Keyword search (4,163 papers available)

"Communities" Keyword-tagged Publications:

Title Authors PubMed ID
1 Protecting shorelines in Canadian Indigenous communities: Environmental challenges, policy interventions, and mitigation technologies Iravani R; Biagi M; Laforest S; Lee K; Isaacman L; Chen Z; An C; 40554913
ENCS
2 Local residents' attitudes toward and contact with international students: a perspective from Montreal, Quebec Tekin O; Trofimovich P; 39606194
EDUCATION
3 A game theoretic approach to contract-based enviro-economic coordination of wood pellet supply chains for bioenergy production Vazifeh Z; Mafakheri F; An C; Bensebaa F; 38037615
ENCS
4 A Systematic Review on Vaccine Hesitancy in Black Communities in Canada: Critical Issues and Research Failures Cénat JM; Noorishad PG; Bakombo SM; Onesi O; Mesbahi A; Darius WP; Caulley L; Yaya S; Chomienne MH; Etowa J; Venkatesh V; Dalexis RD; Pongou R; Labelle PR; 36423032
PSYCHOLOGY
5 Mediating Pain: Navigating Endometriosis on Social Media Eileen Mary Holowka 35707051
CONCORDIA
6 Regional variation drives differences in microbial communities associated with sugar maple across a latitudinal range De Bellis T; Laforest-Lapointe I; Solarik KA; Gravel D; Kembel SW; 35412652
BIOLOGY
7 Limited initial impacts of biomass harvesting on composition of wood-inhabiting fungi within residual stumps. Boué C, DeBellis T, Venier LA, Work TT, Kembel SW 31844564
BIOLOGY
8 A biophysiological perspective on enhanced nitrate removal from decentralized domestic sewage using gravitational-flow multi-soil-layering systems. Song P, Huang G, Hong Y, An C, Xin X, Zhang P 31542583
ENCS
9 A synthesis of ecological and evolutionary determinants of bat diversity across spatial scales. Peixoto FP, Braga PHP, Mendes P 29890975
BIOLOGY

 

Title:Regional variation drives differences in microbial communities associated with sugar maple across a latitudinal range
Authors:De Bellis TLaforest-Lapointe ISolarik KAGravel DKembel SW
Link:https://pubmed.ncbi.nlm.nih.gov/35412652/
DOI:10.1002/ecy.3727
Publication:Ecology
Keywords:biotic interactionscommunity assemblyglobal warminglatitudinal gradientmicrobial communitiesspecies range
PMID:35412652 Category: Date Added:2022-04-12
Dept Affiliation: BIOLOGY
1 Department of Biology, Concordia University, Montréal, QC, Canada.
2 Department of Biology, Dawson College, Montréal, QC, Canada.
3 Département de Biologie, Université de Sherbrooke, Sherbrooke, QC, Canada.
4 Centre Sève, Université de Sherbrooke, Sherbrooke, QC, Canada.
5 National Council for Air and Stream Improvement, Inc. (NCASI), Montréal, QC, Canada.
6 Département des Sciences Biologiques, Université du Québec à Montréal, Montréal, QC, Canada.

Description:

Climate change is prompting plants to migrate and establish novel interactions in new habitats. Because of the pivotal roles microbes have on plant health and function, it is important to understand the ecological consequences of these shifts in host-microbe interactions with range expansion. Here we examine how the diversity of plant associated microbes varies along the host's current range and extended range according with climate change predictions, and assess the relative influence of host genotype (seed provenance) and environment in structuring the host microbiome. We collected sugar maple seeds from across the species current range, then planted them in temperate and mixedwood/transitional forests (current range) and in the boreal region (beyond range but predicted future range in response to climate change). We used amplicon sequencing to quantify bacterial, fungal, and mycorrhizal communities from seedling leaves and roots. Variation among sites and regions were the main drivers of the differences in host microbial communities whereas seed provenance did not play a large role. No unifying pattern was observed for microbial community richness, diversity, or specialization, demonstrating the complexity of responses of different taxa on above- and belowground plant compartments. Along the latitudinal gradient, we (1) observed reductions in mycorrhizal diversity which can negatively impact maple establishment; (2) and revealed reductions in fungal leaf pathogens which can have opposite effects. Our results highlight the need for an integrated approach including the examination of various microbial taxa on different plant compartments to improve our understanding of plant range shifts and plant-microbe interactions.





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