Heterologous expression of the yeast arsenite efflux system ACR3 improves Arabidopsis thaliana tolerance to arsenic stress

被引:49
|
作者
Ali, Waqar [1 ]
Isner, Jean-Charles [1 ]
Isayenkov, Stanislav V. [2 ]
Liu, Wenju [3 ]
Zhao, Fang-Jie [3 ]
Maathuis, Frans J. M. [1 ]
机构
[1] Univ York, Dept Biol, Area 9, York YO10 5DD, N Yorkshire, England
[2] Inst Food Biotechnol & Genom, Dept Genom & Mol Biotechnol, UA-04123 Kiev 123, Ukraine
[3] Rothamsted Res, Harpenden AL5 2JQ, Herts, England
基金
英国生物技术与生命科学研究理事会;
关键词
ACR3; Arabidopsis; arsenate; arsenic; arsenite; efflux; Saccharomyces cerevisiae; yeast; RICE AQUAPORIN LSI1; PHOSPHATE-TRANSPORT; PLANT; TRANSLOCATION; ACCUMULATION; MECHANISMS; PATHWAY;
D O I
10.1111/j.1469-8137.2012.04092.x
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Arsenic contamination has a negative impact on crop cultivation and on human health. As yet, no proteins have been identified in plants that mediate the extrusion of arsenic. Here, we heterologously expressed the yeast (Saccharomyces cerevisiae) arsenite efflux transporter ACR3 into Arabidopsis to evaluate how this affects plant tolerance and tissue arsenic contents. ACR3 was cloned from yeast and transformed into wild-type and nip7;1 Arabidopsis. Arsenic tolerance was determined at the cellular level using vitality stains in protoplasts, in intact seedlings grown on agar plates and in mature plants grown hydroponically. Arsenic efflux was measured from protoplasts and from intact plants, and arsenic levels were measured in roots and shoots of plants exposed to arsenate. At the cellular level, all transgenic lines showed increased tolerance to arsenite and arsenate and a greater capacity for arsenate efflux. With intact plants, three of four stably transformed lines showed improved growth, whereas only transgenic lines in the wild-type background showed increased efflux of arsenite into the external medium. The presence of ACR3 hardly affected tissue arsenic levels, but increased arsenic translocation to the shoot. Heterologous expression of yeast ACR3 endows plants with greater arsenic resistance, but does not lower significantly arsenic tissue levels.
引用
收藏
页码:716 / 723
页数:8
相关论文
共 36 条
  • [21] Ectopic expression of a wheat MYB transcription factor gene, TaMYB73, improves salinity stress tolerance in Arabidopsis thaliana
    He, Yanan
    Li, Wei
    Lv, Jian
    Jia, Yuebin
    Wang, Mengcheng
    Xia, Guangmin
    JOURNAL OF EXPERIMENTAL BOTANY, 2012, 63 (03) : 1511 - 1522
  • [22] Heterologous expression of the tobacco metallothionein gene NtMT2F confers enhanced tolerance to Cd stress in Escherichia coli and Arabidopsis thaliana
    Li, Rui
    Yang, Ya
    Cao, Hanping
    Peng, Xiang
    Yu, Qin
    He, Linshen
    Chen, Ji
    Xiang, Lien
    Liu, Wanhong
    PLANT PHYSIOLOGY AND BIOCHEMISTRY, 2023, 195 : 247 - 255
  • [23] Heterologous expression of rice RNA-binding glycine-rich (RBG) gene OsRBGD3 in transgenic Arabidopsis thaliana confers cold stress tolerance
    Lenka, Sangram K.
    Singh, Amit K.
    Muthusamy, Senthilkumar K.
    Smita, Shuchi
    Chinnusamy, Viswanathan
    Bansal, Kailash C.
    FUNCTIONAL PLANT BIOLOGY, 2019, 46 (05) : 482 - 491
  • [24] Heterologous Expression of Serine Hydroxymethyltransferase-3 From Rice Confers Tolerance to Salinity Stress in E-coli and Arabidopsis
    Mishra, Pragya
    Jain, Ajay
    Takabe, Teruhiro
    Tanaka, Yoshito
    Negi, Manisha
    Singh, Nisha
    Jain, Neha
    Mishra, Vagish
    Maniraj, R.
    Krishnamurthr, S. L.
    Sreevathsa, Rohini
    Singh, Nagendra K.
    Rai, Vandna
    FRONTIERS IN PLANT SCIENCE, 2019, 10
  • [25] Cloning and characterization of vacuolar H+-pyrophosphatase gene (AnVP1) from Ammopiptanthus nanus and its heterologous expression enhances osmotic tolerance in yeast and Arabidopsis thaliana
    Yu, Hao Qiang
    Han, Nan
    Zhang, Yuan Yuan
    Tao, Yi
    Chen, Lei
    Liu, Yan Ping
    Zhou, Shu Feng
    Fu, Feng Ling
    Li, Wan Chen
    PLANT GROWTH REGULATION, 2017, 81 (03) : 385 - 397
  • [26] Cloning and characterization of vacuolar H+-pyrophosphatase gene (AnVP1) from Ammopiptanthus nanus and its heterologous expression enhances osmotic tolerance in yeast and Arabidopsis thaliana
    Hao Qiang Yu
    Nan Han
    Yuan Yuan Zhang
    Yi Tao
    Lei Chen
    Yan Ping Liu
    Shu Feng Zhou
    Feng Ling Fu
    Wan Chen Li
    Plant Growth Regulation, 2017, 81 : 385 - 397
  • [27] Naming and functions of ACR2, arsenate reductase, and ACR3 arsenite efflux transporter in plants (correspondence on: Kumar, S., Dubey, RS, Tripathi, RD., Chakrabarty, D., Trivedi, PK, 2015. Omics and biotechnology of arsenic stress and detoxification in plants: current updates and prospective. Environ Int. 74:221-230.)
    Chen, Yan-Shan
    Han, Yong-He
    Rathinasabapathi, Bala
    Ma, Lena Q.
    ENVIRONMENT INTERNATIONAL, 2015, 81 : 98 - 99
  • [28] Over-expression of CarMT gene modulates the physiological performance and antioxidant defense system to provide tolerance against drought stress in Arabidopsis thaliana L
    Dubey, Arvind Kumar
    Kumar, Navin
    Kumar, Anil
    Ansari, Mohd Akram
    Ranjan, Ruma
    Gautam, Ambedkar
    Meenakshi
    Sahu, Nayan
    Pandey, Vivek
    Behera, Soumit Kumar
    Mallick, Shekhar
    Pande, Veena
    Sanyal, Indraneel
    ECOTOXICOLOGY AND ENVIRONMENTAL SAFETY, 2019, 171 : 54 - 65
  • [29] SRK2C, a SNF1-related protein kinase 2, improves drought tolerance by controlling stress-responsive gene expression in Arabidopsis thaliana
    Umezawa, T
    Yoshida, R
    Maruyama, K
    Yamaguchi-Shinozaki, K
    Shinozaki, K
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2004, 101 (49) : 17306 - 17311
  • [30] Heterologous Expression of a Ferritin Homologue Gene PpFer1 from Prunus persica Enhances Plant Tolerance to Iron Toxicity and H2O2 Stress in Arabidopsis thaliana
    Yang, Yong
    Zhang, Jinjin
    Li, Mengyuan
    Ning, Youzheng
    Tao, Yifei
    Shi, Shengpeng
    Dark, Adeeba
    Song, Zhizhong
    PLANTS-BASEL, 2023, 12 (24):