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A Weed Solves a Crisis

Could the lowly dandelion solve a crisis? If Key Gene CEO Dr. Arjen van Tunen and associates are correct, this yard pest may be the basis of sustainable and highly profitable rubber production. A growing middle class worldwide has produced a need for high-quality rubber, mostly for tires. Rubber tree (the genus Havea) plantations in Southeast Asia are threatened by climate change, disease, and sustainable harvesting is costly and labor intensive. However, the dandelion produces latex, just not in huge amounts. Scientists at KeyGene have identified a high production version in Kazakhstan and combined its genetics with those of the larger, common dandelion. The result is a plant that could revolutionize the rubber industry and provide a new high-value, easy-to-grow crop for farmers. Environmental impacts are also discussed. In the process, the scientists at KeyGene also identified genes related to apomixis, the ability to produce seeds without fertilization, essentially clones of the parent. Understanding these genes could dramatically change agriculture, as any plant could potentially be made to produce clonal seeds from the mother plant. In the second part of the podcast, correspondent Vern Blazek talks to Dr. Curt Hannah who answers a listener question about corn varieties and just how much genetic variation there is in modern modern hybrids.

Apr 23, 2016 by Dr. Kevin Folta in Talking Biotech

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Could the lowly dandelion solve a crisis? If Key Gene CEO Dr. Arjen van Tunen and associates are correct, this yard pest may be the basis of sustainable and highly profitable rubber production. A growing middle class worldwide has produced a need for high-quality rubber, mostly for tires. Rubber tree (the genus Havea) plantations in Southeast Asia are threatened by climate change, disease, and sustainable harvesting is costly and labor intensive. However, the dandelion produces latex, just not in huge amounts. Scientists at KeyGene have identified a high production version in Kazakhstan and combined its genetics with those of the larger, common dandelion. The result is a plant that could revolutionize the rubber industry and provide a new high-value, easy-to-grow crop for farmers. Environmental impacts are also discussed. In the process, the scientists at KeyGene also identified genes related to apomixis, the ability to produce seeds without fertilization, essentially clones of the parent. Understanding these genes could dramatically change agriculture, as any plant could potentially be made to produce clonal seeds from the mother plant. In the second part of the podcast, correspondent Vern Blazek talks to Dr. Curt Hannah who answers a listener question about corn varieties and just how much genetic variation there is in modern modern hybrids. Plus some thoughts on the Borlaug CAST Agriculture Communications Award The audio at the end can be found here, along with a corresponding video. # COLABRA Talking Biotech is brought to you by Colabra – an R&D platform that brings your lab’s world-changing research together in one shared space. Learn more at https://www.colabra.app/ # TALKING BIOTECH Twitter: https://twitter.com/talkingbiotech Website: https://www.colabra.app/podcasts/talking-biotech/ Instagram: https://www.instagram.com/colabrahq The Talking Biotech podcast is distinct from Dr. Kevin Folta's teaching and research roles at the University of Florida. The views expressed on the show are those of Dr. Folta and his guests, and do not reflect the opinions of the university or Colabra.

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