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Development and Utilization of Introgression Lines Using Synthetic Octaploid Wheat (Aegilops tauschii × Hexaploid Wheat) as Donor

机译:合成八倍体小麦(Aegilops tauschii×Hexaploid Wheat)作为供体的基因渗入系的开发与利用

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摘要

As the diploid progenitor of common wheat, Aegilops tauschii Cosson (DD, 2n = 2x = 14) is considered to be a promising genetic resource for the improvement of common wheat. In this work, we demonstrated that the efficiency of transferring A. tauschii segments to common wheat was clearly improved through the use of synthetic octaploid wheat (AABBDDDD, 2n = 8x = 56) as a “bridge.” The synthetic octaploid was obtained by chromosome doubling of hybrid F1 (A. tauschii T015 × common wheat Zhoumai 18). A set of introgression lines (BC1F8) containing 6016 A. tauschii segments was developed and displayed significant phenotype variance among lines. Twelve agronomic traits, including growth duration, panicle traits, grain traits, and plant height (PH), were evaluated. And transgressive segregation was identified in partial lines. Additionally, better agronomic traits could be observed in some lines, compared to the recurrent parent Zhoumai 18. To verify that the significant variance of those agronomic traits was supposedly controlled by A. tauschii segments, 14 quantitative trait loci (QTLs) for three important agronomic traits (thousand kernel weight, spike length, and PH) were further located in the two environments (Huixian and Zhongmou), indicating the introgression of favorable alleles from A. tauschii into common wheat. This study provides an ameliorated strategy to improve common wheat utilizing a single A. tauschii genome.
机译:作为普通小麦的二倍体祖先,Aegilops tauschii Cosson(DD,2n = 2x = 14)被认为是改良普通小麦的有前途的遗传资源。在这项工作中,我们证明了通过使用合成八倍体小麦(AABBDDDD,2n = 8x = 56)作为“桥梁”,大大提高了将tauschii片段转移到普通小麦的效率。合成八倍体是通过杂种F1(tauschii T015×普通小麦Zhoumai 18)的染色体加倍获得的。建立了一套包含6016 tauschii节段的基因渗入系(BC1F8),并且在各系之间表现出显着的表型差异。评价了十二个农艺性状,包括生长持续时间,圆锥花序性状,籽粒性状和株高(PH)。并在分界线中确定了海侵隔离。此外,与轮回亲本Zhoumai 18相比,在某些品系中观察到更好的农艺性状。为验证那些农艺性状的显着变异据推测是由tauschii区段控制的,三个重要农艺学有14个数量性状基因座(QTL)性状(千粒重,穗长和PH)还位于两个环境(惠县和钟某)中,这说明了Tauschii有利等位基因渗入普通小麦。这项研究提供了改善的策略,可以利用单一的tauschii基因组改良普通小麦。

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