EventsThe 2nd International Online Conference on Biomimetics
Published
This submission belongs to the session S6. Bioinspired Arts of the event The 2nd International Online Conference on Biomimetics
Published date
15 Sep, 2025
Academic Editor
author-avatarAndrew Adamatzky
Citation
Rikki Risatti, Illustrated Amanita Domestication & Mass Production for Sustainable Industrialization of GMO Yeasts, Genetically Modified Intelligence, Mycomorphic Biorobots, AstroMycoCulture, superfoods, beverages, body care products, & beyond http://tinyurl.com/SciForumAmanitas, in Proceedings of The 2nd International Online Conference on Biomimetics, 16 September–18 September 2025, MDPI: Basel, Switzerland
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Illustrated Amanita Domestication & Mass Production for Sustainable Industrialization of GMO Yeasts, Genetically Modified Intelligence, Mycomorphic Biorobots, AstroMycoCulture, superfoods, beverages, body care products, & beyond http://tinyurl.com/SciForumAmanitas

1. International Society for Mushroom Science (ISMS), Wantastegok, Ndakina, 05302, U.S., USA
Abstract

Introduction
Current technologies raise significant ethical and environmental concerns due to energy-intensive infrastructure. This work, grounded in research spanning millennia of wild foraging impacts, a century of experimentation, scientific publications, patents, and initiatives from international space agencies and academic consortia, traces the evolution of genetically modified yeasts toward symbiotic and altruistic Genetically Modified Intelligence (GMI). Potential applications include Mycomorphic Biobots, AstroMycoCulture terraforming, and mycorrhizal electrical communication systems sensing environmental cues such as weather and movement patterns, with funding pathways through edible Amanita superfoods, beverages, body care, and therapeutic products.

Methods
We trained AI to create accurate infographic layouts and respectful depictions of minority cultural identities, countering erasure and exploitative stereotypes. The resulting inclusive commercialization engaged over 2,000 viewers between 2023 and 2025, enhancing engagement, comprehension, and long-term investment profits. Visual narratives illustrated natural and synthetic conditions for mycorrhizal propagation. Proposed experiments combine indoor mycorrhizal cultivation with outdoor grounding rods to preserve and monitor fungal network electrical connectivity. Tests will vary moisture, nutrient, and light regimes, compare gray water reuse to clean water controls, and record electrical signals with high-impedance differential amplifiers analyzed via Fourier transform methods under simulated rainfall and airflow. Co-cultivation with genetically modified yeasts will assess impacts on resilience, nutrient exchange, and self-repair.

Results
Anticipated outcomes include creative outputs such as living sculptures, music, and visual media. Grounding rod integration is hypothesized to enhance measurable electrical responses and support propagation in areas lacking native medicinal Amanitas.

Conclusions
Intersectional markets are expanding with scholars and consumers in myco-conscientious computational fungal-fiber optics and decentralized eco-architectures. Such bio-integrated circuits and cultivation systems could support interplanetary and intergalactic permaculture agroforests.

Keywords
Amanita
Amanitas
mycelial
mycelium
mycorrhizal
genetically modified bio based intelligence
symbiotic
altruistic
mycobots
biobots
biocomputing
sustainable technology
biomimetics
astromycoculture
self repairing mycomorphic fungal fiber optics,
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