scholarly journals Polyvariation of the development Scutellaria L. species and the structure of their populations in Siberia

2019 ◽  
Vol 16 ◽  
pp. 00010
Author(s):  
Alexandra Guseva ◽  
Vera Cheryomushkina

Structure of coenopopulations and polyvariance of the development of species of the genus Scutellaria in Siberia were described. Species of the genus are semi-wood and grassy life forms. The formation of different life forms is confined to specific habitats. In a number of species (S. galericulata, S. grandiflora и S. supina), the life form is changing. Dimensional polyvariance of individuals of S. scordiifolia in different habitats was found. The ontogenetic structure of coenopopulations is diverse; 3 types of spectrum are formed: left-sided, centered, and right-hand. In individuals of S. supina and S. tuvensis, the duration of ontogenesis and the duration of individual ontogenetic conditions are influenced by living conditions. The polyvariance of selfmaintenance was revealed in S. supina, the transition from completely seed self-maintenance to mixed − seed reproduction in combination with vegetative. The spatial structure and density of coenopopulations vary depending on the habitat conditions. The spatial structure of the studied species is also determined by the peculiarities of self-maintenance of coenopopulations. The change in density is also associated with the mobility of the substrate on steep, rocky mountain slopes in vegetatively stationary species and with projective cover in vegetatively mobile ones.

2021 ◽  
Vol 38 ◽  
pp. 00043
Author(s):  
Valetina Ilyina ◽  
Tatjana Zenkina ◽  
Vadim Sagalaev ◽  
Stepan Senator ◽  
Anna Mitroshenkova ◽  
...  

The aim of this work was to identify and analyze the ontogenetic and spatial structure of steppe plant Clausia aprica (Stephan) Korn.-Tr. (Brassicaceae) cenopopulations at the border of distribution. The study of cenopopulations and their habitat conditions was conducted at 2006–2021 in Samara, Volgograd, and Orenburg Oblasts (Russian Federation). For the first time determined the polyvariance of development of individuals, the duration of ontogenetic stages and complete ontogenesis, peculiarities of spatial location and evaluation of running window methods. A table of prohibitions and resolutions of transitions between ontogenetic states was compiled for C. aprica ontogenesis. It was found that permissions of transitions between ontogenetic states are 37.8%. In natural cenopopulations, mutual transitions of individuals from one ontogenetic state to another has adaptive significance and determines the dynamics of the ontogenetic structure. At intervals of 6-8 years, a slight increase in the number of C. aprica individuals is observed in the populations, which is ensured by the efficiency of seed reproduction. Thus, self-maintenance and self-renewal of species populations is possible in case of low level of anthropogenic impact on vegetation cover of territories.


2020 ◽  
Vol 13 (6) ◽  
pp. 2777
Author(s):  
Ana Caroline De Souza Campos ◽  
Mário Augusto Gonçalves Jardim

O objetivo da pesquisa foi conhecer a composição florística da regeneração natural de um trecho de savana amazônica no estado do Pará. O estudo foi realizado em uma savana na localidade de Itapuá, município de Vigia de Nazaré, Pará a 93 km da cidade de Belém. A coleta de dados ocorreu mensalmente no período de setembro de 2019 a fevereiro de 2020 em 80 subparcelas de 1 x 1m alocadas aleatoriamente correspondente a 480 subparcelas em um total de 480 m2. Em cada subparcela foram identificadas e quantificadas todas as espécies com altura ≤ 1 m. A identificação botânica in loco foi realizada por um parabotânico do Museu Paraense Emilio Goeldi (MPEG. A organização das famílias foi de acordo com APG IV e caracterizada em família, gênero, espécie e forma de vida e calculada a média aritmética e desvio padrão com auxílio do Programa Bioestat 5.0. Foram registradas 36 famílias, 73 gêneros e 99 espécies. Fabaceae (14), Poaceae (13), Cyperaceae (9), Myrtaceae (7) e Dilleniaceae (6) foram representativas em número de espécies. Paspalum registrou o maior número de espécies (5) seguido por Chamaecrista, Myrcia  e Scleria (4) e Axonopus, Borreria, Byrsonima, Davilla, Doliocarpus, Eriosema, Eugenia, Miconia, Ouratea, Polygala e Rhynchospora (2). A forma de vida dominante foi de Erva com 40 espécies, Arbusto (21) e Árvore (20). A savana de Itapuá apresentou riqueza de 99 espécies, 36 famílias e 73 gêneros estando acima que outras savanas amazônicas cujas espécies estiveram distribuídas nas famílias Fabaceae, Poaceae e Cyperaceae. O gênero Paspalum com o maior número de espécies juntamente com outras caracterizou a forma herbácea como a dominante. Este foi o primeiro registro de espécies regenerantes e suas formas de vida em uma savana amazônica. Com base nesses conhecimentos, outras iniciativas devem ser buscadas para outras manchas de savanas visando mostrar a importância da conservação destes ambientes que ultimamente vem sofrendo ampla degradação na Amazônia.  Floristic composition of the regeneration of a stretch of savanna in the Eastern Amazon A B S T R A C TThe savannas are Amazonian and represent an ecological potential for use in several aspects, especially for traditional communities, however, they are suffering forest, environmental and human losses.The objective of the research was to know the floristic composition of the natural regeneration of a stretch of Amazonian savanna in the state of Pará. The study was carried out in the savanna of Itapuá, municipality of Vigia de Nazaré, Pará wich 93 km from the city of Belém. Data collection occurred monthly from September 2019 to February 2020 in 80 1 x 1m subplots randomly allocated corresponding to 480 subplots and a total of 480 m2. In each subplot, all species with height ≤ 1 m were identified and quantified. The botanical identification in loco was carried out by a parabotan from the Museu Paraense Emilio Goeldi (MPEG. The organization of the families was in accordance with APG IV and characterized in family, genera, species and way of life and calculated the arithmetic mean and standard deviation for families and life forms with the aid of the Bioestat 5.0 Program, 36 families, 73 genera and 99 species were registered, Fabaceae (14), Poaceae (13), Cyperaceae (9), Myrtaceae (7) and Dilleniaceae (6) were representative in number of Paspalum registered the largest number of species (5) followed by Chamaecrista, Myrcia and Scleria (4) and Axonopus, Borreria, Byrsonima, Davilla, Doliocarpus, Eriosema, Eugenia, Miconia, Ouratea, Polygala and Rhynchospora (2). Dominant life form was Herb with 40 species, Shrub (21) and Tree (20). It was concluded that the Itapuá savanna presented a richness of 99 species in comparison to other Amazonian savannas distributed in the Fabaceae, Poaceae and Cyperaceae families. Paspa lum with the largest number of species together with others characterized the herbaceous form as the dominant one. This was the first record of regenerating species and their life forms in an Amazonian savanna. Based on this knowledge, other initiatives should be sought for other savanna patches in order to show the importance of conserving these environments, which lately has been undergoing extensive degradation in the Amazon.Keywords: Lower stratum; way of life; conservation.


2015 ◽  
Vol 17 (2) ◽  
pp. 83
Author(s):  
Lilih Khotim Perwati ◽  
Rully Rahadian ◽  
Karyadi Baskoro

Study on the impact of differences in altitude and land use changes was conducted in natural forest, coffee and tea plantations in along altitudinal gradient of Ungaran mountain from 750 to 2040 m a.s.l. The objective of this study were to compare composition of epiphytic bryophytes species in third sites. Epiphytic bryophytes sampling were done in plots 20 x 30 cm were applied on height of tree betwen 0-2 m. A total of 103 species of epiphytics bryophytes were identified, involve 58 species of mosses (Bryophyta Division) and 45 species of liverworts (Marchantiophyta Division). The composition of bryophytes in natural forest is more diverse than in coffee and tea plantations. Lejeunaceae have the highest number of species. There are seven life forms of epiphytic bryophytes in the present study i.e. Turf, Cushion, Mats, Wefts, Dendroid, Pendant  and Fans. The most common is Mats and Turf form, while Pendant and Dendroid form only found in natural forest.   Key words: Bryophytes, epiphytes, altitude, land use changes, life form


2002 ◽  
Vol 22 (1) ◽  
pp. 135-178
Author(s):  
Jasmine Ahmed ◽  
Jan-Peter Frahm

The floristic composition of epiphytic bryophytes on trunks of the tree ferns species Cyathea arborea and Dicksonia sellowiana was studied in SE-Brazil. A total of 142 bryophyte species were found, of which 20 were found in more than 10% of the vegetation analyses, 77 species occurred only one to three times.Five new bryophyte associations are described in two new classes: the Syrrhopodetum proliferi, Porotricho-Syrrhopodetum incompleti and Orthostichello-Syrrhopodetum parasitici within the Hymenodontetalia aeruginosae, which is almost confined to Caythea arborea. They prefer humid habitats in coastal rain forests and cloud forests. The Campylopodetum extincti and Campylopodetum occculti are united within the class Syrrhopodetalia gaudichaudii. They grow on Dicksonia sellowiana and occur within Araucaria forests.The predominant life form in both classes are wefts and mats. The characteristic life forms of the Hymenodontetalia are short turfs, dendroids, fans and tails, which are an expression of the humid habitat conditions, but short and tall turfs in the Syrrhopodetalia.


2008 ◽  
Vol 24 (2) ◽  
pp. 121-133 ◽  
Author(s):  
Satomi Shiodera ◽  
Joeni S. Rahajoe ◽  
Takashi Kohyama

Abstract:The relationship between leaf longevity and other leaf traits was compared among different life-form categories (trees, herbs, climbers and epiphytes) of 101 plant species in a tropical montane forest on Mt. Halimun, West Java, Indonesia. We applied the Cox proportional hazards regression to estimate the leaf longevity of each species from 30 mo of census data. We examined whether estimated longevity was explained by either species life-form categories, taxonomic groupings (eudicots, monocots, magnoliids and chloranthales, and ferns) or such leaf traits as leaf area, leaf mass per area (LMA), mass-based leaf nitrogen, penetrometer reading, condensed-tannin-free total phenolics and condensed tannin. There was a wide-ranged interspecific variation in leaf longevity, mostly 10–50 mo, similarly across life-form categories. LMA showed a strong positive influence on leaf longevity. We found that relationships between leaf longevity and some leaf traits were different among various life forms. Trees tended to have high LMA, while climbers tended to have low LMA at the same leaf longevity. We hypothesize that such difference among life forms reflects shoot architecture characteristics. Multi-shoot trees with branching architecture need to have self-supporting leaves, whereas semi-epiphytic climbers can maintain relatively low biomass investment to leaves hanging or relying upon the mechanical support from host plants.


Author(s):  
Pavlova N.R. ◽  
Dzerkal V.M. ◽  
Ponomareva А.А.

In order to preserve, reproduce and effectively use the natural complexes and objects of the DniproDelta as one of the most valuable natural floodplain-littoral complexes in Europe, which have special environmental, recreational, historical and cultural, scientific, educational and aesthetic value, and ensurethe conservationof «DniproDelta»wetland of theinternational importance,the National Natural Park «Lower Dnipro»was created(Decree of the President of Ukraine of November 24, 2015 No 657/2015).The flora of the higher vascular plants of the Park contains 820 species, 40 species of which (4.9% of the total number) are woody plants. Rosaceae Juss. (14 species), Salicaceae Mirb. (7 species), Aceraceae Juss. (3 types) are leading families of the dendroflora of the Park.Biomorphological characteristics of tree plant species in the flora of the Lower Dnipro National Nature Park were carried out according to the following classifications: 1) K. Raunkiersystem of plant life forms; 2) ecological and morphological classification of life forms of I. G. Serebryakov; 3) architectural models of F. Alle, R. Oldeman and P. Tomlinson; 4) classification of the life forms of plants of the temperate zone, which takes into account the vegetative propagation by O. V. Smirnova, L. B. Zaugolnova.AnalysisoftypesofbiomorphsaccordingtotheclassificationofK. Raunkiershowedthatthevastmajorityofdendrofloraspeciesbelongtophanerophytes, amongthem, dependingontheheightoftheplant, therearedifferentgroups-megaphanerophytes(e.g., Populustremula), mesophanerophytes(Salixalba), microphaneorphytes, nanophanerophytes(Amygdalusnana) andhamephytes(Ephedradistachia).According to the ecological and morphological classification of I. G. Serebryakov life forms, the flora of the Park is dominated by forest-steppe trees and forest-type trees.The trees which belong to one life form often differ in the principles of growth and formation of the crown, branching, and general habitus, which is generally considered as an architectural model of a particular species. According to the classification of architectural models by F. Alle, R. Oldeman and P. Tomlinson, in the flora of the Park, there are five models among which the species formed by the model of Tomlinson have a significant representation, and the species formed by the models of Manzheno and Champagne have a smaller representation.Key words:flora, tree, classification, life form, bush. З метою збереження, відтворення і ефективного використання природних комплексів та об’єктів дельти річки Дніпро як одного з найцінніших природних заплавно-літоральних комплексів у Європі, які мають особливу природоохоронну, оздоровчу, історико-культурну, наукову, освітню та естетичну цінність, забезпечення збереження водно-болотного угіддя міжнародного значення «Дельта р. Дніпро» створено Національний природний парк «Нижньодніпровський» (Указ президента України від 24 листопада 2015 року No 657/2015).Флора вищих судинних рослин Парку попередньо складає 820 видів, з них 40 видів (4,9% від загальної кількості) –деревні рослини.Провідні родини дендрофлори Парку –Rosaceae Juss. (14 видів), SalicaceaeMirb. (7 видів), AceraceaeJuss. (3 види). Біоморфологічну характеристику видів деревних рослин у флорі національного природнього парку «Нижньодніпровський» проведено за класифікаціями: 1) система життєвих форм рослин К. Раункієра; 2) еколого-морфологічна класифікація життєвих форм І. Г. Сєрєбрякова; 3) архітектурні моделі Ф. Аллє, Р. Ольдемана і П. Томлінсона; 4)класифікація життєвих форм рослин помірної зони, яка враховує вегетативне розмноження О. В. Смирнової, Л. Б. Заугольнової.Аналіз типів біоморф за класифікацією К. Раункієра показав, що переважна більшість видів дендрофлори належить до фанерофітів, серед них, в залежності від висоти рослини, виділяють різні групи –мегафанерофіти (наприклад, Populus tremula), мезофанерофіти (Salix alba), мікрофанерофіти (Amorpha fruticosa), нанофанерофіти (Amygdalus nana) та хамефіти (Ephedra distachia).За еколого-морфологічною класифікацією життєвих форм І. Г. Сєрєбрякова у флорі Парку домінують дерева лісостепового типу та дерева лісового типу.Дерева, які відносяться до однієї життєвої форми, часто відрізняютьсяпринципами наростання та формування крони, галуженням, загальним габітусом, що загалом розглядається як архітектурна модель конкретного виду. За класифікацією архітектурних моделей Ф.Аллє, Р. Ольдемана і П. Томлінсона у флорі Парку виділено п’ять моделей, серед яких, значне представництво мають види, що формуються за моделлю Томлінсона, менше представництво мають види, що формуються за моделями Манжено та Шампанії.Ключові слова: флора, дерево, класифікація, життєва форма, кущ.


2004 ◽  
Vol 64 (2) ◽  
pp. 201-209 ◽  
Author(s):  
M. A. Batalha ◽  
F. R. Martins

We used Raunkiaer's system to classify in life-forms the vascular plants present in 12 random 25 m² quadrats of a cerrado site. The study area is covered by cerrado sensu stricto and is located in the Valério fragment, at about 22º13'S and 47º51'W, 760 m above sea level, in the Itirapina Ecological and Experimental Station, São Paulo State, southeastern Brazil. The floristic spectrum considers the life-form of each species, while in the frequency spectrum, each species is weighted by its frequency. The vegetation spectrum does not consider the species at all, but only the individuals in each life-form class. In the floristic spectrum, the most represented life-forms were the phanerophytes and the hemicryptophytes, as in other cerrado sites. This spectrum differed significantly from Raunkiaer's normal spectrum, mainly due to under-representation of therophytes and over-representation of phanerophytes. The floristic and frequency spectra were similar, but both differed from the vegetation spectrum. We recommend the floristic spectrum when working at larger scales and a description of the phytoclimate is wanted. The vegetation spectrum is preferable when working at smaller scales and wanting a quantitative description of the physiognomy. The frequency spectrum is not recommended at all.


2021 ◽  
Author(s):  
Genda Singh ◽  
Bilas Singh

Abstract Background: Plants adapt to adverse environmental conditions accumulate varying concentrations of carbon (C), nitrogen (N) and sulfur (S) compounds to cope up with adverse climatic conditions. Carbon, N and S concentrations were determined in roots, stem and leaves of 33 species of trees/shrubs with objectives to observe the effects of life-form and plants functional traits, and select species with high concentration of these elements for their utilization in afforestation and medicinal uses. Results: Concentrations of C, N, and S and C: N and N: S ratio varied (P<0.05) between species, organs, life-forms and functional traits (legume vs non-legume). These variables were higher (except C in roots and stem) in trees than shrubs, and in leguminous than non-leguminous species. Non-leguminous species showed high S content and low N: S ratio. Antagonistic and synergistic relations were observed between C and N, and N and S concentration respectively. Species showed varying potential in assimilating carbon by regulating uptake and accumulation of these elements in different organs making them adapt to the habitats affected by drought and salinity. We observed strong plant size/life-form effects on C and N content and C: N and N: S ratios and of function on S content. Conclusions: Life-form/size and varying functions of the species determined C: nutrient ratio and elemental composition and helped adapting varying environmental stresses. This study assist in selecting species of high carbon, nitrogen and S content to utilize them in afforesting the areas affected by water and salt stresses, increased carbon storage and species with high S/N content in medicinal uses.


2021 ◽  
Vol 38 ◽  
pp. 00021
Author(s):  
Vera Cheryomushkina ◽  
Evgeniya Talovskaya ◽  
Alexandra Guseva

The structure of 24 species of Thymus and 12 species of Scutellaria was studied using the architectural approach. For the first time, an architectural unit was described, it is a branched sympodial axis. The architectural unit consists of sympodial axes n+1 order, formation shoots, branching shoots, ephemerous shoots. The wide distribution of species and development of species in contrasting habitat conditions is due to the diversity of sympodial axes and shoots that are part of the architectural unit. Depending on the type of branching and the spatial position of sympodial axes, six modifications of architectural unit were identified. It is established that the structure of mature individuals are formed due to the repetition one of the same modification of architectural unit or a combination different modifications of architectural unit. Each of the variants of the combination determines the type of life form (dwarf shrub or dwarf subshrub) and biomorph (monocentric, dense polycentric, sparse polycentric) and depends on the conditions of the ecotope. The identified modifications of the architectural unit and the variants of their combination determine the strategy for the development of dwarf shrubs and dwarf subshrubs in the development of Northern and Central Asia.


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