1. Li P, Song AL, Li ZJ, Fan FL, Liang YC. 2011. Silicon ameliorates manganese toxicity by regulating manganese transport and antioxidant reactions in rice (Oryza sativa L.). Plant and Soil. (Accepted)(通讯作者)(影响因子:)2. Fan FL, Yang QB, Li ZJ, Wei D, Cui XA, Liang YC. 2011. Impacts of organic and inorganic fertilizers on nitrification in a cold climate soil are linked to the bacterial ammonia oxidizer community. Microbial Ecology. 62:982-990(通讯作者)(影响因子:)3. Zhang B, Chu GX, Wei CZ, Ye J, Li ZQ, Liang YC. 2011. The growth and antioxidant defense responses of wheat seedlings to omethoate stress. Pesticide Biochemistry and Physiology. 100: 273-279 (通讯作者)(影响因子:)4. Su YH, Liang YC. 2011. Transport via xylem of atrazine, 2,4-dinitrotoluene, and 1,2,3-trichlorobenzene in tomato and wheat seedlings. Pesticide Biochemistry and Physiology. 100: 284-288(影响因子:)5. Song AL, Li P, Li ZJ, Fan FL, Nikolic M, Liang YC. 2011. The alleviation of zinc toxicity by silicon is related to zinc transport and antioxidative reactions in rice. Plant and Soil. 344: 319-333. (通讯作者)(影响因子:)6. Li ZJ, Xie XY, Zhang SQ, Liang YC. 2011. Wheat growth and photosynthesis as affected by oxytetracycline as a soil contaminant. Pedosphere. 21(2): 244–250(通讯作者)7. Sun WC, Zhang J, Fan QH, Xue GF, Li ZJ, Liang YC 2010. Silicon-enhanced resistance to rice blast is attributed to silicon-mediated defence resistance and its role as physical barrier. European Journal of Plant Pathology. 128:39-49 (通讯作者)(影响因子:)8. Ge GF, Li ZJ, Fan FL, Chu GX, Hou ZA, Liang YC. 2010. Soil biological activity and their seasonal variations in response to long-term application of organic and inorganic fertilizers. Plant and Soil. 326:31–44(通讯作者)(影响因子:)9. Liang YC, Zhu Y-G, Smith FA, Lambers H. 2010. Soil-plant interactions and sustainability of eco-agriculture in arid region: a crucially important topic to address. Plant and Soil. 326:1–2(通讯作者)(影响因子:)10. Wakelin SA, Chu GX, Lardner R, Liang YC, McLaughlin MJ. 2009. A single application of Cu to field soil has long-term effects on bacterial community structure, diversity, and soil processes. Pedobiologia 53:149-158 (影响因子:)11. Wakelin SA, Chu GX, Broos K, Clarke KR, Liang YC, McLaughlin MJ. 2010. Structural and functional response of soil microbiota across a Cu gradient are moderated by addition of plant substrate. Biology and Fertility of Soils 46:333-342 (影响因子:)12. Song AL, Li ZJ, Zhang J, Xue GF, Fan FL, Liang YC. 2009. Silicon-enhanced resistance to cadmium toxicity in Brassica chinensis L. is attributed to Si-suppressed cadmium uptake and transport and Si-enhanced antioxidant defense capacity. Journal of Hazardous Materials. 172:74-83 (通讯作者)(影响因子:)13. Zhang J, Sun WC, Li ZJ, Liang YC, Song AL. 2009. Cadmium fate and tolerance in rice cultivars. Agronomy for Sustainable Development. 29: 483-490 (通讯作者)(影响因子:)14. Chen WP, Hou ZA, Wu LS, Liang YC, Wei CZ. 2009. Effects of salinity and nitrogen on cotton growth in arid environment. Plant and Soil. 326:61–73(通讯作者)(影响因子:)15. Guo B, Liang YC, Li ZJ and Han FX, 2009. Phosphorus adsorption and bio-availability in a paddy soil amended with pig manure compost and decaying rice straw. Communications in Soil Science & Plant Analysis. 40: 2185-2199(通讯作者)(影响因子:)16. Ma YB, Li JM, Li XY, Tang X, Liang YC, Huang SM, Wang BR, Liu H, Yang XY. 2009. Phosphorus accumulation and depletion in soils in wheat-maize cropping systems: modeling and validation. Field Crops Research. 110:207-212 (影响因子:)17. Guo B, Liang YC, Zhu YG. 2009. Does salicylic acid regulate antioxidant defense system, cell death and cadmium uptake and partitioning to acquire cadmium tolerance in rice subjected to cadmium stress? Journal of Plant Physiology, 166: 20-31 (通讯作者)(影响因子:)18. Su YH, Zhu YG and Liang YC. 2009. Interactions of mixed organic contaminants in uptake by rice seedlings, Chemosphere, 74: 890-895(通讯作者)(影响因子:)19. Ge GF, Li ZJ, Zhang J, Wang LG, Xu MG, Zhang JB, Xie XL, Wang JK, Liang YC. 2009. Geographical and climatic differences in long-term effect of organic and inorganic amendments on soil enzymatic activities and respiration in field experimental stations of China. Ecological Complexity. 6: 421-431(通讯作者)(影响因子:)20. Zhang J, Li ZJ, Ge GF, Liang YC, Wu LS. 2009. Impacts of soil organic matter, pH and exogenous copper on sorption behavior of norfloxacin in three soils. Journal of Environmental Sciences. 21: 632–640(通讯作者)(影响因子:)21. Wang LG, Liang YC, Jiang X. 2008. Analysis of eight organophosphorus pesticide residues in fresh vegetables retailed in agricultural product markets of Nanjing, China. Bulletin of Environmental Contamination and Toxicology, 81(4):377-382(影响因子:)22. Liang YC, Zhu J, Li ZJ, Chu GX, Ding YF, Zhang J, Sun WC. 2008. Role of silicon in enhancing resistance to freezing stress in two contrasting winter wheat cultivars. Environmental and Experimental Botany,64(3): 286-294 (通讯作者)(影响因子:)23. Sun YH, Li ZJ, Guo B, Chu GX, Wei CZ, Liang YC. 2008. Arsenic mitigates cadmium toxicity in rice seedlings. Environmental and Experimental Botany, 64(3): 264-270(通讯作者)(影响因子:)24. Liang YC. 2008. Silicon uptake and transport in higher plants. In: Plant membrane and vacuolar transporters. Jaiwal ., Singh ., and Dhankher . (eds). CAB International, Wallingford, Oxfordshire, OX10 8DE, United Kingdom. pp. . Nikolic M, Nikolic N, Liang YC, Kirkby EA, Römheld V. 2007. Germanium-68 as an adequate tracer for silicon transport in plants: Characterization of silicon uptake in different crop species. Plant Physiology, 143 (1): 495-503(前三位作者同等贡献)(影响因子:)26. Liang YC, Sun WC, Zhu YG, and Christie P. 2007. Mechanisms of silicon- mediated alleviation of abiotic stresses in higher plants: A review. Environmental Pollution, 147: 422-428(影响因子:)(通讯作者)27. Guo B, Liang YC, Zhu YG and Zhao FJ. 2007. Role of salicylic acid in alleviating oxidative damage in rice roots (Oryza sativa) subjected to cadmium stress. Environmental Pollution, 147(3): 743-749(通讯作者)(影响因子:)28. Guo B, Liang YC, Li ZJ, and Guo W. 2007. Role of salicylic acid in alleviating cadmium toxicity in rice roots. Journal of Plant Nutrition, 30(3): 427 - 439(通讯作者)(影响因子:)29. Kong WD, Zhu YG, Liang YC, Zhang J, Smith FA and Yang M. 2007. Uptake of oxytetracycline and its phytotoxicity to alfalfa (Medicago sativa L.). Environmental Pollution, 147:187-193 (影响因子:)30. Guo W, Zhu YG, Liu WJ, Liang YC, Geng CN, Wang SG. 2007. Is the effect of silicon on rice uptake of arsenate (AsV) related to internal silicon concentrations, iron plaque and phosphate nutrition? Environmental Pollution, 148: 251-257 (影响因子:)31. Liang YC, Hua H. Zhu Y-G, Zhang J, Cheng C and Römheld V. 2006. Importance of plant species and external silicon concentration to active silicon uptake and transport. New Phytologist, 172(1):63-72 (影响因子:)32. Liang YC, Zhang WH, Chen Q, Liu YL and Ding RX. 2006. Effect of exogenous silicon (Si) on H+-ATPase activity, phospholipids and fluidity of plasma membrane in leaves of salt-stressed barley (Hordeum vulgare L.). Environmental and Experimental Botany, 57(3): 212-219 (影响因子:)33. Liang YC, Zhu YG , Xia Y, Li ZJ and Ma YB. 2006, Iron plaque enhances phosphorus uptake by rice (Oryza sativa) growing under varying phosphorus and iron concentrations. Annals of Applied Biology, 149(3):305-312(影响因子:)(通讯作者)34. Liang YC, Si J, and Römheld V. 2005. Silicon uptake and transport is an active process in Cucumis sativus L. New Phytologist, 167(3):797-804(影响因子:)35. Liang YC, Sun WC, Si J and Römheld V. 2005. Effect of foliar- and root-applied silicon on the enhancement of induced resistance in Cucumis sativus to powdery mildew. Plant Pathology, 54:678-685(影响因子:)36. Liang YC, Si J, Nikolic M, Peng Y, Chen W and Jiang Y. 2005. Organic manure stimulates biological activity and barley growth in soil subject to secondary salinization. Soil Biology and Biochemistry, 37: 1185-1195.(影响因子:)37. Liang YC, Wong JWC, and Wei L. 2005. Silicon-mediated enhancement of cadmium tolerance in maize (Zea mays L.) grown in cadmium contaminated soil. Chemosphere, 58(4): 475-483. (影响因子:)38. Liang YC, Zhang WH, Chen Q and Ding RX. 2005. Effects of silicon on tonoplast H+-ATPase and H+-PPase activity, fatty acid composition and fluidity in roots of salt-stressed barley (Hordeum vulgare L.). 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Liang YC, Zhang YC, Yin SX and Yang MC. 1998. Feasibility of using trichloroacetic acid soluble silicon as a diagnostic index for silicon deficiency in rice. Pedosphere, 8(1): 21-2679. Liang YC, 1998, Effects of silicon on leaf ultrastructure, chlorophyll content and photosynthetic activity of barley under salt stress. Pedosphere, 8 (4): . Liang YC, Shen QR and Shen . Effects of silicon on salinity tolerance of two barley cultivars. Journal of Plant Nutrition, 19(1): 173-183. (影响因子:)81. Liang YC, and Shen ZG. 1994. Interaction of silicon and boron in oilseed rape plants. Journal of Plant Nutrition, 17(2&3): 415-425. (影响因子:)82. Liang YC, Ma TS, Li FJ and Feng YJ. 1994. Silicon availability and response of rice and wheat to silicon in calcareous soils. Commun. Soil Sci. Plant Anal. 25(13&14): 2285-2297. (影响因子:)83. Shen ZG. Shen QR, Liang YC and Liu YL. 1994. Effect of nitrogen on the growth and photosynthetic activity of salt-stressed barley. Journal of Plant Nutrition, 17(5): 787-799. 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这个太多了,有上百种!以下是根据影响因子结合引文量及“二八律”选出的18种核心期刊,其IF均高于,所占比率约20%。可供读者投稿和检索参考。(1) Annual Review of Plant Biology(ANNU REV PLANT BIOL)《植物生理学和植物分子生物学年评》创刊于1950年,全年1期,原版刊号588B0002;国际刊号:1040-2519;综论植物生理学和植物分子生物学领域的研究进展与成果。影响因子为。(2) Trends in Plant Science (TRENDS PLANT SCI)《植物科学趋势》创刊于1996年,全年12期。原版刊号:588C0008;国际刊号:1360-1385;为从分子生物学到生态学的基础植物科学研究提供跨学科论坛。影响因子为。(3) Plant Cell (Plant Cell)《植物细胞》创刊于1989年,全年12期。原版式刊号:588B0005*;国际刊号:1040-4651;发行出版机构地址:Plant Physiology, . Box 15501 Rockville, MD 20855-2768, : American Society of Plant Physiologists。 侧重于植物发育的基因表达的调节以及分子和遗传基础方面的研究。影响因子为。(4) Current Opinion in Plant Biology (CURR OPIN PAANT BIOL)《植物生物学新见》全年6期,原版刊号:588C0084;国际刊号:1369-5266;发行出版机构地址:Current Biology Ltd., 84 The Obalds Rd, London WC1X 8RR, England。影响因子为。(5) Annual Review of Phytopathology (ANNU REV PHYTOPAYHOL)《植物病理学年评》创刊于1963年,全年1期。原版刊号:588B0009;国际刊号:0066-4286;发行出版机构地址:Annual Reviews Inc,评论植物科学领域的研究成果和进展。影响因子为。(6) Plant Journal (PLANT J)《植物杂志》创刊于1991年,全年24期。原版刊号:588C0082;国际刊号:0960-7412;发行出版机构地址:Blackwell Science Ltd., Journal Subscriptions,刊载植物分子科学领域的研究论文。影响因子为。(7) Plant Physiology (PLANT PHYSIOL)《植物生理学》由美国植物生理学会主办,创刊于1926年,全年12期。原版刊号:588B0005;国际刊号:0032-0889;发行出版机构地址:Plant Physiology, . Box 15501 Rockville, MD 20855-2768, USA. ED: American Society of Plant Physiologists。刊载本学科以及生物化学、分子生物学、环境生物学、细胞生物学等研究成果。影响因子为。(8) Plant Molecular Biology (PLANT MOL BIOL)《植物分子生物学》创刊于1984年,全年18期,16开,每期80页。原版刊号:582LB071;国际刊号:0167-4412;发行出版机构地址:Kluwer Academic Publishers, Journals Department, Distribution Centre刊载植物分子生物学与植物分子遗传学基础理论和遗传工程方面的研究论文和实验报告。影响因子为。(9) Critical Reviews in Plant Sciences (CRIT REV PLANT SCI)《植物科学评论》创刊于1983年,全年6期。原版刊号:588B0010;国际刊号:0735-2689;发行出版机构地址:CRC Press Inc.,评论植物科学领域的研究成果和进展。影响因子为。(10) Plant Cell and Environment (PLANT CELL ENVIRON)《植物、细胞与环境》创刊于1978年,全年12期,12开,每期84页。原版刊号:588C0072;国际刊号:0140-7791;发行出版机构地址:Blackwell Science Ltd.刊载绿色植物生理学,包括植物细胞生理学、植物生物化学、环境生理学、农作物生理学和生理生态等方面的研究论文。影响因子为。(11) Molecular Plant-Microbe Interactions (MOL PLANT MICROBE IN)《分子植物与微生物相互作用》创刊于1988年,全年12期,12开,每期56页。原版刊号:582B0109;国际刊号:0897-0282;发行出版机构地址:American Phytopathological Society, 刊载研究论文和评论,包括分子生物学、分子病理遗传学、微生物和植物的共生作用及其对栽培植物、野生植物和植物产品的影响。影响因子为。(12) Journal of Experimental Botany (J EXP BOT)《实验植物学杂志》创刊于1950年,全年12期,18开,每期124页。原版刊号:588C0002;国际刊号:0022-0957;发行出版机构地址:Oxford University Press, 刊载植物生理、生化、生物物理、实验农学等方面的研究论文。读者对象为植物学家、园艺学家、土壤学家、环境与海洋生物学家。影响因子为。(13) Plant and Cell Physiology (PLANT CELL PHYSIOL)《植物和细胞生理学》创刊于1959年,全年12期,16开,每期250页。原版刊号588D0057;国际刊号:0032-0781;发行出版机构地址:日本植物病理学会,T170-8484日本东京都丰岛区驹ごめ1-43-11;发表高等植物和微生物的生理与生化以及生物技术等领域的基础与应用方面的研究论文。影响因子为。(14) New Phytologist (NEW PHYTOL)《新植物学家》创刊于1902年,全年12期,18开,每期156页。原版刊号588C0055;国际刊号:0028-646X;发行出版机构地址:Cambridge University Press, 刊载植物学各领域的研究论文、评论与书评,涉及生物物理学、生理学、生物化学、植物化学、生物技术、生态学等学科。影响因子为。(15) Planta (PLANTA)《植物学》创刊于1925年,全年15期,12开,每期96页。原版刊号:588E0003;国际刊号:0032-0935;发行出版机构地址:Springer-Verlag,Heidelberger Platz3, D-14197 Berlin, Germany;刊载植物生物学原始论文,侧重分子细胞生物学、超微结构、生物化学、新陈代谢、生长、发育、形态发生、生态环境生理学、作物技术、植物与微生物相互作用等方面。影响因子为。(16) Journal of Plant Growth Regulation (J PLANT GROWTH REGUL)《植物生长调节杂志》创刊于1982年,全年4期,18开,每期66页。原版刊号588E0008;国际刊号:0721-7595;发行出版机构地址:Springer-Verlag,Heidelberger 报道植物分子生物学、植物生理学、植物学、生化学、林学、园艺学和农学中有助于基础和应用研究的最新发现,侧重除莠剂在内的天然和全盛物质及其对植物生长发育的影响。影响因子为。(17) Phytopathology (PHYTOPATHOLOGY)《植物病理学》创刊于1911年,全年12期,12开,每期126页。原版刊号:588B0006;国际刊号:0031-949X;发行出版机构地址:American Phytopathological Society, 刊载植物病理学的基础研究论文,图像精密。影响因子为。(18) Australian Journal of Plant Physiology (AUST J PLANT PHYSIOL)《澳大利亚植物生理学杂志》创刊于1974年,全年8期,18开,每期100页。国际刊号:588UA002;国际刊号:0310-7841;发行出版机构地址:CSIRO Publications, 刊载植物生理学领域的研究论文、评论、简报。涉及生物化学、生物物理学、遗传学、细胞生物学结构和分子生物学等。影响因子为。
经典老牌期刊了,还不错期刊名字 AMERICAN JOURNAL OF BOTANY缩写 AM J BOT 期刊ISSN 0002-9122 2014-2015最新影响因子 期刊官方网站 通讯方式 BOTANICAL SOC AMER INC, PO BOX 299, ST LOUIS, USA, MO, 63166-0299 涉及的研究方向 生物-植物科学 出版国家 UNITED STATES 出版周期 Monthly
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