首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到16条相似文献,搜索用时 359 毫秒
1.
秋茄幼苗的形态特征及其生物量   总被引:2,自引:0,他引:2  
对秋茄一年生幼苗的主要形态指标及其生物量进行了测定。结果表明,株高,茎高,基径,根高,根长,叶面积以及胚,胚轴,茎,叶和全株生物量等计量指标,呈现算术平均值〉中值〉众值组段中点的规律,符合正偏态分布。  相似文献   

2.
沿海群众为了增加收入挖掘林下滩涂海洋经济动物可口革囊星虫,这是导致中国红树林退化的一个重要原因.本文研究了挖掘深度、弧度和频率3个因素对1年生白骨壤幼苗的苗高、基径、单叶面积、比叶面积、生物量和死根干质量等生长指标的影响,了解挖掘活动对红树林生长的影响机理,并筛选出红树林健康状况的评估指标.结果表明:挖掘活动使白骨壤幼苗的苗高和基径增长量、单叶面积、比叶面积和生物量显著减少,而死根干质量显著增加;挖掘深度和弧度对幼苗生长具有明显影响,但频率的影响不显著;当挖掘深度<5 cm、弧度<240°、每月2次以下时,对幼苗的伤害较轻,而挖掘深度>5 cm则会对幼苗造成严重影响.  相似文献   

3.
以两种红树植物白骨壤(Avicennia marina(Forsk.)Vierh.)和桐花树(Aegiceras corniculatum (L.) Blanco)幼苗为材料,在梯度海面高程的野外人工平台上开展了为期1a的淹水胁迫实验。3座平台作为重复,每座设置8个梯度,相邻梯度间高度相差10cm,幼苗立地基质平面的海面高程320~390cm。实验1a后测定1a幼苗的生长状况及与一些生理指标。结果表明:小高程生境对两种幼苗茎的纵向生长均有显著促进作用,但白骨壤幼苗茎生长高度是桐花树的7.5倍。与白骨壤相比,桐花树幼苗有较高的叶片保存率。白骨壤幼苗生物量在各器官分配为:茎〉根〉叶,3个器官平均所占比例分别为56.7%,25.7%和17.6%;桐花树则为:叶〉根〉茎,3个器官平均所占比例分别为49.6%,33.0%和17.4%。小高程生境对白骨壤幼苗全株生物量有较强的促进效果,桐花树幼苗则在中等高程生境中有较大生物量。在任一高程组,桐花树幼苗叶片叶绿素含量均大于白骨壤幼苗,但两种幼苗叶绿素a/b比值差异不显著。无论在叶片还是根系中,桐花树幼苗的活性氧清除酶类活性均高于白骨壤幼苗,表明在相同高程生境中桐花树幼苗比白骨壤幼苗面临更大的困难。综合实验结果和野外观察,可看出白骨壤耐淹水能力高于桐花树;仅从植物本身的生理特性考虑,可确定北部湾沿海白骨壤造林滩面高程不宜低于平均海面30cm,桐花树不应低于当地平均海面。  相似文献   

4.
人工污水对白骨壤幼苗生理生态特性的影响   总被引:22,自引:4,他引:18  
探讨了3种不同浓度污水对白骨壤幼苗叶片叶绿素含量、过氧化氢酶活性、游离脯氨酸含量、含水量、相对电导率与植株生物量、茎径和茎高生长量等生理生态指标的影响.结果表明,正常浓度和5倍浓度污水对植株无不良影响,并可促进植株生长;10倍浓度污水对植株各生理生态指标有显著影响,但植株最终可维持正常生长.研究表明,白骨壤对污水具有较强的适应性和耐受性.  相似文献   

5.
对广西阳朔岩溶石山阴香幼苗的株高、基径、叶片数和叶面积等形态因子的数量特征以及根、茎、叶和全株生物量进行了较为系统的研究。结果表明,株高、基径、叶片数、叶面积的平均值分别为21.96 cm、1.52mm、6.06、57.84 cm2;根、茎、叶和全株生物量的平均值分别为0.0613g、0.1094g、0.1683g和0 .3390g;除株高和基径呈现正态分布外,其余的各项指标呈现正偏态分布。根据实测的数据,采用一元线性回归、多元线性回归和幂函数回归分别拟合了阴香幼苗主要形态因子之间以及形态因子与生物量之间的回归方程,所得到的回归方程均达到0 .01的显著水平。  相似文献   

6.
白骨壤对石油污染的生理生态响应   总被引:10,自引:3,他引:7  
王雪峰  陈桂珠  许夏玲 《生态学报》2005,25(5):1095-1100
研究了4种不同剂量的石油处理对红树植物白骨壤的叶片叶绿素含量、过氧化氢酶活性、游离脯氨酸含量、含水量、相对电导率、根系活力与生物量、茎高和茎径生长量、存活率、萌发幼苗数、幼苗高度等生理生态指标的影响,结果表明15 0 mg剂量的伊朗轻质原油处理对白骨壤没有不利影响,30 0 mg、6 0 0 mg剂量的伊朗轻质原油处理有促进白骨壤生长的作用,12 0 0 mg剂量的伊朗轻质原油处理植株生长受到明显抑制而且出现较多的个体死亡现象。白骨壤对石油污染有较强的耐受性和适应性,但大剂量能引起植株死亡。  相似文献   

7.
镉与萘复合胁迫对红树植物白骨壤幼苗萌芽及生长的影响   总被引:1,自引:0,他引:1  
为探讨白骨壤(Avicennia marina)幼苗对重金属镉(Cd)和多环芳烃萘(Nap)复合胁迫的响应,采用砂基栽培,对其幼苗的萌芽和生长进行了研究。结果表明,Cd、Nap复合胁迫对白骨壤萌芽的抑制效应较单一胁迫明显,胁迫前期幼苗成活率提高,胁迫后期则降低。胁迫栽培45 d,10 mg L~(–1)的Nap在叶形态、茎高及各器官生物量上能够减轻Cd胁迫的影响,但增强对根长的抑制作用,10 mg L~(–1) Nap-25 mg L~(–1) Cd处理的叶面积、叶长、叶宽、茎高及全株生物量分别比25 mg L~(–1) Cd处理的提高9.6%、7.9%、7.4%、5.1%和20.2%,但根长则比150 mg L~(–1) Cd处理的下降11.1%。至胁迫栽培90 d,各处理间幼苗器官及全株生物量无显著影响,复合胁迫对叶形态、茎高和根长等的抑制作用要强于单一Cd胁迫。因此,随着复合胁迫时间的延长,Cd和Nap对白骨壤幼苗的生长由拮抗效应转变为协同效应。  相似文献   

8.
三种泌盐红树植物对盐胁迫的耐受性比较   总被引:14,自引:2,他引:12  
叶勇  卢昌义  胡宏友  谭凤仪 《生态学报》2004,24(11):2444-2450
在盐度 0、5、15、2 5和 35 (% )下种植泌盐红树植物老鼠 (Acanthus ilicifolius)、桐花树 (Aegiceras corniculatum)和白骨壤(Avicennia marina)的繁殖体 ,以繁殖体萌发、幼苗生长、叶片泌盐量、叶片组织液盐含量和蒸腾蒸发量为指标 ,比较其对盐胁迫的耐受性。盐度提高对胎生种类桐花树和白骨壤的萌根速率无显著影响 ,但高盐度明显抑制非胎生种类老鼠的萌根。白骨壤的萌苗率不受盐度影响 ,但 2 5以上的盐度导致桐花树和老鼠的萌苗率下降。在盐度范围 5~ 35内 ,白骨壤幼苗的茎高生长随盐度的增加而减少 ,但减少量比桐花树小 ,而老鼠的减少量最大。老鼠因盐度提高而导致的叶片长度的减少量最大。在盐度提高的情况下 3种植物均具有泌盐量增加的效应 ,在任一盐度下泌盐能力的顺序均为白骨壤 >桐花树 >老鼠。淡水培养时 ,3种红树植物的叶片组织液盐含量 (约 2 % )均高于环境盐度 0。在盐度范围 5~ 35内 ,白骨壤的叶片组织液盐含量维持在较稳定的水平 (4 .3%~ 5 .0 % ) ,桐花树的变化范围为 2 .4 %~ 4 .5 % ,老鼠 2 .3%~ 5 .3%。淡水培养时 ,3种植物的蒸腾蒸发量类似 ,但盐性条件下白骨壤的蒸腾蒸发量显著高于桐花树和老鼠。随着盐度的增加 ,老鼠的蒸腾蒸发量下降最多。这些结果均表  相似文献   

9.
重金属镉对红树植物白骨壤和桐花树幼苗生理特性的影响   总被引:2,自引:0,他引:2  
石贵玉  康浩  段文芳 《广西植物》2009,29(5):644-647
通过砂泥栽培实验研究了红树植物桐花树和白骨壤幼苗在含Cd 0.6~30 mmol·L~(-1)系列海水培养液中某些生理特性的变化。当培养液中Cd浓度为0.6 mmol·L~(-1)时桐花树和白骨壤幼苗生长正常,叶绿素含量和光合速率变化不大。当高于12 mmol·L~(-1)时,除桐花树和白骨壤幼苗除POD酶活性越来越高之外,叶绿素含量、光合速率、SOD、CAT酶活性均不断减弱,而且浓度愈高,这些指标下降愈大。结果表明Cd对红树植物桐花树和白骨壤幼苗具有毒害作用,Cd浓度愈高对其毒害愈严重,两种红树植物比较,桐花树抗重金属镉毒害的能力大于白骨壤。  相似文献   

10.
秋茄幼苗对盐度、淹水环境的生长适应   总被引:2,自引:0,他引:2  
室内模拟12个盐度+淹水处理组合对红树植物秋茄幼苗生长的影响,测定不同组合下秋茄幼苗的株高、茎高、基径、节数、叶数、根生物量、茎生物量、叶生物量及总生物量等9项指标.结果表明:盐度-淹水交互处理及盐度处理对秋茄各项生长指标影响显著,淹水处理对株高、茎高、基径、节数及叶数影响不显著,对根生物量、茎生物量、叶生物量及总生物量影响显著;秋茄幼苗生长量及生物量积累随盐度升高而降低,随淹水时间增加而下降;结合主成分分析得出,盐度7‰+淹水2 h下秋茄幼苗生长最好,临界胁迫组合为盐度21‰+淹水8 h处理组.  相似文献   

11.
多穗柯是一种珍贵天然野生药用植物,可以开发出保健食品色素和天然医用药品,广西的资源较丰富,该研究采集巴马、那坡、德保及田林等4个产地的多穗柯种子进行播种育苗,并跟踪调查测定一年生幼苗的叶片性状及幼苗生长量,并进行相关性分析。结果表明:(1)不同产地间叶片性状及幼苗生长指标均存在不同程度的差异,其中巴马与那坡、德保、田林在叶长、叶宽、叶面积、叶脉间距、叶鲜重、叶片干物质含量、叶片组织密度等叶片性状上的差异均达到显著水平,在株高、地径、单株干重、主根长、单株根干重及单株叶干重等生长指标上亦存在显著差异,且生长量是后3个产地的1~2倍;通过比较各产地的叶片保水力及植株净生长量,巴马的多穗柯植株耐旱性及生长速度优于其他三地。综合各性状表现,认为巴马的多穗柯苗期表现比较好,生长速度快,长势好,抗旱性较强,可作为多穗柯优良种源的初步选择。(2)8月份是多穗柯株高、地径的生长高峰期,建议此时应加强肥水管理,调节适宜的水肥光热条件,尽量延长幼苗的快速生长时间,以获得苗木的最大累积生长量。(3)叶片性状与幼苗生长量的相关性分析结果显示,叶面积与株高、地径、单株干重、单株根干重以及单株叶干重等呈极显著正相关,叶脉间距、叶绿素相对含量(SPAD)与株高、单株干重呈显著或极显著正相关,比叶面积与株高、地径呈显著负相关。因此,在以后的优株表型选择中,要优先考虑叶子大、叶脉间距宽、中老熟叶片叶色浓绿的植株。该研究结果为多穗柯优良种质资源的早期筛选提供了一定的依据。  相似文献   

12.
Propagules of Kandelia candel collected from the Zhangjiang estuary were planted in mangrove habitats along the intertidal gradient. The rooting rates of K. candel propagules varied spatially. The lowest rate occurred in Avicennia marina forest (69.7%). The rates were higher in K. candel forest (90.0%), at the fringe of the mangrove forest (89.3%) and on the bare tidal flat outside the mangrove forest (82.7%). After one year, the survival rates of seedlings planted under A. marina forest, K. candel forest, at the fringe of the mangrove forest, and on the bare tidal flat were 13.7%, 54.7%, 76.0%, and 34.7%, respectively. Among the surviving K. candel seedlings, those at the fringe of the mangrove forest and on the bare tidal flat had greater height, stem diameter, leaf number, leaf area, and biomass than those under A. marina and K. candel forests. These results demonstrated that establishment and growth of K. candel seedlings occurred successfully at the fringe of the mangrove forest, but were the worst under A. marina forest. The performance of K. candel seedlings was independent of physico-chemical characters of sediment. However, interspecies competition, propagule predation by insects and crabs, and the incident light had significant effects on seedling survival and growth.  相似文献   

13.
植物叶面积的测算对于评价生态系统初级生产力具有重要意义.本研究分别选用“最大叶长”、“最大叶宽”以及“最大叶长×最大叶宽”等指标,利用不同类型的线性或非线性回归方程,对泉州湾河口湿地主要红树植物秋茄、桐花树和白骨壤的叶面积进行测算,从而确定各自最佳拟合回归方程.结果表明:二元非线性回归方程Y=0.7297X10.8698 X2.11600、幂指数方程Y=0.9740X0.9634和Y=0.7773X 0.9954分别为秋茄、桐花树和白骨壤叶面积的最佳拟合回归方程.进一步的0-1回归检验和相对误差值分析显示,以上回归方程均能精确地估算各自的叶面积,其中,白骨壤叶面积测算更为精确.  相似文献   

14.
Previous studies suggest that the positive response of transplanted rice (Oryza sativa L.) to nursery fertiliser application was due to increased seedling vigour or possibly to increased nutrient content. This paper presents results of two glasshouse experiments designed to test the hypothesis that seedling vigour was responsible for the response of transplanted seedlings to nursery treatments. The aim of the present study was to explore the concept of seedling vigour of transplanted rice and to determine what plant attributes conferred vigour on the seedlings. Seedling vigour treatments were established by subjecting seedlings to short-term submergence (0, 1 and 2 days/week) in one experiment and to leaf clipping or root pruning and water stress in another to determine their effect on plant growth after transplanting. Submerging seedlings increased plant height but depressed shoot and root dry matter and root:shoot ratio of the seedling at 28 days after sowing. After transplanting these seedlings, prior submergence depressed shoot dry matter at 40 days. Nursery nutrient application increased plant height, increased root and shoot dry matter, but generally decreased root:shoot ratio. Pruning up to 60% of the roots at transplanting decreased shoot and root dry matter, P concentration in leaves at panicle initiation (PI) and straw dry matter and grain yield at maturity. By contrast, pruning 30% of leaves depressed shoot and root dry matter by 30% at PI, and root dry matter and straw and grain yield by 20% at maturity. The combined effects of leaf clipping and root pruning on shoot, root and straw dry matter were largely additive. It is concluded that the response of rice yield to nursery treatments is largely due to increased seedling vigour and can be effected by a range of nutritional as well as non-nutritional treatments of seedlings that increase seedling dry matter, nutrient content, and nutrient concentration. Impairment of leaf growth and to a lesser extent root growth in the nursery depressed seedling vigour after transplanting. However, rather than increasing stress tolerance, seedling vigour was more beneficial when post transplant growth was not limited by nutrient or water stresses.  相似文献   

15.
Relationships between growth parameters and root respiration under various conditions of salinity were investigated in seedlings of the grey mangrove Avicennia marina (Forsk.) Vierh. Growth, root/shoot ratios, leaf succulence and osmotic potential of leaves were measured for seedlings grown for 6–8 weeks in 100, 50, 25 and 0% seawater. Oxygen uptake of root segments, from distal to proximal ends of roots, was measured for all treatments. Total growth was maximal in 25% seawater, highest leaf succulence was obtained in 50% seawater, and highest leaf osmotic potential in 100% seawater. Oxygen uptake in distal root segments, as measured both by Clark oxygen electrode and Warburg manometry, showed a stimulation in the presence of salt that closely paralleled growth stimulation. The rates of respiration were highest in 25% seawater. The oxygen uptake was not stimulated by salt per se, since concentrations higher than 25% were associated with a decline in rate of oxygen uptake from the maximum. Values for the respiratory quotient approximated to one in all treatments. Avicennia marina has been reported to exclude from its roots about 90% of the salt in the surrounding medium. It might have been expected that increased concentrations of salt in the growth medium would be associated with a standard salt respiration response in the roots; however, this was not obtained.  相似文献   

16.
福建漳江口红树林区秋茄幼苗生长动态   总被引:12,自引:0,他引:12  
通过福建漳江口红树林自然保护区内8个样方24个小样方人工种植600个秋茄胚轴,在3a时间内对秋茄胚轴建立、幼苗生长以及环境因子进行定期观测。研究结果表明:林缘空地的秋茄生长状况良好,白骨壤林内最不利于秋茄幼苗的生长。潮位、盐度、底质土壤理化因子不是造成该样地各样方间秋茄幼苗生长差异的主要原因。动物取食、光照状况以及种间竞争是限制秋茄生长的主要环境因子。秋茄胚轴在长根前易于随潮水漂走,底质土壤中自骨壤致密的根系抑制了秋茄胚轴的定植,导致白骨壤林内秋茄幼苗漂走的数量最多。昆虫和螃蟹等动物的取食是导致林内已经固着生长的秋茄幼苗大量死亡的最主要原因,而林外被取食的幼苗个体极少。此后秋茄幼苗能否继续成长,主要取决于幼苗所接受到的光照条件。3a后,在荫蔽的树冠下,秋茄幼苗无法存活;而在林外,秋茄幼苗已经长成幼树。在林外滩涂上迅速生长的互花米草,也将影响秋茄幼苗的更新和生长。  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号