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葡萄浆果酸度的遗传变异受有机酸和钾之间的相互作用控制。

Genetic variations of acidity in grape berries are controlled by the interplay between organic acids and potassium.

机构信息

SVQV, Univ. Strasbourg, INRAE, 68000, Colmar, France.

EPGV, INRAE, Univ. Paris-Saclay, 91057, Évry, France.

出版信息

Theor Appl Genet. 2020 Mar;133(3):993-1008. doi: 10.1007/s00122-019-03524-9. Epub 2020 Jan 13.

Abstract

In a grapevine segregating population, genomic regions governing berry pH were identified, paving the way for breeding new grapevine varieties best adapted to a warming climate. As a consequence of global warming, grapevine berry acidity is expected to dramatically decrease. Adapting grapevine (Vitis vinifera L.) varieties to the climatic conditions of the future requires a better understanding of the genetic architecture of acidity-related traits. For this purpose, we studied during five growing seasons 120 individuals from a grapevine biparental cross. Each offspring was genotyped by simple sequence repeats markers and by hybridization on a 20-K Grapevine Illumina SNP chip. Quantitative trait loci (QTLs) for pH colocalized with QTLs for the ratio between potassium and tartaric acid concentrations, on chromosomes 10, 11 and 13. Strong QTLs for malic acid concentration or for the malic acid-to-tartaric acid ratio, on chromosomes 6 and 8, were not associated with variations of pH but can be useful for controlling pH stability under high temperatures. Our study highlights the interdependency between acidity parameters and consequently the constraints and degrees of freedom for designing grapevine genotypes better adapted to the expected warmer climatic conditions. In particular, it is possible to create grapevine genotypes with a high berry acidity as the result of both high tartaric acid concentrations and low K accumulation capacities.

摘要

在一个葡萄蔓系分离群体中,鉴定出了控制浆果 pH 值的基因组区域,为培育最能适应气候变暖的新型葡萄品种铺平了道路。由于全球变暖,预计葡萄浆果的酸度将大幅下降。为了使葡萄品种(Vitis vinifera L.)适应未来的气候条件,需要更好地了解与酸度相关的性状的遗传结构。为此,我们在五个生长季节研究了来自葡萄双亲和交叉的 120 个个体。每个后代都通过简单序列重复标记和在 20-K 葡萄 Illumina SNP 芯片上的杂交进行基因型分析。pH 值的 QTL 与钾和酒石酸浓度比值的 QTL 在第 10、11 和 13 号染色体上共定位。第 6 和第 8 号染色体上的苹果酸浓度或苹果酸与酒石酸比值的强 QTL 与 pH 值的变化无关,但可用于控制高温下 pH 值的稳定性。我们的研究强调了酸度参数之间的相互依赖性,以及设计更能适应预期温暖气候条件的葡萄基因型的限制和自由度。特别是,通过提高酒石酸浓度和降低 K 积累能力,有可能创造出具有高浆果酸度的葡萄基因型。

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