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Dosage effect genes modulate grain development in synthesized Triticum durum-Haynaldia villosa allohexaploid

摘要Polyploidization in plants often leads to increased cell size and grain size,which may be affected by the increased genome dosage and transcription abundance.The synthesized Triticum durum(AABB)-Hay-naldia villosa(VV)amphiploid(AABBVV)has significantly increased grain size,especially grain length,than the tetraploid and diploid parents.To investigate how polyploidization affects grain development at the transcriptional level,we perform transcriptome analysis using the immature seeds of T.durum,H.villosa,and the amphiploid.The dosage effect genes are contributed more by differentially expressed genes from genome V of H.villosa.The dosage effect genes overrepresent grain development-related genes.Inter-estingly,the vernalization gene TaVRN1 is among the positive dosage effect genes in the T.durum-H.villosa and T.turgidum-Ae.tauschii amphiploids.The expression levels of TaVRN1 homologs are positively correlated with the grain size and weight.The TaVRN1-B1 or TaVRN1-D1 mutation shows delayed florescence,decreased cell size,grain size,and grain yield.These data indicate that dosage effect genes could be one of the important explanations for increased grain size by regulating grain development.The identification and functional validation of dosage effect genes may facilitate the finding of valuable genes for improving wheat yield.

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作者 Zhongyu Yu [1] Baofeng Cui [1] Jin Xiao [1] Wu Jiao [1] Haiyan Wang [1] Zongkuan Wang [1] Li Sun [1] Qingxin Song [1] Jingya Yuan [1] Xiue Wang [1] 学术成果认领
作者单位 State Key Lab of Crop Genetics & Germplasm Enhancement and Utilization,Cytogenetics Institute,Nanjing Agricultural University/JCIC-MCP/Zhongshan Biological Breeding Laboratory,Nanjing,Jiangsu 210095,China [1]
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DOI 10.1016/j.jgg.2024.04.010
发布时间 2024-11-18(万方平台首次上网日期,不代表论文的发表时间)
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2024年51卷10期

1089-1100页

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