Li Xue1, Wang Tingting1, Bi Xiaojing1, Zhang Yunwei1
Affiliation:
1. College of Grassland Science and Technology, China Agricultural University, Beijing 100193, China
Abstract
Cadmium (Cd) in soil inhibits plant growth and development and even harms human health through food chain transmission. Switchgrass (Panicum virgatum L.), a perennial C4 biofuel crop, is considered an ideal plant for phytoremediation due to its high efficiency in removing Cd and other heavy metals from contaminated soil. The key to understanding the mechanisms of switchgrass Cd tolerance is to identify the genes involved in Cd transport. Heavy-metal ATPases (HMAs) play pivotal roles in heavy metal transport, including Cd, in Arabidopsis thaliana and Oryza sativa, but little is known about the functions of their orthologs in switchgrass. Therefore, we identified 22 HMAs in switchgrass, which were distributed on 12 chromosomes and divided into 4 groups using a phylogenetic analysis. Then, we focused on PvHMA2.1, which is one of the orthologs of the rice Cd transporter OsHMA2. We found that PvHMA2.1 was widely expressed in roots, internodes, leaves, spikelets, and inflorescences, and was significantly induced in the shoots of switchgrass under Cd treatment. Moreover, PvHMA2.1 was found to have seven transmembrane domains and localized at the cell plasma membrane, indicating that it is a potential transporter. The ectopic expression of PvHMA2.1 alleviated the reduction in primary root length and the loss of fresh weight of Arabidopsis seedlings under Cd treatment, suggesting that PvHMA2.1 enhanced Cd tolerance in Arabidopsis. The higher levels of relative water content and chlorophyll content of the transgenic lines under Cd treatment reflected that PvHMA2.1 maintained water retention capacity and alleviated photosynthesis inhibition under Cd stress in Arabidopsis. The roots of the PvHMA2.1 ectopically expressed lines accumulated less Cd compared to the WT, while no significant differences were found in the Cd contents of the shoots between the transgenic lines and the WT under Cd treatment, suggesting that PvHMA2.1 reduced Cd absorption from the environment through the roots in Arabidopsis. Taken together, our results showed that PvHMA2.1 enhanced Cd tolerance in Arabidopsis, providing a promising target that could be engineered in switchgrass to repair Cd-contaminated soil.
Funder
National Natural Science Foundation of China Beijing Natural Science Foundation of China
Subject
Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis
Reference62 articles.
1. Environmental exposure to cadmium and risk of cancer: A prospective population-based study;Nawrot;Lancet Oncol.,2006 2. Historical perspectives on cadmium toxicology;Nordberg;Toxicol. Appl. Pharmacol.,2009 3. Non-renal effects and the risk assessment of environmental cadmium exposure;Akesson;Environ. Health Perspect.,2014 4. Wang, H.H., Liu, Y.Y., Peng, Z.H., Li, J.C., Huang, W.P., Liu, Y., Wang, X.N., Xie, S.L., Sun, L.P., and Han, E.Q. (2019). Ectopic expression of poplar ABC transporter PtoABCG36 confers Cd tolerance in Arabidopsis thaliana. Int. J. Mol. Sci., 20. 5. Khan, N., You, F.M., Datla, R., Ravichandran, S., Jia, B.S., and Cloutier, S. (2020). Genome-wide identification of ATP binding cassette (ABC) transporter and heavy metal associated (HMA) gene families in flax (Linum usitatissimum L.). BMC Genomics, 21.
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