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排序方式: 共有162条查询结果,搜索用时 15 毫秒
81.
华南龙胆科植物拾零   总被引:1,自引:0,他引:1  
本文对华南龙胆科植物做了修订和补充。将白花田草的名称更正为百金花;将美丽獐牙菜归并入狭叶獐牙菜;报道了新记录种5个,即:念珠脊龙胆、流苏龙胆、新店獐牙菜、峨嵋双蝴蝶、玉山双蝴蝶。  相似文献   
82.
The growth of axillary shoots was initiated on nodal stem segments, excised from aseptically grown seedlings of Gentiana acaulis L., G. cruciata L., G. lutea L. and G. purpurea L. In later subcultures, a basal callus tissue developed on the shoots, giving rise to de novo formed buds. Optimum benzyladenine and indoleacetic acid combinations for shoot development were established. They were slightly different in the four species. From 35-70% of shoots rooted spontaneously, except in G. lutea, in which adventitious roots were induced by applying naphthaleneacetic acid. It was conduded that the four Gentiana species were amenable to propagation in vitro. This revised version was published online in June 2006 with corrections to the Cover Date.  相似文献   
83.
Habitat fragmentation increasingly threatens the services provided by natural communities and ecosystem worldwide. An understanding of the eco‐evolutionary processes underlying fragmentation‐compromised communities in natural settings is lacking, yet critical to realistic and sustainable conservation. Through integrating the multivariate genetic, biotic and abiotic facets of a natural community module experiencing various degrees of habitat fragmentation, we provide unique insights into the processes underlying community functioning in real, natural conditions. The focal community module comprises a parasitic butterfly of conservation concern and its two obligatory host species, a plant and an ant. We show that both historical dispersal and ongoing habitat fragmentation shape population genetic diversity of the butterfly Phengaris alcon and its most limited host species (the plant Gentiana pneumonanthe). Genetic structure of each species was strongly driven by geographical structure, altitude and landscape connectivity. Strikingly, however, was the strong degree of genetic costructure among the three species that could not be explained by the spatial variables under study. This finding suggests that factors other than spatial configuration, including co‐evolutionary dynamics and shared dispersal pathways, cause parallel genetic structure among interacting species. While the exact contribution of co‐evolution and shared dispersal routes on the genetic variation within and among communities deserves further attention, our findings demonstrate a considerable degree of genetic parallelism in natural meta‐communities. The significant effect of landscape connectivity on the genetic diversity and structure of the butterfly also suggests that habitat fragmentation may threaten the functioning of the community module on the long run.  相似文献   
84.
秦艽药材及其生长土壤中无机元素含量特征及相关性分析   总被引:1,自引:0,他引:1  
该研究采用原子吸收分光光度法和火焰光度法,测定云南20个种植地的秦艽及其生长土壤中无机元素的含量,探讨药材中无机元素分布特征,并对药材中无机元素含量与土壤中无机元素含量的相关性进行了分析。结果表明:云南秦艽药材无机元素的含量呈现K>Ca>Mg>Fe>Mn>Zn>Cu有规律的分布态势;通过相关性分析、主成分分析和逐步回归分析发现秦艽的特征元素为K、Cu、Ca和Zn;药材中钾含量与土壤中锌,钙与土壤中锰和铜,锰与土壤中钙和镁,铜与土壤中钾和锌元素含量间均分别显著负相关;而药材中镁含量与土壤中钙和镁,铁、铜与土壤中铁元素含量间均呈显著正相关。对秦艽各无机元素含量影响最大的因子是秦艽生长土壤有效钙,有效铁和有效锌其次,最后为有效锰。该研究结果为秦艽道地性成因及适宜栽培区域的选择提供了参考,为秦艽资源合理利用和GAP研究以及从无机元素的角度品评药材品质提供了理论依据。  相似文献   
85.
青藏高原晚期开花植物线叶龙胆的传粉生态学   总被引:3,自引:0,他引:3       下载免费PDF全文
线叶龙胆(Gentiana lawrencei var. farreri)主要分布在青藏高原, 在晚秋和早冬开花。为了探明线叶龙胆繁育系统特点, 探讨其对环境的繁殖适应特征, 对其传粉生态学过程进行了连续3年的观察。线叶龙胆自然状态下的结籽率很低, 存在严重的花粉限制。雌雄异位和不完全雌雄异熟的花特征表明其结实必须依赖昆虫传粉。繁育系统实验表明, 部分套袋花也能结实, 这可能主要是由蓟马(Thripidae spp.)和蚂蚁(Formica spp.)等小昆虫协助自交所致。克什米尔熊蜂(Bombus kashmirensis)和苏氏熊蜂(B. sushikini)是线叶龙胆的有效传粉昆虫, 但其访花频率非常低, 分别为0.006和0.005 time·flower-1·h-1。线叶龙胆花持续期和柱头可授能力都长于其他已报道的龙胆类植物, 从而在温度低、传粉昆虫少的情况下提供了更多传粉机会。线叶龙胆同时具有协助自交和杂交的繁殖现象, 以及较长的花持续期和柱头持续能力, 这可能是其在青藏高原地区赖以存活和延续的一个重要原因。  相似文献   
86.
线叶龙胆的胚胎学研究   总被引:6,自引:0,他引:6  
首次报道了龙胆属华丽组的胚胎发育过程,其代表种线叶龙胆花药四室;药壁发育为双子叶型;绒毡层两型起源,细胞具双核和多核,绒毡层细胞1 ̄3次分裂形成“横格”和“类胎座”,原位退化,属非典型的腺质型;中层细胞两层;药室内壁纤维状加厚。小孢子母细胞减数分裂为同时型,四分体的排列主要为四面体形;成熟花粉为3-细胞型。子房为2心皮,1室,超侧膜胎座。胚珠10 ̄15列,腹维管束彼此靠近,并在中下部融合。薄珠心,  相似文献   
87.
本文提出了龙胆属两个种的新名称(Gentiana membranulifera T.N.Ho,G.nudicaulisKurz var. assa- mensis T.N.Ho)和5个变种的新组合[(Gentiana lateriflora Hemsl.var. uncifolia(H.J.Lam)T.N.Ho, G.sumatrana Ridl.var.humifusa(S.Moore)T.N.Ho,G. quadrifaria Bl.var.wightii(Kusnez.)T.N.Ho, G.loerzingii Ridl. var.timida(Kerr)T.N.Ho,G.membranulifera T.N.Ho var.recurvata (Kusnez.)T.N.Ho)〕。  相似文献   
88.
In this study, we studied pollination ecology of Gentiana siphonantha (Gentianaceae), a late-autumn flowering alpine perennial in the northeastern Qinghai-Tibetan Plateau for two years for the first time. We also aimed to compare the pollination differentiation between this species and sympatrically distributed G. straminea that has a close phylogenetic origin but is flowering early. Flowers of G. siphonantha are characteristic of di-chogamy and herkogamy and this floral development prevents occurrence of autonomous self-pollination. This implication was confirmed by the breeding experiments, since no seed was produced when flowers were isolated. However, this gentian proved to be highly self-compatible when geitonogamous selfing was artificially induced. Each individual plant of this species has an average of 14.6 flowers ranging from 4 to 31, at both staminate and pistillate stages with a ratio of 1.2:1 in full anthesis. Both floral development and breeding experiments suggested that pollen vectors were indispensable for successful seed sets of this species. A great variety of insects were observed to visit this species, but the most common and only legitimate pollinator is Bumbus sushikini. A statistic observation suggested that this pollinator showed no preference to either staminate or pistillate flowers and visited them at random. We further calculated the frequency of their visits between and within individual plants. Among the pollinators’ bouts, the proportions of geitonogamous visits within an individual plant occupy about 87.8%. Such a case implied that geitonogamous selfing prevails in this species in spite of floral dichogamy and her-kogamy that were suggested to promote outcrossing. Compared with sympatric G. straminea, the total floral longevity and the male and female duration of this species are shorter. However, the number of flowers of each individual plant and branch increased when in full anthesis. It is interesting that both closely related species shared the same pollinator despite their distinct difference in flower morphology. This finding is inconsistent with the previous hypothesis that both flower color and corolla tube depth have coevolved with different pollinators during speciation and formation of reproductive isolation. Both visit frequencies of the individual flower and geitonoga-mous visits within the individual plant are higher in G. siphonantha than in G. straminea. This difference may result from their different inflorescence designs that actively act upon behaviors of pollinator. Although these two species differed in flowering phenology, their flowering stages overlapped for a few days, suggesting incomplete pollination isolation between them.  相似文献   
89.
The present paper deals with the infrageneric classification, phylogeny and geographic distribution of the genus Lomatogonium. A cladistic analysis was undertaken to establish the taxa and to evaluate the relationships between the taxa. The PAUP computer program was used in this analysis. The most parsimonious tree (Cladogram) of the rotate-corolla group of subtribe Gentianinae shows that Lomatogonium is closely related to Lomatogoniopsis and Swertia, but distantly to Veratrilla. Among them, Swertia is more primitive than Lomatogonium and hence Sect. Swertia was selected as the outgroup to polarize the character states of ingroup (Lomatogonium). A data matrix of 29 charaters of Lomatogonium was made for constructing the cladogram. Two most parsimonious trees were formed one of which, with the lowest f value, was at last selected as a shortest tree. In this tree 18 species fall into three groups, i.e. Sect. Sarcorhizoma, Sect. Lomatogonium and Sect. Pleurogynella. The former comes at a lower level with more plesiomorphies while the latter at a higher level with more apomorphies. Lomatogonium is distributed in the northern temperate zone. However, 16 species are centred in Asia and two extend to Europe, or further to the Arctic region, but none has been found from Africa, Australia and South erica. The analysis of distribution pattern of species shows that the Qinling-Hengduan Mountain region is both the frequence and diversity centers of Lomatogonium. From the cladogram of Lomatogonium (Fig. 5 ), L. perenne appears to occupy the most plesiomorphic node. This is an indication that it is the extant species closest to the ancestral form and it also implies that the ancestral species may reside in the habitat of this species (the Qinlin-Hengduan Mountain region). On the other hand, a umber of species of Swertia Sect. Swertia also occur in this region today, which indicates that the Qinlin-Hengduan Mountain region may well be the original center of Lomatogonium. From the distribution pattern of L. rotatum, it can be concluded that the time of the origin dates back at least before the Pliocene. After emergence, this genus had first developed and dispersed in the original center and adjacent region, then diverged into two lineages. One gave rise to the widespread species (northern temperate distribution species L. carinthiacum and L. rotatum), and the other formed the Himalayan species.A taxonomic revision of the whole genus Lomatogonium is presented. In this paper, one new section (Sect. Sarcorhizoma), one new species (L. zhongdianense S. W. Liu et T. N. Ho) and one new variety (L. forrestii var. densiflorum S. W. Liu et T. N. Ho) are described. The key to the species is given. Type studies are made for all the taxa.  相似文献   
90.
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