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DOI10.1007/s10584-019-02592-6
Modeled gradual changes in protein intake to increase nutrient adequacy lead to greater sustainability when systematically targeting an increase in the share of plant protein
de Gavelle E.; Leroy P.; Perrimon M.; Huneau J.-F.; Sirot V.; Orset C.; Fouillet H.; Soler L.-G.; Mariotti F.
发表日期2020
ISSN0165-0009
起始页码129
结束页码149
卷号161期号:1
英文摘要In line with sustainability issues, we are currently seeing a transition towards a lower consumption of animal protein. How ongoing gradual rearrangements in protein patterns impact sustainability and climatic change remains unknown. We used data from a French representative survey and selected for each individual the dual substitution of a serving of a protein food that most improved nutritional adequacy (using the probabilistic PANDiet score), with an increase in the percentage of plant protein required (SP) or not (SN). This was iterated 20 times incrementally, and we monitored the evolution of sustainability endpoints, including greenhouse gas emissions (GHGE) and predicted premature deaths avoided. After 20 iterations, the plant protein intake (31.1% total protein) decreased under SN (30.0%) and increased under SP (37.7%). The food groups whose contribution to protein intake increased the most were legumes (+ 225%), fatty fish (+ 151%), and lean chicken (+ 82%) under SN and legumes (+ 502%), pizzas and quiches (+ 190%), and fatty fish (+ 102%) under SP. The PANDiet score rose slightly more under SN (+ 7.5 ± 0.1) than SP (+ 6.2 ± 0.1). GHGE levels increased from 5.4 ± 0.05 to 5.7 ± 0.04 kg eq.CO2/day under SN and decreased to 5.1 ± 0.04 under SP. Diet costs increased from 7.4 ± 0.06 to 8.2 ± 0.05 €/day under SN and 7.6 ± 0.05 under SP. Predicted avoided premature deaths annually in France were 2200 (1700; 2700) under SP and 1700 (1400; 2000) under SN. In those series of small realistic changes in the individual diets, systematically increasing the plant share slightly limits the gain in nutritional adequacy but result in diets that are far more sustainable. © 2019, Springer Nature B.V.
英文关键词Diet modeling; Endpoints; French population; Nutrient adequacy; Plant protein; Simple changes; Sustainability
语种英语
scopus关键词Animals; Fish; Gas emissions; Greenhouse gases; Nutrients; Nutrition; Sustainable development; Climatic changes; Dual substitutions; Endpoints; French population; Plant proteins; Protein patterns; Simple changes; Sustainability issues; Proteins; carbon emission; cause of death; climate change; dietary intake; food intake; greenhouse gas; legume; meat; nutritional status; protein; sustainability; France; Animalia
来源期刊Climatic Change
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/147152
作者单位UMR PNCA, AgroParisTech, INRA, Université Paris-Saclay, Paris, 75005, France; UMR ALISS, INRA, Ivry-sur-Seine, 94200, France; ANSES, French Agency for Food, Environmental and Occupational Health & Safety, Maisons-Alfort, 94701, France; Economie Publique, AgroParisTech, INRA, Université Paris-Saclay, Paris, 75005, France
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de Gavelle E.,Leroy P.,Perrimon M.,et al. Modeled gradual changes in protein intake to increase nutrient adequacy lead to greater sustainability when systematically targeting an increase in the share of plant protein[J],2020,161(1).
APA de Gavelle E..,Leroy P..,Perrimon M..,Huneau J.-F..,Sirot V..,...&Mariotti F..(2020).Modeled gradual changes in protein intake to increase nutrient adequacy lead to greater sustainability when systematically targeting an increase in the share of plant protein.Climatic Change,161(1).
MLA de Gavelle E.,et al."Modeled gradual changes in protein intake to increase nutrient adequacy lead to greater sustainability when systematically targeting an increase in the share of plant protein".Climatic Change 161.1(2020).
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