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Removing constraints to sustainable food production: new ways to exploit secondary metabolism from companion planting and GM

机译:消除对可持续粮食生产的限制:利用同伴种植和转基因进行次生代谢的新方法

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摘要

The entire process of agricultural and horticultural food production is unsustainable as practiced by current highly intensive industrial systems. Energy consumption is particularly intensive for cultivation, and for fertilizer production and its incorporation into soil. Provision of nitrogen contributes a major source of the greenhouse gas, N2O. All losses due to pests, diseases and weeds are of food for which the carbon footprint has already been committed and so crop protection becomes an even greater concern. The rapidly increasing global need for food and the aggravation of associated problems by the effects of climate change create a need for new and sustainable crop protection. The overall requirement for sustainability is to remove seasonal inputs, and consequently all crop protection will need to be delivered via the seed or other planting material. Although genetic modification (GM) has transformed the prospects of sustainable crop protection, considerably more development is essential for the realisation of the full potential of GM and thereby consumer acceptability. Secondary plant metabolism offers wider and perhaps more robust new crop protection via GM and can be accomplished without associated yield loss because of the low level of photosynthate diverted for plant defence by secondary metabolism. Toxic mechanisms can continue to be targeted but exploiting non‐toxic regulatory and signalling mechanisms should be the ultimate objective. There are many problems facing these proposals, both technical and social, and these are discussed but it is certainly not possible to stay where we are in terms of sustainability. The evidence for success is mounting and the technical opportunities from secondary plant metabolism are discussed here. © 2019 The Authors. Pest Management Science published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry.
机译:按照当前高度集约化的工业体系的实践,农业和园艺食品生产的整个过程是不可持续的。能源消耗对于耕作,肥料生产以及将其掺入土壤尤为密集。氮的提供是温室气体的主要来源,N2O。由于虫害,疾病和杂草而造成的所有损失均属于已经造成碳足迹的食物,因此对作物保护的关注变得更大。全球对食物的需求迅速增长,以及由于气候变化的影响而加剧了相关问题,因此需要新的和可持续的作物保护。可持续性的总体要求是消除季节性投入,因此所有作物保护都需要通过种子或其他种植材料来提供。尽管基因改造改变了可持续农作物保护的前景,但要实现基因改造的全部潜力并因此为消费者所接受,相当多的发展必不可少。二次植物代谢通过转基因提供了更广泛,也许更强大的新农作物保护,并且由于次生代谢将低水平的光合产物用于植物防御而可以实现,而不会造成产量损失。毒性机制可以继续作为目标,但开发无毒的调节和信号传导机制应该是最终目标。这些建议面临着许多问题,无论是技术性的还是社会性的,都已进行了讨论,但是就可持续性而言,我们当然不可能停留在原地。成功的证据越来越多,这里讨论了植物次生代谢带来的技术机会。 ©2019作者。 John Wiley&Sons Ltd代表化学工业协会出版的《害虫管理科学》。

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