A metal chaperone OsHIPP16 detoxifies cadmium by repressing its accumulation in rice crops

被引:19
作者
Cao, Hong Wei [1 ]
Zhao, Ya Ning [1 ]
Liu, Xue Song [2 ]
Rono, Justice Kipkorir [1 ]
Yang, Zhi Min [1 ]
机构
[1] Nanjing Agr Univ, Coll Life Sci, Dept Biochem & Mol Biol, Nanjing 210095, Peoples R China
[2] Jiangsu Acad Agr Sci, Inst Agr Facil & Equipment, Nanjing 210014, Peoples R China
基金
中国国家自然科学基金;
关键词
Rice; HIPP16; Cadmium; Detoxification; Accumulation; Phytoremediation; ORYZA-SATIVA; BRASSICA-NAPUS; TOLERANCE; PLANTS; CD; MECHANISMS; IDENTIFICATION; TRANSPORT; STRESS; FAMILY;
D O I
10.1016/j.envpol.2022.120058
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Cadmium (Cd) is an environmentally polluted toxic heavy metal and seriously risks food safety and human health through food chain. Mining genetic potentials of plants is a crucial step for limiting Cd accumulation in rice crops and improving environmental quality. This study characterized a novel locus in rice genome encoding a Cd-binding protein named OsHIPP16, which resides in the nucleus and near plasma membrane. OsHIPP16 was strongly induced by Cd stress. Histochemical analysis with pHIPP16::GUS reveals that OsHIPP16 is primarily expressed in root and leaf vascular tissues. Expression of OsHIPP16 in the yeast mutant strain ycf1 sensitive to Cd conferred cellular tolerance. Transgenic rice overexpressing OsHIPP16 (OE) improved rice growth with increased plant height, biomass, and chlorophyll content but with a lower degree of oxidative injury and Cd accumulation, whereas knocking out OsHIPP16 by CRISPR-Cas9 compromised the growth and physiological response. A lifelong trial with Cd-polluted soil shows that the OE plants accumulated much less Cd, particularly in brown rice where the Cd concentrations declined by 11.76-34.64%. Conversely, the knockout oshipp16 mutants had higher levels of Cd with the concentration in leaves being increased by 26.36-35.23% over the wild-type. These results suggest that adequate expression of OsHIPP16 would profoundly contribute to Cd detoxification by regulating Cd accumulation in rice, suggesting that both OE and oshipp16 mutant plants have great potentials for restricting Cd acquisition in the rice crop and phytoremediation of Cd-contaminated wetland soils.
引用
收藏
页数:11
相关论文
共 59 条
[1]   Understanding the Phytoremediation Mechanisms of Potentially Toxic Elements: A Proteomic Overview of Recent Advances [J].
Alsafran, Mohammed ;
Usman, Kamal ;
Ahmed, Bilal ;
Rizwan, Muhammad ;
Saleem, Muhammad Hamzah ;
Al Jabri, Hareb .
FRONTIERS IN PLANT SCIENCE, 2022, 13
[2]   Isolation of a novel barley cDNA encoding a nuclear protein involved in stress response and leaf senescence [J].
Barth, O ;
Zschiesche, W ;
Siersleben, S ;
Humbeck, K .
PHYSIOLOGIA PLANTARUM, 2004, 121 (02) :282-293
[3]   Stress induced and nuclear localized HIPP26 from Arabidopsis thaliana interacts via its heavy metal associated domain with the drought stress related zinc finger transcription factor ATHB29 [J].
Barth, Olaf ;
Vogt, Sebastian ;
Uhlemann, Ria ;
Zschiesche, Wiebke ;
Humbeck, Klaus .
PLANT MOLECULAR BIOLOGY, 2009, 69 (1-2) :213-226
[4]   Cadmium Contamination and Its Risk Management in Rice Ecosystems [J].
Bolan, Nanthi S. ;
Makino, Tomoyuki ;
Kunhikrishnan, Anitha ;
Kim, Pil-Joo ;
Ishikawa, Satoru ;
Murakami, Masaharu ;
Naidu, Ravi ;
Kirkham, Mary B. .
ADVANCES IN AGRONOMY, VOL 119, 2013, 119 :183-273
[5]   Inhibition effects of some pesticides and heavy metals on carbonic anhydrase enzyme activity purified from horse mackerel (Trachurus trachurus) gill tissues [J].
Caglayan, Cuneyt ;
Taslimi, Parham ;
Turk, Cebrahil ;
Gulcin, Ilhami ;
Kandemir, Fatih Mehmet ;
Demir, Yeliz ;
Beydemir, Sukru .
ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH, 2020, 27 (10) :10607-10616
[6]   A Metallochaperone HIPP33 Is Required for Rice Zinc and Iron Homeostasis and Productivity [J].
Cao, Hong Wei ;
Li, Cao ;
Zhang, Bai Qing ;
Rono, Justice Kipkorir ;
Yang, Zhi Min .
AGRONOMY-BASEL, 2022, 12 (02)
[7]   OsHIPP24 is a Copper Metallochaperone Which Affects Rice Growth [J].
Chen, Guoqiang ;
Xiong, Shuo .
JOURNAL OF PLANT BIOLOGY, 2021, 64 (02) :145-153
[8]   Response of rice (Oryza sativa) with root surface iron plaque under aluminium stress [J].
Chen, Rong Fu ;
Shen, Ren Fang ;
Gu, Pei ;
Dong, Xiao Ying ;
Du, Chang Wen ;
Ma, Jian Feng .
ANNALS OF BOTANY, 2006, 98 (02) :389-395
[9]   Cellular Mechanisms in Higher Plants Governing Tolerance to Cadmium Toxicity [J].
Choppala, Girish ;
Saifullah ;
Bolan, Nanthi ;
Bibi, Sadia ;
Iqbal, Muhammad ;
Rengel, Zed ;
Kunhikrishnan, Anitha ;
Ashwath, Nanjappa ;
Ok, Yong Sik .
CRITICAL REVIEWS IN PLANT SCIENCES, 2014, 33 (05) :374-391
[10]   Tolerance to toxic metals by a gene family of phytochelatin synthases from plants and yeast [J].
Clemens, S ;
Kim, EJ ;
Neumann, D ;
Schroeder, JI .
EMBO JOURNAL, 1999, 18 (12) :3325-3333