National Beet Medium-term Gene Bank, Heilongjiang University, Harbin, 150080, P. R. China.
Key Laboratory of Sugar Beet Genetics and Breeding, College of Advanced Agriculture and Ecological Environment, Heilongjiang University, Harbin, 150080, P. R. China.
BMC Genomics. 2023 Jul 24;24(1):413. doi: 10.1186/s12864-023-09522-y.
Sugar beet (Beta vulgaris L.) is an economically essential sugar crop worldwide. Its agronomic traits are highly diverse and phenotypically plastic, influencing taproot yield and quality. The National Beet Medium-term Gene Bank in China maintains more than 1700 beet germplasms with diverse countries of origin. However, it lacks detailed genetic background associated with morphological variability and diversity.
Here, a comprehensive genome-wide association study (GWAS) of 13 agronomic traits was conducted in a panel of 977 sugar beet accessions. Almost all phenotypic traits exhibited wide genetic diversity and high coefficient of variation (CV). A total of 170,750 high-quality single-nucleotide polymorphisms (SNPs) were obtained using the genotyping-by-sequencing (GBS). Neighbour-joining phylogenetic analysis, principal component analysis, population structure and kinship showed no obvious relationships among these genotypes based on subgroups or regional sources. GWAS was carried out using a mixed linear model, and 159 significant associations were detected for these traits. Within the 25 kb linkage disequilibrium decay of the associated markers, NRT1/PTR FAMILY 6.3 (BVRB_5g097760); nudix hydrolase 15 (BVRB_8g182070) and TRANSPORT INHIBITOR RESPONSE 1 (BVRB_8g181550); transcription factor MYB77 (BVRB_2g023500); and ethylene-responsive transcription factor ERF014 (BVRB_1g000090) were predicted to be strongly associated with the taproot traits of root groove depth (RGD); root shape (RS); crown size (CS); and flesh colour (FC), respectively. For the aboveground traits, UDP-glycosyltransferase 79B6 (BVRB_9g223780) and NAC domain-containing protein 7 (BVRB_5g097990); F-box protein At1g10780 (BVRB_6g140760); phosphate transporter PHO1 (BVRB_3g048660); F-box protein CPR1 (BVRB_8g181140); and transcription factor MYB77 (BVRB_2g023500) and alcohol acyltransferase 9 (BVRB_2g023460) might be associated with the hypocotyl colour (HC); plant type (PT); petiole length (PL); cotyledon size (C); and fascicled leaf type (FLT) of sugar beet, respectively. AP-2 complex subunit mu (BVRB_5g106130), trihelix transcription factor ASIL2 (BVRB_2g041790) and late embryogenesis abundant protein 18 (BVRB_5g106150) might be involved in pollen quantity (PQ) variation. The candidate genes extensively participated in hormone response, nitrogen and phosphorus transportation, secondary metabolism, fertilization and embryo maturation.
The genetic basis of agronomical traits is complicated in heterozygous diploid sugar beet. The putative valuable genes found in this study will help further elucidate the molecular mechanism of each phenotypic trait for beet breeding.
甜菜(Beta vulgaris L.)是全球经济上重要的糖料作物。其农艺性状高度多样化,表型可塑性强,影响块根产量和品质。中国国家甜菜中期基因库保存了来自 1700 多个不同国家的甜菜种质资源。然而,它缺乏与形态变异和多样性相关的详细遗传背景。
本研究在 977 份甜菜材料的群体中进行了 13 个农艺性状的全基因组关联研究(GWAS)。几乎所有的表型性状都表现出广泛的遗传多样性和高变异系数(CV)。使用基于测序的基因型分型(GBS)技术,获得了 170750 个高质量的单核苷酸多态性(SNP)。基于亚组或区域来源,邻接聚类分析、主成分分析、种群结构和亲缘关系显示这些基因型之间没有明显的关系。使用混合线性模型进行 GWAS,检测到 159 个与这些性状显著相关的关联。在相关标记的 25kb 连锁不平衡衰减范围内,NRT1/PTR 家族 6.3(BVRB_5g097760);核酶 15(BVRB_8g182070)和转运抑制剂响应 1(BVRB_8g181550);转录因子 MYB77(BVRB_2g023500);和乙烯反应转录因子 ERF014(BVRB_1g000090)被预测与根沟深度(RGD);根形(RS);冠层大小(CS);和果肉颜色(FC)等块根性状强烈相关。对于地上部分的性状,UDP-糖基转移酶 79B6(BVRB_9g223780)和 NAC 结构域蛋白 7(BVRB_5g097990);F-box 蛋白 At1g10780(BVRB_6g140760);磷酸转运蛋白 PHO1(BVRB_3g048660);F-box 蛋白 CPR1(BVRB_8g181140);和转录因子 MYB77(BVRB_2g023500)和醇酰基转移酶 9(BVRB_2g023460)可能与子叶颜色(HC);植物类型(PT);叶柄长度(PL);子叶大小(C);和束状叶类型(FLT)相关,分别。AP-2 复合物亚基 mu(BVRB_5g106130);三螺旋转录因子 ASIL2(BVRB_2g041790)和晚期胚胎丰富蛋白 18(BVRB_5g106150)可能与花粉数量(PQ)变化有关。候选基因广泛参与激素反应、氮磷运输、次生代谢、受精和胚胎成熟。
异源二倍体甜菜的农艺性状遗传基础复杂。本研究中发现的有用基因将有助于进一步阐明每个表型性状的分子机制,为甜菜育种提供参考。