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From an economic crisis to a pandemic crisis: The need for accurate marine monitoring data to take informed management decisions (2021)
Book Chapter
Borja, A., & Elliott, M. (2021). From an economic crisis to a pandemic crisis: The need for accurate marine monitoring data to take informed management decisions. In C. Sheppard (Ed.), Advances in Marine Biology (79-114). Academic Press. https://doi.org/10.1016/bs.amb.2021.08.002

It is axomatic that a system cannot be managed unless it is measured and that the measurements occur in a rigorous, defendable manner covering relevant spatial and temporal scales. Furthermore, it is not possible to predict the future direction of a... Read More about From an economic crisis to a pandemic crisis: The need for accurate marine monitoring data to take informed management decisions.

Long-Term Changes in the Abundance of Benthic Foraging Birds in a Restored Wetland (2021)
Journal Article
Mander, L., Scapin, L., Thaxter, C. B., Forster, R. M., & Burton, N. H. (2021). Long-Term Changes in the Abundance of Benthic Foraging Birds in a Restored Wetland. Frontiers in ecology and evolution, 9, Article 673148. https://doi.org/10.3389/fevo.2021.673148

Estuaries have historically been subject to considerable habitat loss, and continue to be subjected to such in areas where the natural landward migration of intertidal habitats is constrained by hard coastal defences. Thus, in estuaries where direct... Read More about Long-Term Changes in the Abundance of Benthic Foraging Birds in a Restored Wetland.

Interaction of temperature, salinity and extracellular polymeric substances controls trace element incorporation into tufa calcite (2021)
Journal Article
Rogerson, M., Pedley, H. M., Greenway, G. M., & Wadhawan, J. D. (in press). Interaction of temperature, salinity and extracellular polymeric substances controls trace element incorporation into tufa calcite. The Depositional Record, https://doi.org/10.1002/dep2.160

The influence of extracellular polymeric substances on carbonate mineral growth in natural settings remains one of the most poorly understood contributors to the growth of non-marine carbonate sediments. The influences of these materials are complica... Read More about Interaction of temperature, salinity and extracellular polymeric substances controls trace element incorporation into tufa calcite.

Acidification can directly affect olfaction in marine organisms (2021)
Journal Article
Porteus, C. S., Roggatz, C. C., Velez, Z., Hardege, J. D., & Hubbard, P. C. (2021). Acidification can directly affect olfaction in marine organisms. The journal of experimental biology, 224(14), https://doi.org/10.1242/jeb.237941

In the past decade, many studies have investigated the effects of low pH/high CO2 as a proxy for ocean acidification on olfactory-mediated behaviours of marine organisms. The effects of ocean acidification on the behaviour of fish vary from very larg... Read More about Acidification can directly affect olfaction in marine organisms.

Cumulative impacts of habitat fragmentation and the environmental factors affecting upstream migration in the threatened sea lamprey, Petromyzon marinus (2021)
Journal Article
Davies, P., Britton, J. R., Nunn, A. D., Dodd, J. R., Bainger, C., Velterop, R., & Bolland, J. D. (2021). Cumulative impacts of habitat fragmentation and the environmental factors affecting upstream migration in the threatened sea lamprey, Petromyzon marinus. Aquatic conservation : marine and freshwater ecosystems, 31(9), 2560-2574. https://doi.org/10.1002/aqc.3625

River ecosystems are often fragmented by artificial structures, such as weirs. For anadromous species, these structures can impede access to upstream spawning sites and ultimately lead to severe population declines. This study focused on the freshwat... Read More about Cumulative impacts of habitat fragmentation and the environmental factors affecting upstream migration in the threatened sea lamprey, Petromyzon marinus.

Establishing sustainable sediment budgets is critical for climate-resilient mega-deltas (2021)
Journal Article
Vasilopoulos, G., Quan, Q. L., Parsons, D. R., Darby, S. E., Tri, V. P. D., Hung, N. N., Haigh, I. D., Voepel, H. E., Nicholas, A. P., & Aalto, R. (2021). Establishing sustainable sediment budgets is critical for climate-resilient mega-deltas. Environmental Research Letters, 16(6), Article 064089. https://doi.org/10.1088/1748-9326/ac06fc

Many of the world's major river deltas face a sustainability crisis, as they come under threat of increases in salinity and the extent of tidal zones forced by combinations of sea-level rise, changes in river discharge and channel geometry. The relat... Read More about Establishing sustainable sediment budgets is critical for climate-resilient mega-deltas.

Consequences of combined exposure to thermal stress and the plasticiser DEHP in Mytilus spp. differ by sex (2021)
Journal Article
Mincarelli, L. F., Rotchell, J. M., Chapman, E. C., Turner, A. P., & Wollenberg Valero, K. C. (2021). Consequences of combined exposure to thermal stress and the plasticiser DEHP in Mytilus spp. differ by sex. Marine pollution bulletin, 170, Article 112624. https://doi.org/10.1016/j.marpolbul.2021.112624

Little is known about the combined effect of environmental factors and contaminants on commercially important marine species, and whether this effect differs by sex. In this study, blue mussels were exposed for seven days to both single and combined... Read More about Consequences of combined exposure to thermal stress and the plasticiser DEHP in Mytilus spp. differ by sex.

Where are we? Towards an understanding of the selective accumulation of microplastics in mussels (2021)
Journal Article
Li, J., Wang, Z., Rotchell, J. M., Shen, X., Li, Q., & Zhu, J. (2021). Where are we? Towards an understanding of the selective accumulation of microplastics in mussels. Environmental pollution, 286, Article 117543. https://doi.org/10.1016/j.envpol.2021.117543

Mussels are suggested as bioindicators of marine microplastic pollution. However, they are selective in regards to accumulation of microplastics. To make studies more targeted and comparable, ultimately helping to determine the suitability of the mus... Read More about Where are we? Towards an understanding of the selective accumulation of microplastics in mussels.

Ocean Acidification Amplifies the Olfactory Response to 2-Phenylethylamine: Altered Cue Reception as a Mechanistic Pathway? (2021)
Journal Article
Hardege, J. D., Schirrmacher, P., Roggatz, C. C., & Benoit, D. M. (in press). Ocean Acidification Amplifies the Olfactory Response to 2-Phenylethylamine: Altered Cue Reception as a Mechanistic Pathway?. Journal of Chemical Ecology, https://doi.org/10.1007/s10886-021-01276-9

With carbon dioxide (CO2) levels rising dramatically, climate change threatens marine environments. Due to increasing CO2 concentrations in the ocean, pH levels are expected to drop by 0.4 units by the end of the century. There is an urgent need to u... Read More about Ocean Acidification Amplifies the Olfactory Response to 2-Phenylethylamine: Altered Cue Reception as a Mechanistic Pathway?.

Knickpoints and crescentic bedform interactions in submarine channels (2021)
Journal Article
Chen, Y., Parsons, D. R., Simmons, S. M., Williams, R., Cartigny, M. J. B., Hughes Clarke, J. E., Stacey, C. D., Hage, S., Talling, P. J., Azpiroz‐Zabala, M., Clare, M. A., Hizzett, J. L., Heijnen, M. S., Hunt, J. E., Lintern, D. G., Sumner, E. J., Vellinga, A. J., & Vendettuoli, D. (2021). Knickpoints and crescentic bedform interactions in submarine channels. Sedimentology, 68(4), 1358-1377. https://doi.org/10.1111/sed.12886

Submarine channels deliver globally important volumes of sediments, nutrients, contaminants and organic carbon into the deep sea. Knickpoints are significant topographic features found within numerous submarine channels, which most likely play an imp... Read More about Knickpoints and crescentic bedform interactions in submarine channels.

Transient Permian-Triassic euxinia in the southern Panthalassa deep ocean (2021)
Journal Article
Takahashi, S., Strachan, L. J., Yin, R., Wignall, P. B., Bond, D. P., & Grasby, S. E. (in press). Transient Permian-Triassic euxinia in the southern Panthalassa deep ocean. Geology, 49(8), 889-893. https://doi.org/10.1130/G48928.1

Both the duration and severity of deep-water anoxic conditions across the Permian-Triassic mass extinction (PTME) are controversial. Panthalassa Ocean circulation models yield varying results, ranging from a well-ventilated deep ocean to rapidly deve... Read More about Transient Permian-Triassic euxinia in the southern Panthalassa deep ocean.

Comparative assessment of marine weathering of ROP-derived biopolymers against conventional plastics (2021)
Journal Article
Rodgers, K., Mayes, W. M., Santoro, O., Redshaw, C., Mccumskay, R., & Parsons, D. R. (2021). Comparative assessment of marine weathering of ROP-derived biopolymers against conventional plastics. Marine pollution bulletin, 167, Article 112272. https://doi.org/10.1016/j.marpolbul.2021.112272

Bio-based plastics were designed to replace single-use plastics and to cause less post-consumer environmental damage. This paper assesses the weathering of four bio-based polymers created by ring opening polymerization (ROP) promoted by a previously... Read More about Comparative assessment of marine weathering of ROP-derived biopolymers against conventional plastics.

A call to evaluate Plastic's impacts on marine benthic ecosystem interaction networks (2021)
Journal Article
Ladewig, S. M., Bianchi, T. S., Coco, G., Hope, J. A., & Thrush, S. F. (2021). A call to evaluate Plastic's impacts on marine benthic ecosystem interaction networks. Environmental pollution, 273, Article 116423. https://doi.org/10.1016/j.envpol.2021.116423

Plastic pollution continues to seep into natural and pristine habitats. Emerging laboratory-based research has evoked concern regarding plastic’s impact on ecosystem structure and function, the essence of the ecosystem services that supports our life... Read More about A call to evaluate Plastic's impacts on marine benthic ecosystem interaction networks.

Diatom Biofilms: Ecosystem Engineering and Niche Construction (2021)
Book Chapter
Paterson, D. M. .., & Hope, J. A. (2021). Diatom Biofilms: Ecosystem Engineering and Niche Construction. In R. Gordon, S. A. Cohn, & K. M. Manoylov (Eds.), Diatom Gliding Motility: Biology and Applications (135-158). Wiley. https://doi.org/10.1002/9781119526483.ch6

Ecology is complex and while there is a modern drive towards a holistic or “ecosystem approach” for managing marine systems, we are still a long way from fully understanding the interactions between the various components of different ecosystems and... Read More about Diatom Biofilms: Ecosystem Engineering and Niche Construction.

Species-specific impact of microplastics on coral physiology (2020)
Journal Article
Mendrik, F., Henry, T., Burdett, H., Hackney, C., Waller, C., Parsons, D., & Hennige, S. (2021). Species-specific impact of microplastics on coral physiology. Environmental pollution, 269, Article 116238. https://doi.org/10.1016/j.envpol.2020.116238

There is evidence that microplastic (MP) pollution can negatively influence coral health; however, mechanisms are unknown and most studies have used MP exposure concentrations that are considerably higher than current environmental conditions. Furthe... Read More about Species-specific impact of microplastics on coral physiology.

A comparison of microplastic contamination in freshwater fish from natural and farmed sources (2020)
Journal Article
Garcia, A. G., Suárez, D. C., Li, J., & Rotchell, J. M. (in press). A comparison of microplastic contamination in freshwater fish from natural and farmed sources. Environmental science and pollution research, https://doi.org/10.1007/s11356-020-11605-2

Contamination of aquatic systems mainly by urbanization and poor sanitation, deficient or lack of wastewater treatments, dumping of solid residues and run off, has led to the presence of particles, including manmade polymers, in tissues of many marin... Read More about A comparison of microplastic contamination in freshwater fish from natural and farmed sources.