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Genotypic Variability on Grain Yield and Grain Nutritional Quality Characteristics of Wheat Grown under Elevated CO2 and High Temperature

机译:基因型变异性籽粒产量和籽粒营养质量特征在升高的CO2和高温下生长的小麦

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摘要

The progressive rise in atmospheric CO2 concentrations and temperature associated with climate change is predicted to have a major impact on the productivity and quality of food crops. Therefore, food security is highly dependent on climate change. Following a survey with 60 bread wheat genotypes, here we investigated the genetic variation in grain yield and nutritional quality among 10 of these genotypes grown under elevated CO2 and temperature. With this purpose, the biomass production, grain yield-related traits, the grain concentration of starch, total protein, phenolic compounds, and mineral nutrients, together with the total antioxidant capacity, were determined. Variation among genotypes was found for almost all the studied traits. Higher grain and ear numbers were associated with increased grain yield but decreased grain total protein concentration and minerals such as Cu, Fe, Mg, Na, P, and Zn. Mineral nutrients were mainly associated with wheat biomass, whereas protein concentration was affected by plant biomass and yield-related traits. Associations among different nutrients and promising nutrient concentrations in some wheat genotypes were also found. This study demonstrates that the exploration of genetic diversity is a powerful approach, not only for selecting genotypes with improved quality, but also for dissecting the effect of the environment on grain yield and nutritional composition.
机译:预计大气二氧化碳浓度和与气候变化相关的温度的逐步增加,对食品作物的生产力和质量产生了重大影响。因此,粮食安全高度依赖于气候变化。在患有60个面包小麦基因型的调查之后,我们在这里研究了在升高的CO 2和温度下生长的10种基因型中的籽粒产量和营养质量的遗传变化。为此目的,测定生物质生产,谷物产量相关的性状,淀粉,总蛋白质,酚类化合物和矿物营养素的粒度浓度以及总抗氧化能力。几乎所有研究的性状都发现了基因型之间的变异。较高的晶粒和耳数与谷物产量增加,但谷物总蛋白质浓度和矿物质如Cu,Fe,Mg,Na,P和Zn等颗粒总浓度和矿物质。矿物营养素主要与小麦生物量有关,而蛋白质浓度受植物生物质和产量相关的性状的影响。还发现了不同营养素的关联和一些小麦基因型中的营养浓度。本研究表明,遗传多样性的探索是一种强大的方法,不仅用于选择具有改善质量的基因型,还用于解剖环境对籽粒产量和营养成分的影响。

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