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不同产地山芹萸种实性状变异分析   总被引:3,自引:0,他引:3  
山茱萸〔Macrocarpiumofficinalis (Sieb .etZucc .)Nakai〕为重要的木本药用植物 ,果皮名曰萸肉 ,枣皮 ,果肉中含有 16种氨基酸、2 3种微量元素以及丰富的维生素、有机酸、鞣质、多种甙、黄酮等 ,具有多种药用功效 ,是名贵的中药[1] 。同时 ,山茱萸又是一种非常好的观赏树种 ,具有较高的经济价值和良好的开发应用前景[2 ] 。山茱萸的栽培已有 10 0 0多年的历史 ,但对其研究主要集中在营养和药用成分分析、种子休眠以及栽培技术等[3~ 5] 。作者分析了不同产地、不同母树山茱萸种实性状的变异状况 ,…  相似文献   
2.
In Sararanga , the fruit is a berry as in Freycinetia. The testa comprises a lignifled outer integument with several cell layers, and an unlignified inner integument with two cell layers. Abortive fruits are frequent; they correspond to normal fruits that do not have carpels and sometimes have a lateral process that suggests an abortive carpel. The staminate flowers have a pistillode as in Freycinetia. The anther walls have 1–3 cell layers with endothecial thickenings, one layer in the distal part, 2–3 layers in the proximal part, as in Pandanus. Thus, within the family Pandanaceae, Sararanga has an intermediate position between Pandanus and Freycinetia. Generally speaking, there is a gradient in the vascularization of the bracts on the inflorescences: upper bracts are unvascularized, lower bracts vascularized. Anatomy suggests that the cupules are a perianth.  相似文献   
3.
Andira comprises 29 species distributed throughout tropical America, with two subspecies in Africa. Its fruits are unusual for a papilionoid legume because they are drupes. The majority of species have fruits dispersed by bats, but eight species have larger fruits dispersed by-rodents. Some fruits of both dispersal types are secondarily dispersed by water. Cladistic analysis of chloroplast DNA (cpDNA) restriction site characters discovered four well-supported clades of Andira species. None of these 'cryptic' clades had been recognized by previous workers, because they are not apparently marked by any known morphological innovations. This prompted a search for new characters that might support these groupings. An anatomical study of fruit walls of 25 Andira species revealed the presence of three principal endocarp types, dominated by (1) parenchyma, (2) fibres, or (3) stone cells. These features arc best coded as a single unordered multistate character. When incorporated into a simultaneous cladistic analysis of previously gathered molecular and morphological data, states of this endocarp character are shown to be apomorphies for two of the well-supported clades evident in the cpDNA restriction site data. The most likely plesiomorphic state for the endocarp is parenchyma-dominated. Thicker, stronger endocarps of fibres and stone cells may have evolved in response to the need to protect the seed from predators.  相似文献   
4.
在扫描电镜和解剖镜下研究鼠李科(Rhamnaceae)勾儿茶属(Berchemia)和小勾儿茶属(Berchemiella)共17种植物的果实和种子形态.结果表明:小勾儿茶属的核果1室,具1枚种子,勾儿茶属大多数种的核果2室,每室具1枚种子,但多叶勾儿茶(B.polyphylla)的核果1室较大,具1枚种子,另一室较小而没有种子,该种可能是连接勾儿茶属和小勾儿茶属的中间类群.这两个属的种子形状通常为不规则长椭圆形,种皮纹饰可划分为光滑或几乎光滑、具不明显或稀疏的条纹以及具明显的条纹或沟这三种类型.种皮纹饰的差异对这两个属属下种类的划分具有一定的意义.讨论了与前人研究结果不同之处和可能的原因.  相似文献   
5.
This paper is an ethnobotanical study of a 400 year old earth oven discovered on Nikunau, in the southern Gilbert Islands. The anthropological analyses based on almost 2000 identified charcoal specimens show that only a few taxa were used for fuel, primarily monocotyledon endocarp which was waste from food production. In addition, a conventional non-parametric statistical test was evaluated for use as an indicator of similarity between samples. It appears that in an assemblage where the taxonomic range (monocotyledon to dicotyledon) is large, a rank order statistical test is inappropriate due to variation in fragmentation.  相似文献   
6.
The pedicel of the female flower of Rhus lancea is distinctly articulated and usually carries three bracteoles. In the linear tetrad the micropylar megaspore forms the 8-nucleate embryo sac of the Oenothera -type. The single, bitegmic ovule is anatropous. The ripe, loose, papery exocarp consists mainly of the outer epidermis and a sclerified hypodermis. The mesocarp is not a typical sarcocarp, since the ridges and the inner layers are sclerenchymatous. The endocarp, originating from the inner epidermis, consists of four layers and its structure and microchemistry emphasize the close alliance of Rhus with other genera of the section Rhoideae. The endotestal seed indicates a phylogenetic affinity between the Anacardiaceae and the Burseraceae.  相似文献   
7.
Heeria argentea (tribe Rhoeae), a monotypic, dioecious tree, is endemic to the core area of the Cape Floristic Region. The mature exocarp consists of a uniseriate layer of palisade-like epidermal cells, interspersed with modified stomata. The mature endocarp sensu stricto develops solely from the inner epidermis. It is essentially two-layered and resembles the state in Protorhus longifolia. This endocarp is here proposed as a distinct fourth endocarpal subtype under the so-called Anacardium -type. The large, pachychalazal, recalcitrant seed develops from the single, anatropous, bitegmic, crassinucellate ovule. This ovule is characterized by an extensive chalaza, vascularization and Anacardiaceae-type hypostase. The pachychalazal seed coat contains abundant vascular bundles and a tanniniferous hypostase. The inner epidermis of the inner integument differentiates into an endotegmen. The contribution of the integuments towards seed coat development is negligible. Concerning characters of the disc in the female flower, the meso- and endocarp, as well as seed size, degree of pachychalazy, nutrient reserves (starch) in the chlorophyllous cotyledons and hypogeal germination, Heeria shows a very close phylogenetic relationship to Protorhus longifolia. However, fruit and seed structure clearly supports the taxonomic separation of Heeria from Ozoroa. Data also support the view that Heeria is a tropical relict, and the hypothesis that pachychalazy, greater seed size, as well as recalcitrant seed viability behaviour constitute ancestral seed character states. Pachychalazy is regarded as a functional adaptation for more efficient transfer of nutrients.  相似文献   
8.
Fruit structure (anatomy) was studied in 27 species of 15 genera of Monimiaceae s.s. Almost all have apocarpous gynoecia, with the carpels more or less surrounded by a floral cup. The fruitlets are presented on the opened floral cup, which, depending on its pre‐ and post‐floral development, differentially contributes to the attractive part of the mature fruit. Morphologically similar fruits may differ conspicuously in anatomical structure. Based on anatomical characters two different fruit forms were found: drupe(let)s (with compact sclerenchymatic endocarp forming a stone: putamen) and berry(let)s (with parenchymatic endocarp, and mesocarp parenchyma containing isolated sclereid nests). Four types of drupelets differing by the endocarp structure were tentatively distinguished: (1) the Monimia‐type has a many‐cell‐layered putamen of large isodiametric sclereids, interrupted on the ventral side by few radial rows of small sclereids; (2) the Hortonia‐type has a few‐cell‐layered putamen of isodiametric, especially thick‐walled sclereids – it may be composed of two lateral halves, i.e. with the sclerenchyma partially interrupted on the ventral and dorsal sides (but without rows of small sclereids); (3) the Mollinedia‐type has a few‐cell‐layered putamen, with more or less radially elongate sclereids with wavy cell walls; and (4) the Hedycarya‐type has a one‐cell‐layered putamen of pronouncedly radially elongate sclereids with wavy cell walls. Drupelets of some taxa with a single‐cell‐layered endocarp with only weakly thickened cell walls may represent a transition from drupelets to berrylets. The fruit structure supports three major clades recognized earlier by morphological studies and by molecular phylogenetic analyses: (1) Monimioideae (Monimia‐type drupelets), (2) Hortonieae of Mollinedioideae (Hortonia‐type drupelets), and (3) the remainder of Mollinedioideae (Hedycarya‐ and Mollinedia‐types) and berrylets. Fruit structure also supports the close relationship of Monimiaceae and Lauraceae. © 2007 The Linnean Society of London, Botanical Journal of the Linnean Society, 2007, 153 , 265–285.  相似文献   
9.
The pedicel of the female flower of Rhus lancea is distinctly articulated and usually carries three bracteoles. In the linear tetrad the micropylar megaspore forms the 8-nucleate embryo sac of the Oenothera-type. The single, bitegmic ovule is anatropous. The ripe, loose, papery exocarp consists mainly of the outer epidermis and a sclerified hypodermis. The mesocarp is not a typical sarcocarp, since the ridges and the inner layers are sclerenchymatous. The endocarp, originating from the inner epidermis, consists of four layers and its structure and microchemistry emphasize the close alliance of Rhus with other genera of the section Rhoideae. The endotestal seed indicates a phylogenetic affinity between the Anacardiaceae and the Burseraceae.  相似文献   
10.
The exocarp sensu lato , which develops from the outer epidermis and adjacent parenchyma of the ovary wall, consists of collenchyma cells with a stomatous epidermis. The fleshy, parenchymatous mesocarp or sarcocarp develops after endocarp differentiation. The endocarp is partly spongy and partly woody. The spongy endocarp contains most of the vascular tissue and fills the cavities and grooves of the intricately sculptured outer woody endocarp. The inner woody endocarp and adjacent woody, endocarpal operculum develop from the inner epidermis and subepidermal parenchyma of the ovary wall. The bitegmic, anatropous ovule develops into a derived, exalbuminous seed with an undifferentiated seed-coat. An extensive chalaza, extensive hypostase sensu lato and the raphe are important in the development of the seed-coat. The pericarp and seed-coat of H. caffrum is compared with those of Sclerocarya birrea subsp. caffra and Lannea discolor . The close phylogenetic relationship of these three species of the Spondieae is reaffirmed. The marked similarities in pericarp and seed structure between H. caffrum and species of the genus Spondias are noted.  相似文献   
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