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1.
岷江上游干旱河谷海拔梯度上白刺花叶片生态解剖特征研究   总被引:23,自引:4,他引:19  
对岷江上游干旱河谷海拔梯度上(1 650~1 950 m)白刺花(Sophora davidii)叶片进行生态解剖学研究.观测指标包括叶片形态特征(叶长宽比、叶面积、叶片厚度)、解剖结构(表皮厚度、栅栏组织厚度(P)、海绵组织厚度(S)、P/S比值、表皮角质膜厚度)及叶表皮特征(气孔器密度和面积、表皮细胞密度和面积、表皮毛密度和长度).结果表明,白刺花叶片面积为0.144~0.208 cm2,叶总厚度为171.58~195.83 μm;叶肉组织分化明显,栅栏组织厚度与海绵组织厚度分别为69.83~82.42和62.00~ 80.67 μm,P/S的比值为1.14~1.01,上下表皮厚度分别为14.03~15.33和13.88~16.17 μm,上下角质膜厚度分别为2.66~4.56和2.76~2.02 μm;气孔密度为13.71~15.02个·mm-2,其面积为249.86~280.43 μm2;表皮细胞密度为160.54~178.43个·mm-2,其面积为557.43~626.85 μm2;表皮毛长度为186.51~260.99 μm,其密度为18.29~32.27个·mm-2.随海拔升高叶面积、叶厚度、栅栏组织和海绵组织的厚度、气孔器面积、表皮细胞面积以及表皮毛密度呈增加趋势,而角质膜厚度、表皮细胞密度和表皮毛长度则呈减小趋势;叶长宽比、P/S的比值、表皮厚度与气孔器密度无明显差异.  相似文献   

2.
贵州梵净山亮叶水青冈解剖特征的生态格局及主导因子分析   总被引:14,自引:1,他引:13  
使用具有不同生物学意义的生态因子为环境变量,应用多元统计方法,分析了贵州梵净山的亮叶水青冈(Fagus lucida L.)叶片及木材形态解剖特征的生态格局和影响其变化的主导生态因子。结果表明,随着温度要素的增加,叶片的所有解剖特征、叶表面的气孔面各以及木材的导管直径、纤维长度均显示下降趋势,而叶表面的气孔器密度、木材的导管频率和单列射线高度呈上升趋势;随着寒冷指数(负积温)和水分因子(年降水和水  相似文献   

3.
采用常规石蜡制片技术和显微观察方法,对生长于滇西北玉龙雪山3 000~4 600m之间9个不同海拔高度的草血竭(Polygonum paleaceum)叶片表型及解剖结构进行比较研究,其目的是揭示该植物对不同海拔环境条件的响应特征,进而探讨植物对全球气候变化的生态适应性。结果显示:(1)草血竭叶片长度、宽度、长宽比均与海拔呈显著负相关关系,其降幅分别达84.64%、74.87%和37.50%。(2)草血竭叶片为异面叶,由表皮、叶肉、叶脉三部分组成;表皮细胞单层,角质层厚;叶肉的栅栏组织具2层或3层细胞;叶脉中的维管束呈1圈不连续的环状排列。(3)叶片厚度、栅栏组织厚度、海绵组织厚度、主脉厚度、以及主脉中维管束的长度和宽度均与海拔呈显著正相关关系,增幅分别达38.32%、47.30%、47.39%、156.46%、173.51%及337.42%;上表皮厚度、下表皮厚度、叶片紧密度、叶片疏松度、栅海比以及维管束的个数与海拔梯度之间的相关性则均不显著。研究表明,随着海拔升高,草血竭叶片形态结构的改变主要是有利于植物降低蒸腾,增强储水性和提高光合效率。  相似文献   

4.
Phenotypic plasticity in morphological, anatomical and physiological traits of peanut (Arachis hypogaea L.) leaves was tested at four different concentrations of Cd, Cu and Zn under greenhouse conditions. Among 18 characteristics tested, nine were found to be the most sensitive and demonstrate the greatest phenotypic plasticity. These were: the leaf area (LA), the leaf mass per area (LMA), chlorophyll a concentration (Chl a), chlorophyll b concentration (Chl b), total chlorophyll concentration (Chl t), the effective quantum yield of photosystem II (ΦPS II), stomatal density of upper epidermis (SDU), palisade thickness (PT), and palisade to spongy thickness ratio (P/S). The plasticity of chlorophyll concentration and fluorescence parameters may be maladaptive and reflects metal toxicity to leaves, whereas the anatomical plasticity is adaptive, indicative of a tradeoff between the physiological and anatomic plasticity. The anatomical plasticity resulted in a xerophyte feature of leaves (i.e. small leaflets, thick lamina, upper epidermis, palisade mesophyll, as well as abundant and small stomata), which enhanced the capacity to resist drought caused by heavy metals via a decrease in root growth.  相似文献   

5.
Leaf anatomical traits play key roles in plant functions and display evolutionary adaptive changes to suit the surrounding environment. To reveal the adaptive mode and mechanisms of plants in response to global warming, we analyzed leaf morphology and anatomical structures in three different species, Epilobium amurense Hausskn., Pedicularis densispica Franch., and Potentilla fulgens Wall. ex Hook., growing along an elevational gradient (3,000–4,600 m) in the Yulong Mountains. The results showed leaf length and width decreased, whereas leaf thickness increased with increasing altitude in all three species. Thickness of leaf upper epidermis, lower epidermis, palisade and spongy mesophyll, and main vein increased with rising altitude. Stomatal density in each species increased with rising elevation. These results illustrate that plants can adapt to the environmental changes that accompany high altitudes by decreasing leaf area and increasing leaf thickness, mesophyll tissue thickness, and stomatal density. Such morphological and anatomical plasticity would lead to lower transpiration rates, enhanced internal temperature and water status, and improved photosynthetic capability.  相似文献   

6.
都支杜鹃茎、叶解剖特征与环境的适应性   总被引:1,自引:1,他引:0  
王桂芹  刘艳然 《植物研究》2012,32(5):532-536
利用光学显微解剖技术,对生长于大别山区的都支杜鹃(Rhododendron shanii Fang)的茎、叶进行了解剖学与环境适应性之间的关系研究。结果表明:叶的上表皮具有厚的角质膜、复表皮、气孔缺失;下表皮被毛,气孔分布密集,气孔突出;叶肉中栅栏组织和纤维丰富,且纤维呈束存在,并形成了叶肉中的支撑系统,海绵组织内具有发达的通气组织;茎中木栓宽广,次生韧皮部与次生木质部厚度比是1/5,次生木质部中管孔直径狭窄、管密孔集,绝大多数为管胞,同时木纤维十分丰富。上述结构的特异性均表明茎和叶在诸多方面表现为结构与环境的统一性,是特殊综合生态环境长期作用的结果。复表皮、主脉周韧维管束、次生木质部缺少导管等这些特征均说明都支杜鹃在系统分类中应处于较原始的地位。  相似文献   

7.
史刚荣  王旭明  张铮   《广西植物》2007,27(2):161-166
对安徽黄山海拔420~1840m的华中五味子茎的次生木质部进行了生态解剖学研究。结果表明,茎的次生木质部为散孔材,导管分子长741.7~1025.2μm,直径为152.4~191.9μm;导管频率60.6~70.2mm-2。纤维管胞长925.2~1046.3μm;木射线类型为异形ⅡA和ⅡB,单列射线高682.1~778.4μm,多列射线高度为1093~1208μm,多列射线宽63.6~92.6μm,射线频率9.2~12.8mm-1。次生木质部解剖特征随异质生境而表现出一定的可塑性,其中,多列射线宽、射线频率、导管分子长度、导管直径等性状的可塑性较大。多重回归分析表明,水分和温度是影响华中五味子次生木质部解剖特征的主导因子。随着空气相对湿度的增加,导管分子长度和直径均增大,射线频率减小。随着降雨量的增加,纤维长度增加。随着最冷月温度的增加,导管频率增加,多列射线宽度减小。随着年较差的增加,单列射线和多列射线高度均减小。  相似文献   

8.
Four-year-old seedlings ofQuercus petraea (Matt.) Liebl. andNothofagus procera (Poepp. et Endl.) Querst were grown outdoors in pots while subjected to full, medium and low irradiances. Shading and decrease in height of leaf attachment generally increased specific leaf area, the diameters of chloroplasts and of palisade and spongy mesophyll cells, but decreased leaf thickness, number of palisade cell layers, length of palisade and spongy mesophyll cells, number of chloroplasts per mesophyll cell and epidermal cell and cuticle thickness, stomata and hair densities per unit leaf area, hair length, maximum hair breath and cell wall thickness in the two species. However, inN. procera grown under full irradiance, leaves at the upper and middle positions had hairs on both upper and lower epidermes, whereas those in other treatments and all leaves in all treatments inQ. petraea, had theirs only on the upper epidermis.  相似文献   

9.
Leaf morphological and anatomical structure and carbon isotope ratio (δ^13C) change with increasing tree height. To determine how tree height affects leaf characteristics, we measured the leaf area, specific leaf mass (ratio of leaf mass to leaf area [LMA]), thickness of the total leaf, cuticle, epidermis, palisade and sponge mesophyll, stomata traits and δ^13C at different heights of Parashorea chinensis with methods of light and scanning electron microscopy (SEM) and isotope-ratio mass spectrometry. The correlation and stepwise regression between tree height and leaf structure traits were carried out with SPSS software. The results showed that leaf structures and δ^13C differed significantly along the tree height gradient. The leaf area, thickness of sponge mesophyll and size of stomata decreased with increasing height, whereas the thickness of lamina, palisade mesophyll, epidermis, and cuticle, ratios of palisade to spongy thickness, density of stomata and vascular bundles, LMA and δ^13C increased with tree height. Tree height showed a significant relationship with all leaf indices and the most significant relationship was with epidermis thickness, leaf area, cuticle thickness, δ^13C. The δ^13C value showed a significantly positive relationship with LMA (R = 0.934). Our results supported the hypothesis that the leaf structures exhibited more xeromorphic characteristics with the increasing gradient of tree height.  相似文献   

10.
Photosynthetic and anatomic responses of peanut leaves to cadmium stress   总被引:1,自引:0,他引:1  
Cadmium (Cd) treatments caused an inhibition in the net photosynthetic rate (P N) of peanut (Arachis hypogaea) plants, due to the reduction of stomatal conductance (g s) and photosynthetic pigment contents, as well as the alteration in leaf structure. The decrease of the transpiration rate and g s might result from the Cd-induced xerophyte anatomic features of leaves (i.e. thick lamina, upper epidermis, palisade mesophyll, high palisade to spongy thickness ratio, as well as abundant and small stomata). The decline of P N was independent of the impairment in photosystem 2.  相似文献   

11.
成都地区10种园林灌木叶片结构与抗旱性关系研究   总被引:2,自引:0,他引:2  
利用石蜡切片法和指甲油印迹法,对成都地区10种常见园林灌木叶片解剖结构的13个指标:主脉厚度、叶片厚度、上下表皮角质层厚度、上下表皮厚度、栅栏组织厚度、海绵组织厚度、下表皮气孔密度、气孔长度、气孔宽度、叶片结构紧密度、栅栏组织与海绵组织厚度比(栅海比)进行测定和分析,再用方差分析和主成分分析法选取有代表性的指标,结合隶属函数法对物种间的抗旱性进行综合评价。结果显示,13个指标的变异系数为17.40%~68.20%,在10种园林灌木间差异极显著。10种植物都属于异面叶,组织结构易于辨识(三角梅的下表皮角质层太薄,无法测出数据)。叶片结构紧密度、栅海比、气孔密度、气孔长、气孔宽、栅栏组织厚度可作为评价这10种园林灌木抗旱性的重要指标。抗旱性由强到弱依次为:红花继木、鸭脚木、红叶石楠、栀子、西洋杜鹃、海桐、山茶、雀舌黄杨、三角梅和金边大叶黄杨。其中红花继木、鸭脚木、红叶石楠和栀子属于强抗旱品种,可用于屋顶、边坡等区域种植。  相似文献   

12.
以新疆野苹果为材料,对不同居群及不同树龄叶片解剖结构特征进行了分析研究。结果表明:新疆野苹果叶片属于异面叶,由上表皮、栅栏组织、叶脉、海绵组织和下表皮组成;不同居群新疆野苹果叶片厚度及细胞排列方式有差异,巩留、额敏及托里的野苹果栅栏组织增厚,且栅栏组织/海绵组织比值增大;新源的野苹果叶片及栅栏组织较薄,栅栏组织/海绵组织比值偏低;不同树龄新疆野苹果叶片厚度随着树龄的增大而呈变薄的趋势,多年生野苹果及野苹果“树王”栅栏组织及海绵组织层数最少,厚度较薄。这些结果暗示新疆野苹果通过各部分结构的协调生长来保证光合作用效率,以适应不同的生长环境以及处于不同发育时期的生长状况。本研究为新疆野苹果原位保护、保育提供了实验依据。  相似文献   

13.
采用常规石蜡制片技术和显微观察方法,对分布于青藏高原祁连山东部山地冷龙岭3600—4400 m不同海拔高度的蒲公英(Taraxacum mongolicum Hand-Mazz)、火绒草(Leontopodium leontopodioides(Willd.)Beauv)和美丽风毛菊(Saussurea superba Anthony)的叶片形态解剖结构进行了研究,并探讨了其对海拔高度的响应及生态适应性。结果表明:随海拔高度的升高,3种植物气孔器外拱盖内缘、角质层纹饰、气孔与表皮细胞的位置关系以及上、下表皮气孔器内缘呈现不同的变化趋势;火绒草上、下表皮气孔密度随海拔升高而增加,而蒲公英和美丽风毛菊的气孔密度则降低;3种植物上、下表皮气孔指数随海拔高度的增加均未出现规律性变化;3种植物叶片厚度、上下表皮厚度、上下角质层厚度、栅栏细胞系数均随海拔升高而增加;解剖学指标之间大多呈明显的协同进化;叶片结构,尤其是气孔密度对海拔高度变化表现出较大的可塑性。研究表明3种植物采取不同的响应机制来适应海拔高度的变化,植物对高原环境变化的适应具有多样性。  相似文献   

14.
植物叶片形态解剖结构对环境变化的响应与适应   总被引:64,自引:0,他引:64  
叶片是植物进化过程中对环境变化比较敏感且可塑性较大的器官,环境变化常导致叶的长、宽及厚度,叶表面气孔、表皮细胞及附属物,叶肉栅栏组织、海绵组织、胞间隙、厚角组织和叶脉等形态解剖结构的响应与适应。本文综述了陆生植物叶片上述形态解剖结构对水分、温度、光照、CO2浓度和UV-B辐射等环境因子变化以及多因子复合作用的响应与适应,分析了该领域的研究特点及其存在的问题,指出了未来研究的重点和方向。  相似文献   

15.
以不同抗白粉病的苦瓜品系幼苗为材料,对它们的叶片及上下表皮厚度、栅栏组织及海绵组织厚度、叶片结构紧密度及疏松度、蜡质含量、比叶重、气孔及茸毛密度等叶片结构进行观察比较,探讨苦瓜白粉病抗性与其主要叶片结构指标的关系。结果显示:(1)抗病苦瓜品系叶片的蜡质含量显著高于感病品系,与病情指数呈显著负相关关系,蜡质层是其抵抗和延迟病原菌侵入的一个有力结构屏障。(2)感病品系叶片的气孔和叶背面茸毛数量显著多于抗病品系,且叶背面的气孔及茸毛密度与病情指数呈显著正相关关系,即气孔和茸毛越少越抗病。(3)抗病苦瓜品系的叶片栅栏组织以及海绵组织排列整齐、紧密,而高感品系的叶片组织出现大量孔隙,较难观察到完整细胞。(4)抗病品系叶片厚度、下表皮厚度、栅栏组织厚度、叶片结构紧密度明显高于感病品系,而感病品系的海绵组织厚度、叶片结构疏松度明显高于抗病品系;且苦瓜比叶重与其白粉病抗性关系不大。研究认为,苦瓜叶片蜡质含量、叶背面气孔及茸毛密度可以作为苦瓜白粉病抗性鉴定的参考指标。  相似文献   

16.
运用石蜡切片法和指甲油印迹法,对3个芭蕉芋品种的叶片解剖结构——叶片厚度、叶肉厚度、上表皮厚度、下表皮厚度、气孔密度、气孔长度及宽度、长细胞长度及宽度、短细胞长度及宽度等10项相关指标进行测定,分析芭蕉芋抗旱性与叶片结构之间的关系。结果表明:(1)芭蕉芋的表皮结构与抗旱性有一定的关系,表现为抗旱性强的品种气孔密度大,且长、短细胞体积小、排列紧密。(2)芭蕉芋叶片、叶肉、上下表皮厚度与抗旱性关系在不同品种间差异不显著。(3)芭蕉芋叶肉及上、下表皮占叶片横切面的比例与抗旱性存在显著相关关系。(4)芭蕉芋叶片保水能力与叶肉比例呈极显著负相关关系,与上表皮比例呈极显著正相关关系。  相似文献   

17.
以浙江庆元、湖南洞口和湖南靖州3个种源的赤皮青冈1年生幼苗为材料,采用盆栽称量法控制土壤水分含量,设置土壤相对含水量分别为75%~80%(对照)、55%~60%(轻度干旱胁迫)、45%~50%(中度干旱胁迫)和30%~35%(重度干旱胁迫),研究不同程度干旱胁迫对赤皮青冈幼苗叶片解剖结构和蒸腾作用的影响.结果表明: 干旱胁迫下,3个种源赤皮青冈幼苗叶片的总厚度、上下表皮厚度和栅栏组织厚度均显著降低.栅栏组织厚度与海绵组织厚度比(栅海比)、气孔长度和宽度随干旱程度的增强而显著减小,而气孔密度随干旱胁迫程度的增强而显著增加.干旱处理对叶片主脉厚度无显著影响,木质部厚度的变化因种源而异.叶片结构的变化引起生理功能改变,随着胁迫程度的加强,赤皮青冈幼苗的蒸腾速率显著降低.对照和各干旱处理湖南洞口种源幼苗叶片的下表皮厚度、栅海比、气孔密度显著大于其他2个种源,蒸腾速率显著小于其他2个种源,表明湖南洞口赤皮青冈对干旱胁迫的适应性较强.  相似文献   

18.
该研究以雌雄异株植物罗汉松(Podocarpus macrophyllus)成熟叶为研究材料,采用光学显微镜、扫描电镜和透射电镜观察比较罗汉松雌、雄植株叶在形态、显微结构和超显微结构的差异,以明确罗汉松雌、雄株在进化过程中叶对环境功能的适应性。结果显示:(1)罗汉松雌株的叶片大于雄株,且两者的叶长、叶宽和叶柄长差异极显著,而叶柄厚、叶面积、叶体积、叶质量、比叶重(SLW)、面积与体积之比(A/V)等性状无显著差异。(2)雌株叶片的气孔相对较大,密度较高,且雌株气孔宽度极显著大于雄株;雌株叶片的上表皮长细胞宽度和下表皮短细胞宽度均显著大于雄株,但雌株叶片的上表皮长细胞和短细胞的长度则显著小于雄株。(3)罗汉松雌株叶片的栅栏组织厚度、海绵组织厚度、传输组织长度和宽度、上下角质层厚度、维管束厚度、叶片紧密度(CTR)及疏松度(SR)均极显著大于雄株,而雌株的下表皮厚度极显著小于雄株,但雌雄株叶片的上表皮细胞厚度和栅海比差异不显著;雌株叶片的栅栏组织细胞、叶绿体和线粒体均较雄株的长而细,且雌株的线粒体宽度极显著小于雄株。(4)罗汉松雌株叶片上表皮蜡质饰纹、下表皮角质层纹饰、气孔外拱盖纹饰及内缘类型等4个微形态特征与雄株差异明显。(5)叶表皮蜡质层能谱分析表明,罗汉松雌株叶片含有9种元素,而雄株叶片仅有8种(缺少K元素);且雌株的Si元素含量高于雄株,而雄株的C、O、Na、Mg、Al、Ca和Au元素含量均高于雌株。研究表明,罗汉松雌、雄植株之间存在明显的第二性征,雌株叶片结构有助于提高光合等性能以满足生殖需求;罗汉松雌、雄株叶形态结构的差异是其长期进化形成的有利于物种繁衍的适应策略。  相似文献   

19.
利用扫描电镜技术、叶片离析法和石蜡切片法研究了假鹰爪属Desmos 4种植物和皂帽花属Dasy-maschalon 3种植物叶片的形态结构。结果表明:假鹰爪属植物叶片近轴面表皮具大型球状含晶簇细胞和不含晶簇的表皮细胞两种类型,远轴面表皮细胞均具一较小的晶簇;叶肉组织明显分化为栅栏组织细胞和海绵组织细胞,油细胞分布于第2层的栅栏组织和海绵组织内,单位毫米叶宽油细胞数为4~6个;主脉维管组织被薄壁细胞分隔成束状。皂帽花属植物叶片近轴面表皮细胞形状相同,均具一晶簇,远轴面表皮细胞的晶簇和近轴面表皮细胞的晶簇相似;靠近上、下表皮的叶肉组织均分化为栅栏组织细胞,在两层栅栏组织细胞之间分化为一至几层海绵组织细胞,油细胞分布于海绵组织内,单位毫米叶宽油细胞数为2~3个;主脉维管组织形成连续的环状。由此可见两属叶的结构具有明显的差异,因而支持假鹰爪属和皂帽花属为两个独立属的观点。  相似文献   

20.
Chlorophyll and light gradients in sun and shade leaves of Spinacia oleracea   总被引:14,自引:9,他引:5  
Abstract. Light gradients were measured and correlated with chlorophyll concentration and anatomy of leaves in spinach (Spinacia oleracea L.). Light gradients were measured at 450, 550 and 680 nm within thin (455 μm) and thick (630 μm) leaves of spinach grown under sun and shade conditions. The light gradients were relatively steep in both types of leaves and 90% of the light at 450 and 680 nm was absorbed by the initial 140 μm of the palisade. In general, blue light was depleted faster than red light which, in turn was depleted faster than green light. Light penetrated further into the thicker palisade of sun leaves in comparison to the shade leaves. The distance that blue light at 450 nm travelled before it became 90% depleted was 120 μm in sun leaves versus 76 μm in shade leaves. Red light at 680 nm and green light at 550 nm travelled further but the trends were similar to that measured at 450nm. The steeper light gradients within the palisade-of shade leaves were caused by increased scattering of light within the intercellular air spaces and/or cells which were less compact than those in sun leaves. The decline in the amount of light within the leaf appeared to be balanced by a gradient in chlorophyll concentration measured in paradermal sections. Progressing from the adaxial epidermis, chlorophyll content increased through the palisade and then declined through the spongy mesophyll. Chlorophyll content was similar in the palisade of both sun and shade leaves. Chloroplast distribution within both sun and shade leaves was relatively uniform so that the chlorophyll gradient appeared to be caused by greater amounts of chlorophyll within chloroplasts located deeper within the leaf. These results indicate that the anatomy of the palisade may be of special importance for controlling the penetration of photo-synthetically active radiation into the leaf. Changing the structural characteristics of individual palisade cells or their arrangement may be an adaptation that maximizes the absorption of light in leaves with varying mesophyll thickness due to different ambient light regimes.  相似文献   

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