42 resultados para GA3
Resumo:
以马铃薯栽培品种甘农薯2号试管苗为试材,研究了在0.4%、0.6%NaCl胁迫下外源激素GA3、6-BA、IAA对试管苗耐盐性的影响。结果表明:3种激素均对马铃薯试管苗受到的盐胁迫具有一定缓解作用,使盐胁迫下的试管苗叶绿素含量提高、脯氨酸和丙二醛含量降低,其中GA3和IAA提高叶绿素含量的效果显著,GA3降低脯氨酸和丙二醛含量的效果比6-BA和IAA明显。
Resumo:
采用酶联免疫吸附法(ELISA)测定有花史白桦大树与无花史白桦幼树的4种内源激素脱落酸(ABA)、细胞分裂素(iPA)、生长素(IAA)、赤霉素(GA3)含量的动态变化,研究其与白桦成花的关系。研究结果表明:白桦有花史大树与无花史幼树的4种内源激素含量动态变化明显不同。在雌、雄花芽的生理发端期,有花史大树的IAA含量保持相对稳定,而高含量的ABA和iPA含量的逐渐降低以及GA3含量的逐渐升高可能有利于白桦成花。
Resumo:
对平阴玫瑰花芽分化期叶片甲醇提取物进行IAA、ZR、GA3、ABA的分离、纯化和测定。结果发现,所测的几种激素均表现出明显的变化规律,其中IAA和GA3在花芽分化期含量逐渐下降,且在分化临界期出现一低峰,而ZR和ABA则完全相反。同时经比较分析得出ABA/GA3,ABA/IAA,ZR/GA3,ZR/IAA也表现明显的变化规律,即比值总体趋势是逐渐提高,且均在分化临界期含量出现一飞跃,显然ABA/GA3,ABA/IAA,ZR/GA3,ZR/IAA在平阴玫瑰的花芽分化过程中起着重要的调控作用,由此推测,增加植物体内的ABA、ZR的含量或降低IAA、GA3的含量,都可以促进玫瑰的花芽分化;反之则抑制其花芽分化。
Resumo:
为诱导无芽黄精根状茎产生不定芽,选择不同的化学物质进行诱导处理。结果表明,GA3处理效果明显,选用0.4 mg/L的GA3浸泡25 min对黄精根状茎不定芽的产生和须根生长有明显促进作用,高浓度抑制其生长;1%硫脲浸泡处理对黄精无顶芽根状茎萌发新芽和须根有明显的抑制作用。
Resumo:
盛花期对银杏雌株叶面喷施多效唑、B9、GA3、GA3+6- BA。结果表明 ,多效唑和 B9能够明显提高坐果率 ,有效增加来年成花数量。GA3和 GA3+6- BA对提高坐果无影响 ,但能增加种子重量 ,促进纵、横径增加 ,GA3还能够促进翌年成花数量。多效唑处理提高产量的原因 ,一是抑制树体营养生长 ,二是减少落花落果 ,增加植株翌年成花量
Resumo:
以草甸棕壤为供试土壤,以蚕豆幼苗根尖有丝分裂指数、染色体畸变率以及微核率,幼苗叶片内抗氧化酶活性、植物内源激素含量为指标,采用盆栽方法研究了0~10 mg.kg-1镉胁迫对植物细胞的遗传和生态毒性效应.结果表明,在此浓度范围内,蚕豆根尖细胞有丝分裂指数、染色体畸变率以及微核率均随镉浓度增加呈显著的剂量-效应正相关关系,其中微核率变化最为明显,处理组微核率分别为对照组的1.43~3.22倍;蚕豆幼苗叶片内的SOD和POD活性变化呈先升高后下降的趋势;而CAT活性随镉浓度增加其变化规律与SOD、POD相反.此外,镉胁迫下植物激素脱落酸(ABA)、赤霉素(GA3)与细胞分裂素类的玉米素和玉米素核苷总含量(Z&ZR)均表现出低浓度下诱导和较高浓度下诱导率降低的趋势,在镉浓度为2.5 mg.kg-1时3种植物激素含量均达到最高值,分别比对照组增加了6.6%、4.0%和12.6%.研究表明,各指标对污染物的毒性具有响应且响应的域值及其敏感度不同,将各指标综合使用可使土壤镉污染的遗传和生态毒性诊断更为有效.
Resumo:
New series of oxides, La3MMo2O12 (M = In, Ga and Al), have been prepared by the solid-state reaction. The composition and elemental distribution were analyzed by the energy-dispersive X-ray (EDX) analysis. As determined by the X-ray diffraction (XRD), these compounds have similar crystal structures that can be indexed on a monoclinic cell at room temperature. AC impedance spectra and the DC electrical conductivity measurements in various atmospheres indicate that they are oxide ion conductors with ionic conductivities between 10(-2) and 10(-3) S/cm at 800 degrees C. The conductivity decreases in the order of La3GaMo2O12 > La3AlMo2O12 > La3InMo2O12, implying that the effect of cell volume and polarization associated with In3+, Ga3+ and Al3+ play an important role in the anion transport of these materials. The reversible phase transition was observed in all these compounds as confirmed by the differential thermal analysis (DTA) and dilatometric measurements.
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By using inorganic salts as raw materials and citric acid as complexing agent, spinel oxide ZnGa2O4 and Mn2+, Eu3+-doped ZnGa2O4 phosphor powders were prepared by a citrate-gel process. X-ray diffraction (XRD), TG-DTA, FT-IR. and luminescence excitation and emission spectra were used to characterize the resulting products. The results of XRD reveal that the powders begin to crystallize at 500 degreesC and pure ZnGa2O4 phase is obtained at 700 degreesC, which agrees well with the results of TG-DTA and FT-IR. In the crystalline ZnGa2O4, the Eu shows its characteristic red (615 nm, D-5(0)-F-7(2)) emission with a quenching concentration of 5 mol% (of Ga3+), and the Mn shows green emission (505 nm, T, A,) with a quenching concentration of 0.1 mol% (of Zn2+). The luminescence mechanism of ZnGa2O4:Mn2+/Eu3+ is presented.
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High-pressure synthesis of garnet Gd3In2Ga3O12 is reported. It was found that the pressure-temperature region for the synthesis of Gd3In2Ga3O12 can be expressed as T(degrees C) < 2350-250P(GPa), and high pressure greatly reduced the reaction time. It was also found that the garnet Gd3In2Ga3O12 decomposed to GdGaO3 and In2O3 under 3.5 GPa and 1650 degrees C, and this process was accompanied by an increasing density of the products and an increasing coordination number for Ga3+ (4 to 6).
Resumo:
Covalent radii of the bonding elements have strong effects on the linear electro-optic coefficients of zinc blende crystals; these effects can be quantitatively determined by investigating the relation between the difference in the atomic sizes rho and the magnitude of the linear electro-optic tensor coefficient r(41). It is interesting to note that for the same cation Zn2+, Ga3+, or In3+ the magnitude of r(41) increases with increased covalent radius of the bonded anion r(beta). Especially with the increasing tendency of the parameter rho, the magnitude of r(41) of crystals that have a same cation will increase suddenly when the value of r(beta) becomes larger. (C) 1997 Academic Press.
Resumo:
In this study,the effects of temperature,the growth regulator GA3 and storage conditions on seed germination of the biennial Swertia mussotii Franch were compared in seeds from a natural high altitude alpine site and after one-cycle of artificial cultivation at a low altitude.The untreated seeds from high altitude displayed higher germination than those from low altitude.Both GA3 and storage conditions enhanced germination from all sources.After treatment,the final germination of seeds from different sources shows no distinct difference.These results suggest that:(i) all seeds of this species,irrespective of their sources,have similar kinds of dormancy;(ii) the dormancy of this species can not been broken through one-cycle adaptation in ex situ cultivation and thus might be genetically controlled;(iii) both GA3 and 4℃ cold storage are effective for dormancy breaking in ex situ cultivation of this important medicinal species.
Resumo:
La0.15Sr0.85Ga0.3Fe0.7O3-delta (LSGFO) and La0.15Sr0.85Co0.3Fe0.7O3-delta (LSCFO) mixed oxygen-ion and electron conducting oxides were synthesized by using a combined EDTA and citrate complexing method, and the corresponding dense membranes were fabricated. The properties of the oxide powders and membranes were characterized with combined SEM, XRD, H-2-TPR, O-2-TPD techniques, mechanical strength and oxygen permeation measurement. The results showed that LSGFO had much higher thermochemical stability than LSCFO due to the higher valence stability of Ga3+. After the temperature-programmed reduction by 5% H-2 in Ar from 20 degreesC to 1020 degreesC, the basic perovskite structure of LSGFO was successfully preserved. LSGFO also favors the oxygen vacancy formation better than LSCFO. Oxygen permeation measurement demonstrated that LSGFO had higher oxygen permeation flux than LSCFO, but they had similar activation energy for oxygen transportation, with a value of 110 and 117 kJ . mol(-1), respectively The difference in oxygen permeation fluxes was correlated with the difference in oxygen vacancy concentrations for the two materials.