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控释氮钾肥对海棠氮、磷、钾利用率的影响 总被引:6,自引:0,他引:6
采用盆栽试验,研究了控释氮钾肥对海棠实生苗生长、磷钾利用率及土壤-作物系统中氮素平衡的影响.结果表明:控释肥的释放与海棠苗对养分的需求一致;控释氮肥显著提高了植株钾素的利用率;控释钾肥显著提高了植株氮素的利用率.施钾量相同情况下,控释氮肥(CN)和控释氮钾肥(NK)的株高、茎粗无显著差异,但均高于普通肥料(SF).植株干物质量、磷的利用率、钾的吸收量和利用率大小顺序均为:NKCNSF.施钾量对株高、茎粗无明显影响,但对NK处理的干物质量有显著影响.磷素利用率随控释钾肥施用量增加而显著提高,而普通钾肥施用量对其无明显影响.钾素利用率随施钾量提高而降低.氮素利用率大小顺序为NKCNSF,损失率顺序则相反,NK和CN的残留率无显著差异,但均高于SF.控释钾肥施用量对氮素利用率、损失率有显著影响,对残留率无明显影响. 相似文献
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叶面喷施磷、钾、钙对三月红荔枝果实品质和着色的影响 总被引:2,自引:0,他引:2
以三月红荔枝果实为试材,探讨叶面喷施0.2%KH2PO4(PK)、0.2%CaCl2(Ca)溶液以及两者混合液(PK+Ca)对果实品质和着色的影响。结果表明,叶面喷施P、K、Ca能提高果实单果重。各处理(含对照)的果肉可溶性糖含量具有相似的变化趋势;在果实成熟时,PK处理的果肉可溶性糖含量显著高于对照,而PK+Ca及Ca处理则显著低于对照。各处理的酸含量变化动态为倒"N"形曲线;成熟时,PK+Ca和Ca处理极显著高于对照,PK处理显著高于对照。果肉糖酸比表现为PK处理和对照差异不显著,Ca和PK+Ca处理显著低于对照。所有处理(含对照)的叶绿素和类胡萝卜素含量总体趋势均下降,花色素苷含量总体趋势均上升,各处理(含对照)的果皮类胡萝卜素含量具有一致的动态变化趋势;果实成熟时对照的果皮叶绿素含量高于喷施处理或无显著差异,而花色素苷含量低于喷施处理,说明所有喷肥处理均有利于果皮着色。 相似文献
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钾对外生菌根真菌的分泌作用及氮、磷、钾含量的影响 总被引:13,自引:1,他引:13
用无钾、低钾、中钾和高钾的液体培养基培养外生菌根真菌14~21d,随着钾离子浓度的降低,外生菌根真菌分泌H^ 和草酸的速率提高。由于H^ 能取代2:1型粘粒矿物品层和晶格内的钾,草酸能络合矿物中的Fe,Al离子,促进Al-O八面体风化,推测菌根真菌和菌根活化土壤无效钾的能力在低钾时较强,在高钾时较弱。在外生菌根真菌分泌的H^ 中,草酸电离可能不是它们的主要来源,而是一些目前尚未知道的有机酸。此外,液体培养基中的钾离子不同程度地影响外生菌根真菌体内的氮、磷、钾含量,看来环境中的钾离子供应影响了真菌菌丝对养分的吸收。 相似文献
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增施钾肥对大棚蟠桃品质及营养生长的影响 总被引:4,自引:0,他引:4
该研究以蟠桃品种‘金霞蟠桃’和‘玉霞蟠桃’为试材,分别在2个品种成熟前3周(3W)、2周(2W)和1周(1W)每树环施钾肥(K2O)1 000g,比较不同时期施肥处理蟠桃果实外观品质、内在品质以及营养生长的变化。结果表明:(1)在蟠桃果实成熟前2W和3W尤其是2W施用钾肥,蟠桃果实单果重和体积总体较大,‘金霞蟠桃’2W处理果实单果重、横径和侧径分别显著高于1W处理11.48%、3.51%和3.03%,‘玉霞蟠桃’2W处理则分别显著高于1W处理56.86%、14.97%和3.67%;(2)不同时期增施钾肥对‘玉霞蟠桃’果实颜色的变化影响总体较小,‘金霞蟠桃’2W和3W处理果实的a*值分别显著高于1W处理55.02%和44.49%,但2W和3W处理之间差异不显著;(3)增施钾肥后,2个蟠桃品种果实可溶性固形物含量、蔗糖含量从高到低依次为2W3W1W,可溶性糖总量大小也依次为2W3W1W,但2W和3W处理间差异不显著;不同时期增施钾肥对2个蟠桃品种果实有机酸总量和枝叶营养生长总体影响不大。研究认为,在蟠桃果实成熟前2周左右施用钾肥,成熟时果实体积、单果重增大,果肉可溶性固形物、蔗糖、可溶性总糖含量以及糖酸比高,果实综合品质得到有效改善,但增施钾肥过早或过晚都无法达到最佳效果。 相似文献
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生物炭在提高土壤磷素有效性及促进作物生长方面具有显著作用,但其效果因土壤类型不同存在较大差异。试验以赤红壤(pH 4.91)和褐土(pH 7.24)为供试土壤,设置3种磷肥水平(0、30、90 kg P·hm-2,分别以不施磷、低磷、高磷表示)配施稻秆生物炭(0、4%)的大豆盆栽试验,研究了不同磷水平下配施生物炭对土壤磷有效性、磷酸单酯酶活性和植株磷吸收的影响。结果表明: 不同磷水平配施生物炭显著提高了两种土壤的速效磷和全磷含量,且低磷水平添加生物炭处理速效磷增幅最大,在赤红壤和褐土的增幅分别为192.6%和237.1%。与低磷相比,赤红壤中低磷配施生物炭处理的碱性磷酸单酯酶活性显著增加78.9%,活性有机磷含量降低39.3%,同时显著促进了植株生长与磷吸收;生物炭添加显著降低了褐土活性有机磷含量,但不同处理对土壤磷酸单酯酶活性和植株生长无显著影响。土壤活性有机磷含量与速效磷含量均呈显著负相关。综上,生物炭对土壤磷有效性的作用因土壤类型和磷肥水平差异而不同,其在赤红壤上对植株生长和磷吸收的促进效应强于褐土,且在低磷条件下效果更佳。本研究为生物炭在减施磷肥和促进大豆磷吸收,特别是在赤红壤上的应用提供了科学依据。 相似文献
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为探究观赏栀子在不同遮光条件下生长和光合及氮、磷、钾(N、P、K)分配的规律,该研究对3种观赏栀子设置5种不同的遮光处理(0%、60%、70%、80%、90%),通过对观赏栀子的生长和光合及各器官N、P、K含量进行统计与分析,探究了不同遮光处理对观赏栀子栽植效果的影响。结果表明:(1)60%和0%遮光率的大花栀子、80%和70%遮光率的雀舌栀子、0%遮光率的花叶栀子均长势较好。(2)随着遮光率的增加,雀舌栀子和花叶栀子的净光合速率、胞间CO2浓度、蒸腾速率逐渐降低,气孔导度、水分瞬时利用率在遮光率60%下达到最大值。(3)大花栀子总N量最高,器官含N量高低排序为叶、根、茎; 雀舌栀子总P量最高,器官含P量排序为根、茎、叶; 大花栀子在90%遮光率下含K量最高。综合考虑认为,雀舌栀子更耐荫蔽,适合在80%和70%的遮光条件下生长; 大花栀子次之,适合在60%和0%遮光条件下生长; 花叶栀子最不耐荫,适合在0%遮光条件下生长。 相似文献
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运用水培试验法研究不同营养水平对黄芪幼苗根系活力和游离氨基酸组成及含量的影响。结果表明:缺素显著降低黄芪根系活力,不同营养处理游离氨基酸含量差异显著,游离氨基酸总量的变化规律为叶片〉根,各处理游离氨基酸总量为-K〉-P〉NPK〉-N。全素处理与缺素处理相比.能提高根系活力、协调根冠比。黄芪幼苗通过提高体内游离氨基酸含量以增强对营养胁迫逆境的适应能力。 相似文献
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以大花蕙兰原球茎(PLBs)为外植体,采用EHA105和LBA4404 2种根癌农杆菌菌株与pCAMBIA1301质粒构建工程菌介导,以建立大花蕙兰遗传转化体系,并比较不同受体处理方式、菌液浓度和侵染方式等对大花蕙兰转化的影响.结果表明:(1)以切成3 mm左右的PLBs小块作为受体材料,用OD600值为0.6的LBA4404根癌农杆菌菌株,并用MS+1.0 mg/L BA+200μmol/L AS(乙酰丁香酮)的液体培养基将菌液等体积稀释侵染,转化率可达62.5%.(2)大花蕙兰对潮霉素(Hyg)十分敏感,5 mg/L Hyg对转化后的PLBs有较好的筛选效果,筛选后最高成活率为13.0%.(3)PCR检测初步证明,通过根癌农杆菌介导的方法获得了2株转基因大花蕙兰植株. 相似文献
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寒兰的快速繁殖技术 总被引:7,自引:0,他引:7
以寒兰(CymbidiumkanranMakino)根状茎为外植体,采用B5基本培养基,并附加不同浓度的6-BA、NAA、TDZ(苯基噻二唑基脲-thidiazuron)和S-3307(优康唑-uniconazole),对类原球茎的诱导、继代增殖、分化、生根等进行研究。结果表明:诱导类原球茎的最佳培养基为B5 TDZ0.50mgL-1 NAA0.25mgL-1,诱导率98.3%;继代增殖的最佳培养基为B5 S-33071.0mgL-1 NAA0.2mgL-1 蔗糖3.5%,增殖系数9.4;类原球茎分化的最佳培养基为B5 S-33070.75mgL-1 6-BA1.0mgL-1 NAA0.4mgL-1,分化率87.8%;最佳的生根培养基为1/2B5 NAA0.2mgL-1 活性炭0.05%,生根率达100%。 相似文献
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福建沙县山药炭疽病病原经形态学和培养特性观察,鉴定为辣椒炭疽菌,其菌丝和分生孢子在玻片上清水培养能产生附着胞。本文据此提出病害的防治措施。 相似文献
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Edward M. Lieberman Jonathan Pascarella Donald Brunder Pa''l T. Hargittai 《Journal of neurochemistry》1990,55(1):155-164
Crayfish axons exposed to a high or low extracellular K+ concentration ([K+]o) maintain intracellular Na+ and K+ concentrations constant, for up to 3 h, by adjusting both the Na+/K+ transport "coupling ratio" and turnover rate in compensation for changes in ion fluxes due to altered electrochemical gradients. These findings give rise to the prediction that the steady-state consumption of high-energy phosphate (approximately P) [ATP and phospho-L-arginine (Arg-P)] is inversely proportional to the [K+]o, i.e., directly proportional to the product of membrane conductance and magnitude of the transmembrane electrochemical gradients for Na+ and K+. This investigation was designed to test this hypothesis. The [K+]o did not influence total approximately P consumption (Q approximately P) of the axon. For a [K+]o between 0.5 and 21.6 mM, Q approximately P averaged 52.8 +/- 4.7%/h (n = 44) of the initial [ATP] + [Arg-P]. Unlike total Q approximately P, the ouabain-sensitive portion of Q approximately P was markedly influenced by [K+]o. In 0.5 mM K+o, ouabain poisoning reduced Q approximately P to 8%/h, a result indicating that 85% of the total Q approximately P was ouabain sensitive. For 1.35 mM K+o, the ouabain-sensitive portion was 66%; at 5.4 mM K+o, 45%; and at 13.5 mM K+o, 41%. There was a small but significant increase in the ouabain-sensitive Q approximately P at 21.6 mM K+o, compared with Q approximately P at 5.4 mM K+o. The pattern of effect of [K+]o on Q approximately P was similar to its effect on the electrical power content of the Na+ and K+ electrochemical gradients. In contrast to the generally accepted Na+ flux (JNa)/approximately P stoichiometry of 3, an actual ratio of JNa/approximately P stoichiometry of approximately 33:1 was calculated for the experiments reported here, a result suggesting that cells in a zero-membrane current steady state utilize efficient energy conservation mechanisms that may not operate under non-steady-state conditions. 相似文献
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Alexandra Mant Sarah Williams Laura Roncoroni Eleanor Lowry Daniel Johnson Ita O'Kelly 《The Journal of biological chemistry》2013,288(5):3251-3264
Two-pore domain potassium (K2P) channels play fundamental roles in cellular processes by enabling a constitutive leak of potassium from cells in which they are expressed, thus influencing cellular membrane potential and activity. Hence, regulation of these channels is of critical importance to cellular function. A key regulatory mechanism of K2P channels is the control of their cell surface expression. Membrane protein delivery to and retrieval from the cell surface is controlled by their passage through the secretory and endocytic pathways, and post-translational modifications regulate their progression through these pathways. All but one of the K2P channels possess consensus N-linked glycosylation sites, and here we demonstrate that the conserved putative N-glycosylation site in K2P3.1 and K2P9.1 is a glycan acceptor site. Patch clamp analysis revealed that disruption of channel glycosylation reduced K2P3.1 current, and flow cytometry was instrumental in attributing this to a decreased number of channels on the cell surface. Similar findings were observed when cells were cultured in reduced glucose concentrations. Disruption of N-linked glycosylation has less of an effect on K2P9.1, with a small reduction in number of channels on the surface observed, but no functional implications detected. Because nonglycosylated channels appear to pass through the secretory pathway in a manner comparable with glycosylated channels, the evidence presented here suggests that the decreased number of nonglycosylated K2P3.1 channels on the cell surface may be due to their decreased stability. 相似文献
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地生兰(Cymbidium)个体发生途径研究 总被引:1,自引:0,他引:1
王熊 《植物生理与分子生物学学报》1990,(3)
地生兰的类原球茎体(PLB)在不加激素的1/2 MS培养基上驯化培养,获得“无需外源激素仍能增殖的无性系(PLB-O)”,已继代5年,不分化芽和根。连续光照有利于PLB-O分生区的增殖,8h光照的次之,黑暗中增殖速度最低。PLB培养在含10%椰乳的1/2 BMS液体培养基中,随继代培养进程,形成分枝更多的丛生型PLB,约4个月后,在PLB顶端开始形成植株。兰花离体培养中,在同一个培养物中,同时存在着处于不同发育时期的分生区、原球茎、芽和小植株。PLB培养在含1/2BMS+6BA 2mg/L+NAA 0.2 mg/L的培养基中,同一个丛生型PLB上,因分生区和PLB的发育年龄的不同,形成不同发育年龄的幼芽。 相似文献