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1.
Forest trees are involved in root symbioses with hundreds of species of ectomycorrhizal fungi which constitute functional guilds able to improve the water and mineral nutrition of host trees. In temperate ecosystems, water shortage is a main factor limiting tree vitality. To assess how soil water conditions affected the physiological state of beech (Fagus silvatica L.) ectomycorrhizal roots, we monitored glucose respiration of two ectomycorrhizal types (Lactarius sp. and Cenococcum geophilum) during two complete growing seasons. Five stands of contrasting soil conditions were chosen in north-eastern France. The top soil horizons were equipped with micropsychrometers for measuring water potential and temperature. Glucose respiration on individual ectomycorrhizas was measured in vitro by trapping [14C]-CO2 from radiolabelled glucose. For soil water potential <-0.2 MPa, the potential respiration activity of C. geophilumectomycorrhizas was significantly less altered than that of Lactariussp. ectomycorrhizas, indicating that C. geophilumis more likely than Lactariussp. to maintain the physiological integrity of beech roots facing drought stress.  相似文献   

2.
Job Kuijt 《Brittonia》1997,49(2):181-188
Materials are presented to the effect thatPhoradendron californicum Nutt., the nomenclatural type of the genusPhoradendron (Viscaceae), is related to southern, cataphyllous species, not to northern, acataphyllous ones. The evidence consists of the frequent occurrence of basal cataphylls in the species, variation in basal phyllotaxy, and a basically biseriate arrangement of flowers on fertile internodes. The suggestion of this southern, cataphyllous affinity is supported by the recent discovery of a strictly cataphyllous Mexican species,P. olae Kuijt, which shows median basal phyllotaxy and is in many features extremely similar toP. californicum. The nomenclatural consequences of this discovery would lead to subgen.Boreales (Trel.) Engler (and probably subgen.Aequatoriales (Trel.) Engler) being synonymized under subgen.Phoradendron, characterized by basal cataphylls (though not in all species). However, no generic subdivision of any sort is supported at this time.  相似文献   

3.
The phylogenetic relationships of Lactarius volemus and its relatives were investigated using the nucleotide sequences of the nuclear-encoded large subunit ribosomal DNA (LSU rDNA). Thirty-six sequences from L. volemus, L. corrugis, and L. hygrophoroides, including three sequences obtained from the GenBank database, were used in this study. Samples studied were divided into four major subclades (A–D) in both neighbor-joining (NJ) and maximum-parsimony (MP) trees. Lactarius volemus and L. corrugis formed one large clade in both NJ and MP trees (bootstrap value, 100%), which was divided into three subclades (A–C). Subclade A included three clusters of L. volemus strains, i.e., velvet, red, and Chinese types. Subclade B included the common and red types of L. corrugis. Subclade C included the common and yellow types of L. volemus. Subclade D included only one type of L. hygrophoroides. An analysis of the fatty acid composition supported the divisions found in the molecular analysis. Analyses of nucleotide sequence, fatty acid composition, morphological characteristics, and the taste of the fruiting bodies all led us to conclude that the common, velvet, red, and Chinese types of L. volemus, and the common and red types of L. corrugis, may each belong to different species, subspecies, or varieties. Further studies with more material from a wide range of regions are required to conduct taxonomic revision of these types. The LSU rDNA region may be a useful tool to investigate phylogenetic relationships within the section Dulces of the genus Lactarius.  相似文献   

4.
The chromosome cytology of Hyacinthaceae subfamily Ornithogaloideae is reviewed within the framework of a recent molecular-based classification, with particular emphasis on its center of diversity in sub-Saharan Africa. We also provide new chromosome counts for sections that are unknown or poorly known cytologically. Albuca subgen. Namibiogalum (9 spp.) probably has an ancestral base number of x = 10 but subgen. Albuca (± 70 spp), subgen. Monarchos (9 spp.) and subgen. Osmyne (36 spp.) have x = 9. The pattern in subgen. Urophyllon (3 spp.) is remarkable: although x = 6 is likely, the species in the section exhibit a range of 2n = 12, 10, 8, 6 and 4 (exclusive of polyploidy). All karyotypes have three large chromosome pairs and a variable number of small chromosomes. Pseudogaltonia (2 spp.) has x = 9 and Dipcadi (26 spp.) possibly x = 9 in series Uropetalum and x = 6 in series Dipcadi, which exhibits a pattern of descending dysploidy leading to n = 3 in D. marlothii. In Ornithogalum (± 130 spp.) chromosome numbers are known for only 24 of the ± 84 sub-Saharan species, mostly from subgen. Aspasia and subgen. Ornithogalum sect. Linaspasia, both of which have x = 6, and from subgen. Galtonia, which has x = 8. In contrast, x = 7 is basic for the Eurasian sects. Honorius and Melophis, and x = 18 seems likely for sect. Cathissa. Sect. Ornithogalum, the cytology of which we does not examine in detail, may have x = 9. Polyploidy is apparently rare in the sub-Saharan African ornithogaloids, in marked contrast to the high frequency of polyploidy among Eurasian species. In Albuca just 3 or possibly 4 sub-Saharan species (9% or 13% of those counted) are exclusively polyploid and 5 more have diploid and polyploid races; and in sub-Saharan Ornithogalum, only the tropical O. gracillimum is exclusively polyploid, and the western southern African O. hispidum has diploid and polyploid races.  相似文献   

5.
描述了产自广西木兰科一新种:靖西长喙木兰(Lirianthe jingxiensis Y. H. Tong&N. H. Xia)。本种形态上与绢毛木兰[L. albosericea(Chun&C. H. Tsoong)N. H. Xia&C. Y. Wu]接近,但区别在于该种植株较矮,幼枝、叶柄和幼叶被黄棕色绢毛,叶柄较宽,叶片较宽,倒卵形或倒卵状椭圆形,先端钝或短渐尖,花被片较大,心皮数目较多,被黄棕色绢毛。  相似文献   

6.
高粱属植物的地理分布   总被引:1,自引:0,他引:1  
为探讨高粱属(Sorghum Moench)的系统发育关系,通过野外调查及查阅标本和文献资料,对高粱属植物的地理分布进行了整理和研究。高粱属植物约有29种,分布于全世界热带到温带地区,其中澳大利亚22种,亚洲15种,非洲9种,欧洲3种,地中海2种,美洲6种。中国有5种,分布在东北、西南到华南各省(区)。高粱属有5亚属,仅高粱亚属(subgen.Sorghum)延伸至新世界,其他亚属均分布在旧世界,高粱亚属覆盖非洲并扩散到全世界热带到温带地区;拟高粱亚属(subgen.Parasorghum)分布在非洲、亚洲、澳大利亚;有柄高粱亚属(subgen.Stiposorghum)主要分布在澳大利亚,个别种分布到亚洲;多毛高粱亚属(subgen.Chaetosorghum)分布在澳大利亚;异高粱亚属(subgen.Heterosorghum)分布在澳大利亚和亚洲。这表明澳大利亚东北部是高粱属的现代分布中心和多样化中心,非洲东北部和热带亚洲是否是高粱属的起源地尚需确证。  相似文献   

7.
Phylogenetic relationships of the genera Russula and Lactarius were investigated using sequence data from the nuclear-encoded large subunit ribosomal DNA (LSU rDNA). Ninety-five sequences belonging to the genera Russula and Lactarius, including 31 sequences from the databases, were used in this study. Analysis of the LSU rDNA region indicated that Russulaceae was divided into six groups (group A–F) in the neighbor-joining (NJ) tree. Lactarius consisted of one large clade (group A). Therefore, this genus was found to be monophyletic. However, the monophyly of genus Russula remained unclear. The genus Russula consisted of five groups in the NJ tree. Group B includes sects. Plorantes and Archaeinae (Heim), and group C includes sects. Delicoarchaeae and Russula in the NJ tree. Neither of the two groups formed a single clade in the most parsimonius (MP) tree. Group D includes many taxa having colored spore prints and amyloid in suprahilar plage of spores in sect. Russula and sect. Rigidae. Group E consists of only sect. Compactae and is further divided into three subclades, represented by R. densifolia, R. nigricans, and R. subnigricans, respectively. Group F contains sects. Rigidae, Ingratae, and Pelliculariae. Sect. Compactae and sect. Plorantes should not be as closely related as previously supposed. Russula earlei may be placed in sect. Archaeinae Heim. Russula flavida (subsect. Amoeninae) is placed in sect. Russula with R. aurea with a high bootstrap value (99%). The nuclear LSU rDNA region is a useful tool in recognization of species of Russulaceae and may provide information concerning phylogenetic relationships between the genera Russula and Lactarius.  相似文献   

8.
9.
野生杜鹃杂交亲和性及适宜的评价指标   总被引:1,自引:0,他引:1  
以映山红和马银花为母本,映山红亚属、羊踯躅亚属、杜鹃亚属、常绿杜鹃亚属以及马银花亚属的5个亚属16个中国野生杜鹃种为父本进行杂交授粉,统计子房膨大率、坐果率和种子萌发率,分析杜鹃属植物远缘杂交的亲和性,探讨其杂交亲和性适宜的评价指标。结果表明:映山红作为母本,与同亚属的杜鹃杂交亲和性较好,与其它亚属的杜鹃种的杂交亲和性存在显著的亚属间和种间差异;而马银花作为母本,与同亚属的西施花进行杂交,未获得杂交果实和种子,但与杜鹃其它亚属种的杂交,部分杂交组合显示出较好的杂交亲和性。这一结果表明,映山红作为母本,与马银花相比,有着较好的杂交亲和性,并且杜鹃属植物的杂交亲和性与目前杜鹃分类体系中的亲缘关系并没有直接关系。进一步的数据分析表明,子房膨大率与坐果率、坐果率与蒴果平均种子数之间呈显著正相关,但子房膨大率与果实内种子数无直接相关性;花粉活力(大于15%)、父母本花柱长度比(在0.50~2.12范围内)与子房膨大率等亲和性指标无显著相关性。  相似文献   

10.
32种杜鹃花属植物亚属间杂交的可育性研究   总被引:1,自引:0,他引:1  
庄平 《广西植物》2018,38(12):1566-1580
为探索杜鹃花属植物亚属间杂交的可育性规律,该文对常绿杜鹃亚属(subgen. Hymenanthes)、杜鹃亚属(subgen. Rhododendron)及马银花亚属(subgen. Azaleastrum)、映山红亚属(subgen. Tsutsusi)和羊踯躅亚属(subgen. Pentanthera)的亚属间杂交进行了研究,共涉及杜鹃花属植物5亚属15亚组32种,杂交组合118个。结果表明:(1)杜鹃花属植物的亚属间杂交存在明显的生殖障碍,其可育性水平与亚属及其类群组合有关,高、中、低与不育比例为2∶16∶8∶92,可育比例仅20.0%,杜鹃亚属与马银花亚属等4个亚属级组合杂交未显现可育性。(2)亲本杂交组合方式对亚属间杂交有不同程度的影响,一些类群组合有明显的向性。以杜鹃亚属做母本与常绿杜鹃亚属的云锦杜鹃亚组杂交的可育组合比高于反交,且在有关大王杜鹃、粘毛杜鹃、露珠杜鹃和马缨花的杂交中也是如此,但与银叶杜鹃亚组杂交正好相反;另外,12对单向可育组合,分布于常绿杜鹃亚属与杜鹃亚属等4类亚属级杂交组合中。(3)杜鹃花属的亚属间杂交不亲和与败育现象明显,不可育组合百分率占80%,不能坐果是败育的主要表征,所有可育组合的绿苗率比值和单位种子数比值无一例达到相应母本的自然授粉水平。(4)双亲系统分类上的关系对亚属间可交配性具有重要影响并与可育程度一致,染色体倍性也有一定的作用。(5)有关研究为探索和认识杜鹃花属植物亚属间进化遗传联系提供了新的证据和思考,银叶杜鹃亚组可能是解释常绿杜鹃亚属与杜鹃亚属进化遗传联系的重要类群,杜鹃亚属的多鳞杜鹃可能与常绿杜鹃亚属具有广泛的血亲关系,其中多鳞杜鹃与岷江杜鹃彼此为生态相邻种并有可能在长期的演化过程中有遗传渗透,百合花杜鹃和毛肋杜鹃分别与映山红亚属、腺果杜鹃与马银花亚属,越峰杜鹃和繁花杜鹃分别与映山红亚属,大白杜鹃与羊踯躅亚属间的联系均需要深入研究。  相似文献   

11.
王文采 《广西植物》2016,36(Z1):231-232
该文描述了自青海南部发现的罂粟科绿绒蒿属一新种,短丝绿绒蒿。此种可能隶属琴叶绿绒蒿亚属,滇西绿绒蒿组,滇西绿绒蒿系,与此系其它种的区别在于此种的披针状条形花瓣,较少、较短的雄蕊(花丝长1~5 mm),无花柱的雌蕊,和被具短毛的硬毛的子房。  相似文献   

12.
徐晗  李振宇  李俊生 《广西植物》2017,37(2):139-144
通过ITS序列对21种中国外来苋属植物进行系统进化关系研究。通过ITS序列种间、种内遗传距离分析,发现苋属种间变异为0~0.055 1,种内变异为0~0.009 2。使用TAXON DNA软件分析ITS序列种间、种内变异的分布图看出规律,结果表明苋属ITS序列的种间变异适中,种间变异明显大于种内变异。采用最大似然法(ML)构建的系统树将中国苋属分为5或6个进化支(根据自展支持率取值不同)。异株苋亚属长芒苋和苋亚属刺苋聚类在一起,西部苋和糙果苋单独成为一个进化支。苋亚属中苋组苋亚组反枝苋和绿穗苋亚组鲍氏苋有着更近的亲缘关系,苋组苋亚组尾穗苋和绿穗苋亚组绿穗苋、繁穗苋等亲缘关系更近。白苋亚属分为2或3个类群,根据自展支持率取值不同,合被苋可以和白苋、北美苋并为一支,也可以单独成为一支。综上所述,该文认为苋属经典分类体系中3亚属或2~3组的分类地位不成立,建议中国苋属采取5组2亚组或6组2亚组的分类体系。5组2亚组分别由长芒苋组、糙果苋组、苋组(苋亚组和绿穗苋亚组)、白苋组和凹头苋组组成。其中,合被苋也可从白苋组分出,单独构成1组,形成6组2亚组的分类体系。表明该序列对苋属大部分种类分类效果较好,对西部苋和糙果苋复合群,绿穗苋复合群以及白苋亚属的分类价值不高。  相似文献   

13.
庄平 《广西植物》2018,38(12):1588-1594
该研究以杜鹃花属5亚属3组17亚组38种和共计91个可育组合及109个不育组合的杂交结果为依据,通过杂交可育指标频度分析,初步揭示该属植物种间可交配性的分布规律。结果表明:(1)根据育性等级频度的研究,可得到种间可交配性排序结果,即亚属级:常绿杜鹃亚属内杂交杜鹃亚属内杂交常绿杜鹃亚属×杜鹃亚属杜鹃亚属×映山红亚属常绿杜鹃亚属×映山红亚属常绿杜鹃亚属×羊踯躅亚属常绿杜鹃亚属×马银花亚属杜鹃亚属×羊踯躅亚属;亚组级:银叶杜鹃亚组×同亚属的其他亚组云锦杜鹃亚组内杂交云锦杜鹃亚组×银叶杜鹃亚组银叶杜鹃亚组×杜鹃亚属各组三花杜鹃亚组内杂交云锦杜鹃亚组×同亚属其他亚组云锦杜鹃亚组×杜鹃亚属各组常绿杜鹃亚属的其他亚组×杜鹃亚属各组。(2)种间可交配性与亲本间的亲缘关系及染色体倍性有明显的关联,与分类系统中所反映的类群亲缘关系契合,原始的杜鹃花属植物类群如常绿杜鹃亚属可能比较进化类群具有更广泛的可交配性。(3)坐果率、绿苗率、绿苗系数和单位可育种子数量及其等级频度能从不同的侧面反映杜鹃花属植物杂交可育性数量特征,但也分别存在某些局限性,建立综合评价方案和可育性等级频度指标十分重要。  相似文献   

14.
15.
Passiflora boticarioana, a new species of subgen.Passiflora, supersect.Stipulata, sect.Dysosmia, from the state of Minas Gerais, Brazil, is described, illustrated, and compared with morphologically similar species.  相似文献   

16.
庄平 《广西植物》2017,37(8):959-968
迁地保育条件下的杜鹃花属植物自交可育性一直缺乏系统的比较研究,该文对5亚属13亚组32种杜鹃花属植物的自交进行了数据采集与分析,初步揭示了迁地保育条件下杜鹃花属植物自交育性特征。结果表明:(1)自交可育与不育是杜鹃花属植物有性生殖中的两个并存现象,自交能育型种类或多于不育型。在受试的32种杜鹃花中,自交不育型10种、弱可育型5种、可育型7种、高可育型10种,其中27种的自交育性为首次报道,涵盖包括杜鹃亚属杜鹃组(sect.Rhododendron)和马银花亚属(subgen.Azaleastrum)及常绿杜鹃亚属(subgen.Hymenanthes)中银叶杜鹃亚组(subsect.Argyrophylla)等5个亚组在内的未被研究的类群。(2)通过与自然授粉有关育性指标的比较,发现不同种类的自交可育性指标有大幅度降低及增高这两类截然不同的现象,从而提出了自交可能是部分杜鹃花属植物的适应策略,或者对不利环境及其媒介条件的主动响应。(3)在云锦杜鹃亚组(subsect.Fortunea)这个被认为最原始的杜鹃花类群中,具备从自交不育到高可育的所有类型,并可能由此奠定整个杜鹃花属的遗传基础,而类群与种类分布的不同区域气候环境长期直接的或通过影响传粉媒介间接的作用,则可能是最终塑造该属植物自交育性多样化的外部动力。(4)该文还依据有关自交的研究结果,对杜鹃花属植物的迁地保育、育种、相关学科发展进行了讨论,并认为后合子期败育的理论不能完美地解释自交不能坐果的现象,而多倍体似不会导致自交不育。  相似文献   

17.
Mühlmann O  Göbl F 《Mycorrhiza》2006,16(4):245-250
The ectomycorrhizal basidiomycete species Lactarius deterrimus Gröger is considered to be a strictly host-specific mycobiont of Picea abies (L.) Karst. However, we identified arbutoid mycorrhiza formed by this fungus on the roots of Arctostaphylos uva-ursi (L.) Spreng. in a mixed stand at the alpine timberline; typical ectomycorrhiza of P. abies were found in close relation. A. uva-ursi is known as an extremely unspecific phytobiont. The mycorrhizae of both associations are described and compared morphologically. The mycorrhiza formed by L. deterrimus on both A. uva-ursi and P. abies show typical ectomycorrhizal features such as a hyphal mantle and a Hartig net. The main difference between the mycorrhizal symbioses with the different phytobionts is the occurrence of intracellular hyphae in the epidermal cells of A. uva-ursi. This emphasizes the importance of the plant partner for mycorrhizal anatomy. This is the first report of a previously considered host-specific ectomycorrhizal fungus in association with A. uva-ursi under natural conditions. The advantages of this loose specificity between the fungus and plant species is discussed.  相似文献   

18.
Different methods to inoculate seedlings of Pinus pinaster and P. sylvestris with edible Lactarius species under standard greenhouse conditions were evaluated. Fungal inoculations were performed both under pure culture synthesis in vitro, followed by transplantation of acclimatized seedlings, and directly in the greenhouse using different techniques for inocula production (mycelial slurries, vegetative inoculum grown in peat-vermiculite and alginate-entrapped mycelium). In vitro inoculations with L. deliciosus produced thoroughly colonized seedlings. However, a sharp decrease in mycorrhizal colonization was detected on transplanted seedlings after 4 month's growth in the greenhouse. On the other hand, all the inocula applied directly in the greenhouse, except the alginate-entrapped mycelium, produced a variable number of mycorrhizal seedlings and colonization rates after the first growing season, depending on the plant-fungal combination and the inoculation method. Inoculations with vegetative inocula of the strain 178 of L. deliciosus were the most effective in producing mycorrhizal seedlings. All the seedlings inoculated with this strain were colonized although the colonization rates were relatively low. The commercial feasibility of the different inoculation methods for the production of seedlings colonized with edible Lactarius species is discussed.  相似文献   

19.
Ficus lacunata Kvitvik, a new species of subgen.Pharmacosycea sect.Pharmacosycea collected in the provinces of Carchi, Imbabura, and Pichincha in Ecuador, shows affinities to bothFicus macbridei Standl. andFicus tonduzii Standl. but differs distinctly in leaf and syconium characters.  相似文献   

20.
Nucleotide sequence variation of the chloroplast rbcL gene of 78 representatives of Jungermanniales suborders Jungermanniineae and Cephaloziineae and five outgroup species is analysed using maximum parsimony and maximum likelihood. Jungermannia s.l. is resolved in three independent lineages corresponding to Jungermannia subgen. Jungermannia, Liochlaena and Solenostoma (incl. subgen. Plectocolea). Based on the outcome of the phylogenetic analyses we adopt a narrow generic concept of Jungermannia and accept the genera Liochlaena and Solenostoma. Contrary to proposed hypotheses, the monospecific genus Eremonotus is not nested in Scapaniaceae, Gymnomitriaceae, Cephaloziellaceae or Cephaloziaceae but placed in a clade together with Jungermannia s.str., Liochlaena, Delavayella and Leiocolea. These genera possess female involucres consisting solely of leaf tissue (perianths). Related clades comprise genera with female involucres originating at least partly from stem tissue. We propose to include Delavayella, Eremonotus, Jungermannia s.str., Leiocolea and Liochlaena in Jungermanniaceae based on the phylogenetic reconstructions of cpDNA variation and the distribution of perianths in Jungermanniales suborder Jungermanniineae.  相似文献   

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