NASA Test Piloting Legends Reunite

Source: NASA

Nils Larson, aerospace engineer and test pilot for NASA’s X-59 aircraft, met up with his former student, Artemis II astronaut Victor Glover, on Saturday, Oct. 21 during an open house held at NASA’s Langley Research Center in Hampton, Virginia. The pilots originally met more than two decades ago when Larson was an instructor at the U.S. Air Force Test Pilot School. Larson trained students – including Glover – using the T-38 aircraft.  
“I always knew Victor would go far. It’s cool to think that far means the Moon,” said Larson, whose current test piloting work is critical to NASA’s Quesst mission. “I was excited to see him picked up as an astronaut, then get to fly to the International Space Station, and now he gets to go to the Moon as part of Artemis II. The sky’s not the limit anymore!” 
Nearly 40,000 people attended the NASA Langley open house. Larson and Glover reunited at Langley’s hangar where other NASA legends, such as astronauts Neil Armstrong and Alan Shepard, trained on its historic Rendezvous Docking Simulator. The simulator remains a permanent fixture at the hangar. 

Station Science 101: Growing Plants in Space

Source: NASA

As NASA plans missions to the Moon and Mars, a key factor is figuring out how to feed crew members during their weeks, months, and even years in space.
Astronauts on the International Space Station primarily eat prepackaged food, which requires regular resupply and can degrade in quality and nutrition. Researchers are exploring the idea of crews growing some of their food during a mission, testing various crops and equipment to figure out how to do this without a lot of extra hardware or power.

The first step in this research is identifying which plants to test. NASA started a project in 2015 with the Fairchild Botanical Garden in Miami called “Growing Beyond Earth.” The program has recruited hundreds of middle and high school science classes across the U.S. to grow different seeds in a habitat similar to one on the space station. Seeds that grow well in the classrooms are then tested in a chamber at NASA’s Kennedy Space Center. Ones that do well there are sent to the station to test how they grow in microgravity.

NASA also has tested facilities to host future microgravity gardens. One is the Vegetable Production System, or Veggie, a simple, low-power chamber that can hold six plants. Seeds are grown in small fabric “pillows” that crew members look after and water by hand, similar to caring for a window garden on Earth.
Another system, the Passive Orbital Nutrient Delivery System, or Veggie PONDS, works with the Veggie platform but replaces seed pillows with a holder that automatically feeds and waters the plants. The Advanced Plant Habitat is a fully automated device designed to study growing plants in ways that require only minimal crew attention.

A series of experiments aboard the space station known as Veg-04A, Veg-04B, and Veg-05 grew Mizuna mustard, a leafy green crop, under different light conditions and compared plant yield, nutritional composition, and microbial levels. The investigation also compared the space-grown plants to ones grown on Earth, and had crew members rate the flavor, texture, and other characteristics of the produce.
Plant Habitat-04 analyzed plant-microbe interactions and assessed the flavor and texture of chile peppers. The first crop, harvested on Oct. 29, 2021, was eaten by the crew and 12 peppers from the second harvest were returned to Earth for analysis. This experiment demonstrated that research about space crop production is on the right path and researchers plan to apply lessons learned to testing other plants.

An early experiment, PESTO, found that microgravity alters leaf development, plant cells, and the chloroplasts used in photosynthesis, but did not harm the plants overall. In fact, wheat plants grew 10% taller compared to those on Earth.
The Seedling Growth investigations showed that seedlings can acclimate to microgravity by modulating expression of some genes related to the stressors of space, a discovery that adds to knowledge about how microgravity affects plant physiology [1].
One way that plants sense gravity is via changes to calcium within their cells. Plant Gravity Sensing, a JAXA (Japan Aerospace Exploration Agency) investigation, measured how microgravity affects calcium levels, which could help scientists design better ways to grow food in space.
ADVASC, an investigation that grew two generations of mustard plants using the Advanced Astroculture chamber, showed that seeds were smaller but germination rates near normal in microgravity [2].

One significant challenge for growing plants in microgravity is providing enough water to keep them healthy without drowning them in too much water. Plant Water Management demonstrated a hydroponic (water-based) method for providing water and air to plant roots. The XROOTS study tested using both hydroponic and aeroponic (air-based) techniques to grow plants rather than traditional soil. These techniques could enable large-scale crop production for future space exploration.

During a series of investigations called VEG-03, which cultivated Extra Dwarf Pak Choi, Amara Mustard, and Red Romaine Lettuce, NASA astronaut Mike Hopkins noticed some of the plants were struggling. Hopkins conducted the first plant transplant in space, moving extra sprouts from thriving plant pillows into two of the struggling pillows in Veggie. The transplants survived and grew, opening new possibilities for future plant growth.

Plants exposed to spaceflight undergo changes that involve the addition of extra information to their DNA, affecting how genes turn on or off without changing the sequence of the DNA itself. This process is known as epigenetic change. Plant Habitat-03 assesses whether such adaptations in one generation of plants grown in space can transfer to the next generation.
The long-term goal is to understand how epigenetics contribute to adaptive strategies that plants use in space and, ultimately, develop plants better suited for providing food and other services on future missions. Results also could support the development of strategies for adapting crops and other economically important plants for growth in marginal and reclaimed habitats on Earth.

Gardens need tending, of course. The Veg-04A, Veg-04B, and Veg-05 investigations also looked at how tending plants contributed to the well-being of astronauts. Many astronauts reported they found caring for plants an enjoyable and relaxing activity – another important contribution to future long-duration missions.

Citations:
1 Medina F, Manzano A, Herranz R, Kiss JZ. Red Light Enhances Plant Adaptation to Spaceflight and Mars g-Levels. Life. 2022, 12(10), 1484; https://doi.org/10.3390/life12101484
2 Link BM, Busse JS, Stankovic B. Seed-to-Seed-to-Seed Growth and Development of Arabidopsis in Microgravity. Astrobiology. 2014 October; 14(10): 866-875. DOI: 10.1089/ast.2014.1184.PMID: 25317938

NASA to Welcome Visitors, Media to Johnson Space Center Open House

Source: NASA

MEDIA ADVISORY: J23-006Oct. 6, 2023

NASA will open its gates to the public Saturday, Oct. 14, celebrating the agency’s 65th anniversary, the International Space Station’s 25th anniversary, and upcoming Artemis missions to the Moon.
Media interested in participating in the event at NASA’s Johnson Space Center in Houston must request credentials from the Johnson newsroom at 281-483-5111 or jsccommu@mail.nasa.gov, no later than 12 p.m. Friday, Oct. 13. Media must check in upon arrival at the Johnson newsroom in Building 2N, where additional background materials will be available, and interviews may be requested.
To help ensure an enjoyable visit for everyone when they drive through the center’s main gate from 9 a.m. to 2:30 p.m. CDT, NASA Johnson is asking visitors to abide by the following guidelines:
Small, clear bags are allowed
No backpacks, drones, coolers, food, or beverages (including alcohol) are permitted
No pets (unless certified service dog)
No firearms, weapons, or ammunition (includes license to carry)
Motorcycle helmets are required on NASA property
Entry into, continued presence on, or exit from the facility is contingent upon your consent to inspection of person or property
Download the NASA SAFE app for information on parking, entry process, policies, maps, frequently asked questions, and emergency response
During the open house, visitors will get a free, behind-the-scenes look at some of the agency’s most historic accomplishments, and the exciting work happening right now as NASA returns humans to the Moon and ultimately prepares for exploration of Mars. The incoming gate will close at 2:30 p.m. and visitors will be allowed to remain on site until 3 p.m.
See a full list of what will be open and a map that includes parking, at:
https://www.nasa.gov/johnson/open-house/
Visitors will have access to a variety of exhibits and hardware, ranging from Moon rocks collected during the Apollo missions, to full-size mockups of the International Space Station, NASA’s Orion spacecraft, and Gateway lunar space station. Guests also will have opportunities to meet astronauts and learn more about how human spaceflight missions are managed from Mission Control, Houston.
Guests may also take advantage of an exciting opportunity to view an annular eclipse — also known as a “ring of fire” eclipse — of the Sun.
In addition to facilities and exhibits, the center’s Teague Auditorium will feature programs and speakers from 9:30 a.m. through 3 p.m.
NASA opened for business Oct. 1, 1958, following the signing of the agency’s founding legislation on July 29, 1958. After four decades that saw dozens of short-duration missions to the Moon and low Earth orbit, NASA and its international partners launched the first element of the International Space Station on Nov. 20, 1998, setting the stage for continuous human presence in space, which began in 2000.
Visitors are welcomed year-round through Johnson’s official visitor center, Space Center Houston, which provides tram tours and visits inside several key facilities. However, this open house will allow visitors to have access to several locations not accessible during visitor center tours.
Connect with Johnson Space Center on social media at:
https://x.com/NASA_Johnson
and
https://www.facebook.com/NASAJSC
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Kelly Humphries / Dylan Connell
Johnson Space Center, Houston
281-483-5111
kelly.o.humphries@nasa.gov
dylan.b.connell@nasa.gov
   

NASA to Host Asteroid Sample Media Call; Provide Experts for Interviews

Source: NASA

Following a public unveiling of the United States’ first asteroid sample at 11 a.m. EDT Wednesday, Oct. 11, NASA will host a media teleconference and separate in-person interviews in English and Spanish with experts from the agency and the University of Arizona.
The OSIRIS-REx (Origins, Spectral Interpretation, Resource Identification and Security – Regolith Explorer) spacecraft capped its seven-year mission on Sunday, Sept. 24, with the delivery of a pristine sample of surface material from asteroid Bennu.
The unveiling event at NASA’s Johnson Space Center in Houston will air live on NASA TV, the NASA app, and the agency’s website.
The media teleconference will begin at 2:30 pm EDT and include members of the OSIRIS-REx science team. Audio of the call will stream live at:

NASA TV Live


In addition, subject matter experts are available for interviews beginning at 2:30 p.m. CDT (3:30 p.m. EDT), Oct. 11, in-person and remotely:
Maritza Montoya, OSIRIS-REx sample processor, NASA Johnson (Spanish speaker) 
Ann Nguyen, OSIRIS-REx scientist, NASA Johnson
Kimberly Allums, OSIRIS-REx Jacobs Engineering project lead, NASA Johnson 
Salvador Martinez III, OSIRIS-REx lead technology development engineer, NASA Johnson (Spanish speaker) 
Daniel Glavin, senior scientist, NASA’s Goddard Space Flight Center
Dante Lauretta, OSIRIS-REx principal investigator, University of Arizona 
The following morning, subject matter experts also will be available for interviews beginning at 5:30 a.m. CDT (6:30 a.m. EDT) Oct. 12:
Lindsay Keller, OSIRIS-REx scientist, NASA Johnson
Maritza Montoya, OSIRIS-REx sample processor, NASA Johnson (Spanish speaker) 
Daniel Glavin, senior scientist, NASA Goddard
Salvador Martinez III, OSIRIS-REx lead technology development engineer, NASA Johnson (Spanish speaker) 
Kathleen Vander Kaaden, NASA’s Science Mission Directorate chief scientist for astromaterials curation, NASA Headquarters
Please contact the NASA Johnson newsroom for any of these opportunities at 281-483-5111 or jsccommu@mail.nasa.gov. Media interested in participating in the call must request participation no later than two hours prior to the start time, and are asked to dial-in 15 minutes early as well. The deadline to request in-person or remote one-on-one interviews is Friday, Oct. 6.
In between the OSIRIS-REx media events on Oct. 11, the agency also will host a prelaunch news conference at 1 p.m. to discuss its upcoming Psyche mission to a metal-rich asteroid. That event will air live on NASA TV, the NASA app, and the agency’s website.
NASA Johnson houses the world’s largest collection of astromaterials from the solar system under one roof, including samples from asteroids, comets, Mars, the Moon, Sun, and dust from other stars. Scientists use world-class laboratories to perform research on planetary materials and the space environment to investigate the origin and evolution of our solar system and beyond.
Learn more about the OSIRIS-REx mission at:
https://www.nasa.gov/osiris-rex
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Karen Fox / Alana JohnsonHeadquarters, Washington202-358-1257 / 202-358-1501karen.c.fox@nasa.gov / alana.r.johnson@nasa.gov
Shaneequa VereenJohnson Space Center, Houston281-483-5111shaneequa.y.vereen@nasa.gov