Multi-model GWAS reveals key loci for horticultural traits in reconstructed garden strawberry.

IF 5.4 2区 生物学 Q1 PLANT SCIENCES
Attiq Ur Rehman, Terhi Iso-Touru, Jakob Junkers, Marja Rantanen, Saila Karhu, Daniel Fischer, Muath Alsheikh, Stein Harald Hjeltnes, Bruno Mezzetti, Jahn Davik, Alan H Schulman, Timo Hytönen, Tuuli Haikonen
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Abstract

The cultivated garden strawberry (Fragaria × ananassa) has a rich history, originating from the hybridization of two wild octoploid strawberry species in the 18th century. Two-step reconstruction of Fragaria × ananassa through controlled crossings between pre-improved selections of its parental species is a promising approach for enriching the breeding germplasm of strawberry for wider adaptability. We created a population of reconstructed strawberry by hybridizing elite selections of F. virginiana and F. chiloensis. A replicated field experiment was conducted to evaluate the population's performance for eleven horticulturally important traits, over multiple years. Population structure analyses based on Fana-50 k SNP array data confirmed pedigree-based grouping of the progenies into four distinct groups. As complex traits are often influenced by environmental variables, and population structure can lead to spurious associations, we tested multiple genome-wide association study (GWAS) models. GWAS uncovered 39 quantitative trait loci (QTL) regions for eight traits distributed across twenty chromosomes, including 11 consistent and 28 putative QTLs. Candidate genes for traits including winter survival, flowering time, runnering vigor, and hermaphrodism were identified within the QTL regions. To our knowledge, this study marks the first comprehensive investigation of adaptive and horticultural traits in a large, multi-familial reconstructed strawberry population using SNP markers.

多模型 GWAS 揭示了重建花园草莓园艺性状的关键位点。
栽培园草莓(Fragaria × ananassa)历史悠久,起源于 18 世纪两个野生八倍体草莓品种的杂交。通过在亲本物种的预改良选种之间进行控制性杂交,分两步重建 Fragaria × ananassa,是丰富草莓育种种质以获得更广泛适应性的一种很有前景的方法。我们通过杂交 F. virginiana 和 F. chiloensis 的精英选种,建立了一个重建草莓种群。我们进行了一项重复的田间试验,以评估该群体多年来在 11 个重要园艺性状方面的表现。基于 Fana-50 k SNP 阵列数据的种群结构分析证实,基于血统将后代分为四个不同的群体。由于复杂的性状通常受环境变量的影响,而种群结构可能导致虚假关联,因此我们测试了多个全基因组关联研究(GWAS)模型。全基因组关联研究发现了分布在 20 条染色体上的 8 个性状的 39 个数量性状位点(QTL)区域,其中包括 11 个一致的 QTL 和 28 个推测的 QTL。在这些 QTL 区域内还发现了冬季存活率、花期、生长活力和雌雄同体性等性状的候选基因。据我们所知,这项研究是首次利用 SNP 标记对一个大型、多家族重建草莓种群的适应性和园艺性状进行全面调查。
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来源期刊
Physiologia plantarum
Physiologia plantarum 生物-植物科学
CiteScore
11.00
自引率
3.10%
发文量
224
审稿时长
3.9 months
期刊介绍: Physiologia Plantarum is an international journal committed to publishing the best full-length original research papers that advance our understanding of primary mechanisms of plant development, growth and productivity as well as plant interactions with the biotic and abiotic environment. All organisational levels of experimental plant biology – from molecular and cell biology, biochemistry and biophysics to ecophysiology and global change biology – fall within the scope of the journal. The content is distributed between 5 main subject areas supervised by Subject Editors specialised in the respective domain: (1) biochemistry and metabolism, (2) ecophysiology, stress and adaptation, (3) uptake, transport and assimilation, (4) development, growth and differentiation, (5) photobiology and photosynthesis.
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