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植物生理学相关论文

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植物生理学相关论文

也可以去中国生命科学论坛看看,应该有不少东西

(1)SCI收录论文J Zhang, X Zhang & J LIANG ??Exudate rate and hydraulic conductivity of maize roots are enhanced by soil drying and ABA New Physiologist 1995,131: 329-ZHANG J, LIANG J & MH WONG The effects of high CO2 and low O2 concentrations in simulated landfill gas on the growth and nodule activity of Leucaena Plant Cell and Physiology 1995,36: 1431-LIANG J, ZHANG J & MH WONG Stomatal conductance in relation to xylem sap ABA concentration in two tropical trees, Acacia confusa and Litsea glutinosa?? Plant, Cell & Environment 1996,19: 93-LIANG J, Zhang J, MH WONG Soil aeration and initiation and growth of secondary roots of maize (Zea mays L) Plant and Soil 1996,186: 245-LIANG J, Zhang J, MH WONG How do the roots control the xylem ABA concentration in response to soil Plant Cell Physiology 1997,38: 10-LIANG J, Zhang J, MH WONG Can stomatal closure caused by xylem ABA explain the decline of leaf photosynthesis under soil drought?? Photosynthesis Research? 1997,51:149-LIANG J, Zhang J Collection of xylem sap at flow rate similar to in vivo transpiration Plant Cell and Physiology? 38: 1375-LIANG J, Zhang J Xylem-Carried ABA in plant responses to soil Current Topics in Plant Biology,1:89-LIANG J, Zhang J Can the differences in responses to soil drying and compaction explain the poor performance of some trees in landfill Tree Physiology, 19(9): 619-LIANG J, Zhang J Xylem ABA concentration can not explain the delay of stomatal recovery of pre-stress plants after Plant Growth Regulation, 29(1/2): 77-LIANG J, Zhang J Effects of perodical soil drying and leaf water potential on the sensitivity of stomata to xylem ABA Acta Botanca Sinica, 41:855-Wang Huafang, Zhang J, Liang J, Yin W Responses of woody plant root and xylem sap ATP to soil Chinese Science Bulletin, 199944(13): 1172-Wang Huafang, Zhang J, Liang J, Yin W Responses of woody plant root and xylem sap ABA to soil Chinese Science Bulletin, ?44(24): 2236-Jia W, Zhang J Liang J Initiation and regulation of water deficit-induced abscisic acid accumulation in maize leaves and roots: cellular volume and water Journal of Experimental Botany 52:295-300Liang J Zhang J and Cao X Grain sink strength may be related tothe poor grain filling of Indica-japonica rice (Oryza sativa) Physioligia Plantarum, 112(4): 470-477Pang J, Gilbert SYChan, Zhang J, Liang J*, Wong MH Physiological Aspects of Vetiver Grass for Rehabilitation in Abandoned Metalliferous Mine Wastes Chemospher 2003,52(9): 1559-1570J G Liu, J S Liang, K Q Li, Z J Zhang, B Y Yu, X L Lu, J C Yang and Q S Z Correlations between cadmium and mineral nutrients in absorption and accumulation in various genotypes of rice under cadmium stress, Chemospher ?52 (9): 1467-1473Jin-Gui Chen, Francis S Willard, Jirong Huang, Jiansheng Liang, Scott A Chasse, Alan M Jones & David P S A seven-transmembrane RGS protein modulates cell proliferation in A Science, 2003,301: 1728-1731Liu, Jianguo; Li, Kunquan; Xu, Jiakuan; Liang, Jiansheng; Lu, Xiaolong; Yang, Jianchang; Zhu, Q Interaction of Cd and five mineral nutrients for uptake and accumulation in different rice cultivars and ? Field Crops Research 2003,83( 3) 271-281Yun Chen, Fangfang Ji, Hong Xie, Jiansheng Liang*, and Jianhua Zhang The Regulator of G-Protein Signaling Proteins Involved in Sugar and Abscisic Acid Signaling in Arabidopsis Seed Germination ?Plant P 2006 140: 302-Yun Chen, Fangfang Ji, Hong Xie,Jiansheng Liang* Overexpression of the regulator of G-protein signaling protein enhances ABA-mediated inhibition of root elongation and drought tolerance in Arabidopsis? Journal of Experimental Botany 2006 57:2101-2110Jin-Gui Chen, Hemayet Ullah, Brenda Temple, Jiansheng Liang, Jianjun Guo, José M Alonso, Joseph R Ecker, and Alan M Jones? RACK1 mediates multiple hormone responsiveness and developmental processes in Arabidopsis? Journal of Experimental Botany, 57: 2697-2708Bing Lü,Feng Chen,Zhong-Hua Gong,Hong Xie,Jian-Sheng Liang*? Integrin-like Protein May Involve in Osmotic Stress-induced ABA Biosynthesis in Arabidopsis thaliana* Journal of Integrative Plant Biology 2007, 49(4): 540-549Bing Lü,Feng CHEN,Zhong-Hua GONG ,Jian-Sheng LIANG*? The co-localization and possible interaction between integrin-like protein and α-tubulin in the root cells of Zea mays? J Plant Physiology and Molecular Biology ??2007, 33(2)115-122Lü B, Gong ZH, Wang J, Zhang JH, Liang JS* Microtubule dynamics in Zea mays roots in response to drought Journal of Experimental Botany 2007, 58(10):2565–2572B Lü, F Chen, ZH Gong, H Xie, JH Zhang, JS Liang,*? Intracellular localization of integrin-like protein and its roles in osmotic stress-induced ABA biosynthesis in Zea mays? Protoplasma 2007,232:35-43Jianjun Guo,? Jiansheng Liang, Jin-Gui Chen*? RACK1, a Versatile Scaffold Protein in Plants? International Journal of Plant Developmental Biology 2007, 1: 95-105Jianjun Guo, Jiansheng Liang, and Jin-Gui Chen? RACK1 Acts Synergistically with the Heterotrimeric G-Proteins to Negatively Regulate ABA-Mediated Postgermination Developmental Arrest in Arabidopsis? Plant Physiology (submitted)(2)Review Papers (Chapters) in Books: 曹显祖、朱庆森、杨建昌、梁建生 水稻产量形成与源库关系研究进展。《作物高产、优质、高效、高抗研究进展》(邹琦、王学臣主编)科学出版社出版, 梁建生和张建华 ABA对高等植物基因表达的调节。 《植物发育的分子机理》(许智宏等主编)科学出版社出版? p151-。 Liang J, Zhang J, MH WONG Landfill leachate used as irrigation water of landfill trees during dry In: Wong MH, Baker JA and Wong J (eds): Remediation and Management of Degraded L Sleeping Bear Press/Ann Arbor P P305- 梁建生。光合同化物运输。《植物生理学》(王忠主编) 农业出版社出版 梁建生。信号转导。《细胞生物学》农业出版社出版 (3)发表在会议论文集的论文或摘要梁建生, Zhang J, Wong MH 土壤干旱和复水期间气孔开闭与木质部ABA浓度间的关系 《第七届中国植物生理学会大会论文集》 山西太原Liang J, Zhang J, Wong MH How do roots control xylem sap ABA concentration in response to soil drying Annual Conference of American Society of Plant Physiologists, San A Plant Physiology (S), 111, Liang J, Zhang J, Wong MH The relations of stomatal closure and reopening to xylem ABA concentration and leaf water potential during soil drying and Annual Conference of American and Canadian Society of Plant Physiologists, V Plant Physiology (S), 114, Liang J, Zhang J, Wong MH 1997) Collection of xylem sap at flow rate similar to in vivo transpiration Annual Conference of American and Canadian Society of Plant Physiologists, V Plant Physiology (S), 114, 梁建生, Zhang J 水分胁迫对银合欢叶片脱落和再生长的影响。《第八届中国植物生理学会大会论文集》 P 2000年11月16-20日。 福建厦门Liang J Regulation of sucrose as an osmotic signal on starch biosynthesis of ric (O Sativa, L) Anuual Conference of American Society of Plant BiologistsLiang J Integrin-like protein may be involved in osmotic stress-induced ABA biosynthesis in Arabidospsis The 13th International Conference on Plant Growth Substance, Canbarra, Australian谢虹, 梁建生 2004蔗糖合酶抗体的制备及应用于检测水稻籽粒灌浆期间蔗糖合酶的含量 《第九届中国植物生理学会大会论文集》 2004年10月15-19日, 贵州贵阳梁建生, 闫诚 WD-40重复蛋白参与拟南芥植物忍耐干旱胁迫的机理研究 《第九届中国植物生理学会大会论文集》 2004年10月15-19日, 贵州贵阳梁建生,许卫峰, 窄叶蒲草耐Cd机理研究 《第九届中国植物生理学会大会论文集》 2004年10月15-19日, 贵州贵阳吕冰、陈枫、龚志忠, 梁建生 2004植物类整合素蛋白在渗透胁迫诱导ABA合成中的可能作用 《第九届中国植物生理学会大会论文集》 2004年10月15-19日, 贵州贵阳陈云、季芳芳、梁建生。Role of the regulator of G protein signaling proteins in Arabidopsis seed 《第九届中国植物生理学会大会论文集》 2004年10月15-19日, 贵州贵阳(4)特邀大会报告和学术报告 July 1995 Contributed poster report: Exudation rate and hydraulic conductivity of maize roots are enhanced by soil drying and ABA treatment” The 15th International Conference on Plant Growth Substances, Minneapolis, USA (J Zhang, X Zhang and J Liang)August 1997 Contributed poster report: “The relations of stomatal closure and reopening to xylem ABA concentration and leaf water potential during soil drying and rewatering” Annual Conference of American and Canadian Society of Plant Physiologists, Vancouver, C (J Liang, J Zhang and MH Wong)August 1997 Contributed poster report: “Collection of xylem sap at flow rate similar to in vivo transpiration flux” Annual Conference of American and Canadian Society of Plant Physiologists, Vancouver, C (J Liang, J Zhang and MH Wong)October Invited presentation: Root-sourced ABA: production, transport and Nanjing Agricultural University (Liang J)September Invited oral presentation: G-protein mediated signal transduction pathway and its relation to plant tolerance to environmental A specific meeting on Plant Stress Physiology and Molecular B Under the Chinese Society for Plant Physiology, Ninxia, China (Liang J)August Invited oral presentation: The roles of ABA in droughted A specific meeting on Plant Stress Physiology and Molecular B Under the Chinese Society for Plant Physiology,Huhuhaot, Inner Mongolia, China (Liang J)September 2004 Contributed poster report: Integrin-like protein may be involved in osmotic stress-induced ABA biosynthesis in Arabidospsis The 13th International Conference on Plant Growth Substance, Canbarra, Australian (Liang J Lv B, Chen F, and Gong Z)October Oral P WD-40 repeat proteins may involve in the drought tolerance in Arabidopsis The 9th National Meeting of the Chinese Society for Plant Physiology, Guiyang, (Liang J, Yan C)

Using the plant soilless cultivation method, about two leaves a corn seedling to experience deficiency The missing element for K After three weeks of training to take out and maize physiological and biochemical indexes measuring, experimental results show that the deficiency of the corn seedling cultivation, the growth of the training of the obvious difference YuQuanSu corn seedling, and the deficiency symptoms performance in different Deficiency the raise, plant growth rate drop, rootshoot ratio changed, for plant growth and has great influence on

植物生理学相关论文范文

看题目限定的范围。在题目中也许已经限定了写什么人,什么时间、什么地点的人。如《我的辅导员》就限定了必须使用第一人称;有的在材料中要求写你身边的人;有的材料要求写在学校和在家里

上课没听在友讲吗????

离子通道的研究进展 全球变暖与植物光合作用、二氧化碳的关系 植物气孔开关的机理二氧化碳施肥的应用无土栽培的发展与应用

也可以去中国生命科学论坛看看,应该有不少东西

植物生理学相关论文选题

水分就是灌溉了!你可以举例如小麦的三个水分临界期需水不同,灌溉量也应该不同。水分少了影响产量,影响矿质元素的吸收,多了影响根系呼吸造成烂根。 矿质营养就是氮长叶,磷增产。种食用叶子的菜可以多用氮肥;收获种子果实的多用磷;甘蔗一类用茎的多钾肥。 光和作用可以谈谈,光饱和点和补偿点,说说补光增产、无光黄花等问题。 2000字很容易的,以这个为框架,搜点相关文章适当粘贴一下就OK了。

这个我建议你最好翻翻plant physiology,planta等最新杂志,看看也就知道人家当前都些什么了或者去生物谷的相应板块上看看,可能有你需要的。

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0,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615。(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405。(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, PO Box 15501 Rockville, MD 20855-2768, USAED: 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679。(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 L, 84 The Obalds Rd, London WC1X 8RR, England。影响因子为945。(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257。(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 L, Journal Subscriptions,刊载植物分子科学领域的研究论文。影响因子为914。(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, PO 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634。(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795。(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 I,评论植物科学领域的研究成果和进展。影响因子为641。(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 L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613。(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580。(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180。(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159。(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118。(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053。(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778。(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450。(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398。

植物生理学相关论文题目

也可以去中国生命科学论坛看看,应该有不少东西

这个我建议你最好翻翻plant physiology,planta等最新杂志,看看也就知道人家当前都些什么了或者去生物谷的相应板块上看看,可能有你需要的。

可写的很多的,植物的光合作用、植物代谢、植物呼吸、植物水分生理、植物矿质营养、植物体内运输、生长与发育、抗逆性和植物运动等研究内容。可以就某一区域植物的某些植物生理特征写起,也可以写某种植物的生理特征,比如小麦的抗倒伏机理,干旱区植物抗旱性研究等

植物生理学相关论文摘要

This article focus on agriculture and plant physiology is carried out on the basis of science, first of all, talking about plant physiology over the past few decades for the enormous contribution made by agriculture, followed by a talk at the beginning of China's agricultural situation in plant physiology, as well as the scope of the study, said the final plant Physiology research and the development of

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