Journal of Agricultural Science and Technology ›› 2022, Vol. 24 ›› Issue (11): 171-178.DOI: 10.13304/j.nykjdb.2021.0504
• BIO-MANUFACTURING & RESOURCE AND ECOLOGY • Previous Articles
Juan LI(), Xuyu YAN(
), Xiang WU, Ling LI(
)
Received:
2021-06-21
Accepted:
2022-01-04
Online:
2022-11-15
Published:
2022-11-29
Contact:
Xuyu YAN,Ling LI
通讯作者:
闫旭宇,李玲
作者简介:
李娟E-mail: 3134395170@qq.com
基金资助:
CLC Number:
Juan LI, Xuyu YAN, Xiang WU, Ling LI. Research Progress on the Remediation of Cadmium Contaminated Farmland Soil by Fiber Crops[J]. Journal of Agricultural Science and Technology, 2022, 24(11): 171-178.
李娟, 闫旭宇, 吴香, 李玲. 纤维类作物对农田土壤镉污染修复的研究进展[J]. 中国农业科技导报, 2022, 24(11): 171-178.
1 | 陈世宝,王萌,李杉杉,等.中国农田土壤重金属污染防治现状与问题思考[J].地学前缘,2019,26(6):35-41. |
CHEN S B, WANG M, LI S S, et al.. Current status of and discussion on farmland heavy metal pollution pre-ventionin China [J]. Earth Sci. Front., 2019, 26(6): 35-41. | |
2 | AOLION C M, DAVIS H T, MCDERMOTT S, et al.. Metal concentrations in rural topsoil in South Carolina: potential for human health impact [J]. Sci. Total Environ., 2008, 402(2-3): 149-156. |
3 | LIANG J, FENG C T, ZENG G M, et al.. Spatial distribution and source dentification of heavy metals in surface soils in a typical coal mine city, Lianyuan, China [J]. Environ. Poll., 2017, 225: 681-690. |
4 | 王宏胜,唐朝生,巩学鹏,等.生物炭修复重金属污染土研究进展[J].工程地质学报,2018,26(4):1064-1077. |
WANG H S, TANG C S, GONG X P, et al.. Research progresses in remediation of heavy metal contaminated solls with biocha [J]. J. Eng. Geol., 2018, 26(4): 1064-1077. | |
5 | 张妍,张磊,程红光,等.南方某矿区土壤镉污染及作物健康风险研究[J].农业环境科学学报,2020,39(12):2752-2761. |
ZHANG Y, ZHANG L, CHEN H G, et al.. Soil cadmium pollution and crop health risk in a mining area in south China [J]. J. Agro⁃Enviro. Sci., 2020, 39(12): 2752-2761. | |
6 | 陈世宝,王萌,李杉杉,等.中国农田土壤重金属污染防治现状与问题思考[J].地学前缘,2019,26(6):35-41. |
CHEN S B, WANG M, LI S S, et al.. Current status of and discussion on farmland heavy metal pollution pre-ventionin China [J]. Earth Sci. Front., 2019, 26(6): 35-41. | |
7 | VIG K, MEGHARAJ M, SETHUNATHAN N, et al.. Bioavailability and toxicity of cadmium to microorganisms and their activities in soil: a review [J]. Adv. Environ. Res., 2003, 8(1): 121-135. |
8 | 夏汉平.土壤-植物系统中的镉研究进展[J].应用与环境生物学报,1997,3(3):289-298. |
XIA H P. Studies on cadmium in soil-plant system [J]. Chin. J. Environ. Biol., 1997, 3(3): 289-298. | |
9 | 梁淑敏,许艳萍,陈裕,等.工业大麻对重金属污染土壤的治理研究进展[J].生态学报,2013,33(5): 1347-1351, 1353. |
LIANG S M, XU Y P, CHEN Y, et al.. Advances and the effects of industrial hemp for the cleanup of heavy metal pollution [J]. Acta Ecol. Sin., 2013, 33(5): 1347-1351, 1353. | |
10 | CITTERIO S, SANTAGOSTINO A, FUMAGALLI P. Heavy metal tolerance and accumulation of Cd, Cr and Ni by Cannabis sativa L. [J]. Plant Soil, 2003, 256(2): 243-252. |
11 | 赵永平,朱亚,李花环,等.Cu2+、Zn2+胁迫对金盏花种子萌发和幼苗生理特性的影响[J].江西农业学报,2017,29(5):35-38 |
ZHAO Y P, ZHU Y, LI H H, et al.. Effects of Cu2+ and Zn2+ stress on seed germination and seedling physiological characteristics of Calendula officinalis [J]. Acta Agric. Jiangxi, 2017, 29(5): 35-38. | |
12 | 许艳萍,陈璇,郭孟璧,等.4种重金属胁迫对工业大麻种子萌发的影响[J].西部林业科学,2014,43(4):78-82. |
XU Y P, CHEN X, GUO M B, et al.. The effects of 4 heavy metals stress on seed germination of industrial hemp [J]. J. West China For. Sci., 2014, 43(4): 78-82. | |
13 | 郑世英,张秀玲,王丽燕,等.铅和镉胁迫对棉花种子萌发及有机渗透调节物质的影响[J].中国棉花,2007(5):16-17. |
ZHENG S Y, ZHANG X L, WANG L Y, et al.. Effects of Pb and Cd stress on seed germination and organic osmotic substances of cotton[J]. China Cotton, 2007(5): 16-17. | |
14 | PIZZINATTO M A, MENTEN J O M, SOAVE J, et al. Relacao entre densidade qualidade desementes de algodoeiro [J]. Bragantia, 1991, 50: 269-289. |
15 | 李玲,陈进红,祝水金.镉胁迫对转基因棉花SGK3和ZD-90种子品质性状的影响[J].作物学报,2011,37(5):929-933. |
LI L, CHEN J H, ZHU S J. Effects of cadmium stress on the seed quality traits of transgenic cotton SGK3 and ZD-90 [J]. Acta Agron. Sin., 2011, 37(5): 929-933. | |
16 | 李兰平,李正文,杨海霞,等.铅、镉对红麻种子萌发生长的影响[J].南方农业学报,2012,43(9):1291-1296. |
LI L P, LI Z W, YANG H X, et al.. Effects of lead and cadmium on seed germination and growth of kenaf (Hibiscus cannabinus L.) [J]. J. South. Agric., 2012, 43(9): 1291-1296. | |
17 | 贾瑞星,丁鑫超,汤丹峰,等.镉对两个同核异质红麻杂交种种子萌发及幼苗生长的影响[J].南方农业学报,2019,50(8):1688-1694. |
JIA R X, DING X C, TANG D F, et al.. Effects of seed germination and seedling growth of two homonuclear-heterocytoplasmic kenaf hybrid cultivars under cadmium stress [J]. J. South. Agric., 2019, 50(8): 1688-1694. | |
18 | 安建平,王廷璞,谢天柱,等.镉胁迫对亚麻种子萌发及幼苗生理特性的影响[J].中国麻业科学,2008(4):199-203. |
AN J P, WANG T P, XIE T Z, et al.. Effect of Cd stress on seed germination and seedling physiological characteristics of flax (Linum usitatissimum L.) [J]. Plant Fiber Sci. China, 2008(4): 199-203. | |
19 | 郭媛,邱财生,龙松华,等.不同黄麻品种对重金属污染农田镉的富集和转移效率研究[J].农业环境科学学报,2019,38(8):1929-1935. |
GUO Y, QIU C S, LONG S H, et al.. Cadmium accumulation and translocation in different jute (Corchorus capsularis L.) cultivars growing in heavy metal contaminated paddy soil [J]. J. Agro⁃Environ. Sci., 2019, 38(8): 1929-1935. | |
20 | 张杰,梁永超,娄运生,等.镉胁迫对两个水稻品种幼苗光合参数、可溶性糖和植株生长的影响[J].植物营养与肥料学报,2005,11(6):774-780. |
ZHANG J, LIANG Y C, LOU Y S, et al.. Effect of cadmium on photosynthesis parameters, leaf soluble sugar and plant growth in two rice cultivars [J]. Plant Nutr. Fert. Sci., 2005, 11(6): 774-780. | |
21 | DAUD M K, MEI L, AZIZULLAH A, et al.. Leaf-based physiological, metabolic, and ultrastructural changes in cultivated cotton cultivars under cadmium stress mediated by glutathione [J]. Environ. Sci. Poll. Res., 2016, 23(15): 15551-15564. |
22 | 陈悦,李玲,何秋伶,等.镉胁迫对三个棉花品种(系)产量、纤维品质和生理特性的影响[J].棉花学报,2014,26(6): 521-530. |
CHEN Y, LI L, HE Q L, et al.. Effects of cadmium stress on yield, fiber quality, and physiological traits of three upland cotton cultivars (lines) [J]. Cotton Sci., 2014, 26(6):521-530. | |
23 | 梅磊,李玲, DAUD M K,等.棉花对重金属胁迫的应答反应与抗性机理研究进展[J].棉花学报,2018,30(1):102-110. |
MEI L, LI L, DAUD M K, et al.. Advances on response and resistance to heavy metal stress in cotton [J]. Cotton Sci., 2018, 30(1): 102-110. | |
24 | 王霞,吴霞,马亮,等.棉花幼苗受铅、镉胁迫的抗氧化酶反应[J].江苏农业科学,2012,40(12):105-107. |
WANG X, WU X, MA L, et al.. Effect of Pb and Cd stress on antioxidant enzyme of cotton seedlings [J]. Jiangsu Agric. Sci., 2012, 40(12): 105-107. | |
25 | ALI T, MAHMOOD S, KHAN M Y, et al.. Phytoremediation of cadmium contaminated soil by auxin assisted bacterial inoculation [J]. Asian J. Agric. Biol., 2013, 1(2): 79-84. |
26 | LI L, CHEN J H, HE Q L, et al.. Characterization of physiological traits, yield and fiber quality in three upland cotton cultivars grown under cadmium stress [J]. Aust. J. Crop Sci., 2012, 6(11): 1527-1533. |
27 | 何俊瑜,王阳阳,任艳芳,等.镉胁迫对不同水稻品种幼苗根系形态和生理特性的影响[J].生态环境学报,2009,18(5):1863-1868. |
HE J Y, WANG Y Y, REN Y F, et al.. Effect of cadmium on root morphology and physiological characteristics of rice seedlings [J]. Ecol. Environ. Sci., 2009, 18(5): 1863-1868. | |
28 | 刘连涛,陈静,孙红春,等.镉胁迫对棉花幼苗生长效应及不同器官镉积累的影响[J].棉花学报,2014,26(5):466-470. |
LIU L T, CHEN J, SUN H C, et al.. Effects of cadmium stress on growth and cadmium accumulation in cotton (Gossypium hirsutum L.) seedlings [J]. Cotton Sci., 2014, 26(0.5): 466-470. | |
29 | 陈顺钰,赵雅曼,李宗勋,等.Pb、Cd和酸胁迫对宽叶雀稗种子萌发、幼苗生长及抗氧化酶活性的影响[J].草地学报,2018,26(5):1173-1180. |
CHEN S Y, ZHAO Y M, LI Z X, et al.. Effects of Pb, Cd and acid stress on seed germination, seeding growth and antioxidant enzyme activities of Paspainm wettsteinil [J]. Acta Agric. Sin., 2018, 26(5): 1173-1180. | |
30 | 许艳萍,郭孟璧,张庆滢,等.铅胁迫对工业大麻苗期生理生化及富集特征的影响[J].西部林业科学,2018,47(3):1-6, 40. |
XU Y P, GUO M B, ZHANG Q Y, et al.. Effect of Pb stress on physiological and biochemical indexes and Pb enrichment characteristics of industrial hemp (Cannabis sativa L.) in seedling stage [J]. J. West China For. Sci., 2018, 47(3): 1-6, 40. | |
31 | 李玉兰,陈坤梅,喻春明,等.镉胁迫下苎麻生理生化变化规律及品种间差异比较[J].中国麻业科学,2017,39(3):105-110. |
LI Y L, CHEN K M, YU C M, et al.. Physiological and biochemical dynamic characteristics of ramie (Boehmeria nivea L.) to cadmium stress and comparison among various varieties [J]. Plant Fiber Sci. China, 2017, 39(3): 105-110. | |
32 | 史刚荣.耐重金属胁迫的能源植物筛选及其适应性研究[D].南京:南京农业大学,2009. |
SHI G R. Screening of heavy metal-tolerant energy plants and their adaptability to metal stress [D]. Nanjing: Nanjing Agricultural University, 2009. | |
33 | 张金彪,黄维南.镉对植物的生理生态效应的研究进展[J].生态学报,2000,20(3):514-523. |
ZHANG J B, HUANG W N. Advances on physiological and ecological effects of cadmium on plants [J]. Acta Ecol. Sin., 2000, 20(3): 514-523. | |
34 | CHENG S P. Effects of heavy metals on plants and resistance mechanisms [J]. Environ. Sci. Poll. Res., 2003, 10(4): 256-264. |
35 | 李玲,陈进红,何秋伶,等.3个陆地棉种质(系)重金属镉的积累、转运和富集特性分析[J].棉花学报,2012,24(6):535-540. |
LI L, CHEN J H, HE Q L, et al.. Accumulation, transportation, and bioconcentration of cadmium in three upland cotton plants under cadmium stress [J]. Cotton Sci., 2012, 24(6): 535-540. | |
36 | LINGER P, OSTWALD A, HAENSLER J, et al.. Cannabis sativa L. growing on heavy metal contaminated soil: growth, cadmium uptake and photosynthesis [J]. Biol. Plant, 2005, 49(4): 567-576. |
37 | 尹明,杨大为,唐慧娟,等.黄麻修复重度镉污染农田的品种筛选[J].中国麻业科学,2020,42(4):150-156. |
YIN M, YANG D W, TANG H J, et al.. Comparison of the capacity of different varieties of jute (Corchorus capsularis L.) to remediate heavily cadmium-contaminated farmland [J]. Plant Fiber Sci. China, 2020, 42(4): 150-156. | |
38 | 尹明,唐慧娟,黄玉敏,等.中轻度镉污染耕地中不同品种红麻生长特性和栽培方式研究[J].中国麻业科学,2020,42(5):196-202. |
YIN M, TANG H J, HUANG Y M, et al.. Study on growth characteristics and cultivation methods of different kenaf (Hibiscus cannabinus) varieties in moderately mild cadmium polluted farmland [J]. Plant Fiber Sci. China, 2020, 42(5): 196-202. | |
39 | WASIM I.棉花耐盐和镉复合胁迫基因型差异及外源GSH缓解盐胁迫的生理机理[D].杭州:浙江大学,2013. |
WASIM I. Physiological mechanism of genotypic differences in the tolerance to combined stress of salinity and cadmium and the role of GSH alleviating salinity stress in cotton [D]. Hangzhou: Zhejiang University, 2013. | |
40 | KHAN M, DAUD M K, BASHARAT A, et al.. Alleviation of lead-in-duced physiological, metabolic, and ultra-morphological changes in leaves of upland cotton through glutathione [J]. Environ. Sci. Poll. Res., 2016, 23(9): 8431-8440. |
41 | WANG X, LIU Y G, ZENG G M, et a1 .. Subcellular distribution and chemical forms of cadmium in Bechmeria nivea (L.) Gaud [J]. Environ. Exp. Bot., 2008, 62: 389-395. |
42 | 晋海军,王海霞.植物对重金属镉的吸收与耐受机制研究进展[J].中国农学通报,2019,35(24): 52-57. |
JIN H J, WANG H X. Plant absorption and tolerance mechanism to heavy metal cadmium: research progress [J]. Chin. Agric. Sci. Bull., 2019, 35(24): 52-57. | |
43 | WHITING S N, LEAKER J R, MCGRATH S P, et al.. Positive responses to Zn and Cd by roots of the Zn and Cd hyperaccumulator Thlaspi caerulescens [J]. New Phytol., 2000, 145: 199-210. |
44 | LI L, LI J R, HE Q L, et a1 .. Nutrients, ultrastructures, and Cd subcellular localization in the cottonseeds of three upland cotton cultivars under Cd stress [J]. J. Soil Sci. Plant Nutr., 2014, 14(2): 278-291. |
45 | CLEMENS S. Molecular mechanisms of plant metal tolerance and homeostasis [J]. Planta, 2001, 212(4): 475-486. |
46 | COBBETT C, GOLDSBROUGHT P. Phytochelatins and metallothioneins: roles in heavy metal detoxification and homeostasis [J]. Ann. Rev. Plant Biol., 2002, 53(1): 159-182. |
47 | 梅磊,李玲,肖钦之,等.陆地棉植物络合素合酶基因的鉴定与功能预测[J].棉花学报,2018,30(3):215-223. |
MEI L, LI L, XIAO Q Z, et al.. Genome-wide identification and functional prediction of phytochelatin synthase gene in upland cotton [J]. Cotton Sci., 2018, 30(3): 215-223. | |
48 | XUE T T, LI X Z, ZHU W, et al.. Cotton metallothionein GhMT3a, a reactive oxygen species scavenger, increased tolerance against abiotic stress in transgenic tobacco and yeast [J]. J. Exp. Bot., 2008, 60(1): 339-349. |
49 | HUANG W B, MA R, YANG D, et al.. Organic acids secreted from plant roots under soil stress and their effects on ecological adaptability of plants [J]. Agric. Sci. Tech., 2014, 15(7): 1167-1173. |
50 | 胡学俭,孙明高,夏阳,等.NaCl胁迫对无花果与海棠膜脂过氧化作用及保护酶活性的影响[J].西北植物学报,2005,25(5):937-943. |
HU X J, SUN M G, XIA Y, et al.. Effect of NaCl stress on membrane lipid peroxidation and protective enzyme activities in the seedlings of fig and Chinese flowering crabapple [J]. Acta Bot. Boreali-Occ. Sin., 2005, 25(5): 937-943. | |
51 | 李正文,李兰平,周琼,等.不同浓度Cd、Pb对红麻抗逆生理特性的影响[J].湖北农业科学,2013,52(15):3568-3571. |
LI Z W, LI L P, ZHOU Q, et a1 .. Effect of different concentrations of Cd and Pb on the stress-resistance physiological characteristics of Hibiscus cannabinus L. [J]. Hubei Agric. Sci., 2013, 52(15): 3568-3571. | |
52 | LIU Y G, WANG X, ZENG G M, et a1 .. Cadmium-induced oxidative stress and response of the ascorbate-glutathione cyclein Bechme rianivea (L.) Gaud [J]. Chemosphere, 2007, 69: 99-107. |
53 | 黄玉敏,尹明,巩养仓,等.不同红麻品种修复中轻度镉污染农田试验[J].中国麻业科学,2018,40(6): 264-269. |
HUANG Y M, YIN M, GONG Y C, et a1 .. Remediation of mildly and moderately cadmium contaminated farmland by different varieties of kenaf (Hibiscus cannabinus) [J]. Plant Fiber Sci. China, 2018, 40(6): 264-269. | |
54 | 郭利双,何叔军,李景龙. 镉污染区棉花替代种植技术研究[J].中国棉花,2016,43(11):5-8. |
GUO L S, HE S J, LI J L. Research progress on planting technology of cotton as a substitute crop in polluted area by Cd [J]. China Cotton, 2016, 43(11): 5-8. | |
55 | 许艳萍,陈璇,郭孟璧,等.工业大麻“云麻2号”对重金属Pb、Cu和Cd富集特征的研究[J].中国麻业科学,2015,37(1):21-25, 34. |
XU Y P, CHEN X, GUO MENG YI, et a1 .. Tolerance and accumulation aapabilities of heavy metals Pb, Cu and Cd with industrial hemp Yunma 2 [J]. Plant Fiber Sci. China, 2015, 37(1): 21-25, 34. | |
56 | 许艳萍,杨明,郭鸿彦,等.5个工业大麻品种对5种重金属污染土壤的修复潜力[J].作物学报,2020,46(12):1970-1978. |
XU Y P, YANG M, GUO H Y, et a1 .. Phytoremediation potential of five industrial hemp varieties on five heavy metal polluted soils [J]. Acta Agron. Sin., 2020, 46(12): 1970-1978. | |
57 | ANGELOVA V, IVANOVA R, DELIBALTOVA V, et al.. Bio-accumulation and distribution of heavy metals in fiber crops (flax, cotton and hemp) [J]. Ind. Crops Prod., 2004, 19(3): 197-205. |
58 | BJELKOVA M, GENCUROVA V, GRIGA M. Accumulation of cadmium by flax and linseed cultivars infield-simulated conditions: a potential for phytoremediation of Cd-contaminated soils [J]. Ind. Crops Prod., 2011, 33(3): 761-774. |
59 | 佘玮,揭雨成,邢虎成,等.湖南石门、冷水江、浏阳3个矿区的苎麻重金属含量及累积特征[J].生态学报,2011,31(3):874-881. |
SHE W, JIE Y C, XING H C, et al.. Heavy metal concentrations and bioaccumulation of ramie (Boehmeria nivea) growing on 3 mining areas in Shimen, Lengshuijiang and Liuyang of Hunan Province [J]. Acta Ecol. Sin., 2011, 31(3): 874-881. | |
60 | 符慧琴,揭红东,揭雨成,等.不同纤维细度苎麻种质镉富集与转运和积累能力比较[J].湖南农业大学学报(自然科学版),2017,43(4):359-365. |
FU H Q, JIE H D, JIE Y C, et al.. Comparison of accumulation, transfer and enrichment to cadmium of ramie germplasm with different fiber fineness [J]. J. Hunan Agric. Univ. (Nat. Sci.), 2017, 43(4): 359-365. |
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