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1.
本文研究了分布在细叶益母草(Leonurus sibiricus)叶表面三种腺毛的发育过程,在此基础上,对2-细胞头状腺毛、4-细胞头状腺毛和8-细胞盾状腺毛的多样性特征进行了讨论。  相似文献   

2.
本文研究了分布在细叶益母草(Leonurussibiricus) 叶表面三种腺毛的发育过程,在此基础上,对2细胞头状腺毛、4细胞头状腺毛和8细胞盾状腺毛的多样性特征进行了讨论  相似文献   

3.
本文研究了分布在细叶益母草(Leonurus sibiricus)叶表面三种腺毛的发育过程,在此基础上,对2-细胞头状腺毛、4-细胞头状腺毛和8-细胞盾状腺毛的多样性特征进行了讨论。  相似文献   

4.
火炬树腺毛的形态结构和发育的研究   总被引:8,自引:0,他引:8       下载免费PDF全文
研究了火炬树(RhustyphinaTorner.)叶柄腺毛的形态结构和发育过程,结果表明,其腺毛起源于叶柄的表皮细胞,每个腺毛都由1个基细胞、3个柄细胞和分泌细胞组成的头部3部分组成。  相似文献   

5.
莼菜腺毛的发育及其超微结构研究   总被引:8,自引:1,他引:8  
  相似文献   

6.
利用光镜和扫描电镜研究了紫花野菊叶表面毛状体结构和发育。较详细地描述和讨论了这两种毛的个体发育过程。  相似文献   

7.
利用光学显微镜、扫描电镜和透射电镜技术,观察了龙葵“四叶一心”期时叶片及茎表皮的腺毛的种类、分布,探究了不同类型腺毛的起源、生长、成熟、分泌、衰老等发育过程的细胞学特征;通过组织化学染色和荧光显微技术,观察了龙葵腺毛成分、分布,为龙葵的进一步开发利用提供参考。结果表明:(1)龙葵腺毛分为单细胞头腺毛和多细胞头腺毛两类,前者主要分布于茎表面和叶上下表皮,后者主要分布于茎表面的单细胞头腺毛之间、叶脉及叶边缘;(2)龙葵腺毛发育起始于表皮细胞突起,单细胞头腺毛行顶端生长,具1-4个柄细胞,四种类型;多细胞头腺毛可再分为一层、两层与三层多细胞头腺毛,另具三种特殊类型;(3)龙葵成熟腺毛具分泌能力,通过皮下空间的物质积累导致腺毛头细胞表面形成突起、包块、破口,最终释放分泌物;而头细胞与柄细胞随即皱缩、衰老。(4)超微结构显示,腺毛头细胞中内质网与高尔基体极为丰富,合成代谢及分泌活动活跃,产生大量包裹嗜锇物质的囊泡,囊泡与细胞壁融合,进而将嗜锇物质转移至细胞壁并积累,随后储存在角质层下的皮下空间直至分泌释放;(5)组织化学染色结果表明,腺毛含有萜类、生物碱、脂类、蛋白质、酚类和多糖。头细胞中主要含有萜类、生物碱、脂类、蛋白质、酚类和中性多糖;柄细胞中主要含有萜类、生物碱、脂类。  相似文献   

8.
薄荷头状腺毛分泌过程的超微结构研究   总被引:7,自引:0,他引:7  
闫先喜  胡正海 《生命科学研究》1998,2(4):295-300,304
电镜观察表明,刚形成的薄荷头状腺毛的头部细胞,细胞核较大细胞质浓,有一些小液泡,质体和线粒体最显著,分泌前期,内质网及高尔基体数量明显  相似文献   

9.
应用荧光显微技术和电镜技术,对不同发育时期烟草叶面腺毛的叶绿素荧光和叶绿体结构进行了比较研究.结果发现,在腺毛发育初期,腺头细胞叶绿素荧光明显,叶绿体类囊体结构清晰;随着腺头细胞的分裂和生长,叶绿素荧光逐渐增强,叶绿体数目逐渐增多,类囊体发达,嗜锇颗粒产生;在腺毛发育成熟以后,叶绿素荧光减弱,类囊体膜降解,嗜锇颗粒增多;随着腺毛的分泌活动增强,叶绿体完全降解,磷脂双层膜消失,嗜锇颗粒扩散到细胞质中,并最终聚集在细胞质膜附近.  相似文献   

10.
紫苏腺毛的形态结构和发育的研究   总被引:2,自引:0,他引:2       下载免费PDF全文
紫苏(Perillafrutescens(L.)Britton)叶上腺毛的研究表明:叶上腺毛主要有两种类型,一是头状腺毛,二是后状腺毛。两类腺毛都是由1个基细胞、1个柄细胞和由分泌细胞组成的头部构成。头状腺毛的头部由1个、2个或4个分泌细胞构成,其头部呈圆球形或半圆球形。盾状腺毛的头部也由1个、2个、4个或8个分泌细胞构成,其分泌细胞横向扩展使头部呈盾状。分泌盛期,大量分泌物充满角质层下间隙。两类腺毛的原始细胞均起源于叶原基或幼叶的原表皮层细胞,它通过两次平周分裂形成1个基细胞、1个柄细胞和1个头细胞,头细胞不分裂或依次进行1—3次垂周分裂,分别形成单细胞、2细胞、4细胞或8细胞的头部。  相似文献   

11.
唇形科植物腺毛及其分泌研究进展   总被引:7,自引:1,他引:7  
唇形科植物的茎和叶通常着生腺毛,能分泌芳香油,腺毛的分布密度越大其分泌能力越强。对近年来该科植物腺毛及其分泌的研究进展作一综述,对腺毛的结构类型、发生发育和分泌物及其分泌过程作了介绍,指出了该研究领域中存在的问题。  相似文献   

12.
羽叶薰衣草表皮毛的发育解剖学研究   总被引:1,自引:1,他引:1  
对羽叶薰衣草(LavandulapinnataL.)茎和叶上两种表皮毛(腺毛和非腺毛)发育的解剖学观察表明,两者的发生都源于茎或叶的原表皮细胞,但外部形态、发育过程及功能明显不同。腺毛有头状腺毛和盾状腺毛两种类型,均由1个基细胞、1个柄细胞和头部细胞构成。头状腺毛的头部只有1个或2个分泌细胞,盾状腺毛由8个分泌细胞构成头部。非腺毛由3-20个细胞组成,可分为三种类型:单列不分枝、二叉分枝和三叉及三叉以上多分枝的树状分枝。非腺毛的顶部细胞由基部到顶部逐渐变细,先端成尖形。腺毛发育由原表皮细胞经两次平周分裂形成,由于柄细胞和头部细胞所处的分化状态不同而发育成两类腺毛。非腺毛由非腺毛原始细胞经二次或多次平周分裂和不均等分裂,再发育成数个至二十多个子细胞。  相似文献   

13.
    
Myoporum bontioides A. Gray (Myoporaceae), a red list plant in Japan, is restricted to only a few East Asian countries like China, Japan and Taiwan, associated to some true mangroves. The leaf is isolateral and has a thick cuticle; stomata are anomocytic, sunken and have a beak‐shaped cuticular outgrowth at the inner and outer side of the stomatal pore (ledges); profuse glandular hairs are scattered on both leaf surfaces of young leaves. The mesophyll is compact with palisade and spongy parenchyma cells in the young stage, but at maturity profuse intercellular spaces can be observed. Secretory ducts occur in young leaves. Pear‐shaped glandular hairs protrude from the epidermal layer. Hair primordia are well distinct by their larger size and undergo divisions to produce two laterally placed basal cells, two stalk cells and four radiating terminal cells. The cuticle layers of the terminal cells are often separated from the cell wall to form a space, in which ions accumulate for excretion. Inner walls of the basal cells are connected with the mesophyll. Though ontogeny and structure of glandular hairs have resemblance to typical mangroves, considering leaf micromorphology, this plant is better termed as “mangrove associate” instead of “true mangrove”. (© 2013 WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim)  相似文献   

14.
紫苏腺毛的形态发生研究   总被引:4,自引:0,他引:4  
紫苏叶上有两种腺毛:质状腺毛和头状腺毛。两者都具1个基细胞、1个柄细胞和头部。前者的头部可由1、2、4或8个分泌细胞组成,扩展成质状;后者的头部由1、2或4个分泌细胞组成,聚成圆球状。两种腺毛的原始细胞都来源于原表皮细胞,经两次平周分裂产生基细胞、柄细胞和顶细胞。在腺毛后期的形态发生中,柄细胞的分化状态决定腺毛的类型。若柄细胞保持扁平关且处于分生状态时,其顶细胞将发育成质状腺毛的头部;若柄细胞纵向  相似文献   

15.
紫苏叶上有两种腺毛:盾状腺毛和头状腺毛。两者都具1个基细胞、1个柄细胞和头部。前者的头部可由1、2、4或8个分泌细胞组成,扩展成盾状;后者的头部由1、2或4个分泌细胞组成,聚成圆球状。两种腺毛的原始细胞都来源于原表皮细胞,经两次平周分裂产生基细胞、柄细胞和顶细胞。在腺毛后期的形态发生中,柄细胞的分化状态决定腺毛的类型。若柄细胞保持扁平状且处于分生状态时,其顶细胞将发育成盾状腺毛的头部;若柄细胞纵向引长并迅速液泡化时,其顶细胞将发育成头状腺毛的头部。  相似文献   

16.
Copetta A  Lingua G  Berta G 《Mycorrhiza》2006,16(7):485-494
The essential oils of basil are widely used in the cosmetic, pharmaceutical, food, and flavoring industries. Little is known about the potential of arbuscular mycorrhizal (AM) fungi to affect their production in this aromatic plant. The effects of colonization by three AM fungi, Glomus mosseae BEG 12, Gigaspora margarita BEG 34, and Gigaspora rosea BEG 9 on shoot and root biomass, abundance of glandular hairs, and essential oil yield of Ocimum basilicum L. var. Genovese were studied. Plant P content was analyzed in the various treatments and no differences were observed. The AM fungi induced various modifications in the considered parameters, but only Gi. rosea significantly affected all of them in comparison to control plants or the other fungal treatments. It significantly increased biomass, root branching and length, and the total amount of essential oil (especially α-terpineol). Increased oil yield was associated to a significantly larger number of peltate glandular trichomes (main sites of essential oil synthesis) in the basal and central leaf zones. Furthermore, Gi. margarita and Gi. rosea increased the percentage of eugenol and reduced linalool yield. Results showed that different fungi can induce different effects in the same plant and that the essential oil yield can be modulated according to the colonizing AM fungus.  相似文献   

17.
Abstract

Two types of glandular hairs have been found in Cistus laurifolius L. (Cistaceae). Both types present a great degree of morphological and histochemical variability, not only at population level but even within a single plant. This fact excludes that the hairs of C. laurifolius could be given a diagnostic value. The two hair types have a mixed hydrophilous and lipophilous secretion in which we have identified, especially in one type of them, cathecolic tannins. The powerful antimycotic activity of such tannins, makes the hairs particularly interesting for the possible ecological implications.  相似文献   

18.
On the leaves and sepals of 52 species, representing all sections of the genusDrosera except one, 14 different types of glandular hairs were found: two-celled papillae, peltate scales, several types with unbranched, bi- or multiseriate stalk with a two- or multicellular gland, and one type with a multiseriate stalk and a two-armed gland. The combination of these hairs and the presence of non-glandular hairs confirm the actual classification of the genus. In combination with simple morphological characters (e.g., the type of insertion of the petiole) glandular hairs facilitate the identification of species even in the pharmaceutically important cut crude drug.  相似文献   

19.
蝇子草茎叶上着生粘液毛,它是由3个细胞构成的单列腺毛。电镜观察表明,在刚形成的腺毛柄细胞中,质体最发达,而且大多数质体内含有淀粉粒。在柄细胞中,有些质体和液泡膜融合产生小泡,可能以胞饮方式将质体内的淀粉粒降解后的产物转以液泡内。有些质体则可能直接突入液泡并在液泡内降解其淀粉粒。在头细胞发育中,含淀粉粒的质体增多。后期大多数质体消失,同时出现了大量的充满纤丝状物质的小不包和大泡。最后,小泡和大泡相琵  相似文献   

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