ABA,abscisic acid
1)abscisic acidABA
1.Effects of different nitrogen forms and application of abscisic acid and 6-benzylaminopurine on growth, nutrient uptakes and their distribution in tobacco plants;不同形态氮素及ABA和6BA对烟草生长、养分吸收及其在体内分配的影响
2.The paper describes the effects of long-term application of abscisic acid (ABA) at different concentrations in Picea asperata at the Maoxian Ecological Experimental Station of Chinese Academy of Sciences during a 5-year pot experiment.L~(-1)4个浓度的ABA溶液,研究了长期外源ABA处理对云杉(Picea asperata)幼苗生长及生理特性的影响。
3.The role of nitric oxide(NO)in abscisic acid(ABA)-induced antioxidant defense in leaves of maize(Zea mays)plants was investigated.用硝普钠(SNP,NO供体)和ABA处理玉米幼苗,结果显示,ABA和SNP均增强了玉米叶片中抗氧化酶SOD、CAT、GR和APX的活性;激光共聚焦显微检测显示,ABA能够诱导叶片中NO的合成;NO清除剂PTIO和合成抑制剂L-NAME预处理阻断了ABA诱导的抗氧化酶活性的上升及NO的合成。
英文短句/例句

1.ABA-Binding Protein Encoding Gene Cloning, Expression in Yeast and Specific-ABA Binding of Its Product;脱落酸(ABA)结合蛋白基因克隆、表达及其产物对ABA的特异结合
2.The Role of CO-mediated H_2O_2 in ABA-induced Stomatal Closure and the Effect of FC on Stomatal Closure Caused by ABACO介导的H_2O_2参与ABA诱导气孔关闭和FC抑制ABA诱导气孔关闭的机制
3.Regulation of Exogenous Abscisic Acid to Photoinhibition in Maize Seedlings;外源ABA对玉米幼苗光抑制的调节
4.Studies on the Relationship Between Polyamine, Abscisic Acid and Heat Tolerance in Tomato;多胺和ABA与番茄耐热性关系的研究
5.Temperature/pH Sensitive ABA Type Hist/NIPAM Triblock Copolymers;温度/pH敏感性ABA型Hist/NIPAM三嵌段共聚物
6.DiInfluence of ABA and Ca~(2+) on Alleviating Aluminum-Induced Injury Effects in Rice;ABA和Ca~(2+)降低水稻的铝毒害效应
7.Effects of Abscisic Acid and Gibberellin on Growth of Porphyridiu Sp.植物激素ABA和GA对紫球藻生长的影响
8.Regulating Mechanism of Drought in Maize with ABAABA对玉米响应干旱胁迫的调控机制
9.Abscisic acid catabolism and 8'-hydroxylase,a key enzyme in the oxidative catabolismABA分解代谢及其代谢关键酶—8′-羟化酶
10.Effect of Exogenous ABA on Chilling Resistance in Pepper外源ABA对辣椒抗冷性生理指标的影响
11.ABA Responsive Protein Analysis and QTL Mapping for Seed Dormancy in Wheat (Triticum Aestivum L.);小麦种子休眠性的ABA反应蛋白分析及QTL定位
12.The Roles of Mitogen-Activated Protein Kinase in Abscisic Acid-Induced Antioxidant Defense in Leaves of Maize Plants;MAPK在ABA诱导的玉米叶片抗氧化防护中的作用
13.Propagation of Dendrobium Protocorm Like Body and Its Dissication Tolerance Induced by ABA;石斛类原球茎体增殖及ABA对其耐脱水性的诱导
14.ABA and H_2O_2 Signaling in Vicia Guard Cells;蚕豆保卫细胞ABA、H_2O_2信号转导系统的研究
15.The Regulative Effects of Exogenous ABA and Ca~(2+) on the Growth of Poplar Cuttings;外源ABA和Ca~(2+)对杨树扦插苗生长的调节效应
16.Hydrogen Peroxide and Nitric Oxide Are Required for Abscisic Acid-Regulated Maize Primary Root Growth at Low Water Potentials;H_2O_2和NO参与低水势下ABA维持玉米初生根生长
17.Effects of Exogenous ABA and GA_3 on Cucumber (Cucumis Sativus L.) Seedling Growth under NaCl Stress;外源ABA及GA_3对NaCl胁迫下黄瓜幼苗的影响
18.Embryonic ABA Sensitivity and Its Relationship with Expression of Dormancy Gene in Triticum Aestivum L.;小麦胚的ABA敏感性及其与休眠基因表达的关系
相关短句/例句

abscisic acid (ABA)ABA
1.The effects of soil bulk density on abscisic acid (ABA) concentration in xylem sap,stomatal conduc-tance (Gs) and transpiration rate (Tr) of maize (Zea mays L.受旱玉米植株木质部汁液中的ABA浓度是高水分处理的5倍,土壤容重每增加0。
2.Gibberellin (GA_3) and abscisic acid (ABA) are two important hormones in peach tissue.赤霉素(GA3)和脱落酸(ABA)是果实组织中的两个重要激素,本试验用SymmetryC18色谱柱(4。
3.The plant hormone abscisic acid (ABA) regulates many important plant developmental processes and induces tolerance to different kinds of stresses including drought, salinity and low temperature.植物激素脱落酸 (ABA)调节植物体多种生理过程 ,尤其在一些逆境条件下 ,植物体中ABA大量合成 ,诱导气孔关闭 ,从而有效地调控植物体内的水分平衡。
3)Abscisic acid脱落酸(ABA)
4)ABA sensitivityABA敏感性
1.There is a significant relationship between resistance to sprouting and ABA sensitivity in wheat.小麦穗发芽抗性与其对ABA敏感性关系密切,一般认为ABA处理可导致基因表达的变化。
5)Endogenous ABA内源ABA
1.Effect of enhanced UV-B radiation on endogenous ABA and free proline contents in wheat leaves;增强UV-B辐射对小麦叶片内源ABA和游离脯氨酸的影响
2.Preliminary Study of PDJ on the Photosynthesis and Endogenous ABA Content in Malus Plants;PDJ对苹果属植物光合作用、内源ABA含量影响初探
6)Abscisic acid(ABA)脱落酸(ABA)
延伸阅读

ABA分子式:CAS号:性质:又称休眠素(dormin)。从幼期棉桃中分离得到的一种具有倍半萜结构的植物激素。天然产的为(+)-2-顺,4-反-脱落酸,存在于悬铃木、白桦、玫瑰叶中,以及圆白菜、马铃薯、柠檬、鳄梨中。无色结晶,分子量264.31。熔点160~161℃,120℃升华。溶于碳酸氢钠水溶液、氯仿、丙酮、乙酸乙酯和乙醚,微溶于苯和水。人工合成的为外消旋体,熔点188~190℃。是一种重要的植物生长激素,其浓度达0.01μg时,有加速棉花落叶的活性。