Genetic dissection of endosperm hydration in malting barley (Hordeum vulgare)

IF 1.5 4区 农林科学 Q2 AGRONOMY Plant Breeding Pub Date : 2023-08-15 DOI:10.1111/pbr.13138
Joseph Jensen, Hannah Turner, Jennifer Lachowiec, Greg Lutgen, Xiang S. Yin, J. Sherman
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Abstract

Hydration of the endosperm is a critical part of the malting process that ensures proper modification of the grain. However, little is known about the genetic controls of endosperm hydration and its relationship to agronomic and malt quality traits. The extent of endosperm hydration is estimated through hydration index (HYI). We measured HYI, agronomic, and malt quality traits on a 169‐line subset of the NSGC Barley Core Panel, which includes global malt lines, some dating from the inception of European breeding programmes. Utilizing GWAS, 61 QTLs were identified for HYI, dormancy, agronomic, and malt quality traits. Of these, six were found to be related to HYI and were located on 1H, 2H, 3H, 6H, and 7H. We found HYI QTLs cosegregating with kernel size and hardness (1H and 3H), malting quality (2H and 6H), and dormancy (2H and 6H). These results indicate that endosperm hydration after steeping can be improved by selecting high HYI alleles on 2H, 6H, and 7H, positively impacting malting quality without negatively impacting kernel size or dormancy.
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大麦胚乳水合作用的遗传解剖
胚乳的水合作用是麦芽加工过程中的一个关键部分,可以确保谷物的适当改良。然而,人们对胚乳水合作用的遗传控制及其与农艺和麦芽品质性状的关系知之甚少。胚乳的水合程度是通过水合指数(HYI)来估计的。我们在NSGC大麦核心小组的169个品系子集上测量了HYI、农艺和麦芽质量性状,其中包括全球麦芽品系,其中一些可以追溯到欧洲育种计划的开始。利用GWAS,共鉴定出61个QTL,涉及HYI、休眠、农艺和麦芽品质性状。其中,发现6个与HYI有关,分别位于1H、2H、3H、6H和7H。我们发现HYI QTL与籽粒大小和硬度(1H和3H)、麦芽品质(2H和6H)以及休眠(2H与6H)共分离。这些结果表明,通过在2H、6H和7H上选择高HYI等位基因,可以改善浸泡后的胚乳水合作用,对麦芽品质产生积极影响,而不会对籽粒大小或休眠产生负面影响。
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来源期刊
Plant Breeding
Plant Breeding 农林科学-农艺学
CiteScore
4.40
自引率
5.00%
发文量
74
审稿时长
3.0 months
期刊介绍: PLANT BREEDING publishes full-length original manuscripts and review articles on all aspects of plant improvement, breeding methodologies, and genetics to include qualitative and quantitative inheritance and genomics of major crop species. PLANT BREEDING provides readers with cutting-edge information on use of molecular techniques and genomics as they relate to improving gain from selection. Since its subject matter embraces all aspects of crop improvement, its content is sought after by both industry and academia. Fields of interest: Genetics of cultivated plants as well as research in practical plant breeding.
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