期刊论文详细信息
PeerJ
Seed morphology and sculpture of invasive Impatiens capensis Meerb. from different habitats
article
Agnieszka Rewicz1  Monika Myśliwy2  Wojciech Adamowski3  Marek Podlasiński4  Anna Bomanowska1 
[1] Department of Geobotany and Plant Ecology, University of Lodz;Institute of Marine and Environmental Sciences, University of Szczecin;Białowieża Geobotanical Station, Faculty of Biology, University of Warsaw;Department of Environmental Management, West Pomeranian University of Technology
关键词: Balsaminaceae;    Environmental factors;    Invasive species;    Scanning electron microscope (SEM);    Seed coat;    Variability;    3D ultrastructure;   
DOI  :  10.7717/peerj.10156
学科分类:社会科学、人文和艺术(综合)
来源: Inra
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【 摘 要 】

Impatiens capensis is an annual plant native to eastern North America that is currently spreading across Europe. In Poland, due to this plant’s rapid spread in the secondary range and high competitiveness in relation to native species, it is considered a locally invasive species. The microstructure of seeds is an important tool for solving various taxonomic problems and also provides data useful for determining the impact of various environmental factors on the phenotypic variability of species. This issue is particularly important in regard to invasive species which occupy a wide range of habitats in the invaded range. There are few reports on seed size and thus far no descriptions of the seed ultrastructure of I. capensis in the analyzed literature. We present new data on the seed morphology of I. capensis growing in different habitats and conditions in the secondary range of the species. The studied populations differed significantly in each of the investigated traits (seed length, width, circumference, area, roundness, and mass). Our findings showed that anthropogenic disturbances in habitats and some soil parameters (presence of carbonates, potassium, loose sand, and moisture) were statistically significant with various seed sizes and morphology in the studied populations of I. capensis. Moreover, our studies showed maximum seed length (5.74 mm) and width (3.21 mm) exceeding those values given in the available literature. For the first time, we also provide a detailed SEM study of the ultrastructure of the seed coat of I. capensis. There are two types of epidermal cells on the seeds: (a) between the ribs (elongated with straight anticlinal walls, slightly concave outer periclinal walls, and micropapillate secondary sculpture on the edges with anticyclic walls), and (b) on the ribs (isodiametric cells with straight anticlinal walls and concave outer periclinal walls). Unlike the variability of size and weight of seeds, the coat ornamentation has turned out to be a steady feature within the studied secondary range of I. capensis.

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CC BY   

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