中国农业科技导报 ›› 2022, Vol. 24 ›› Issue (11): 171-178.DOI: 10.13304/j.nykjdb.2021.0504
• 生物制造 资源生态 • 上一篇
收稿日期:
2021-06-21
接受日期:
2022-01-04
出版日期:
2022-11-15
发布日期:
2022-11-29
通讯作者:
闫旭宇,李玲
作者简介:
李娟E-mail: 3134395170@qq.com
基金资助:
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
摘要:
镉是毒性最强的重金属元素之一,对农田土壤生态系统造成了极大的危害,因此,对农田镉污染土壤修复的研究具有重要意义。与其他作物相比,棉花和麻类等纤维类作物具有生物量大、环境适应性强、经济价值高等特点,且对重金属离子具有较强的吸收和富集能力。概述了我国农田土壤镉污染现状,综述了镉对棉花、大麻、黄麻、苎麻、红麻等纤维类作物生长发育的影响,以及纤维类作物对土壤镉污染的应答反应机理,探索了纤维类作物对镉污染土壤的修复效果,以期为利用纤维类作物修复土壤镉污染奠定理论基础。
中图分类号:
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.
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.
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. |
[1] | 卢闯, 胡海棠, 覃苑, 淮贺举, 李存军. 基于无人机多光谱影像的春玉米田管理分区研究[J]. 中国农业科技导报, 2022, 24(9): 106-115. |
[2] | 刘艳, 鲍红帅, 尚红燕, 王国宁, 张艳, 王省芬, 马峙英, 吴金华. 棉花枯萎病菌及其培养条件筛选[J]. 中国农业科技导报, 2022, 24(8): 124-132. |
[3] | 柴冠群, 刘桂华, 周玮, 张秀锦, 李龙品, 范成五. 贵州乌蒙山区设施土壤重金属污染风险评估与来源解析[J]. 中国农业科技导报, 2022, 24(8): 144-153. |
[4] | 刘海涛, 韩鑫, 兰玉彬, 伊丽丽, 王宝聚, 崔立华. 基于YOLOv4网络的棉花顶芽精准识别方法[J]. 中国农业科技导报, 2022, 24(8): 99-108. |
[5] | 孙正文, 谷淇深, 张艳, 王省芬, 马峙英. 棉花基因发掘与分子育种研究进展[J]. 中国农业科技导报, 2022, 24(7): 32-38. |
[6] | 闫成川, 曾庆涛, 陈琴, 付锦程, 王婷伟, 陈全家, 曲延英. 陆地棉花铃期抗旱指标筛选及评价[J]. 中国农业科技导报, 2022, 24(7): 46-57. |
[7] | 闫宁, 战宇, 苗馨月, 王二刚, 陈长宝, 李琼. 强还原土壤灭菌处理对人参连作土壤细菌群落结构及土壤酶活的影响[J]. 中国农业科技导报, 2022, 24(6): 133-144. |
[8] | 黄雅茹, 马迎宾, 李永华, 董雪, 刘源, 于猛, 韩春霞, 菅凯敏, 马海峰. 不同时间尺度胡杨液流速率与土壤因子的关系[J]. 中国农业科技导报, 2022, 24(6): 196-205. |
[9] | 赵晨光, 牛司耘, 陈勋, 方丽, 李海涛, 王佩星, 沈镔镔, 石元值. 复合肥料对茶叶产量、品质及茶园土壤肥力的影响[J]. 中国农业科技导报, 2022, 24(6): 206-217. |
[10] | 吴楠, 杨君, 张艳, 孙正文, 张冬梅, 李丽花, 吴金华, 马峙英, 王省芬. 过表达棉花葡萄糖醛酸激酶基因GbGlcAK促进拟南芥细胞伸长[J]. 中国农业科技导报, 2022, 24(6): 36-46. |
[11] | 李洁, 林莹, 徐美玉, 王飞, 徐凌川. 泰山白首乌根际土壤真菌多样性分析[J]. 中国农业科技导报, 2022, 24(6): 70-81. |
[12] | 陈奎元, 刘卉, 丁伟. 草甘膦对大豆田土壤养分及其功能酶活性的影响[J]. 中国农业科技导报, 2022, 24(5): 180-188. |
[13] | 刘辉, 江解增, 张昊, 张永仙, 钱佳宇, 李东昇, 吕艳, 吴桓锐. 浅水土表覆盖秸秆对缓解土壤盐渍化及水生蔬菜生长的影响[J]. 中国农业科技导报, 2022, 24(5): 202-208. |
[14] | 魏艳晨, 陈吉祥, 王永刚, 孟彤彤, 韩亚龙, 李美. 荒漠植物珍珠猪毛菜根际土壤细菌多样性与土壤理化性质相关性分析[J]. 中国农业科技导报, 2022, 24(5): 209-217. |
[15] | 黄雅婕, 任丹, 李生梅, 崔进鑫, 杨涛, 任姣姣, 高文伟. 陆地棉苗期的耐盐碱性评价及鉴定指标筛选[J]. 中国农业科技导报, 2022, 24(5): 46-55. |
阅读次数 | ||||||
全文 |
|
|||||
摘要 |
|
|||||