[1] 朱瑞婷,牛奎举,张娣君,等.外源2,4-表油菜素内酯对镉胁迫下草地早熟禾叶绿素代谢的影响[J].草地学报,2021,29(4):635-643 [2] LI F,QI J,ZHANG G,et al. Effect of Cadmium Stress on the Growth,Antioxidative Enzymes and Lipid Peroxidation in Two Kenaf (Hibiscus cannabinus L.) Plant Seedlings[J]. Journal of Integrative Agriculture,2013,12(4):610-620 [3] 仲灿,葛晓敏,倪云,等.植物对土壤Cd、Pb污染的修复与抗性机理研究进展[J].世界林业研究,2017,30(1):37-43 [4] WU X,TIAN H,LI L,et al. Higher Cd-accumulating Oilseed Rape has Stronger Cd Tolerance due to Stronger Cd Fixation in Pectin and Hemicellulose and higher Cd Chelation[J]. Environmental Pollution,2021(285):117218 [5] 张杨杨,李希铭,高鹏,等.不同浓度镉胁迫下6种草本植物的耐性及富集特征的比较[J].草地学报,2021,29(6):1265-1276 [6] 马志强,史毅,种培芳.外源茉莉酸甲酯对镉污染下草地早熟禾种子萌发及幼苗生长的影响[J].草地学报,2022,30(6):1475-1484 [7] XIAN J,WANG Y,NIU K,et al. Transcriptional Regulation and Expression Network Responding to Cadmium Stress in a Cd-tolerant Perennial Grass Poa Pratensis[J]. Chemosphere,2020(250):12615 [8] LU H,LI Z,WU J,et al. Influences of Calcium Silicate on Chemical Forms and Subcellular Distribution of Cadmium in Amaranthus hypochondriacus L.[J]. Scientific Reports,Nature Publishing Group,2017,7(1):1-9 [9] 唐敏,张欣,刘燕,等. 镉在3种乔木中的积累及其亚细胞分布和化学形态研究[J]. 环境科学学报,2021,41(6):2440-2447 [10] FENG J,JIA W,LV S,et al. Comparative Transcriptome Combined with Morpho-physiological Analyses Revealed Key Factors for Differential Cadmium Accumulation in Two Contrasting Sweet sorghum Genotypes[J]. Plant Biotechnology Journal,2018,16(2):558-571 [11] PENG J S,WANG Y J,DING G,et al. A Pivotal Role of Cell Wall in Cadmium Accumulation in the Crassulaceae Hyperaccumulator Sedum plumbizincicola[J]. Molecular Plant,2017,10(5):771-774 [12] GUTSCH A,ZOUAGHI S,RENAUT J,et al. Changes in the Proteome of Medicago sativa Leaves in Response to Long-Term Cadmium Exposure Using a Cell-Wall Targeted Approach[J]. International Journal of Molecular Sciences,Multidisciplinary Digital Publishing Institute,2018,19(9):2498 [13] ZHANG J,MARTINOIA E,LEE Y. Vacuolar Transporters for Cadmium and Arsenic in Plants and Their Applications in Phytoremediation and Crop Development [J]. Plant and Cell Physiology,2018,59(7):1317-1325 [14] MARTINOIA E,MEYER S,DE ANGELI A,et al. Vacuolar Transporters in Their Physiological Context[J]. Annual Review of Plant Biology,2012,63(1):183-213 [15] QIU Q,WANG Y,YANG Z,et al. Effects of Phosphorus Supplied in Soil on Subcellular Distribution and Chemical Forms of Cadmium in Two Chinese Flowering Cabbage (Brassica parachinensis L.) Cultivars Differing in Cadmium Accumulation[J]. Food and Chemical Toxicology,2011,49(9):2260-2267 [16] FU X,DOU C,CHEN Y,et al. Subcellular Distribution and Chemical Forms of Cadmium in Phytolacca americana L.[J]. Journal of Hazardous Materials,2011,186(1):103-107 [17] XU P,WANG Z. Physiological Mechanism of Hypertolerance of Cadmium in Kentucky bluegrass and Tall fescue:Chemical Forms and Tissue Distribution[J]. Environmental and Experimental Botany,2013(96):35-42 [18] 鲜靖苹,柴澍杰,王勇,等. 镉胁迫对草地早熟禾生长与生理代谢的影响[J]. 核农学报,2019,33(1):176-186 [19] LI X,MA H,LI L,et al. Subcellular Distribution,Chemical Forms and Physiological Responses Involved in Cadmium Tolerance and Detoxification in Agrocybe Aegerita[J]. Ecotoxicology and Environmental Safety,2019(171):66-74 [20] WANG K,YU H,ZHANG X,et al. A transcriptomic View of Cadmium Retention in Roots of Cadmium-Safe Rice Line (Oryza sativa L.)[J]. Journal of Hazardous Materials,2021,418:126379 [21] ZHU X F,LEI G J,JIANG T,et al. Cell Wall Polysaccharides are Involved in P-Deficiency-Induced Cd Exclusion in Arabidopsis thaliana[J]. Planta,2012,236(4):989-997 [22] YANG L P,ZHU J,WANG P,et al. Effect of Cd on Growth,Physiological Response,Cd Subcellular Distribution and Chemical Forms of Koelreuteria paniculata[J]. Ecotoxicology and Environmental Safety,2018(160):10-18 [23] GUO X,LUO J,DU Y,et al. Coordination between Root Cell Wall Thickening and Pectin Modification is Involved in Cadmium Accumulation in Sedum alfredii[J]. Environmental Pollution,2021(268):115665 [24] BANAKAR R,ALVAREZ FERNANDEZ A,DíAZ-BENITO P,et al. Phytosiderophores Determine Thresholds for Iron and Zinc Accumulation in Biofortified Rice Endosperm while Inhibiting the Accumulation of Cadmium[J]. Journal of Experimental Botany,2017,68(17):4983-4995 [25] PIANELLI K,MARI S,MARQUES L,et al. Nicotianamine Over-Accumulation Confers Resistance to Nickel in Arabidopsis thaliana[J]. Transgenic Research,2005,14(5):739-748 [26] LUO J S,ZHANG Z. Mechanisms of Cadmium Phytoremediation and Detoxification in Plants[J]. The Crop Journal,2021,9(3):521-529 [27] MARI S,GENDRE D,PIANELLI K,et al. Root-to-shoot Long-distance Circulation of Nicotianamine and Nicotianamine-nickel Chelates in the Metal Hyperaccumulator Thlaspi caerulescens[J]. Journal of Experimental Botany,2006,57(15):4111-4122 [28] WANG J,SU L,YANG J,et al. Comparisons of Cadmium Subcellular Distribution and Chemical Forms between Low-Cd and High-Cd Accumulation Genotypes of Watercress (Nasturtium officinale L. R. Br.)[J]. Plant and Soil,2015,396(1):325-337 [29] MA H,LI X,WEI M,et al. Elucidation of the Mechanisms into Effects of Organic Acids on Soil Fertility,Cadmium Speciation and Ecotoxicity in Contaminated Soil[J]. Chemosphere,2020(239):124706 [30] 徐佩贤. 高羊茅和草地早熟禾对镉的耐受能力和解毒机制研究[D]. 上海:上海交通大学,2014:63 |