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珍稀濒危植物长蕊木兰种群的年龄结构与空间分布   总被引:2,自引:0,他引:2  
珍稀濒危植物长蕊木兰为国家Ⅰ级保护植物。然而,由于受研究尺度和分析方法的限制,对其种群生态特征等方面仍不清楚。以云南高黎贡山原生的中山湿性常绿阔叶林4 hm2样地调查数据为基础,应用Ripley的L函数分析了长蕊木兰种群的年龄结构与空间分布格局。研究发现:(1)长蕊木兰种群的年龄结构为反"J"型,属稳定型种群。(2)长蕊木兰种群个体的空间分布格局与空间尺度关系密切,空间尺度小于75 m时为聚集分布,大于75 m时为随机分布。生境异质性在长蕊木兰种群空间分布格局的形成中可能发挥了重要的作用。(3)不同发育阶段个体的空间分布格局存在明显的差异,中树和小树阶段的分布格局在中、小尺度上呈聚集分布,在较大尺度上呈随机分布;大树阶段在整个空间尺度上均呈现随机分布。(4)长蕊木兰不同发育阶段的空间关联性主要表现为中、小尺度上的负相关,在较大尺度上则趋向于无关联。  相似文献   
2.
八属木兰科植物木材导管分子的比较解剖   总被引:10,自引:0,他引:10  
本文比较描述了我国木兰科木莲属、华盖木属,长蕊木兰属,拟单性木兰属,合果木属,观光木属,香木兰属和鹅掌楸属等8属22种植物次生质部的导管分子,这些导管分子的长度和宽度都有差异,木莲属的所有种中都有具梯状穿孔板的导管分子,但在少数种中偶然可见到单穿孔,在其它属中,也都有具梯状穿孔板的导管分子,仅在观光木属中偶见的单穿孔,木莲属大多数种均无螺纹加厚,仅桂南木莲一种除外,另外,除了合果木属和鹅掌楸无螺纹加厚外,其余均有此种加厚,各属的导管分子还存在其它一些差异。  相似文献   
3.
Foliar sclereids in the Magnoliaceae   总被引:4,自引:0,他引:4  
The foliar sclereids in 136 species representing 11 of the 12 genera of Magnoliaceae were studied and compared. Sclereids occur in four different cell assemblages within the leaf: diffuse idioblasts, mesophyll, dermal system, and the vein sheath including terminal elements. Tropical members tend to have the most highly sclerified leaves. In species of Manglietia the leaves have sclerified spongy mesophyll and either sclerified epidermis or hypodermis. In Talauma , sclerification affects the vein sheath and terminal cells of veinlets, with a specialized thick marginal vein in the Asian taxa but not in the American ones. Liriodendron and the magnolias native to the north temperate zone have only minimal sclerification, which usually is confined to the vein sheath of the midrib and the main lateral veins, and as idioblastic sclereids in the petiole and the midrib near the base of the blade. The two largest genera Magnolia and Michelia are heterogeneous and include species which vary as to their combinations of sclerified elements among the four possible types.  相似文献   
4.
濒危植物长蕊木兰的核型   总被引:1,自引:0,他引:1  
报道了长蕊木兰(Alcimandra cathcartii)的染色体核型,核型公式为2n=2x=38=22m+15sm(3sat)+1st。核型类型属于Stebbins的2A型。第18条染色体为st染色体,第5、6、7条sm染色体的短臂上各具有1个随体。间期核为简单染色中心型(simple chromocenter type),有丝分裂前期染色体为中间型(interstitial type)。对前人关于木兰属和含笑属植物的核型研究结果进行了比较分析,长蕊木兰与含笑属亲缘关系较近,但稍有区别,而与木兰属的亲缘关系较远。  相似文献   
5.
长蕊木兰花粉形态观察   总被引:1,自引:1,他引:1  
徐凤霞  龚洵 《广西植物》2003,23(4):321-322,338
长蕊木兰(Alcimandra cathcartii)花粉粒椭圆形,具远极单萌发沟,外壁雕纹小穴状。外壁覆盖层具穿孔,柱状层有不典型的小柱,内壁可明显地分为3层。  相似文献   
6.
This paper deals mainly with comparative studies on vessel elements of secondary xylem in Chinese Manglietia, Manglietiastrum, Alcimandra, Parakmeria, Paramichelia, Tsoongiodendron, Aromadendron and Liriodendron. There are some differences between the genera in vessel element length and width. Manglietia species all have scalariform perforation plates, only a few also have simple perforations. The other genera have scalariform perforation plates. only one (Tsoongiodendron odorum Chun) has simple perforations in addition. There are no spiral thickenings in Manglietia except for one species [Manglietia chingii Dandy (M. temuipes Dandy)] . Paramichelia and Liriodendron have no spiral thichenings, but they are present in the other genera. In addition, some other differences in vessel elements between these 8 genera are also discussed.  相似文献   
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