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Find similar grantsExobiology Program is sponsored by NASA Astrobiology Program. Supports research into the origin, evolution, distribution, and future of life in the Universe, focusing on the origin and early evolution of life, the potential of life to adapt to different environments, and the implications for life elsewhere.
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Exobiology - NASA Science International Space Station NASA Awards SpaceX Three Crew Flights to Space Station Newfound ‘Baby’ Planet Smashes Record for Youngest Known World NASA’s Moon Orbiter Spots New, ‘Once-in-Century’ Moon Crater Upcoming Launches and Landings Communicating with Missions James Webb Space Telescope International Space Station Earth Science Researchers Asteroids, Comets & Meteors The Search for Life in the Universe Astrophysics & Space Science Biological & Physical Sciences Human Space Travel Research Technology Transfer & Spinoffs Technology Living in Space Manufacturing and Materials For Colleges and Universities Requests for Exhibits, Artifacts, or Speakers NASA Brand & Usage Guidelines NASA-JAXA XRISM Mission Sees Pulsar Gathering Companion’s ‘Wind’ NASA’s Hubble Spots an Out-of-Sync Galaxy NASA, SpaceX Continue Crew‑13 Prep as Crew Enters Quarantine NASA’s Integrated Medical Model (IMM) Summer Training: Catching Up With NASA’s Astronaut Candidates Summer Goes Out With a Heat Dome Amendment 74: A.
14 Atmosphere Research Program Due Date Delay and Clarification Regarding the use of Generative AI Helio and You: A Fresh Perspective on the Sun NASA’s Moon Orbiter Spots New, ‘Once-in-Century’ Moon Crater NASA’s Integrated Medical Model (IMM) NASA-JAXA XRISM Mission Sees Pulsar Gathering Companion’s ‘Wind’ NASA’s Hubble Spots an Out-of-Sync Galaxy Newfound ‘Baby’ Planet Smashes Record for Youngest Known World NASA-JAXA XRISM Mission Sees Pulsar Gathering Companion’s ‘Wind’ NASA’s Hubble Spots an Out-of-Sync Galaxy Passion Meets Precision at NASA’s Flight Research Lab NASA Johnson Pilots Chase Moon’s Shadow for Eclipse Science NASA Selects University Teams to Help Advance Aviation Research Helio and You: A Fresh Perspective on the Sun NASA Celebrates Restoration of Guam Station Damaged by Typhoon Mawar NASA’s Life-Saving Technology Where Cell Signals Can’t Go NASA’s Integrated Medical Model (IMM) From the Corps to the Cosmos, featuring Jaden Caradine 1,000 Museum Visitors Dive Into NASA Sea Level Science on World Ocean Day NASA Awards SpaceX Three Crew Flights to Space Station Celebrate International Observe the Moon Night with NASA NASA Celebrates Restoration of Guam Station Damaged by Typhoon Mawar La NASA anuncia la cobertura de la misión lunar Artemis II Agenda diaria de la misión a la Luna de Artemis II de la NASA La NASA refuerza Artemis: añade una misión y perfecciona su arquitectura general The goal of NASA’s Exobiology program (formerly Exobiology and Evolutionary Biology) is to understand the origin, evolution, distribution, and future of life in the Universe.
Research is centered on the origin and early evolution of life, the potential of life to adapt to different environments, and the implications for life elsewhere. This research is conducted in the context of NASA’s ongoing exploration of our stellar neighborhood and the identification of biosignatures for in situ and remote sensing applications. The current Program Officer for Exobiology is Alison Olcott.
Click here for a full list of Program Officers . The NASA Solicitation and Proposal Integrated Review and Evaluation System (NSPIRES) contains information on all NASA-funded research opportunities. Be sure to create an NSPIRES account to receive updates and to respond to NASA research announcements.
Selected Exobiology Proposals NNH24ZDA001N-EXO Selected Abstracts NNH23ZDA001N-EXO Selected Abstracts (Updated 7/7/25) NNH22ZDA001N-EXO Selected Abstracts NNH21ZDA001N-EXO Selected Abstracts NNH20ZDA001N-EXO Selected Abstracts NNH19ZDA001N-EXO Selected Abstracts NNH18ZDA001N-EXO Selected Abstracts NNH17ZDA001N-EXO 2017 Selected Abstracts NNH16ZDA001N-EXO 2016 Selected Abstracts NNH15ZDA001N-EXO 2015 Selected Abstracts NNH14ZDA001N-EXO14_2 2014 Selected Abstracts NNH13ZDA001N-EXO 2013 Selected Abstracts NNH11ZDA001N-EXO 2011 Selected Abstracts NNH10ZDA001N-EXO 2010 Selected Abstracts NNH09ZDA001N-EXOB 2009 Selected Abstracts NNH08ZDA001N-EXOB 2008 Selected Abstracts NNH07ZDA001N-EXOB 2007 Selected Abstracts NNH06ZDA001N-EXOB 2006 Selected Abstracts NNH05ZDA001N-EXB 2005 Selected Abstracts Planetary Conditions for Life: Research in this area seeks to delineate the galactic and planetary conditions conducive to the origin of life.
Topics of interest include the formation and stability of habitable planets, the formation of complex organic molecules in space and their delivery to planetary surfaces, models of early environments in which organic chemical synthesis could occur, the forms in which prebiotic organic matter has been preserved in planetary materials, and the range of planetary environments amenable to life.
Research in the area of prebiotic evolution seeks to understand the pathways and processes leading from the origin of planetary bodies to the origin of life. The strategy is to investigate the planetary and molecular processes that set the physical and chemical conditions within which living systems may have arisen.
A major objective is determining what chemical systems could have served as precursors of metabolic and replicating systems on Earth and elsewhere, including alternatives to the current DNA – RNA – protein basis for life. Early Evolution of Life and the Biosphere: The goal of research into the early evolution of life is to determine the nature of the most primitive organisms and the environment in which they evolved.
The opportunity is taken to investigate two natural repositories of evolutionary history available on Earth: the molecular record in living organisms and the geological record.
These paired records are used to: (i) determine when and in what setting life first appeared and the characteristics of the first successful living organisms; (ii) understand the phylogeny and physiology of microorganisms, including extremophiles, whose characteristics may reflect the nature of primitive environments; (iii) determine the original nature of biological energy transduction, membrane function, and information processing, including the construction of artificial chemical systems to test hypotheses regarding the original nature of key biological processes; iv) investigate the development of key biological processes and their environmental impact; v) examine the response of Earth’s biosphere to extraterrestrial events; vi) investigate the evolution of genes, pathways, and microbial species subject to long – term environmental change relevant to the origin of life on Earth and the search for life elsewhere; and vii) study the coevolution of microbial communities, and the interactions within such communities, that drive major geochemical cycles, including the processes through which new species are added to extant communities.
Evolution of Advanced Life: Research associated with the study of the evolution of advanced life seeks to determine the biological and environmental factors leading to the development of multicellularity on Earth and the potential distribution of complex life in the Universe.
This research includes studies of the origin and early evolution of those biological factors that are essential to multicellular life, such as developmental programs, intercellular signaling, programmed cell death, the cytoskeleton, cellular adhesion control and differentiation, in the context of the origin of advanced life.
This research area also includes an evaluation of environmental factors such as the influence of extraterrestrial (e.g., bolide impacts, orbital and solar variations, gamma-ray bursts, etc.) and planetary processes (“Snowball Earth” events, rapid climate change, etc.) on the appearance and evolution of multicellular life. Of particular interest are mass extinction events.
Exobiology for Solar System Exploration: Research in this area focuses on relating what is known about life on Earth to conditions prevailing on other planetary bodies. This research includes assessments of the survivability of various types of Earth microorganisms and the formation and retention of biosignatures under non-Earth conditions (e.g., Mars, Europa).
Also included under this research area are efforts to assess the potential habitability of planetary environments other than those found on the Earth.
Return to Funded Astrobiology Research at NASA Human-Related Microbes May Survive Moon’s South Pole, NASA Finds NASA Finds New Way Earth May Have Received Elements Needed for Life NASA Uses Mineralogical Marker to Understand Ancient Martian Climate NASA Research Shows Early Life Relied on Rare Metal Did you find what you were looking for? (Required) What were you looking for?
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According to the current listing, eligibility includes: Universities, including the University of Wyoming. Confirm the full requirements in the official notice before applying.
Exobiology Program is funded by NASA Astrobiology Program. Verify program details on the funder's official page before applying.
This opportunity targets applicants in Wyoming. If your organization operates elsewhere, check the official notice for location requirements.
Start from the official opportunity page linked in this listing — it carries the sponsor's submission instructions.
MGPV Travel Grant is sponsored by Geological Society of America (GSA), Mineralogy, Geochemistry, Petrology, Volcanology Division. MGPV Travel grants support student travel to the annual GSA meeting. Applications are restricted to active graduate or undergraduate students who are the presenting authors of an accepted abstract at the annual GSA meeting.
Research Opportunities in Space and Earth Science (ROSES) - 2025: A.4 Rapid Response and Novel Research in Earth Science is sponsored by National Aeronautics and Space Administration (NASA) Science Mission Directorate (SMD). This omnibus research funding opportunity includes various program elements, with rolling submissions for Earth Science research through August 2026. Proposers to Earth Science using the NASA Center for Climate Simulation high-end computing facility must include specific budget details.
NASA published an RFI on September 12, 2026 seeking states willing to host and sponsor the new United States Space Academy, with responses due October 26 at 6 p.m. EDT through SAM.gov. Only a governor or a governor's designee may submit, and only once per state. The timeline demands groundbreaking by 2027, 300 students in temporary facilities in 2028, and a permanent campus by 2031. Here is what that structure actually means for universities, economic development agencies, and contractors in the states that compete.
Read articleNNH26ZDA016C funds about five multi-institutional lunar research teams at up to $1.8 million per year for five years. Step-1 closes September 29, 2026, Step-2 on December 4, review is dual-anonymous, and up to $180,000 a year is carved out for public engagement before any science gets funded.
Read articleROSES-2025 has been amended 69 times and now runs to December 31, 2026 — but the 'no due date' and flexible program elements that carried the community through the gap close August 31. Two rules changed mid-cycle that most proposers have not read: a generative-AI citation requirement and a $0.09-per-SBU charge for NASA high-end computing that must appear in your Earth Science budget.
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