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1.
采用溶液培养方法,研究了氮素形态及水平对黄瓜干物质积累、膨压及光合速率的影响。结果表明,同一氮素水平时,NO3--N处理黄瓜干物质重量、叶片面积、叶片含水量、水势、膨压等均高于NH4+-N处理。低水平NH4+-N(5mmol/L)对黄瓜光合速率影响不大,甚至高于同水平NO3--N处理的,叶片面积稍有减小;高水平NH4+-N不仅显著抑制黄瓜干物质的积累,叶片面积仅是同水平NO3--N处理的12.7%,最小光合速率(Pn)为CO2 1.6mol/(m2·s),仅为同水平NO3--N处理的10%左右。NH4+-N处理引起黄瓜叶片面积的减小与叶片膨压降低相关性较大,相关系数为0.98;膨压与叶片水势直接相关,而渗透势对此影响不大。高水平NO3--N对黄瓜产生了渗透胁迫,抑制黄瓜生长,表现在渗透调节物质的大量积累。不同黄瓜品种对氮素形态及水平响应差异较大,所有处理中新泰密刺长势均好于吉尼罗。低水平的NH4+-N对黄瓜干物质的积累影响不大,高水平则明显抑制其生长。说明高浓度铵态氮对植物产生了毒害,而高浓度的硝态氮则是渗透胁迫。  相似文献   

2.
淹涝胁迫和氮形态对苗期玉米糖、氮代谢底物量的影响   总被引:1,自引:0,他引:1  
采用砂培培养方法,比较研究淹水和不同氮形态(铵态氮、硝态氮以及铵态氮︰硝态氮为1︰1)对苗期玉米根、茎鞘和叶的糖、氮代谢底物——可溶性糖、还原糖、硝态氮和游离氨基酸等物质含量的影响。结果表明,当淹涝胁迫持续7 d时,在非淹涝胁迫条件下,铵态氮处理的根、茎鞘和叶的可溶性糖和游离氨基酸含量均显著高于硝态氮处理(P<0.05);在淹涝胁迫条件下,硝态氮处理的根、茎鞘和叶的生物量干重显著低于铵态氮处理(P<0.05),其根和叶的生物量干重也显著低于铵态氮、硝态氮混合处理(P<0.05)。与非淹涝条件相比,在淹涝胁迫条件下,硝态氮处理的根系和叶的硝态氮含量显著降低(P<0.05),降低幅度分别高达62.6%和30.0%;此外,与非淹涝条件相比,在淹涝胁迫条件下,铵态氮处理的根的可溶性糖、还原糖以及游离氨基酸含量,茎鞘的可溶性糖和还原糖含量以及叶的可溶性糖和游离氨基酸含量均显著升高(P<0.05),而硝态氮处理仅根、茎鞘和叶的还原糖含量以及叶的游离氨基酸含量显著升高(P<0.05)。因此,在本试验条件下,由于糖、氮代谢底物含量充足,铵态氮处理的苗期玉米具有相对较强的耐淹涝胁迫能力。  相似文献   

3.
通过调查分析,研究了土长期施肥条件下土壤中矿质氮含量变化及其与地上冬小麦叶片SPAD值。结果表明:(1)整个冬小麦生长期不同土层硝态氮和铵态氮的变化趋势不一致,硝态氮含量是先下降后上升的变化,而铵态氮含量呈一直上升的变化趋势。在没有施过氮肥的处理中,0—20cm,20—40cm土层中土壤硝态氮、铵态氮含量显著低于施用氮肥的处理;(2)冬小麦生长时期,各个处理叶片SPAD值各异,但都是先升高后下降的变化,无氮肥施用的叶片SPAD值低于施氮肥的处理;(3)冬小麦各个生长时期叶片SPAD值与土壤不同层次(0—20cm,20—40cm)硝态氮含量呈正相关关系,而与铵态氮含量相关性不显著,这表明小麦是对硝态氮较为敏感的作物。本试验结果可以为进一步合理调控氮肥施用、明确施氮对小麦产量和品质的影响提供一定的基础依据。  相似文献   

4.
利用溶液培养试验,研究了不同氮素形态下小麦叶片光合气体交换参数对蒸汽压亏缺(VPD)的反应,以揭示不同氮素形态影响水分利用效率(WUE)的生理机制。结果表明:铵态氮处理显著降低了小麦的叶面积和根长,提高了小麦的瞬时和长期水分利用效率。不同氮素形态下,叶片光合气体交换参数对蒸汽压亏缺的反应不同。随VPD增加,硝态氮处理的净光合速率无变化,但铵态氮和硝酸铵处理的净光合速率则明显下降。所有处理的叶片气孔导度均随VPD增加而下降,其中硝态氮和硝酸铵处理的下降幅度明显高于铵态氮处理。硝态氮和硝酸铵处理的细胞间隙CO2浓度也随VPD增加而下降,但铵态氮处理未发生变化。所有氮处理的蒸腾速率均随VPD增加呈现出二次抛物线变化,叶水势并未随VPD增加发生变化,表明气孔对VPD的反应符合前馈机制。3个处理的瞬时WUE均随VPD增加而下降,高VPD下铵态氮引起小麦叶片气孔的关闭是其WUE提高的重要原因之一。  相似文献   

5.
采用营养液培养法研究了不同氮源和钾水平对杂交稻及其亲本和常规稻生长、叶绿素含量、养分吸收的影响。结果表明 ,水稻生长、叶绿素的含量及养分吸收与氮源供应密切相关。在供钾充足的条件下 ,杂交稻上位叶的干物质产量以硝态氮营养的最高 ,其次为硝态氮与铵态氮混合营养 ;保持系与杂交稻的趋势一致。杂交稻下位叶和根系干物质积累量受 3种氮源的影响与恢复系相一致 ,即 :硝 +铵混合 硝态氮 铵态氮。硝态氮营养比硝 +铵混合及铵态氮更有效地提高杂交稻功能叶片中的叶绿素含量。杂交稻与其亲本植株地上部全氮含量受 3种氮源的影响为 :硝 +铵混合 硝态氮 铵态氮 ;然而杂交稻地上部的吸氮量受氮源的影响为硝态氮硝 +铵混合 铵态氮 ,与保持系的规律一致。杂交稻地上部钾含量及吸收量在 3种氮源处理间有差异 ,表现为硝态氮 硝 +铵混合 铵态氮 ,保持系的趋势一致 ,但与恢复系不同。研究结果还表明 ,杂交稻对硝态氮的营养特性具有明显杂种优势。 3种氮源对水稻生长、营养吸收的影响程度与钾营养状况及水稻品种有关 ;杂交水稻及其亲本较常规稻受影响更大。在高钾供应时 ,各项指标受到氮源影响的程度都明显高于低钾处理 ,其中以硝态氮为氮源更有利于杂交水稻生理及营养优势特性的发挥。  相似文献   

6.
不同氮素形态及其比例对菘蓝生物学特性的影响   总被引:3,自引:0,他引:3  
采用砂培法栽培菘蓝,以菘蓝叶与根的干重、 主根长度与直径、 叶绿素含量和光合参数为指标,研究三种氮素形态,即硝态氮(NO-3-N)、 铵态氮(NH+4-N)和酰胺态氮[CO(NH2)2-N]四种不同浓度对菘蓝生物学性质的影响,为菘蓝栽培生产中高效利用氮肥提供理论依据。结果表明,氮素处理能增加菘蓝叶与根的干重,铵态氮对菘蓝主根长度及侧根数的影响最显著,而酰胺态氮与硝态氮对主根直径的影响相近,硝态氮对菘蓝的叶干重、 根干重与根冠比的影响最为显著;不同形态氮素处理能显著提高叶绿素含量与净光合速率,硝态氮对叶绿素和净光合速率有显著影响,酰胺态氮对气孔导度与蒸腾速率的影响最显著,铵态氮对叶片的胞间二氧化碳浓度有显著影响。不同形态氮素通过对菘蓝叶片的叶绿素含量和光合参数的影响实现对其生长状况的影响,其中硝态氮对菘蓝生长的影响最为显著。  相似文献   

7.
氮素形态和光照强度对烟草生长和H2O2清除酶活性的影响   总被引:46,自引:3,他引:43  
氮素形态和光照强度对烟草植株生长和H2O2清除酶活性影响的研究结果表明,在弱光下,氮素形态不影响植株生长,但在强光下,铵态氮明显抑制植株的生长。弱光下供应按态氮叶片叶绿素含量显著地高于供应硝态氮的叶片;而强光下供应铵态氮叶片单位鲜重叶绿素含量反而显著地低于供应硝态氮的叶片。强光下供应按态氮的叶片中MDA含量明显高于供应硝酸盐的叶片,但在弱光下则无明显的差异。供应硝态氮叶片中AsA含量高于供应铵态氮的叶片;但供应铵态氮叶片中DAsA含量高于供应硝态氮叶片,尤其是强光下其差异更大。光照强度的增加明显提高AsA-POD、MDAsA还原酶、DAsA还原酶和GSSG还原酶活性。强光下供应镀态氮叶片中AsA-POD和GSSG还原酶活性明显地高于供应硝态氮的叶片,而MDAsA还原酶活性则相反。弱光下供应铵态氮叶片AsA-POD和MDAsA还原酶活性明显高于供应硝态氮的叶片,而GSSG还原酶活性的差异则不显著。铵态氮不显著提高DAsA还原酶的活性。SOD和CAT活性在各处理之间差异不明显。增加光照强度和供应铵态氮都明显地提高AsA氧化酶活性。  相似文献   

8.
不同供氮形态下油菜幼苗对盐胁迫的响应   总被引:3,自引:2,他引:1  
为比较不同供氮形态下油菜对盐胁迫的响应,通过供应铵态氮和硝态氮,探讨盐胁迫对油菜幼苗生物量、 光合作用、 离子含量等的效应。结果表明: 非盐胁迫条件下的硝态氮处理的植株生物量和叶片光合参数均显著高于其它处理; 在盐胁迫条件下,两种供氮形态处理油菜的生长和光合均受到明显抑制,其中铵态氮处理表现的抑制效应较显著,且其光合抑制主要来自气孔限制。在两种供氮条件下,盐胁迫使得植株Na+浓度均显著增加,其中铵态氮处理的叶片和叶柄中Na+浓度的增幅大于硝态氮处理,而其根中Na+浓度则小于硝态氮处理。盐胁迫导致两种供氮形态下整株和叶柄中K+浓度均显著降低,而在根中,则只造成硝态氮处理的K+浓度的显著降低。在整株水平上,盐胁迫下铵态氮处理的K+ 、 Na+的选择性比率(SK,Na)要显著低于硝态氮处理。综上,在盐胁迫条件下,硝态氮处理对K+吸收维持较高的相对选择性是其耐盐性高于铵态氮处理的重要原因。  相似文献   

9.
菌肥与有机无机肥配施对石灰性土壤不同形态氮素的影响   总被引:1,自引:0,他引:1  
利用不同施肥处理对山西省晋中市石灰性土壤几种不同形态氮素含量的变化及其相关性进行研究。结果表明:每个施肥处理施入等量的氮(N)、磷(P2O5),土壤的铵态氮、硝态氮及微生物氮含量都在逐年增加,其中有机肥+化肥+菌肥处理对提高土壤铵态氮作用明显;单施有机肥处理对提高土壤硝态氮效果显著,与有机肥+化肥+菌肥、有机肥+化肥处理效果差异性不显著;有机肥+化肥+菌肥处理对土壤微生物氮效果最明显,有机肥+化肥效果次之,两处理差异显著。土壤铵态氮和硝态氮含量呈显著正相关;微生物氮与铵态氮、硝态氮含量相关性都不好;菌肥与有机无机肥配施后,菌肥对于提高土壤微生物氮最显著(10.09%),铵态氮次之(6.24%),硝态氮不明显(2.05%),因此虽然添加了菌肥,但是没有完全改变"有机肥+化肥+菌肥"仍然是"有机肥+化肥处理"的本质属性。  相似文献   

10.
采用叶面淋施的盆栽试验方法,以我国菠萝主栽品种-巴厘为试材,研究不同形态氮素对盆栽菠萝营养生长和菠萝叶片黄化的影响,为菠萝氮肥合理施用提供参考。试验结果表明,叶面淋施硝态氮处理的菠萝根、茎叶生物量显著低于叶面淋施铵态氮、酰胺态氮,黄叶数显著高于叶面淋施铵态氮、酰胺态氮。与铵态氮相比,硝态氮处理的菠萝总叶数、根数目、根重、茎叶重分别减少18.7%、26.5%、49.7%、43.5%,黄叶数增加192.7%。叶面淋施硝态氮抑制菠萝营养生长主要机理是硝态氮提高了土壤p H值,减少了铁吸收,降低菠萝叶片中全铁、活性铁、叶绿素含量(与铵态氮相比,分别减少25.9%、66.9%、23.2%)。  相似文献   

11.
氮形态和硫水平对烤烟氮、硫、钾等营养的影响   总被引:4,自引:0,他引:4  
刘勤 《土壤通报》2006,37(6):1171-1174
红壤和潮土培育烤烟,100%铵态氮、100%硝态氮和50%铵氮+50%硝氮等3种氮形态和2种硫施用量的盆栽试验研究表明,增加硝态氮肥供给比例,有利于烤烟生长,烟株叶片干重、株高、干径增加。施硫增加,各叶位全硫含量均显著增加,下部叶片明显累积较多的硫。硝态氮处理红壤和潮土生长烟叶硫含量降低。烟叶氮含量也受供氮形态影响,硝态氮供给比例增加,烟叶全氮含量均较高。供硫增加,烟叶钾含量下降;100%铵氮处理烟叶钾累积较多,NH4+没有抑制K的吸收。  相似文献   

12.
Abstract

Nowadays, off-season leafy vegetables are generally characterized by low vitamin C (Vc) content and high nitrate accumulation due to low light intensity inner protected systems and high-level nitrogen supply. A glasshouse experiment was conducted to investigate the effects of three kinds of nitrogen-free solution treatments before harvest on Vc and nitrate contents in expanded leaf blades, expanded leaf petioles and old leaves of hydroponic lettuce. The results showed that using nitrogen-free solutions could decrease nitrate contents of expanded leaf blades, expanded leaf petioles and old leaves, also nitrate contents in above parts reduced increasingly with treatment time extending. In addition, three nitrogen-free solution treatments increased the Vc content of expanded leaf blades instead of expanded leaf petioles and old leaves. There were instead of significant positive correlations between nitrate contents but Vc contents of expanded leaf blades, expanded leaf petioles and old leaves. To conclude, nitrogen disruption treatment before harvest could effectively reduce nitrate contents in edible parts of lettuce, and also improve Vc content in expanded leaf blade.  相似文献   

13.
The assimilation of ammonium and nitrate nitrogen into amino acids of mature sunflower leaves and their transport to the other plant parts were investigated using nitrogen-15 as a tracer. In the leaf, to which 15N-labelled ammonium was vacuum-infiltrated, the 15N content of glutamine was always the highest of the amino acids tested and that of alanine was higher than that of glutamic acid and aspartic acid at 15 min after the infiltration. On the other hand in the leaf to which 15N-labelled nitrate was vacuum-infiltrated, the 15N content of glutamic acid and aspartic acid was superior to that of glutamine. The incorporation of 15N into serine was not active in the case of either 15N-labelled ammonium or nitrate. In the internodes above and below the treated leaf, through which photosynthates were transported into other parts, the 15N content of γ-aminobutyric acid and glutamine was markedly high when both nitrogen sources were supplied. There were no differences in the labelling patterns of amino acids between the upper and lower internodes. From these results it may be concluded that glutamine, glutamic acid, and aspartic acid play an important role in the assimilation of ammonium and nitrate nitrogen in leaves and that nitrogen is transported mainly in the forms of γ-aminobutyric acid and glutamine from the leaves to the other plant parts,  相似文献   

14.
Abstract

A glasshouse experiment was conducted to investigate the effects of five days’ treatment before harvest with various light intensities and seven hydroponic solutions on nitrate reduction in lettuce. The results showed that SPAD of new and expanded leaves were elevated by most of the hydroponic solutions under shading compared with the full nutrient solution, while no effect was demonstrated under non-shading. Additionally, lettuces under non-shading presented slightly higher leaf SPAD than those under shading. Nitrate concentrations of lettuce new leaves, expanded leaves and petiole were lowered significantly by all hydroponic solutions under shading and non-shading conditions compared with the full nutrient solution. Under non-shading, the efficiencies of seven hydroponic solutions varied largely, but no efficiency differences were showed under shading. N-free solution, 0.75 mM potassium sulphate solution and 5×10?5 mM ammonium molybdate solution functioned more efficiently in reducing nitrate concentration both in expanded leaves and petiole of lettuce before harvest. In conclusion, proper light intensity is a key important factor that determines the efficiencies of nitrogen-free hydroponic solution treatments in lowering nitrate concentrations in leaf blades and petioles of lettuce before harvest.  相似文献   

15.
氮饥饿水稻利用不同形态氮素的差异及其生理机制   总被引:8,自引:0,他引:8  
通过水培试验,研究了氮饥饿7d后,恢复供应不同形态氮源对水稻氮吸收和积累及氮同化中关键酶活性和光合色素的影响。结果表明,缺氮促进根系生长,增加根冠比。恢复供氮4d显著增加地上部生物量。铵硝混合营养促进了水稻对氮的吸收和转运,叶片和根系中全氮及叶片中铵态氮的含量以硝酸铵处理最高。与单一铵或硝营养相比,铵硝混合营养增强了根系的谷氨酰胺合成酶和叶片中硝酸还原酶的活性,提高了水稻同化和利用氮的能力。另外,与纯硝营养相比,供应铵态氮显著增加了叶片中总叶绿素,尤其是叶绿素a的含量。因此,改善水肥管理、平衡对水稻供氮的铵硝配比将提高水稻氮素的吸收和利用效率。  相似文献   

16.
Both drought and salinity cause nutrient disturbance, albeit for different reasons: a decrease in the diffusion rate of nutrients in the soil and the restricted transpiration rates in plants for drought and extreme soil sodium (Na)/calcium (Ca), Na/potassium (K), and chloride (Cl)/nitrate (NO3) ratios for salinity. The objective of this study was to examine short-term effects of drought and salinity on nutrient disturbance in wheat seedlings. Wheat was grown in a greenhouse in soil under drought and saline conditions for 26 days after sowing. At harvest, shoot biomass and length, and fresh weight and dry weight of the blade and sheath in expanded leaves 3 and 4 and expanding leaf 5 were determined. Mineral elements (K, Ca, magnesium (Mg), phosphorus (P), nitrogen (N), Na, sulphur (S), iron (Fe), zinc (Zn), and manganese (Mn)) in leaf blades and sheaths were also analyzed. At harvest, the reduction in plant height, shoot biomass, and accumulative evapotranspiration under drought was similar to that under salinity as compared with control plants. However, drought decreased the accumulation of all ions in the blade of the youngest leaf 5 compared with the control, whereas there was either an increase or no difference in all ion concentrations under saline conditions. The change in concentration for most ions in the blade and sheath of expanded leaves 3 and 4 varied among control, drought, and salinity plants, which indicated a different competition for nutrients between the sheath and blade of expanded leaves under drought and saline conditions. It can be concluded from this study that ion deficiency might occur in expanding leaves under drought but not saline conditions.  相似文献   

17.
The main objective of the present work was to clarify the causal relationship between leaf apoplastic pH increase and Fe chlorosis under alkaline growth conditions. It has been shown that nitrate supply in contrast to ammonium supply induced a pH increase in the apoplast of young green leaves of Helianthus annuus which was followed within 12 hours by leaf yellowing. Hence nitrate nutrition is the primary cause of a high leaf apoplastic pH which induces Fe deficiency chlorosis and not the impaired provision of ATP for plasmalemma H+ pumps in yellow leaves. Supply of bicarbonate in physiological concentrations had virtually no influence on leaf apoplastic pH. Spraying leaves with diluted acids (citric acid, sulphuric acid) resulted in a decrease of apoplastic pH followed by leaf re-greening. Interestingly, the Fe concentrations remained the same in the yellow control leaves and in the sprayed green leaves. From this it follows that Fe efficiency in leaves is mainly related to the Fe distribution between apoplast and symplast. It was demonstrated that Fe chlorosis induced by nitrate nutrition begins from the base of the youngest leaves, presumably from growing interveinal microsites showing high nitrate uptake rates. Leaf yellowing spread gradually from the leaf base to the tip and after seven days of nitrate supply the leaf was almost completely yellow (98%). Leaf yellowing was measured by means of a video imaging technique. Leaf apoplastic pH recordings were conducted after loading the fluorescent dye FITC-Dextran (4000 D) into the leaf apoplast of intact plants thus simulating in vivo conditions. It was also shown using the new loading technique that the fluorescent dye did not penetrate the leaf symplast.  相似文献   

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