Journal of Zhejiang Agricultural Sciences ›› 2021, Vol. 62 ›› Issue (2): 396-400.DOI: 10.16178/j.issn.0528-9017.20210250
Previous Articles Next Articles
Received:
2020-12-17
Online:
2021-02-11
Published:
2021-02-04
CLC Number:
Add to citation manager EndNote|Ris|BibTeX
URL: http://www.zjnykx.cn/EN/10.16178/j.issn.0528-9017.20210250
类别 | 土壤有效态镉/(mg·kg-1) | |||
---|---|---|---|---|
第1季 | 第2季 | 第3季 | 第4季 | |
CK | 0.28 a | 0.23 ab | 0.28 a | 0.23 a |
HAP1 | 0.32 a | 0.25 a | 0.26 ab | 0.20 a |
HAP2 | 0.28 a | 0.22 b | 0.27 ab | 0.20 a |
CP1 | 0.28 a | 0.23 ab | 0.24 b | 0.25 a |
CP2 | 0.28 a | 0.23 ab | 0.24 b | 0.22 a |
CC1 | 0.27 a | 0.21 b | 0.25 ab | 0.21 a |
CC2 | 0.25 a | 0.20 b | 0.23 b | 0.20 a |
类别 | 土壤有效态镉/(mg·kg-1) | |||
---|---|---|---|---|
第1季 | 第2季 | 第3季 | 第4季 | |
CK | 0.28 a | 0.23 ab | 0.28 a | 0.23 a |
HAP1 | 0.32 a | 0.25 a | 0.26 ab | 0.20 a |
HAP2 | 0.28 a | 0.22 b | 0.27 ab | 0.20 a |
CP1 | 0.28 a | 0.23 ab | 0.24 b | 0.25 a |
CP2 | 0.28 a | 0.23 ab | 0.24 b | 0.22 a |
CC1 | 0.27 a | 0.21 b | 0.25 ab | 0.21 a |
CC2 | 0.25 a | 0.20 b | 0.23 b | 0.20 a |
种类 | pH | |||
---|---|---|---|---|
第1季 | 第2季 | 第3季 | 第4季 | |
CK | 4.9 c | 4.8 c | 5.4 c | 4.5 b |
HAP1 | 5.0 c | 4.8 c | 5.6 bc | 4.6 b |
HAP2 | 5.0 c | 4.9 c | 5.6 bc | 4.7 b |
CP1 | 5.1 c | 4.9 c | 5.5 bc | 4.7 b |
CP2 | 5.0 c | 4.9 c | 5.8 abc | 4.8 b |
CC1 | 5.8 b | 6.0 b | 6.3 ab | 5.7 a |
CC2 | 6.5 a | 6.5 a | 6.6 a | 6.0 a |
种类 | pH | |||
---|---|---|---|---|
第1季 | 第2季 | 第3季 | 第4季 | |
CK | 4.9 c | 4.8 c | 5.4 c | 4.5 b |
HAP1 | 5.0 c | 4.8 c | 5.6 bc | 4.6 b |
HAP2 | 5.0 c | 4.9 c | 5.6 bc | 4.7 b |
CP1 | 5.1 c | 4.9 c | 5.5 bc | 4.7 b |
CP2 | 5.0 c | 4.9 c | 5.8 abc | 4.8 b |
CC1 | 5.8 b | 6.0 b | 6.3 ab | 5.7 a |
CC2 | 6.5 a | 6.5 a | 6.6 a | 6.0 a |
[1] | YE X X, MA Y B, SUN B. Influence of soil type and genotype on Cd bioavailability and uptake by rice and implications for food safety[J]. Journal of Environmental Sciences (China), 2012,24(9):1647-1654. |
[2] |
LI J R, XU Y M. Immobilization of Cd in paddy soil using moisture management and amendment[J]. Environmental Science and Pollution Research, 2015,22(7):5580-5586.
DOI URL PMID |
[3] |
DUAN Q N, LEE J, LIU Y S, et al. Distribution of heavy metal pollution in surface soil samples in China: a graphical review[J]. Bulletin of Environmental Contamination and Toxicology, 2016,97(3):303-309.
DOI URL PMID |
[4] | 宋伟, 陈百明, 刘琳. 中国耕地土壤重金属污染概况[J]. 水土保持研究, 2013,20(2):293-298. |
[5] | WANG W G, YAMAJI N, MA J F. Molecular mechanism of cadmium accumulation in rice[M]//HIMENO S, AOSHIMA K. Current topics in environmental health and preventive medicine. Singapore: Springer Singapore, 2019: 115-124. |
[6] | UENO D, YAMAJI N, KONO I, et al. Gene limiting cadmium accumulation in rice[J]. Proceedings of the National Academy of Sciences, 2010,107(38):16500-16505. |
[7] |
RODDA M S, LI G, REID R J. The timing of grain Cd accumulation in rice plants: the relative importance of remobilisation within the plant and root Cd uptake post-flowering[J]. Plant and Soil, 2011,347(1):105-114.
DOI URL |
[8] | 王艳红, 李林峰, 唐明灯, 等. 不同钝化剂对降低水稻糙米Cd积累及土壤性状的影响[J]. 环境污染与防治, 2018,40(9):974-978. |
[9] | 瞿飞, 范成五, 刘桂华, 等. 钝化剂修复重金属污染土壤研究进展[J]. 山西农业科学, 2017,45(9):1561-1565. |
[10] | 王宇霞, 郝秀珍, 苏玉红, 等. 不同钝化剂对Cu、Cr和Ni复合污染土壤的修复研究[J]. 土壤, 2016,48(1):123-130. |
[11] | 王云丽, 石耀鹏, 赵文浩, 等. 设施菜地土壤镉钝化剂筛选及应用效果研究[J]. 农业环境科学学报, 2018,37(7):1503-1510. |
[12] | 崔俊义, 马友华, 陈亮妹, 等. 原位钝化-低积累品种联合修复镉污染农田研究[J]. 环境科学与技术, 2018,41(7):77-83. |
[13] | 张玉盛, 肖欢, 敖和军. 外部条件对水稻镉吸收的影响研究进展[J]. 作物研究, 2019,33(4):331-337. |
[14] |
GE L Q, CANG L, YANG J, et al. Effects of root morphology and leaf transpiration on Cd uptake and translocation in rice under different growth temperature[J]. Environmental Science and Pollution Research, 2016,23(23):24205-24214.
DOI URL PMID |
[15] | 高茜蕾, 郑瑞伦, 李花粉. 蒸腾作用及根系特征对不同品种油菜吸收镉的影响[J]. 生态学杂志, 2010,29(9):1794-1798. |
[16] | HART J J, WELCH R M, NORVELL W A, et al. Characterization of cadmium uptake, translocation and storage in near-isogenic lines of durum wheat that differ in grain cadmium concentration[J]. New Phytologist, 2006,172(2):261-271. |
[17] |
VAN DER VLIET L, PETERSON C, HALE B. Cd accumulation in roots and shoots of durum wheat: the roles of transpiration rate and apoplastic bypass[J]. Journal of Experimental Botany, 2007,58(11):2939-2947.
DOI URL PMID |
[18] |
WU Z C, ZHAO X H, SUN X C, et al. Xylem transport and gene expression play decisive roles in cadmium accumulation in shoots of two oilseed rape cultivars (Brassica napus)[J]. Chemosphere, 2015,119:1217-1223.
DOI URL PMID |
[19] | YANG J C, HUANG D F, DUAN H, et al. Alternate wetting and moderate soil drying increases grain yield and reduces cadmium accumulation in rice grains[J]. Journal of the Science of Food and Agriculture, 2009,89(10):1728-1736. |
[20] |
WU C Y, LU L L, YANG X E, et al. Uptake, translocation, and remobilization of zinc absorbed at different growth stages by rice genotypes of different Zn densities[J]. Journal of Agricultural and Food Chemistry, 2010,58(11):6767-6773.
DOI URL PMID |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||