| [1] | 
																						 
											 Afonne O J, Ifediba E C. 2020. Heavy metals risks in plant foods: Need to step up precautionary measures. Curr Opin Toxicol, 22: 1-6.
																						 | 
										
																													
																							| [2] | 
																						 
											 Brus D J, Li Z B, Song J, Koopmans G F, Temminghoff E J M, Yin X B, Yao C X, Zhang H B, Luo Y M, Japenga J. 2009. Predictions of spatially averaged cadmium contents in rice grains in the Fuyang Valley, P. R. China. J Environ Qual, 38(3): 1126-1136. 
																						 | 
										
																													
																							| [3] | 
																						 
											 Chen H R, Yang Y, Ye Y F, Tao L Z, Fu X D, Liu B M, Wu Y J. 2019. Differences in cadmium accumulation between indica and japonica rice cultivars in the reproductive stage. Ecotox Environ Saf, 186: 109795. 
																						 | 
										
																													
																							| [4] | 
																						 
											 Chen Q, Wu F B. 2020. Breeding for low cadmium accumulation cereals. J Zhejiang Univ Sci B, 21(6): 442-459. 
																						 | 
										
																													
																							| [5] | 
																						 
											 Fu J J, Zhou Q F, Liu J M, Liu W, Wang T, Zhang Q H, Jiang G B. 2008. High levels of heavy metals in rice (Oryza sativa L.) from a typical E-waste recycling area in Southeast China and its potential risk to human health. Chemosphere, 71(7): 1269-1275. 
																						 | 
										
																													
																							| [6] | 
																						 
											 Fu T T, Zhao R Y, Hu B F, Jia X L, Wang Z G, Zhou L Q, Huang M X, Li Y, Shi Z. 2021. Novel framework for modelling the cadmium balance and accumulation in farmland soil in Zhejiang Province, East China: Sensitivity analysis, parameter optimisation, and forecast for 2050. J Clean Prod, 279: 123674. 
																						 | 
										
																													
																							| [7] | 
																						 
											 Hu Z Y, Wang Y F, Fang Z G, Shi G L, Lou L Q, Ren K D, Cai Q S. 2020. Italian ryegrass-rice rotation system for biomass production and cadmium removal from contaminated paddy fields. J Soils Sediments, 20(2): 874-882. 
																						 | 
										
																													
																							| [8] | 
																						 
											 Huang Y, Sheng H, Zhou P, Zhang Y Z. 2020. Remediation of Cd-contaminated acidic paddy fields with four-year consecutive liming. Ecotox Environ Saf, 188: 109903. 
																						 | 
										
																													
																							| [9] | 
																						 
											 Kang Z M, Zhang W Y, Qin J H, Li S H, Yang X, Wei X, Li H S. 2020. Yield advantage and cadmium decreasing of rice in intercropping with water spinach under moisture management. Ecotox Environ Saf, 190: 110102. 
																						 | 
										
																													
																							| [10] | 
																						 
											 Li X F, Zhou D M. 2019. A meta-analysis on phenotypic variation in cadmium accumulation of rice and wheat: Implications for food cadmium risk control. Pedosphere, 29(5): 545-553. 
																						 | 
										
																													
																							| [11] | 
																						 
											 Lin L Y, Zhu R L, Li Z H, Han C L, Li W Y, Deng Y R. 2021. A combined remediation strategy of arsenic and cadmium in the paddy soil of polymetallic mining areas. Bull Environ Contam Toxicol, 107(6): 1220-1226. 
																						 | 
										
																													
																							| [12] | 
																						 
											 Liu C L, Gao Z Y, Shang L G, Yang C H, Ruan B P, Zeng D L, Guo L B, Zhao F J, Huang C F, Qian Q. 2020. Natural variation in the promoter of OsHMA3 contributes to differential grain cadmium accumulation between indica and japonica rice. J Integr Plant Biol, 62(3): 314-329. 
																						 | 
										
																													
																							| [13] | 
																						 
											 Qu L Y, Huang H, Xia F, Liu Y Y, Dahlgren R A, Zhang M H, Mei K. 2018. Risk analysis of heavy metal concentration in surface waters across the rural-urban interface of the Wen-Rui Tang River, China. Environ Pollut, 237: 639-649. 
																							 
																																																	PMID
																																		 | 
										
																													
																							| [14] | 
																						 
											 Singh P, Pokharia C, Shah K. 2021. Exogenous peroxidase mitigates cadmium toxicity, enhances rhizobial population and lowers root knot formation in rice seedlings. Rice Sci, 28(2): 166-177. 
																						 | 
										
																													
																							| [15] | 
																						 
											 Song Y, Wang Y, Mao W F, Sui H X, Yong L, Yang D J, Jiang D G, Zhang L, Gong Y Y. 2017. Dietary cadmium exposure assessment among the Chinese population. PLoS One, 12(5): e0177978. 
																						 | 
										
																													
																							| [16] | 
																						 
											 Sun L, Xu X X, Jiang Y R, Zhu Q H, Yang F, Zhou J Q, Yang Y Z, Huang Z Y, Li A H, Chen L H, Tang W B, Zhang G Y, Wang J R, Xiao G Y, Huang D Y, Chen C Y. 2016. Genetic diversity, rather than cultivar type, determines relative grain Cd accumulation in hybrid rice. Front Plant Sci, 7: 1407. 
																							 
																																																	PMID
																																		 | 
										
																													
																							| [17] | 
																						 
											 Xu W J, Hou S Z, AmanKhan M, Chao Y, Xiao L L, Ruan Z B, Hong L, Chen Z H, Ceng S W, Ye Z Q, Liu D. 2021. Effect of water and fertilization management on Cd immobilization and bioavailability in Cd-polluted paddy soil. Chemosphere, 276: 130168. 
																						 | 
										
																													
																							| [18] | 
																						 
											 Yan H L, Xu W X, Xie J Y, Gao Y W, Wu L L, Sun L, Feng L, Chen X, Zhang T, Dai C H, Li T, Lin X N, Zhang Z Y, Wang X Q, Li F M, Zhu X Y, Li J J, Li Z C, Chen C Y, Ma M, Zhang H L, He Z Y. 2019. Variation of a major facilitator superfamily gene contributes to differential cadmium accumulation between rice subspecies. Nat Commun, 10(1): 2562. 
																							 
																																																	PMID
																																		 | 
										
																													
																							| [19] | 
																						 
											 Yang Y J, Chen J M, Huang Q N, Tang S Q, Wang J L, Hu P S, Shao G S. 2018. Can liming reduce cadmium (Cd) accumulation in rice (Oryza sativa) in slightly acidic soils? A contradictory dynamic equilibrium between Cd uptake capacity of roots and Cd immobilisation in soils. Chemosphere, 193: 547-556. 
																							 
																																																	PMID
																																		 | 
										
																													
																							| [20] | 
																						 
											 Ye S J, Zeng G M, Wu H P, Zhang C, Dai J, Liang J, Yu J F, Ren X Y, Yi H, Cheng M, Zhang C,. 2017. Biological technologies for the remediation of co-contaminated soil. Crit Rev Biotechnol, 37(8): 1062-1076. 
																							 
																																																	PMID
																																		 | 
										
																													
																							| [21] | 
																						 
											 Zou M M, Zhou S L, Zhou Y J, Jia Z Y, Guo T W, Wang J X. 2021. Cadmium pollution of soil-rice ecosystems in rice cultivation dominated regions in China: A review. Environ Pollut, 280: 116965. 
																						 |