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United states of america Dollar; v: Version; Vp: Viviparous.Acknowledgements We gratefully acknowledge the financial help provided by Alberta Wheat Commission and AAFC Canadian National Wheat Cluster Program. We considerably acknowledge the technical assistance provided by Leslie Bihari and Zafrin Akter in production of doubled haploid population, and assistance received in phenotyping by Mark Virginallo. We also acknowledge the help of Klaus Strenzke (University of Alberta, Edmonton) and Mark Virginallo, Kelly Ryan, and Kim Ziegler (Lethbridge Investigation and Development Centre, Lethbridge) inside the field experiments. Authors’ contributions HSR created the genetic mapping population. RD and HSR created the study. HSR, MES and DS grown the mapping LTC4 manufacturer population in Lethbridge, Ithaca and Edmonton, respectively. RD and MES phenotyped the mapping population. CH genotyped the mapping population. RG supplied the pedigree information of AAC Tenacious. RD performed all analyses, interpreted the results and writing on the original draft. All authors read and approved the final manuscript. Authors’ information RD is actually a Investigation Biologist and CH, RJG and HSR are Research Scientists at Agriculture and Agri-Food Canada. MES and DS are Professors at Cornell University, USA and University of Alberta, Canada, respectively. JS is definitely an Associate Professor at McGill University, Canada. Funding This investigation was funded by Alberta Wheat Commission and AAFC Canadian National Wheat Cluster System. Availability of data and components Linkage map of AAC Innova/AAC Tenacious doubled haploid mapping population of spring wheat, that is used for the present study, has been published previously by authors (Dhariwal et al. [75]; doi.org/10.3390/ ijms21124497). Linkage map is publically accessible as supplementary details in the published paper [75] and may either be downloaded in the hyperlink: mdpi/1422-0067/21/12/4497#supplementary or requested from the corresponding author. All other data generated or analysed in the course of this study are incorporated within this published article and its supplementary details files.Supplementary InformationThe online version contains supplementary material offered at doi. org/10.1186/s12864-021-08209-6. Added file 1: Figure S1. Pre-harvest sprouting (PHS) phenotypes of verify cultivars following 4 days in a mist chamber. Spike bundles from left to right of resistant (Cardale, Enchant, Stettler, AAC Tenacious, Penhold, CDC Stanley), intermediate (Vesper, AAC Indus, Carberry, Lillian, AAC Chiffon, AAC Brandon, AAC Foray) and susceptible (Sadash, AAC Kinesin-14 custom synthesis Innova, AAC Awesome, Conquer, AC Andrew) cultivars are shown in upper, middle and decrease rows, respectively. Added file two: Tables S1 to S9. Specifics of pre-harvest sprouting information, quantitative trait loci, connected markers, genetic/genomic positions, and preceding studies. Additional file three: Figure S2. Effects of pre-harvest sprouting (PHS) resistance quantitative trait loci (QTLs) on sprouting. Effects of QTLs QPhs. lrdc-1A.2, QPhs.lrdc-2B.1, QPhs.lrdc-3A.1, QPhs.lrdc-3B.two, QPhs.lrdc-3D.1, QPhs. lrdc-3D.two and QPhs.lrdc-7D, respectively, shown as 1A.2, 2B.1, 3A.1, 3B.2, 3D.1, 3D.two and 7D, are presented as bar plot and line graph. Extra file 4: Figure S3. Complete pedigree of wheat cultivar AAC Tenacious. Various cultivars/landraces and their crosses in pedigree are shown in circles. Female and male parents are shown by pink and blue line connections. Circle colors dark green, light green, dark red, light red,

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