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1.
通过光学显微镜和扫描电子显微镜详细观察了相似生境条件下生长的海桑属(Sonneratia)植物以及低、高潮位生长的海桑(S. caseolaris)和杯萼海桑(S. alba)次生木质部的形态特征,应用Lasersharp软件测量了其次生木质部的数量特征.结果表明:海桑属植物次生木质部形态特征的特化是与潮间带生境相适应的,能在水分胁迫的生境中,有效地协调水分输导的有效性和安全性.其特化结构主要包括:1)宽、窄导管并存,2)管孔密度较大,复孔率高,3)存在纤维状导管、形状不规则的导管和少量环管管胞,4)螺旋雕纹、附物纹孔、管壁具疣等许多导管壁的微观结构,有利于水分输导的安全性,5)射线细胞和分隔木纤维内的淀粉粒是渗透调节的物质基础,有利于促进水分上升,6)薄的纤维壁厚和宽的纤维腔径有利于水分的贮存,7)具胶质纤维.相似生境条件下生长的海桑属植物次生木质部数量特征的测量结果表明海桑和拟海桑水分输导效率高,但水分输导安全性差,而杯萼海桑水分输导效率低,但其输导安全性高.与高潮位生长的海桑和杯萼海桑相比,低潮位生长的海桑和杯萼海桑次生木质部导管分子更加"小型化"(有更小的导管分子长度、管孔弦向直径、管孔面积),有更高的导管聚合度和管孔密度,数量特征随生境不同的种内变动有利于海桑和杯萼海桑提高水分输导的安全性,但海桑和杯萼海桑输导安全性的获得是以牺牲水分输导的有效性为前提的.与生长在高潮位生境的海桑和杯萼海桑相比,低潮位生境生长的海桑和杯萼海桑的木材结构有更小的管孔面积,更厚的纤维壁,更低的导管比率和射线比率,更高的纤维比率,胶质纤维分布均匀且数量增加,这些特征有利于低潮位生境生长的海桑和杯萼海桑提高木材的韧性和强度,增强抗风浪冲击的能力.  相似文献   

2.
海桑属(Sonneratia)植物的木材结构及其系统演化意义   总被引:2,自引:0,他引:2  
研究了海桑科海桑属(Sonnerotia)6种植物的木材结构特征,并与同科的八宝树属(Duabanga)、千屈菜科的紫薇属(Lagerstroemia)植物的木材结构进行比较。结果表明:1.射线高度和射线宽度可作为卵叶海桑区别于其它种类的鉴定特征或辅助特征;2.海桑属形成一单系的类群,并与紫薇属有更近的亲缘关系,而与同科的八宝树属的亲缘关系更远;3.导管数量特征的聚类分析可以推测海桑属植物沿两支进化,一支进化为水分输导效率高的种类(即导管直径宽和输导面积大,管孔密度小,如海桑和拟海桑),另一支进化为水分输导安全性高的种类(即导管直径窄、输导面积小,管孔密度大,如杯萼海桑、卵叶海桑、无瓣海桑、海南海桑)。  相似文献   

3.
秋茄次生木质部的生态解剖学研究   总被引:1,自引:0,他引:1       下载免费PDF全文
为了探讨秋茄(Kandelia obovata Sheue et al.)次生木质部的形态解剖和数量解剖特征变化对不同红树林生境的生态适应意义,采用光学显微镜(LM)、扫描电镜(SEM)、透射电镜(TEM)和激光共聚焦显微镜(LSCM)对深圳福田红树林自然保护区内7个秋茄种群的次生木质部解剖特征进行观测,并对种群样地的土壤盐分含量、pH值和土壤养分含量进行测定。结果显示,(1)7个秋茄种群的次生木质部具有一些共同形态解剖特征:具纤维状导管和环管管胞;许多导管壁的微观结构(如管壁附物、穿孔板附物和螺旋雕纹等)有利于提高水分输导的高效性和安全性,以适应潮间带生境;(2)应用逐步回归分析法对秋茄次生木质部数量解剖特征和土壤理化因子的关系进行分析发现,随着土壤Na+、土壤全盐量增高,秋茄次生木质部导管分子趋向于"大型化"。"大型化"导管有利于水分输导,但降低了安全性。在土壤盐离子含量越高、秋茄导管分子越大其水分输导安全性越低的情况下,推测可能有其它机制保证秋茄导管水分输导的安全性。  相似文献   

4.
红树林是海岸重要生态关键区, 在维护生物多样性和沿海地区生态安全等方面发挥着重要作用。红海榄(Rhizophora stylosa)是我国红树林生态系统的建群种之一。为了揭示红海榄次生木质部解剖特征可塑性的生态适应意义, 该文测定了海南省东寨港红树林自然保护区6个红海榄种群18个采样点的土壤理化性质, 应用显微镜和电镜详细观测了各采样点生长的18株红海榄植株次生木质部的形态解剖特征, 并测量了红海榄次生木质部的数量解剖特征。不同样地的红海榄次生木质部都具有纤维状导管和环管管胞、螺旋雕纹和附物、生长轮、薄壁细胞(含淀粉粒)等结构。这些特化结构具有生态适应意义, 在潮间带高盐生境中能促进水分输导的安全性。不同生境中红海榄次生木质部数量解剖特征可塑性大, 利用逐步回归分析方法分析了土壤理化因子与红海榄次生木质部数量特征的关系。结果表明: 土壤全盐含量、土壤Mn2+含量、土壤Na+含量、土壤Cl-含量、土壤Ca2+含量、土壤有机质含量、土壤全磷含量和土壤pH值对次生木质部数量特征的影响达到极显著水平, 不同样地红海榄次生木质部数量特征的变化是红海榄适应异质生境的结果。  相似文献   

5.
白骨壤次生木质部生态解剖学研究   总被引:1,自引:0,他引:1  
测量了深圳红树林鸟类自然保护区8个不同白骨壤(Avicennia marina)种群采样点土壤的盐分、p H值和养分,应用生物显微技术和电镜技术观察了白骨壤次生木质部的结构形态,不同样地白骨壤次生木质部均具有:(1)纤维状导管;(2)螺旋雕纹和附物;(3)薄壁细胞含淀粉粒;(4)内含韧皮部。依据结构-功能解剖学的研究结果,这些特化结构均有利于提高白骨壤在"生理干旱"生境下栓塞修复能力,增进水分输导的安全性。对白骨壤次生木质部数量特征和土壤理化因子作逐步回归分析,结果表明:随土壤盐度和土壤有机质含量增大,在遭受"生理干旱"越来越严重的情况下,白骨壤能形成更高的复孔率,相邻两导管接触壁平均厚度增加,这可能是适应异质生境的结果。  相似文献   

6.
随着气候变暖,东北地区暖干化加剧。为了解干旱胁迫对小兴安岭地区不同坡位水曲柳径向生长的影响,采用木材解剖学方法,分析了水曲柳木质部解剖特征对不同坡位水分变化的响应。结果表明: 上、下坡位水曲柳木质部解剖参数整体上变化趋势一致,导管数量呈线性分布,最大导管面积和总导管面积总体上呈对数分布,平均导管面积总体上呈偏正态分布。不同坡位多个解剖参数均存在显著差异,下坡位导管数量、导管面积总体上大于上坡位。大部分解剖参数与日积温呈显著正相关,但存在一定差异,上坡位水曲柳总导管面积与日均温呈正相关,导管数量、总导管面积与相对湿度呈正相关,相关性均大于下坡位。上坡位最小导管面积与日积温和相对湿度呈显著负相关;而下坡位,总导管面积与相对湿度呈显著正相关。气候暖干化会导致水曲柳导管面积和导管数量相对减少,但基本上不影响导管分布状况,上、下坡位导管分布基本一致。目前,气候暖干化未限制而是促进了水曲柳的径向生长。  相似文献   

7.
对红树植物无瓣海桑、海桑、秋茄3种人工林群落动态及物种多样性特征的系统研究结果表明,无瓣海桑群落和海桑群落的乔木层明显分为上层和中层两个亚层,上层木为无瓣海桑或海桑,中层木主要为秋茄和桐花树;秋茄群落的乔木层为单一层次,基本由秋茄组成.在无瓣海桑群落和海桑群落中,优势种群无瓣海桑或海桑仅有高龄级个体存在,未出现自然更新现象;秋茄和桐花树为旺盛增长种群,有可能成为优势种群,表明无瓣海桑和海桑为先锋造林树种,在裸滩种植可以促进其它红树植物的天然定居生长;在秋茄群落中,秋茄为旺盛增长种群,能够自然:更新演替,桐花树和海莲属初生增长种群.无瓣海桑群落和海桑群落的物种组成和物种多样性指标较接近,基本包含秋茄群落中的主要物种秋茄、桐花和海莲。表明无瓣海桑和海桑能与这些物种协调共生,同时种植无瓣海桑或海桑可以形成多样化的红树林群落;无瓣海桑群落和海桑群落在形成初期,种植密度较大时,物种多样性较高;密度相近时。形成初期随林龄的增加。其物种多样性略有提高.  相似文献   

8.
在大田栽培条件下,大豆‘垦农4号’于开花始期叶面喷施植物生长物质2-N,N-二乙氨基乙基己酸酯(DTA)、氯化胆碱(CC)和SOD模拟物(SODM),并比较不同植物生长物质影响大豆叶片、叶柄和茎的解剖结构。结果表明,喷施植物生长物质后30d,叶中栅栏组织厚度及栅海比均增加;喷施SODM、DTA的叶中主脉维管束横截面积和木质部导管数目增加,CC对主脉维管柬横截面积和木质部导管数目的影响不明显;喷施3种植物生长物质的叶柄表皮细胞厚度、叶柄维管束横截面积和导管数量增加,茎部薄壁组织、韧皮部和木质部厚度增加,茎的直径也增加。  相似文献   

9.
扁担木叶片和次生木质部解剖和水分生理特征的可塑性   总被引:3,自引:0,他引:3  
基于叶片和次生木质部解剖特征及水分生理指标观测,研究了淮北相山不同群落中扁担木的表型可塑性.结果表明,扁担木叶片结构表现出中生特点:叶为异面叶,较薄,角质层不甚发达,气孔密度较小.次生木质部表现出旱生特点:导管频率和复孔率较高,导管分子短而窄,纤维很短,射线很低.扁担木叶片、次生木质部的解剖和水分生理特征均表现出一定的可塑性,其可塑性指数高低顺序为次生木质部解剖特征(0.24)>水分生理特征(0.19)>叶片解剖特征(0.18).与侧柏林和混交林相比,灌丛中扁担木个体对干旱生境有一定的适应能力,表现在次生木质部导管分子短,导管频率高,单孔率低,木纤维短,射线矮小,具有较大的相对输导率和较小的脆性指数;叶片水势、组织含水量、自由水含量较低,叶面积、比叶面积较小,而束缚水含量、束缚水自由水比值较高.扁担木的解剖和生理可塑性,使之能忍受群落演替早期的干旱生境,更好地适应演替后期的中生环境,从而成为广布种和混交林中的优势种.  相似文献   

10.
不同林龄海桑林和无瓣海桑林根际微生物特征   总被引:2,自引:0,他引:2  
对不同林龄无瓣海桑(1、2、7、10、14年生)和海桑(1、4、7、10、14年生)人工林根际土壤微生物群落、微生物生物量碳和呼吸强度进行了研究。结果显示,不同林龄海桑和无瓣海桑的根际土壤为中性偏酸性,根际土壤有机质含量随着林龄增加而增加,总氮、总磷含量均在7年生林达到最高值,随后则随林龄增加而减少。海桑和无瓣海桑根际土壤的微生物生物量碳随林龄增大,在7年生林达到最高值,随后开始下降。细菌、真菌和放线菌数量和微生物生物量碳变化趋势一致,也是在7年生林达到最高值。相同林龄的海桑根际微生物的呼吸强度小于无瓣海桑,海桑的呼吸强度随林龄增加而增加,但无瓣海桑的呼吸速率在7年生林达到最高。典型相关分析表明,微生物生物量碳、呼吸强度与土壤有机质、pH呈显著相关性。  相似文献   

11.
The soil physicochemical indexes including edaphic pH values, edaphic salinity and soil nutrient indexes were determined in 8 Avicennia marina populations located in national nature reserve of Shenzhen of Guangzhou Province. The morphological characters in secondary xylem of Amarina populations corresponding to soil sampling which represented different habitats were surveyed by means of light microscopy and electronic microscopy. Some common specialized wood structures in Amarina growing in different habitais can be observed which suggest they function as safely conducting water under high negative pressure and are thus adaptive to intertidal habitats.These characteristics include the occurrence of: (1) some fibriform vessel elements; (2) vessel vestures and helical structures on vessel walls; (3) parenchyma cells contain lots of starch grains;(4) included phloem. Soil organic matter and soil total salt have significant effect on quantitative wood anatomical features by the stepwise regression analysis.With the increase of soil salinity and soil organic matter content which suggest occurrence of more and more serious “physiological drought”, Amarina is characterized by a higher porosity.and double thickness of vessel wall making contact with an adjacent vessel. The trends inferred that variations in the quantitative wood anatomical features of Amarina growing at different sites are adaptive to heterogenous habitats in the intertidal areas.  相似文献   

12.
周朝彬  谭岷山  龚伟 《西北植物学报》2018,38(10):1877-1884
以古尔班通古特沙漠地区优势植物种梭梭(Haloxylon ammodendron)为试验材料,通过观察测定不同树龄、不同季节梭梭木质部解剖结构,计算梭梭木质部非结构性碳水化合物(NSC)及其组分的径向运输速率,分析NSC运输特征与木质部射线和导管解剖结构之间的相关性。结果表明:(1)随着树龄的增加,梭梭导管和射线解剖特征均表现出增加趋势;5月梭梭导管长度和导管直径高于其他季节,10月梭梭射线高度、射线宽度和射线细胞壁厚度均高于其他季节。(2)梭梭木质部NSC、可溶性糖和淀粉的径向运输速率随树龄增长呈显著递增趋势,但13年生与18年生树龄间的NSC、可溶性糖和淀粉的径向运输速率差异不显著。(3)5月和10月的梭梭木质部NSC径向运输速率显著高于7月(P<0.05);可溶性糖径向运输速率表现为5月最高、7月最低;淀粉径向运输速率从5月到10月呈显著递减趋势。(4)相关分析结果显示,可溶性糖径向运输速率与导管长度(P<0.05)、导管直径和射线高度呈显著正相关关系(P<0.01);淀粉径向运输速率与导管长度、导管直径间呈极显著正相关关系(P<0.01);NSC径向运输速率与导管直径、射线高度间呈极显著正相关关系。研究认为,梭梭木质部径向运输功能与木射线和导管解剖结构有关,且呈明显季节动态变化。  相似文献   

13.

Key message

By using a simple and rapid technique, the degree of vessel deviations in the stem xylem could be evaluated and compared between different plant species. The degree of vessel deviations was suggested to be one of the main factors determining the hydraulic integration in woody stems.

Abstract

The main objective of this study was to investigate the role of vessel tangential deviations in determining both intervessel connectivity and patterns of hydraulic integration in woody stems of six Fabaceae trees. It was hypothesized that increasing the degree of vessel deviations would increase lateral contacts between vessels thereby increasing hydraulic integration within stems. Species-specific differences in vessel deviations and intervessel connectivity were quantified by following the movement of an apoplastic dye that was injected to a limited number of vessels. Intervessel connectivity was measured as the number of laterally connected vessels, whereas the degree of vessel deviations was measured as the magnitude of divergence of a group of neighboring vessels. Hydraulic integration index was determined as the ratio of tangential to axial conductance. Results showed that the degree of vessel deviations differed significantly between species. Acacia cyanophylla showed the lowest degree of vessel deviations (1.75 ± 0.33), while the highest degree was observed in Acacia etbaica (2.48 ± 0.26). Hydraulic integration was positively correlated more with vessel deviations than with intervessel connectivity. Only a very weak positive correlation was observed between vessel deviations and intervessel connectivity. Tangential deviations in the course of vessels might be one of the main factors determining the patterns of integrated–sectored transport in woody stems and, consequently, might have ecological implications in terms of plant adaptation to various ecological conditions. This study confirmed the complexity of interactions in the xylem hydraulic system.  相似文献   

14.
The main objective of this study was to evaluate the role of intervessel contacts in determining the patterns of hydraulic integration both within and between xylem sectors. The degree of intervessel contacts and the lateral exchange capability within and between sectors were examined and correlated in different xeric shrubs. A dye injection method was used to detect the connections between vessels; an apoplastic dye was sucked through a known number of vessels and its distribution in the xylem network was followed. Hydraulic techniques were used to measure axial and tangential conductivity both within and between xylem sectors. The intra- and inter-sector integration indexes were then determined as the ratio of tangential to axial conductance. Species differed significantly in the degree of intervessel contacts, intra- and inter-sector integration index. In all cases, hydraulic integration was observed to be higher within sector than between sectors. From the correlation analyses, the intervessel contacts showed a very weak relationship with inter-sector integration index and a strong positive relationship with intra-sector integration index. Results suggested that (1) the factors affecting patterns of lateral flow within xylem sectors might be relatively different from those between sectors. (2) The degree of intervessel contacts was a major determinant of hydraulic integration within the same xylem sector. (3) Intervessel connectivity alone was a poor predictor of hydraulic integration between different sectors, implying a significant contribution of other anatomical, physiological and environmental factors in determining the patterns of integrated–sectored transport within woody stems.  相似文献   

15.
? Vulnerability to cavitation and conductive efficiency depend on xylem anatomy. We tested a large range of structure-function hypotheses, some for the first time, within a single genus to minimize phylogenetic 'noise' and maximize detection of functionally relevant variation. ? This integrative study combined in-depth anatomical observations using light, scanning and transmission electron microscopy of seven Acer taxa, and compared these observations with empirical measures of xylem hydraulics. ? Our results reveal a 2 MPa range in species' mean cavitation pressure (MCP). MCP was strongly correlated with intervessel pit structure (membrane thickness and porosity, chamber depth), weakly correlated with pit number per vessel, and not related to pit area per vessel. At the tissue level, there was a strong correlation between MCP and mechanical strength parameters, and some of the first evidence is provided for the functional significance of vessel grouping and thickenings on inner vessel walls. In addition, a strong trade-off was observed between xylem-specific conductivity and MCP. Vessel length and intervessel wall characteristics were implicated in this safety-efficiency trade-off. ? Cavitation resistance and hydraulic conductivity in Acer appear to be controlled by a very complex interaction between tissue, vessel network and pit characteristics.  相似文献   

16.
While the xylem hydraulic properties, such as vulnerability to cavitation (VC), are of paramount importance in drought resistance, their genetic determinants remain unexplored. There is evidence that pectins and their methylation pattern are involved, but the detail of their involvement and the corresponding genes need to be clarified. We analyzed the hydraulic properties of the 35S::PME1 transgenic aspen that ectopically under‐ or over‐express a xylem‐abundant pectin methyl esterase, PtxtPME1. We also produced and analyzed 4CL1::PGII transgenic poplars expressing a fungal polygalacturonase, AnPGII, under the control of the Ptxa4CL1 promoter that is active in the developing xylem after xylem cell expansion. Both the 35S::PME1 under‐ and over‐expressing aspen lines developed xylem with lower‐specific hydraulic conductivity and lower VC, while the 4CL1::PGII plants developed xylem with a higher VC. These xylem hydraulic changes were associated with modifications in xylem structure or in intervessel pit structure that can result in changes in mechanical behavior of the pit membrane. This study shows that homogalacturonans and their methylation pattern influence xylem hydraulic properties, through its effect on xylem cell expansion and on intervessel pit properties and it show a role for PtxtPME1 in the xylem hydraulic properties.  相似文献   

17.
Sonneratia caseolaris is a typical non-viviparous mangrove species and a key component of mangrove community in the Indo-West Pacific region. Here we isolated nine microsatellite simple sequence repeat (SSR) loci from the genome of S. caseolaris. Our isolated loci provided SSR markers with polymorphism of 2–6 alleles per locus. The expected and observed heterozygosities ranged from 0.242 to 0.745 and from 0.083 to 0.417, respectively. Cross-species amplification in S. alba and S. ovata showed that a subset of these markers holds promise for these congeneric species. These polymorphic SSR markers would be useful tools for population genetics studies on S. caseolaris as well as other congeneric species.  相似文献   

18.
The history of cellular events in the storeyed cambium of Lonchocarpus sericeus (Poir.) DC was analysed on the basis of changes in the cell arrangement in successive layers and strata of axial parenchyma in the xylem. The mechanism of formation of the regular interlocked grain was investigated. Inclination of fusiform cells changes intensively whereas height and position of storeys in the successive layers of axial parenchyma are constant. As a result, new contacts between cells are formed by means of the intrusive growth of ends of cells belonging to one storey between the tangential walls of cells of the neighbouring storey and unequal periclinal divisions, which give a new shape to the initials. The concept of intrusive growth between the radial walls of the fusiform initials in the formation of xylem with interlocked grain should be revised on this basis.  相似文献   

19.
【目的】为探究盐生植物田菁及其根际功能微生物改良盐碱地的效果,本研究从黄河三角洲盐碱区田菁根际土壤中分离促生菌,并明确其耐盐促生效果。【方法】采用选择培养方法从田菁根际土壤中分离固氮菌、解磷菌以及解钾菌,并进行16S rRNA分子生物学鉴定。之后对菌株的耐盐及促生特性进行测定,筛选性状优良菌株进行玉米促生作用研究。【结果】共分离得到105株根际促生菌,其中N102兼具多种促生特性且耐盐性达15%。田菁种子发芽试验表明,N102可显著提高田菁发芽率(47%,P0.05)、芽长(48.5%,P0.05)和根长(60%,P0.05);玉米盆栽试验结果表明,N102对盐胁迫下玉米的株高、根长、叶绿素含量、地上部干重以及根干重具有显著的促进作用。经系统发育分析,N102与Enterobacter soli ATCC BAA-2102 (NR117547)序列相似度为99.30%,鉴定属于Enterobacter属。【结论】菌株N102具有多种植物促生耐盐特性,具有开发成有效促进盐碱地作物生长的微生物肥的良好前景。  相似文献   

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