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Personal profile
Research interests
Research Topics:
Marine benthic ecology, invertebrate zoology, marine microbiology, biogeochemistry
Research interests
My research group is currently involved in several distinct areas of inquiry supported through grants from NSF and NOAA. One major area of long term research focuses on the geomicrobiology of animal-sediment interactions, the bacterial dominance of benthic biological communities and processes in tropical deltaic environments, the impact of physical disturbance on the structure and functioning of benthic communities in marine environments and the identification of biological indicators of those physical. The activities of bottom-dwelling organisms modify the physical and chemical properties of sediments very near the sediment-water interface and thereby influence a variety of ecological processes. The biological communities also closely reflect properties of the physical environment and depositional facies, and therefore they can be useful indicators of hydrodynamic and transport processes past and present, particularly in remote locales where it is not possible to extensively instrument and continuously monitor sedimentary dynamics. We are particularly interested in the reworked and fluidized fine grained deposits that characterize vast areas of the world’s coastlines today particularly in the tropics and which were almost certainly one of the dominant microbial ecosystems of the early Earth. As a result of frequent physical disturbance there is little evidence of macro- or meiofaunal activities in these sediments. Instead, they contain very abundant and active populations of phylogenetically and metabolically diverse microbes. This research involves collaborations with R. Aller and J. Mak at SBU and colleagues at the University of Louisiana, Lafayette, University of Hawaii, and Australian Institute of Marine Science, Townsville, AU. Our research areas include the Amazon – Guianas dispersal system off French Guiana), and the Fly River dispersal system in the Gulf of Papua, Papua New Guinea.
My research group continues to be interested in microbial dynamics at the sea-air boundary. We are particularly concerned with mechanisms involved in the concentration and transfer of microorganisms from the ocean through the sea surface microlayer (SML) to the atmosphere as aerosols, the formation and characteristics of these aerosols, and transport in the atmosphere as an important means of dispersal of viable microorganisms. The sea-surface microlayer (SML) at the atmosphere/hydrosphere boundary is the upper 0-1 mm and represents a unique biological, physical and chemical habitat where microbial and other organisms, organic matter, and a variety of anthropogenic substances can be greatly enriched in comparison to subsurface waters. As an interface, it serves as a source and a sink for materials in the atmosphere and the water column. Most marine aerosols originate when air bubbles burst at the surface ejecting material from the sea surface microlayer and bubble surface layer into the atmosphere and thus contain inorganic salts, organic matter, and microorganisms similar to those in seawater. One of my current projects in collaboration with Daniel Knopf involves examining ocean sea spray aerosol particles including sea-salts and mixed inorganic/organic matter in ice cloud formation.
Another area of active area involves the development of biosensor technology for the study of microbial processes in the marine environment. This work involves a continued collaborative effort with colleagues from Electrical Engineering at SBU, the University of Hawaii, and the Monterey Bay Aquarium Research Institute (MBARI). In situ biosensors have been identified repeatedly as a high priority for effective and reliable in situ instrumentation to provide long-term, high-resolution observations of critical environmental parameters in the ocean in recent workshops and conferences. However, few microbial biosensors have been developed, and fewer still are capable of remotely sensing aquatic microbial populations and processes. Over the past several years we developed the Capillary Waveguide Biosensor (CWB) a bench top instrument capable of rapid, quantitative detection of picogram quantities of specific, targeted nucleic acid sequences through repeated cycles over long intervals n samples of marine microbial communities. We are now working to transform the CWB into an automated, in situ monitoring device by changing it to an interchangeable sensor module for deployment as an analytical module within the Environmental Sample Processor (ESP) developed by Dr. Christopher Scholin and colleagues at MBARI.
Additional research concerns factors that influence the persistence and transmission of human enteric viruses in marine coastal environments including the water, benthic organisms particularly molluscs, in sediments, and in aerosols over coastal waters. Viral pollution in the marine environment is of great concern due to the discharge of human viral pathogens into coastal waters via wastewater discharges and land runoff.
In addition to my research and teaching activities, I have also coordinated the NSF sponsored summer undergraduate research experience (REU) site program, which brought 8 undergraduate students from universities throughout the U.S. to SoMAS during the summer.
Education/Academic qualification
PhD, University of Southern California
1975
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Collaborations and top research areas from the last five years
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Detection of airborne endotoxins and toxins from cyanobacterial harmful algal blooms and the effect of atmospheric oxidants on their longevity and potency
Aller, J. (PI), Gobler, C. (CoPI), Knopf, D. A. (CoPI) & McDonough, C. (CoPI)
09/1/21 → 08/31/26
Project: Research
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Coupling of Carbonate Cycling and Redox Reactions in the Bioturbated Zone of Marine Sediments
Aller, R. C. (PI), Aller, J. (CoPI) & Zhu, Q. (CoPI)
08/15/17 → 01/31/23
Project: Research
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International Conference Support: Biological Modification of the Seabed and Sediment-Water Interactions
Aller, R. C. (PI), Aller, J. (CoPI), Volkenborn, N. (CoPI) & Zhu, Q. (CoPI)
03/5/17 → 05/31/18
Project: Research
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The Effects of Animal-Sediment Interactions on Biogeochemical Processes at the Sediment-Water Interface
Aller, R. C. (PI), Aller, J. (CoPI) & Zhu, Q. (CoPI)
07/1/13 → 12/31/16
Project: Research
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Alfred and Jane Ross Foundation to Encourage International Travel, Research, and Understanding
Aller, J. (PI)
Alfred and Jane Ross Foundation
06/10/13 → 12/31/14
Project: Research
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Commercial fishing influences the life histories of fish in the world's largest desert lake
Muehl, M. F., Olin, J. A., Keyombe, J. L., Aller, J. Y., Aller, R. C., Lwiza, K. M. M. & Frisk, M. G., Oct 2025, In: Journal of Fish Biology. 107, 4, p. 1266-1280 15 p.Research output: Contribution to journal › Article › peer-review
Open Access1 Scopus citations -
Physicochemical characterization of free troposphere and marine boundary layer ice-nucleating particles collected by aircraft in the eastern North Atlantic
Knopf, D. A., Wang, P., Wong, B., Tomlin, J. M., Veghte, D. P., Lata, N. N., China, S., Laskin, A., Moffet, R. C., Aller, J. Y., Marcus, M. A. & Wang, J., Aug 8 2023, In: Atmospheric Chemistry and Physics. 23, 15, p. 8659-8681 23 p.Research output: Contribution to journal › Article › peer-review
Open Access17 Scopus citations -
Cable bacteria activity and impacts in Fe and Mn depleted carbonate sediments
Yin, H., Aller, J. Y., Furman, B. T., Aller, R. C. & Zhu, Q., Oct 20 2022, In: Marine Chemistry. 246, 104176.Research output: Contribution to journal › Article › peer-review
6 Scopus citations -
Ice-nucleating agents in sea spray aerosol identified and quantified with a holistic multimodal freezing model
Alpert, P. A., Kilthau, W. P., O'Brien, R. E., Moffet, R. C., Gilles, M. K., Wang, B., Laskin, A., Aller, J. Y. & Knopf, D. A., Nov 2022, In: Science Advances. 8, 44, abq6842.Research output: Contribution to journal › Article › peer-review
Open Access34 Scopus citations -
Micro-spectroscopic and freezing characterization of ice-nucleating particles collected in the marine boundary layer in the eastern North Atlantic
Knopf, D. A., Charnawskas, J. C., Wang, P., Wong, B., Tomlin, J. M., Jankowski, K. A., Fraund, M., Veghte, D. P., China, S., Laskin, A., Moffet, R. C., Gilles, M. K., Aller, J. Y., Marcus, M. A., Raveh-Rubin, S. & Wang, J., Apr 25 2022, In: Atmospheric Chemistry and Physics. 22, 8, p. 5377-5398 22 p.Research output: Contribution to journal › Article › peer-review
Open Access22 Scopus citations