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The potential impact of synthetic animal protein on livestock production: The new 'war against agriculture'?

机译:合成动物蛋白对牲畜生产的潜在影响:新的“战争农业”?

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The rise of organic chemistry in the 1800s quickly lead to the realisation that products previously derived from plants and animals could be derived synthetically from alternative organic sources. Although it slowly became clear that there were limitations to this technology, the goal of producing animal protein synthetically has remained a tantalising prospect for scientists, with new hopes being rekindled throughout the years as new knowledge emerged or technologies developed. The demonstration of synthetic meat (also termed in vitro meat) in 2013 revived this dream and, with the refinement of protein synthesis technologies, 31 start-ups are now working to become the first company to market synthetic animal protein. The potentially transfonnative nature of this technology make it essential to understand its potential to disrupt conventional agriculture at an early stage. This paper addresses this issue by examining historical substitutions that have lead to the decline or even decimation of agricultural industries, namely: alizarin (madder), indigotin (indigo) and vanillin (vanilla). Following an outlining of the historical cases themselves, it identifies substitution product complexity, ease of synthesis, compatibility with industrial processes, and contamination of the natural product as four key issues that affect the substitution transition. Analysis of the specific synthetic animal protein case suggests that, while there are many additional issues that could affect any transition, three aspects are key: development of transferrable technologies in the medical sector, potential environmental advantages, and a lack of consumer resistance to its "unnatural" nature. Finally, the paper argues that rather than a complete substitution (e.g. alizarin & indigo) a furcated market (e.g. vanillin) with various classes of protein production is likely to emerge - within which industrial livestock production will struggle to compete against cheap synthetic alternatives.
机译:在1800年代的有机化学的兴起迅速实现了先前源自植物和动物的产品可以从替代有机源合成来源。虽然它慢慢地明确表示,这项技术有局限性,但在综合生产动物蛋白质的目标仍然是对科学家的诱人的前景,这是整个岁月的新希望随着所发出的新知识或技术。 2013年合成肉(在体外肉类中的体外肉类)的示范恢复了这一梦,并通过细化蛋白质合成技术,31名初创公司现在正致力于成为销售合成动物蛋白的第一家公司。该技术的潜在转型性质使得在早期阶段扰乱传统农业的可能性是必要的。本文通过审查导致农业产业的下降甚至抽取的历史替代品来解决这一问题,即:茜素(茜草),靛蓝(靛蓝)和香草蛋白(香草)。在历史案例本身概述后,它识别替代产品复杂性,易于合成,与工业过程的兼容性,以及天然产品的污染,作为影响替代过渡的四个关键问题。特定合成动物蛋白质案的分析表明,虽然有许多可能影响任何转型的额外问题,但三个方面是关键:在医疗部门的可转移技术的发展,潜在的环境优势,缺乏消费者抵抗力“不自然的“性质。最后,本文认为,而不是完整的替代(例如Alizarin&Indigo)具有各种蛋白质产量的毛囊市场(例如香草醛)可能会出现 - 其中工业牲畜生产将努力与廉价的合成替代品争夺。

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