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Role of plant functional traits in the invasion success: analysis of nine species of Asteraceae.

Authors :
Kaur, Amarpreet
Sharma, Aditi
Kaur, Shalinder
Siddiqui, Manzer H.
Alamri, Saud
Ahmad, Mustaqeem
Kohli, Ravinder Kumar
Singh, Harminder Pal
Batish, Daizy Rani
Source :
BMC Plant Biology; 8/19/2024, Vol. 24 Issue 1, p1-12, 12p
Publication Year :
2024

Abstract

Various attributes are hypothesized to facilitate the dominance of an invasive species in non-native geographical and ecological regimes. To explore the characteristic invasive attributes of the family Asteraceae, a comparative study was conducted among nine species of this family, co-occurring in the western Himalayan region. Based on their nativity and invasion status, the species were categorized as "Invasive", "Naturalized", and "Native". Fifteen plant functional traits, strongly linked with invasion, were examined in the test species. The analyses revealed a strong dissimilarity between all the plant functional traits (except leaf carbon [Leaf C]) represented by "Invasive" and "Native" categories and most of the traits (except leaf area [LA], leaf nitrogen [Leaf N], Leaf C, and leaf carbon-nitrogen ratio [C: N]) represented by the "Naturalized" and "Native" categories. Similarly, "Invasive" and "Naturalized" categories also varied significantly for most of the traits (except Leaf N, Leaf C, capitula per m² population [C<subscript>m²</subscript>], seeds per capitula [S<subscript>capitula</subscript>], and seed mass). Invasive species are characterized by high LA, specific leaf area [SLA] and germination, and low C:N and leaf construction costs [LCC]. Most of the traits represented by native species justify their non-invasive behavior; whereas the naturalized species, despite having better size metrics (plant height), resource investment strategy (aboveground non-reproductive biomass [BNR], and aboveground reproductive biomass [BR]), and reproductive output (capitula per individual plant [C<subscript>plant</subscript>], and seeds per individual plant [S<subscript>plant</subscript>]) failed to invade, which implies that the role of these functional aspects in imparting invasion potential to a species is not consistent in all the ecosystems and/or phylogenetic groups. Results of PCA revealed that trait divergence plays a more imperative role in invasion success than naturalization in the species of the family Asteraceae. The present study is intended to refine the pre-generalized invasion concepts associated with family Asteraceae to ensure more accurate identification of the potential invaders and better management of the existing ones. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14712229
Volume :
24
Issue :
1
Database :
Complementary Index
Journal :
BMC Plant Biology
Publication Type :
Academic Journal
Accession number :
179085808
Full Text :
https://doi.org/10.1186/s12870-024-05498-3