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Xabier Irigoien

Explore the profile of Xabier Irigoien including associated specialties, affiliations and a list of published articles. Areas
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Articles 52
Citations 1148
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Recent Articles
11.
More K, Wuchter C, Irigoien X, Tierney J, Giosan L, Grice K, et al.
Geobiology . 2020 Dec; 19(2):162-172. PMID: 33274598
The vertical distribution of subseafloor archaeal communities is thought to be primarily controlled by in situ conditions in sediments such as the availability of electron acceptors and donors, although sharp...
12.
Alsaffar Z, Curdia J, Irigoien X, Carvalho S
BMC Ecol . 2020 Nov; 20(1):61. PMID: 33228627
Background: Tropical habitats and their associated environmental characteristics play a critical role in shaping macroinvertebrate communities. Assessing patterns of diversity over space and time and investigating the factors that control...
13.
Pearman J, Chust G, Aylagas E, Villarino E, Watson J, Chenuil A, et al.
Mol Ecol . 2020 Oct; 29(24):4882-4897. PMID: 33063375
Autonomous Reef Monitoring Structures (ARMS) have been applied worldwide to characterize the critical yet frequently overlooked biodiversity patterns of marine benthic organisms. In order to disentangle the relevance of environmental...
14.
Fraija-Fernandez N, Bouquieaux M, Rey A, Mendibil I, Cotano U, Irigoien X, et al.
Ecol Evol . 2020 Aug; 10(14):7560-7584. PMID: 32760549
Current methods for monitoring marine fish (including bony fishes and elasmobranchs) diversity mostly rely on trawling surveys, which are invasive, costly, and time-consuming. Moreover, these methods are selective, targeting a...
15.
Duarte C, Ngugi D, Alam I, Pearman J, Kamau A, Eguiluz V, et al.
Environ Microbiol . 2020 Aug; 22(11):4589-4603. PMID: 32743860
Massive metagenomic sequencing combined with gene prediction methods were previously used to compile the gene catalogue of the ocean and host-associated microbes. Global expeditions conducted over the past 15 years...
16.
Coello-Camba A, Diaz-Rua R, Duarte C, Irigoien X, Pearman J, Alam I, et al.
Front Microbiol . 2020 Jun; 11:1153. PMID: 32582095
and are pico-sized cyanobacteria that play a fundamental role in oceanic primary production, being particularly important in warm, nutrient-poor waters. Their potential response to nutrient enrichment is expected to be...
17.
Martin A, Boyd P, Buesseler K, Cetinic I, Claustre H, Giering S, et al.
Nature . 2020 Apr; 580(7801):26-28. PMID: 32235941
No abstract available.
18.
Al-Otaibi N, Huete-Stauffer T, Calleja M, Irigoien X, Moran X
PeerJ . 2020 Mar; 8:e8612. PMID: 32140305
The Red Sea is characterized by higher temperatures and salinities than other oligotrophic tropical regions. Here, we investigated the vertical and seasonal variations in the abundance and biomass of autotrophic...
19.
Eguiluz V, Salazar G, Fernandez-Gracia J, Pearman J, Gasol J, Acinas S, et al.
Sci Rep . 2019 Dec; 9(1):18710. PMID: 31822687
Global ocean expeditions have provided minimum estimates of ocean's prokaryote diversity, supported by apparent asymptotes in the number of prokaryotes with sampling effort, of about 40,000 species, representing <1% of...
20.
Queiroz N, Humphries N, Couto A, Vedor M, da Costa I, Sequeira A, et al.
Nature . 2019 Jul; 572(7770):461-466. PMID: 31340216
Effective ocean management and the conservation of highly migratory species depend on resolving the overlap between animal movements and distributions, and fishing effort. However, this information is lacking at a...