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1.
采用砂培方法, 在温室内将一年生核桃(Juglans regia)嫁接苗木和绿豆(Vigna radiata)进行间作, 研究绿豆对核桃苗木生长、水分平衡和光合特性的影响。该研究设有5种处理, 即: 对照(核桃单作, 正常供应氮素); 核桃单作, 不添加氮素; 核桃绿豆间作, 不添加氮素; 核桃绿豆间作, 正常供应氮素; 绿豆单作, 不添加氮素。结果显示: 种植绿豆可以增加土壤氮含量和核桃茎内氮含量, 但对核桃叶和根系中的氮含量影响不明显。种植绿豆显著增加不施氮核桃的高生长和直径生长, 但降低了正常供氮核桃的生长。无论种植绿豆与否, 不供氮处理降低了核桃的总叶面积, 提高了根冠比。核桃叶片气孔气体交换对各处理的响应和生长有相同的趋势。缺氮显著降低了核桃叶柄在中午的导水率、提高了导水损失率; 种植绿豆显著提高不供氮核桃的导水率而且明显降低了其导水损失率。然而, 种植绿豆使正常供氮的核桃降低了导水率, 加剧了导水损失率。同时, 绿豆受到间作的竞争压力, 产量和生物量有所下降。由研究结果可知, 在贫瘠的土壤上, 固氮植物绿豆改善了间作的核桃的氮营养, 有益于核桃木质部发育、水分平衡以及光合代谢。但是在氮充足的土壤中, 种植绿豆反而降低了核桃的水分供应, 影响其气体交换和生长。  相似文献   

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核桃(Juglans regia)向南推广种植不可避免地会遇到土壤酸化和缺磷的环境, 这种环境如何影响核桃的生长是生产中需要知晓的基础问题。该文研究了土壤不同pH值对核桃的磷素营养影响以及缺磷对核桃幼苗水分平衡、光合特性和生长的影响。在温室内采用砂培盆栽试验, 研究一年生核桃嫁接幼苗在不同pH值、磷水平基质中的水分关系、光合特性和生长的应对机制。研究设4种处理, 即: 对照(正常供应磷素+ pH 6.0); 正常供应磷素+ pH 3.0; 不添加磷素+ pH 6.0; 不添加磷素+ pH 3.0。结果显示: pH值与磷素对核桃幼苗的影响是两个相互独立的过程, 酸性(pH值3.0)条件下, 核桃幼苗根系生物量降低、根冠比减小, 根系导水率降低, 对磷素的吸收利用减少, 尽管其供磷正常, 但各生长指标及生理指标与磷胁迫条件下反应相似; 两因素具有一定的叠加性, 在磷胁迫条件下, 酸化(pH值3.0)对核桃幼苗的损害进一步加剧。各指标具体变化如下: 酸化及磷胁迫条件下核桃根系水分导度降低, 叶柄木质部结构改变, 导管密度降低, 木质部导管栓塞程度增加, 叶柄导水率下降, 植株水分运输效率降低, 叶片水势降低, 诱导气孔关闭; 气孔导度降低, 光合作用能力下降; 胁迫条件下, 叶绿素荧光参数最大光化学效率低于0.8, 实际光化学效率、光化学淬灭下降, 非光化学淬灭增加, 核桃幼苗受胁迫环境损害, 叶片光系统II光合电子传递活性受到抑制, 光合能力下降。总之, 土壤酸化抑制了核桃幼苗对磷元素的吸收利用, 造成体内缺磷; 磷胁迫及酸化抑制了叶柄木质部的发育, 降低了根系水分导度和叶柄导水率, 干扰了核桃幼苗水分平衡, 通过气孔与非气孔共同调节, 限制了核桃幼苗光合作用, 抑制了核桃幼苗高生长、直径生长及叶面积增加; 但并没有发现土壤酸化和缺磷之间有明显的交互作用。  相似文献   

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  • The introduction of N2-fixing species into a Eucalyptus plantation resulted in a successful planting system. It is essential to understand the contribution of nitrogen (N) competition and photosynthetic efficiency to plant dry matter yield to shed more light on the growth mechanism of the Eucalyptus/legume system.
  • We compared N competition, photosynthesis and dry matter yield of Eucalyptus urophylla × E. grandis and the N2-fixing tree species Dalbergia odorifera in intercropping and monoculture systems under different N levels.
  • The photosynthesis of E. urophylla × E. grandis was improved, while that of D. odorifera was inhibited in the intercropping system. Intercropped E. urophylla × E. grandis increased the N utilization and the dry matter yield by 6.57–48.46% and 7.59–97.26%, and decreased those of D. odorifera by 10.21–30.33% and 0.48–13.19%, respectively. Furthermore, N application enhanced the competitive ability of E. urophylla × E. grandis relative to D. odorifera and changed the N contents and chlorophyll synthesis to optimize the photosynthetic structure of both species.
  • Our results reveal Eucalyptus for photosynthesis, N absorption and increasing the growth benefit from the introduction of N2-fixing species, which hence can be considered to be an effective sustainable management option of Eucalyptus plantations.
  相似文献   

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暖温带落叶阔叶林在维护区域生态系统功能和平衡中起着重要的作用, 研究其在氮添加下的生长和生理生态响应, 有助于深入理解暖温带落叶阔叶林在全球氮沉降背景下的生长和变化规律。该研究通过在北京东灵山落叶阔叶林的模拟氮沉降控制实验, 以优势种辽东栎(Quercus wutaishanica)和伴生种五角枫(Acer pictum subsp. mono)为研究对象, 设置对照和氮添加2种处理, 每种处理4个重复, 对照样地不做处理; 氮添加样地施加尿素(CO(NH2)2), 总的氮添加量为100 kg·hm -2·a -1, 测定氮添加对其生长和光合生理生态特征的影响。结果显示: 氮添加显著提高了两个树种的净光合速率、蒸腾速率、叶绿素含量, 同时扩大了叶片光系统II反应中心电子传递体库, 增加了基于光合电子流驱动的初级受体醌(QA)被还原的周转次数。氮添加也增加了两个树种当年生枝条的长度和生物量, 同时在一定程度上提高了辽东栎种子的质量。辽东栎光合作用氮利用效率、枝条生物量对氮添加的响应程度明显超过五角枫。在未来氮沉降加剧的情景下, 东灵山暖温带落叶阔叶林优势种辽东栎的优势地位会进一步加强。  相似文献   

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林木对不同形态氮素具有选择性吸收特征,铵态氮和硝态氮是植物吸收的主要氮素形态.为了明确刨花楠对铵态氮和硝态氮的吸收差异,采用盆栽试验方法,以铵态氮和硝态氮为氮源,以1年生刨花楠实生苗为研究对象,以当地山地红壤为基质,设置了7种不同的铵硝比配施添加试验,研究氮素形态和配比对刨花楠幼苗生长和叶片性状的影响.结果 表明:不同...  相似文献   

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施氮量对麻疯树幼苗生长及叶片光合特性的影响   总被引:7,自引:0,他引:7  
采用盆栽土培的方法,研究了不同施氮量(对照N0 0 kg N/hm2、低氮NL 96 kg N/hm2、中氮NM 288 kg N/hm2、高氮NH 480 kg N/hm2)对麻疯树幼苗生长、叶片气体交换及叶绿素荧光参数的影响。结果表明,麻疯树幼苗叶片氮含量、可溶性蛋白含量、株高、地径、叶片数量、叶面积、根长、各组分生物量、叶片净光合速率(Pn)、气孔导度(Gs)、蒸腾速率(Tr)和水分利用效率(WUE)均随施氮量的增加先升高后降低,NM处理下麻疯树幼苗长势最好,各气体交换参数值最高;施氮对麻疯树地上部分的促进作用远大于地下部分,施氮后根冠比显著降低;此外,麻疯树叶绿素含量、PSⅡ最大光化学量子产量(Fv/Fm)、PSⅡ有效量子产量(F'v/F'm)、PSⅡ实际光化学效率(ΦPS)、电子传递速率(ETR)和光化学淬灭系数(qP)均随施氮量的增加而升高,非光化学淬灭系数(NPQ)随施氮量增加而降低。适量施氮可通过增强叶绿体光化学活性、气孔导度和羧化能力而提高麻疯树幼苗的光合能力,促进生长;过高施氮对麻疯树幼苗光合与生长的促进效应降低。试验条件下,当年生麻疯树幼苗的最适施氮量为288 kg N/hm2。  相似文献   

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Summary We studied the effects of nitrogen supply on growth, allocation, and gas exchange characteristics of two perennial grasses of dry, nutrient-poor inland dunes: Corynephorus canescens (L.) Beauv. and Agrostis vinealis Schreber. C. canescens invests more biomass in leaves and less in roots, but has less leaf area and more root length per unit plant weight than A. vinealis. A. vinealis invests more nitrogen per unit leaf weight, but less per unit leaf area, despite a similar relative nitrogen investment in leaves and plant nitrogen concentration. Between-species differences in the rate of net photosynthesis, transpiration and shoot respiration are positively related to leaf nitrogen content per unit leaf area. The rate of net photosynthesis per unit plant weight is higher for A. vinealis at both levels of nitrogen supply, due to differences in leaf area ratio (LAR), and despite the reverse differences in the rate of net photosynthesis per unit leaf area. The water use efficiency of the two species is similar and increases significantly with an increase in nitrogen supply. The photosynthetic nitrogen use efficiency on the other hand is not affected by nitrogen supply, while at both low and high nitrogen supply A. vinealis has a 10% higher photosynthetic nitrogen use efficiency than C. canescens.  相似文献   

9.
We report the unexpected novel finding that exogenously supplied atmospheric NO2 at an ambient concentration is a plant vitalization signal to double shoot size and the contents of cell constituents. When seedlings of Nicotiana plumbaginifolia were grown for 10 wk under natural light and irrigation with 10 mm KNO3 in air containing (+NO2 plants) or not containing (-NO2 plants) 15NO2 (150 +/- 50 ppb), shoot biomass, total leaf area, and contents per shoot of carbon (C), nitrogen (N), sulphur (S), phosphorus (P), potassium (K), calcium (Ca), magnesium (Mg), free amino acids and crude proteins were all approximately 2 times greater in +NO2 plants than in -NO2 plants. In mass spectrometric analysis of the 15N/14N ratio, it was found that NO2-derived N (NO2-N) comprised < 3% of total plant N, indicating that the contribution of NO2-N to total N was very minor. It thus seems very likely that the primary role of NO2 is as a multifunctional signal to stimulate plant growth, nutrient uptake and metabolism.  相似文献   

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BACKGROUND AND AIMS: In the last decade, the number of young plants of Ulmus pumila in the Hunshandak Sandland has decreased sharply because of severe sand burial, and their ecological protective function has been weakened. In order to develop an understanding of the tolerance of U. pumila to sand burial and to suggest reasonable measures to protect the sparse-elm-grassland ecosystem, the effects of burial on the survival, growth, photosynthesis and biomass allocation in U. pumila were studied. METHODS: Seedlings were buried at five different depths in pot experiments: no burial (control), partial burial (33 % and 67 % stem height), and complete burial (100 % and 133 % stem height). Growth analyses and measurements of photosynthesis were carried after the plants had been uncovered. KEY RESULTS: All the plants survived partial burial, but about 30 % and 80 % of the seedlings died as a result of the 100 % and 133 % sand burial treatments, respectively. The numbers of newly produced leaves and branches, and the height of the stems of the seedlings in the 33 % and 67 % burial treatments during the period of the experiment were significantly greater than those in the control. Furthermore, net photosynthetic rate, transpiration rate and water use efficiency were also elevated by the partial burial, but not affected by burial time. This might be attributed to the increased root length, which improved water acquisition. The biomass and biomass allocation of the seedlings were significantly changed by the burial treatments and burial times. The biomass was enhanced by partial burial but was reduced by complete burial at each burial time. However, the biomass allocation was not significantly changed by the 33 % and 67 % sand burial treatments 2 or 4 weeks following the burial. CONCLUSIONS: Ulmus pumila was shown to be tolerant to partial sand burial, but must be protected from complete burial.  相似文献   

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Ni胁迫对不同基因型谷子幼苗生长及氮素代谢的影响   总被引:1,自引:0,他引:1  
崔秀秀  张义贤 《生态学报》2015,35(10):3244-3251
采用盆栽土培法,研究了不同浓度Ni2+(0、25、50、100、150、200 mg/kg)对4种基因型谷子(13-36、B-7、晋谷51号、晋谷52号)幼苗生长,Ni2+富集与转运能力,叶片中硝态氮、氨态氮、可溶性蛋白质、脯氨酸含量及氮代谢相关酶硝酸还原酶(NR)、谷氨酰胺合成酶(GS)、谷氨酸合酶(GOGAT)、谷氨酸脱氢酶(GDH)活性的影响。结果表明:Ni2+胁迫下,4种基因型谷子幼苗的根长、苗长、生物量随Ni2+浓度增加逐渐降低,体内Ni2+含量逐渐增加,与对照组差异显著(P0.05)。在所试浓度范围内,4种基因型谷子幼苗叶片中的硝态氮含量、NR、GS、GOGAT活性表现为低浓度(25—50mg/kg)增高和高浓度(50—200 mg/kg)降低,而GDH活性在Ni2+浓度为100mg/kg以上时下降,氨态氮含量在50—150 mg/kg处理组中为对照的1.14—3.02倍。不同浓度Ni2+处理后,4种基因型谷子幼苗叶片中的脯氨酸含量均有不同程度的提高,而可溶性蛋白质含量呈明显下降趋势。实验结果证明,Ni2+胁迫抑制了谷子幼苗对硝态氮的吸收,降低了叶片中NR、GS、GOGAT活性,影响了氨的同化作用,使谷子幼苗的氮素代谢发生紊乱,不同基因型谷子对Ni2+胁迫的毒性效应存在差异。4种基因型谷子对Ni2+的耐性顺序为13-36B-7晋谷51晋谷52。  相似文献   

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研究了不同浓度的5-氨基乙酰丙酸(ALA)处理遮光环境对菘蓝(Isatisindigotica)生长和靛蓝、靛玉红含量的影响。结果表明:遮光显著降低菘蓝幼苗叶片叶绿素含量、光合气体交换参数、根长、根径、生物量以及靛蓝、靛玉红含量,而外源ALA处理可以缓解遮光对菘蓝营养生长、光合作用以及生物碱积累的抑制效应;其中,13.3~25mg·L-1的ALA对营养生长以及光合作用的促进效应最明显,而100mg·L-1的ALA对生物碱积累的促进效应最明显。作者建议,在弱光条件下,用低浓度ALA处理可以提高菘蓝生物学产量,而在生物碱积累期,用较高浓度ALA处理可以提高菘蓝的药用成分含量。  相似文献   

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以醋栗番茄( Solanum pimpinellifolium Linn.)、樱桃番茄品种‘秦皇贵妃红’( S. lycopersicum var. cerasiforme‘Qinhuangguifeihong’)和番茄品种‘浙粉202’(S. lycopersicum‘Zhefen 202’)幼苗为材料,研究了0(对照)、100、200 mmol·L-1 NaCl胁迫对其生长、叶片气体交换参数和离子平衡的影响。结果表明:在100和200 mmol·L-1 NaCl胁迫下,‘秦皇贵妃红’和‘浙粉202’幼苗单株总干质量的降幅较大,醋栗番茄的降幅较小。 NaCl胁迫明显增加醋栗番茄幼苗的根冠比,但不同胁迫条件下‘秦皇贵妃红’和‘浙粉202’幼苗的根冠比差异不显著。与对照相比,在100 mmol·L-1 NaCl胁迫下,醋栗番茄幼苗叶片的净光合速率( Pn)、胞间CO2浓度( Ci)和蒸腾速率( Tr)的降幅明显低于‘秦皇贵妃红’和‘浙粉202’,而醋栗番茄幼苗叶片气孔导度(Gs)的降幅明显高于后二者;在200 mmol·L-1 NaCl胁迫下,三者叶片Pn、Gs、Ci和Tr值的降幅接近。在100和200 mmol·L-1 NaCl胁迫下,醋栗番茄、‘秦皇贵妃红’和‘浙粉202’幼苗叶片的水分利用效率和气孔限制值均较各自对照显著升高,其中‘秦皇贵妃红’的增幅最大。在100和200 mmol·L-1 NaCl胁迫下,醋栗番茄、‘秦皇贵妃红’和‘浙粉202’幼苗根、茎和叶中Na+含量均较各自对照显著升高,而K+含量和K+/Na+比总体上较各自对照显著降低。与对照相比,经不同浓度NaCl处理后醋栗番茄幼苗根、茎和叶的Na+含量增幅以及K+含量降幅在供试3种植物中均最小,而其不同部位的K+/ Na+比总体上较高。上述研究结果表明:醋栗番茄的耐盐性较强,‘秦皇贵妃红’次之,‘浙粉202’较弱。 NaCl胁迫显著抑制‘秦皇贵妃红’和‘浙粉202’幼苗根的生长,但显著促进醋栗番茄幼苗根的生长,使其维持较强的耐盐性,且NaCl胁迫下醋栗番茄对Na+的吸收和运输减少,以维持体内的离子平衡及较强的光合作用。  相似文献   

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以霍格兰营养液为培养基质,采用15N同位素示踪技术,研究不同浓度15NO3--N (0、2.5、5、10和20 mmol·L-1,分别以N0、N1、N2、N3和N4表示)对平邑甜茶幼苗生长、光合作用、15N吸收、利用及分配的影响.结果表明:与其他处理相比,N2处理幼苗叶绿素含量、叶面积及各器官干质量最大.叶片净光合速率(Pn)随15NO3--N浓度的增加显著增大,但15NO3--N浓度超过N2处理后Pn略有下降.处理20 d时,N2处理幼苗根系活力最大,根系长度、根系总表面积和根尖数也显著高于其他处理.各处理间15N分配率差异显著,N2处理幼苗各器官间15N分配率最均衡,15N利用率也较高;随15NO3--N浓度增加,各处理幼苗全氮量和15N吸收量呈先升高后降低的趋势,且在N2处理时最大,分别为103.77和21.57 mg.处理12 d后,叶片硝酸还原酶(NR)活性以N2处理最高,N4处理最低,至第16天时,N4处理较N2处理降低了84.9%.因此,15NO3--N供应过低抑制幼苗光合作用及氮素吸收,15NO3--N供应过高则抑制幼苗体内硝态氮同化及根系生长,均不利于苹果幼苗生长及氮素营养吸收利用,适量供氮有利于苹果幼苗的生长、光合作用的提高,以及氮素的吸收、利用和分配.  相似文献   

19.
The relative rates of ammonium and nitrate-N uptake and assimilation by creeping bent ( Agrostis stolonifera ), were investigated for plants grown in soil and supplied with three different ratios of ammonium and nitrate-N. Following two preliminary defoliations, plants were supplied with the equivalent of 150 kg N ha−1, given as 15N-(differentially) labelled NH4+ and NO3-N in three different ratios (20:80, 50:50 and 80:20), followed by sequential destructive harvests of shoots and roots at four points during a 35-d regrowth period. Maximum use of labelled nitrogen and 'exhaustion' of soil mineral nitrogen reserves occurred much earlier when plants were supplied with half or more of their nitrogen as ammonium, than occurred when they were supplied predominately with nitrate-N. The lack of consistency in the patterns of ammonium and nitrate-N absorption, however, implied that the plants had no specific preference for either nitrogen form. Supplying plants with different combinations of ammonium and nitrate produced distinctive differences in plant morphology. In the high nitrate treatment, plants preferentially partitioned resources into shoot and stolon formation, whereas in the high ammonium treatment, resources were preferentially partitioned into root production. These changes in plant morphology might be adaptations to aid species survival in environments associated with a predominance of either nitrogen form.  相似文献   

20.
The effects of soil-water availability on leaf light acclimation and whole-plant carbon gain were examined in Arisaema heterophyllum Blume, a riparian deciduous forest understorey plant. Photosynthesis, above-ground morphology and ramet biomass accumulation (relative growth rate: RGR of a corm for a full leaf life-span) were measured on plants raised under three light treatments combined with two soil water conditions. The two higher light treatments during growth (high: max. 550 μmol photons m–2 s–1; medium: 150 μmol photons m–2 s–1) resulted in a twofold increase in RGRs, 30% higher photosynthetic capacities and 20% less photosynthetic low-light use efficiency than those under a low light condition (50 μmol photons m–2 s–1). Leaf area was the smallest and leaf mass area ratio was the largest under the high light treatment. Water stress decreased both photosynthetic rate and leaf area and, hence, RGR in all the light regimes. However, water stress did not alter the general patterns of physiological and morphological responses to different light regimes. We estimated that higher photosynthetic low-light use efficiency and larger leaf area in the low light leaf would lead to a threefold carbon gain as compared with the high light leaf under simulated low light conditions. Both experimental and simulation results suggest that the physiological and morphological acclimations tend to be beneficial to carbon gain when light availability is low, whereas they favor increased water use efficiency when light availability is sufficiently high. Electronic Publication  相似文献   

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