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101.
FRANCESCO CRISCIONE MARGOT LOUISA LAW FRANK KÖHLER 《Zoological Journal of the Linnean Society》2012,166(4):689-722
Vast parts of the monsoon tropics of Australia feature semi‐arid habitats, which are generally thought to harbour a depauperate land snail fauna as compared to the mesic continental fringes, in particular the Australian wet tropics. However, our knowledge of land snails inhabiting these often remote environments is still very patchy. In order to improve the understanding of land snail diversity in the monsoon tropics, we revised the camaenid land snail genus Exiligada based on comprehensive collections, undertaken by use of helicopters on remote limestone outcrops in the Northern Territory and in Western Australia. Based on comparative analyses of shell and genital morphology and patterns of molecular differentiation, we recognize 15 species within Exiligada, 13 of which are newly described. In addition, we suggest a revised delimitation of the type species Exiligada negriensis, as compared to the latest available revision, by removing Exiligada qualis from its synonymy and recognizing it as a distinct species. A key for species identification is also provided. Molecular phylogenetic analyses strongly supported the monophyly of Exiligada with respect to other confamilial genera known to occur in the same geographical region. Most Exiligada species are narrowly endemic to restricted limestone outcrops that cover areas with a diameter of about 20 to 150 km. Within the distributional range of Exiligada, the ranges of up to seven species overlap but we never found more than three species to occur in sympatry at a given sampling site. We propose that species originated by allopatric differentiation, followed by secondary range expansion, leading to sympatric distributions. Our study confirms that less complex rock habitats in more xeric environments support no more than three sympatric species, this being likely to be a result of ecological exclusion. © 2012 The Linnean Society of London, Zoological Journal of the Linnean Society, 2012, 166 , 689–722. 相似文献
102.
103.
白鲜根的发育解剖学研究 总被引:1,自引:0,他引:1
应用半薄切片、常规石蜡切片并结合离析法,对药用植物白鲜(Dictamnus dasycarpus Turcz.)根的发生发育过程进行了研究。结果表明:白鲜根的发生发育过程包括4个阶段,即原分生组织阶段、初生分生组织阶段、初生结构阶段以及次生结构阶段。原分生组织位于根冠内侧及初生分生组织之间,衍生细胞分化为初生分生组织。初生分生组织由原表皮、基本分生组织以及中柱原组成。原表皮分化为表皮,基本分生组织分化为皮层,中柱原分化为维管柱,共同组成根的初生结构;在初生结构中,部分表皮细胞外壁向外延伸形成根毛,皮层中分布有油细胞,内皮层有凯氏带,初生木质部为二原型或偶见三原型,外始式;根初生结构有髓或无。次生结构来源于原形成层起源的维管形成层的活动以及中柱鞘起源的木栓形成层的活动;白鲜次生韧皮部宽广,其中多年生根中可占根横切面积的85%,另外除基本组成分子外,还分布有油细胞;周皮发达,木栓层厚;初生皮层、次生木质部和次生韧皮部薄壁细胞中常充满丰富的淀粉粒。 相似文献
104.
The data derived from a chloroplast DNA restriction site analysis of subtribeDendrobiinae (Orchidaceae) indicate that extreme vegetative diversification is concentrated in two limited parts of this group. Overlaying the vegetative character states onto the chloroplast DNA cladogram suggests that several xeromorphic, vegetative characters evolved in the lines leading to the above-mentioned clades. Several anatomical characters are also associated with xeromorphy. These vegetative and anatomical characters facilitated the establishment of this group in various dry habitats. On the other hand, the modifications of size and number of parenchymatous cells substantially contributed to the vegetative diversification. This fact implies that a simple structural adjustment can result in a major modification of growth habits in theDendrobiinae. 相似文献
105.
安徽贝母属植物叶片的比较解剖学研究 总被引:2,自引:0,他引:2
在光学显微镜下,对安徽省贝母属(Fritillaria L.)8种1变种,其中包括安徽贝母(F. anhuiensis)和宁国贝母(F. ningguoensis)各两个居群的植物叶片进行了解剖结构观察,结果发现:叶肉细胞均含有淀粉粒,近上表皮的叶肉细胞多为方形或圆柱状,较大,排列较紧密,近下表皮的叶肉细胞形状不规则,多有分枝,细胞间隙大;叶均无表皮毛等附属物,除铜陵黄花贝母(F. monantha var. tonglingensis)的下表皮细胞类似平行四边形外,其它种叶表皮细胞表面观为长方形或长条形,细胞长轴与叶脉平行,垂周壁为平直、浅波状或深波状;气孔器为Allium型,仅分布于下表皮,椭圆形,长轴与叶脉平行,单个随机分布,部分种保卫细胞两极有“T”形加厚。叶表皮细胞的形状,垂周壁式样,气孔器的类型等特征较为稳定,可以为贝母属内种的划分及系统演化关系的探讨提供实验证据。 相似文献
106.
Secretory tissues in vascular plants 总被引:15,自引:3,他引:15
ABRAHAM FAHN 《The New phytologist》1988,108(3):229-257
107.
HEIKE WÄGELE 《Zoological Journal of the Linnean Society》1991,101(4):359-389
The external morphology and anatomy of the Antarctic nudibranchs Pseudotritonia quadrangularis Thiele, 1912, P. gracilidens Odhner, 1944 and Telarma antarctica Odhner, 1934 are redescribed. Both genera, which were only known by two or one specimen, do not possess a cnidosac, but there is a terminal swelling at the termination of the digestive glandular ramifications in P. gracilidens. This sac is composed of cells with a large vacuole. A glandular stripe on the right side of the body above the genital openings, nephroproct and anal papilla is considered to be a synapomorphy for both genera. The validity of the family Charcotiidae and the affinities to the aeolid genus Notaeolidia Eliot, 1905 and taxa of the Arminacea are discussed. 相似文献
108.
石蒜属12种植物叶片比较解剖学研究 总被引:2,自引:0,他引:2
对石蒜属(Lycoris Herb.)12种植物叶片的比较解剖学研究表明:(1)石蒜属植物叶片横切面的端部、中部及基部的轮廓基本呈浅“W”或“V”字型,有些种的表皮细胞上具有明显的尖刺状乳突;(2)石蒜属植物均为异面叶,叶肉组织有一定的栅栏组织和海绵组织分化,但二者的厚度、叶肉中所占比例及栅栏组织的细胞层数在种间有一定的差异;(3)海绵组织发达、具有大而明显的薄壁细胞或细胞裂溶后形成空腔(分泌腔或气腔);(4)叶片中维管束数目大多为奇数,叶脉维管束鞘由薄壁细胞组成;(5)石蒜属植物横切面上叶缘的形状分为圆弧形和楔形两种类型。石蒜属植物叶的解剖结构具有许多相似特征;同时又具有一定的种间差异,可为石蒜属槽物的种间关系和开发利用提供有价值的信息。 相似文献
109.
应用常规石蜡切片法对狭叶柴胡(Bupleurum scorzonerifolium Willd.)根的发育过程进行了解剖学研究,并对其1年生与多年生根的结构进行了比较。结果表明,狭叶柴胡根的发育包括原分生组织、初生分生组织、初生结构和次生生长4个发育阶段。原分生组织由3群原始细胞组成,其细胞具有典型分生组织的细胞学特征;初生分生组织包括根冠原、表皮原、皮层原和中柱原。初生结构由表皮、皮层和中柱组成。初生木质部多为二原型,少数为三原型。次生结构为:从外到内由周皮、中柱鞘薄壁细胞环和次生维管组织组成,次生生长主要是依靠维管形成层和木栓形成层的活动来完成,其木栓形成层由中柱鞘细胞恢复分裂能力而形成。多年生根与一年生根的结构基本相似,但在各部分的细胞数量和组成上存在差异。分泌道在一年生的根中仅分布在中柱鞘薄壁组织中,而在多年生的根中,在中柱鞘薄壁细胞和次生韧皮部中均有分布。 相似文献
110.
Peter Saenger FLS Philip W. West 《Botanical journal of the Linnean Society. Linnean Society of London》2016,180(4):530-541
Leaf characteristics reflecting the size, lifespan (longevity), moisture content (degree of succulence) and complexity of structure of 20 mangrove species were studied over several years at 13 locations along the tropical and subtropical Australian coast. These characteristics were found to fall generally within the ranges of those for woody species from other ecosystems. With the exception of one species, it was found that leaf longevity was related inversely to leaf moisture content, increasing from nearly 6 months in more succulent species to over 2 years in less succulent species. This suggested that more succulent leaves are less complex in their structure because they have less well‐developed ability to compartmentalize salt. There was a tendency also for leaf longevity to increase in species with larger leaves. These findings were consistent with the general view for land plants that leaf longevity is greater in species that have developed tolerance to environmental stress, salt particularly in the case of mangroves. Leaf tissue in such species is more robust or complex and requires greater metabolic resources in its construction; the plant is then advantaged by retaining the tissue for longer periods. Classification of the species considered here, based on their leaf longevity, moisture content and complexity, identified phylogenetically related species groupings that reflected these leaf longevity effects. 相似文献