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首页> 外文期刊>Breeding science >Distinct genetic regulation of flowering time and grain-filling period based on empirical study of D-genome diversity in synthetic hexaploid wheat lines
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Distinct genetic regulation of flowering time and grain-filling period based on empirical study of D-genome diversity in synthetic hexaploid wheat lines

机译:基于合成六倍体小麦品系D基因组多样性的实证研究开花时间和灌浆期的独特遗传调控

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摘要

Aegilops tauschii Coss., the D-genome progenitor of hexaploid wheat, has a wide species range in central Eurasia. Large natural variation in Ac. tauschii offers potential for improving modern varieties of common wheat. Maturation time, an important agronomic trait for wheat breeding, is tied to flowering time and grain-filling period. Here, we established 82 wheat synthetic lines derived through endoreduplication, forming triploid gametes, in interspecific hybrids obtained by crossing a tetraploid wheat cultivar, Langdon, with 69 Ac. tauschii accessions. Empirical study of the hexaploid synthetics showed abundant variation in heading, flowering, and maturation time and the grain-filling period throughout the two growth seasons examined. The wide variation observed in heading time in Ac. tauschii was maintained in the hexaploid background of the synthetic wheat lines. Significantly positive correlations were observed among heading, flowering, and maturation time in the hexaploid synthetics. On the other hand, no significant correlations were found between grain-filling period and the other traits examined. Some comparisons between two selected synthetic wheat lines having similar flowering time stably exhibited differences in their grain-filling periods. These observations suggest that two major genetic pathways independently determine wheat maturation time; one controls heading and flowering time and the other regulates grain-filling period.
机译:六倍体小麦的D基因组祖先埃格勒山羊草(Aegilops tauschii Coss。)在欧亚大陆中部具有广泛的物种范围。 Ac的自然变化很大。陶氏菌具有改良现代普通小麦品种的潜力。成熟期是小麦育种的重要农艺性状,与开花时间和籽粒灌浆期有关。在这里,我们建立了82个通过核内复制获得的小麦合成系,形成三倍体配子,形成的是三倍体小麦品种兰登与69 Ac杂交的种间杂种。陶氏菌属。对六倍体合成物的实证研究表明,在所研究的两个生长季节中,抽穗期,开花和成熟时间以及籽粒充实期均发生大量变化。以Ac为单位的航向时间变化很大。 tauschii维持在合成小麦品系的六倍体背景下。在六倍体合成物中,抽穗期,开花和成熟时间之间存在显着的正相关。另一方面,未发现籽粒充实期与其他性状之间存在显着相关性。两种选择的具有相似开花时间的合成小麦品系之间的一些比较稳定地显示了其籽粒灌浆期的差异。这些观察结果表明,两个主要的遗传途径独立地决定了小麦的成熟时间。一个控制抽穗期和开花时间,另一个控制籽粒充实期。

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