Citation: | Guo Yan, Zhang Hui, Jian Shu-Guang, Xia Kuai-Fei, Zhang Mei. Construction of a cDNA library of Ipomoea pes-caprae L.and screening for cadmium tolerant genes[J]. Plant Science Journal, 2017, 35(3): 372-378. DOI: 10.11913/PSJ.2095-0837.2017.30372 |
[1] |
申旭红, 肖飞鹏, 肖进中. 中国三大海域沉积物中重金属的分布特征及其生态危害[J]. 安徽农业科学, 2012, 40(24):12199-12201.
Shen XH, Xiao FP, Xiao JZ. Distribution of heavy metals in the sediments of the polluted coastal regions in China and its ecological danger[J]. Journal of Anhui Agricultural Sciences, 2012, 40(24):12199-12201.
|
[2] |
梁开, 黄向清, 郑志昌. 我国南方沿海海域有害重金属污染之现状调查[C]//2007年全国铅污染监测与控制治理技术交流研讨会论文集. 北京:中国环境科学学会, 2010:329-336.
|
[3] |
马玉, 李团结, 王迪, 彭艳超, 蔡钰灿, 王爱军. 珠江口滨海湿地沉积物重金属污染现状及潜在生态危害[J]. 热带地理, 2011, 31(4):353-356.
Ma Y, Li TJ, Wang D, Peng YC, Cai YC, Wang AJ. Status and potential ecological hazards of heavy metal pollution in sediments of coastal wetlands in the Pearl River Estuary[J]. Tropical Geography, 2011, 31(4):353-356.
|
[4] |
欧阳蒲月, 刘楠, 张伟伟, 王俊, 简曙光. 海滩植物厚藤(Ipomoea pescaprae)的生物学及生理生态特性[J]. 湖南科技大学学报:自然科学版, 2011, 26(4):117-121.
Ou Yang PY, Liu N, Zhang WW, Wang J, Jian SG. Biological and eco-physiological characteristics of a beach plant Ipomoea pescaprae[J]. Journal of Hunan University of Science and Technology:Natural Science Edition, 2011, 26(4):117-121.
|
[5] |
杜月青, 刘建强, 陈立潮, 金水虎. 鳝藤等4种藤本植物耐盐性试验[J]. 浙江林业科技, 2011, 31(4):51-57.
Du YQ, Liu JQ, Chen LC, Jin SH. Salt stress on four species of climbing plant[J]. Journal of Zhejiang for Science and Technology, 2011, 31(4):51-57.
|
[6] |
Manigauha A, Kharya MD, Ganesh N. In vivo antitumor potential of Ipomoea pes-caprae on melanoma cancer[J]. Pharmacogn Mag, 2015, 11(42):426-433.
|
[7] |
陆彬斌, 孟柱, 赵志忠, 袁建平. 海南昌化铅锌矿区土壤重金属含量及优势植物富集特征[J]. 河南科技,2013, 1:184-189.
Lu BB, Meng Z, Zhao ZZ, Yuan JP. Heavy metal content and dominant plant enrichment characteristics of soils in Changhua lead-zinc mine area, Hainan province[J]. Journal of Henan for Science and Technology, 2013, 1:184-189.
|
[8] |
Wang HL, Tian CY, Jiang L, Wang L. Remediation of heavy metals contaminated saline soils:a halophyte choice[J]. Environ Sci Technol, 2013, 48(1):21-22.
|
[9] |
杨亚洲, 张春华, 郑青松, 张春银, 葛滢. 碱蓬和滨藜对镉和钠吸收、转运及亚细胞分布特性的比较研究[J]. 农业环境科学学报, 2015, 34(4):619-626.
Yang YZ, Zhang CH, Zheng QS, Zhang CY, Ge Y. Comparative study on cadmium and sodium absorption, transport and subcellular distribution in Suaeda salsa and Atriplex triangularis[J]. Journal of Agro-Environment Science, 2015, 34(4):619-626.
|
[10] |
Li ZS, Szczypka M, Lu YP, Thiele DJ, Rea PA. The yeast cadmium factor protein(YCF1) is a vacuolar glutathione S-conjugate pump[J]. J Biol Chem, 1996, 271(11):6509-6517.
|
[11] |
Ichikawa T, Nakazawa M, Kawashima M, Iizumi H, Kuroda H, et al. The FOX hunting system:an alternative gain-of-function gene hunting technique[J]. Plant J, 2006, 48(6):974-985.
|
[12] |
张伟, 郭钦, 阮辉, 何国庆. β-1,3-1,[BFY]4-葡聚糖酶在工业酿酒酵母表面的诱导展示表达研究[J]. 中国食品学报, 2010, 10(5):131-136.
Zhang W, Guo Q, Ruan H, He GQ. Studies on inducible surface-display expression of β-1,3-1,[BFY]4-Glucanase on industrial Sacchraomyces Cerevisiae surface[J]. Journal of Chinese Institute of Food Science and Technology, 2010, 10(5):131-136.
|
[13] |
张灿, 陈虹, 余忆玄, 王立军, 韩建波, 陶平. 我国沿海地区城镇污水处理厂污泥重金属污染状况及其处置分析[J]. 环境科学, 2013, 34(4):1345-1350.
Zhang C, Chen H, Yu YX, Wang LJ, Han JB, Tao P. Pollution characteristics of heavy metals in sludge from wastewater treatment plants and sludge disposal in Chinese coastal areas[J]. Environmental Science, 2013, 34(4):1345-1350.
|
[14] |
丁自立, 李书谦, 周旭, 曹凑贵. 植物修复土壤重金属污染机制与应用研究[J]. 湖北农业科学, 2014, 53(23):5617-5623.
Ding ZL, Li SQ, Zhou X, Cao CG. Mechanisms and applications of phytoremediation of heavy metal contamination in soils[J]. Hubei Agricultural Sciences, 2014, 53(23):5617-5623.
|
[15] |
倪晓鹏, 高志红. 园艺作物基因组测序研究进展[J]. 江苏农业科学, 2016, 44(2):9-13.
Ni XP, Gao ZH. Advances in genome sequencing of horticultural crops[J]. Jiangsu Agricultural Sciences, 2016, 44(2):9-13.
|
[16] |
吴倩, 张磊, 黄志平, 王大刚, 胡国玉. 转录组测序及其在野生大豆基因资源发掘中的应用[J]. 大豆科学, 2013, 32(6):845-851.
Wu Q, Zhang L, Huang ZP, Wang DG, Hu GY, Transcription sequencing and its application on discovering the gene resources of wild soybean[J]. Soybean Science, 2013, 32(6):845-851.
|
[17] |
贾昌路,张瑶,朱玲,张锐. 转录组测序技术在生物测序中的应用研究进展[J]. 分子植物育种, 2015, 13(10):2388-2394.
Jia CL, Zhang Y, Zhu L, Zhang R. Application of transcriptional sequencing technology in biological sequencing[J]. Molecular Plant Breeding, 2015, 13(10):2388-2394.
|
[18] |
Higuchi M, Kondou Y, Ichikawa T, Matsui M. Full-length cDNA overexpressor gene hunting system (FOX hunting system)[J]. Methods Mol Biol, 2011, 678:77-89.
|
[19] |
Asano T, Hakata M, Nakamura H, Aoki N, Komatsu S, et al. Functional characterization of OsCPK21, a calcium-dependent protein kinase that confers salt tolerance in rice[J]. Plant Mol Biol, 2011, 75(1-2):179-191.
|
[20] |
Higuchi-Takeuchi M, Matsui M. Screening for gene function using the FOX (Full-length cDNA over expressor gene) hunting system[J]. Methods Mol Biol, 2014, 1056:201-210.
|
[21] |
Song WY, Martinoia E, Lee J, Kim D, Kim DY, et al. A novel family of cys-rich membrane proteins mediates cadmium resistance in Arabidopsis[J]. Plant Physiol, 2004, 135(2):1027-1039.
|
[22] |
Shim D, Hwang JU, Lee J, Lee S, Choi Y, et al. Orthologs of the class A4 heat shock transcription factor HsfA4a confer cadmium tolerance in wheat and rice[J]. Plant Cell, 2009, 21(12):4031-4043.
|
[23] |
Blanvillain R, Kim JH, Wu S, Lima A, Ow DW. OXIDATIVE STRESS 3 is a chromatin-associated factor involved in tolerance to heavy metals and oxidative stress[J]. Plant J, 2009, 57(4):654-665.
|
[24] |
Kunihiro S, Saito T, Matsuda T, Inoue M, Kuramata M, et al. Rice DEP1, encoding a highly cysteine-rich G protein γ subunit, confers cadmium tolerance on yeast cells and plants[J]. J Exp Bot, 2013, 64(14):4517-4527.
|
[25] |
Kuramata M, Masuya S, Takahashi Y, Kitagawa E, Inoue C, et al. Novel cysteine-rich peptides from Digitaria ciliaris and Oryza sativa enhance tolerance to cadmium by limiting its cellular accumulation[J]. Plant Cell Physiol, 2009, 50(1):106-117.
|
[26] |
Shitan N, Horiuchi K, Sato F, Yazaki K. Bowman-Birk proteinase inhibitor confers heavy metal and multiple drug tolerance in yeast[J]. Plant Cell Physiol, 2007, 48(1):193-197.
|
[27] |
张妍茹, 佟少明, 侯和胜. 植物螯合肽合成酶的催化机制研究进展[J]. 天津农业科学, 2016, 22(2):27-30.
Zhang YR, Dong SM, Hou HS. Research progress of catalytic mechanism of phytochelatin synthase[J]. Tianjin Agricultural Science, 2016, 22(2):27-30.
|
[28] |
Rea PA. Phytochelatin synthase:of a protease a peptide polymerase made[J]. Physiol Plant, 2012, 145(1):154-164.
|
[29] |
Zanella L, Fattorini L, Brunetti P, Roccotiello E, Cornara L, et al. Over expression of AtPCS1 in tobacco increases arsenic and arsenic plus cadmium accumulation and detoxification[J]. Planta, 2016, 243(3):605-622.
|
[30] |
孟红恩, 刘忠渊. 植物金属硫蛋白研究进展[J]. 广东农业科学, 2014, 15:133-138.
Meng HE, Liu ZY. Research advances of plant metallothioneins[J]. Guangdong Agricultural Sciences, 2014, 15:133-138.
|
[31] |
Leszczyszyn OI, Imam HT, Blindauer CA. Diversity and distribution of plant metallothioneins:a review of structure,properties and functions[J]. Metallomics, 2013, 5(9):1146-1169.
|
[32] |
Hassinen VH, Tervahauta AI, Schat H, Kärenlampi SO. Plant metallothioneins-metal chelators with ROS scavenging activity?[J]. Plant Biol (Stuttg), 2011, 13(2):225-232.
|
[33] |
张伟, 郭钦, 阮辉, 何国庆. β-1,3-1,[BFY]4-葡聚糖酶在工业酿酒酵母表面的诱导展示表达研究[J]. 中国食品学报, 2010, 10(5):131-136.
Zhang W, Guo Q, Ruan H, He GQ. Studies on inducible surface-display expression of β-1,3-1,[BFY]4-Glucanase on industrial Sacchraomyces cerevisiae surface[J]. Journal of Chinese Institute of Food Science and Technology, 2010, 10(5):131-136.
|
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