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The genetic architecture of growth traits in Salix matsudana under salt stress

机译:盐胁迫下松柳生长性状的遗传结构

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摘要

Willow (Salix) is one of the most important ornamental tree species in landscape plants. One species, Salix matsudana, is widely used as a shade tree and border tree because of its soft branches and plump crown. Some varieties of S. matsudana were salt tolerant and could grow normally in coastal regions. However, the molecular mechanisms of salt tolerance for S. matsudana have been less clear. Here, we addressed this issue by performing a mapping experiment containing 195 intraspecific F1 progeny of S. matsudana, derived from salt-sensitive ‘yanjiang’ and salt-tolerant ‘9901’, grown by cuttings in a 100 mM NaCl solution. Growth performance of these progeny under salt stress was investigated, displaying marked genotypic variability with the coefficients of variance of 28.64–86.11% in shoot and root growth traits. We further mapped specific QTLs contributing to these differences to the Salix genome. Of the 204 QTLs identified, a few were detected to explain a remarkably larger portion of the phenotypic variation than many others. Many detected QTLs were found to reside in the region of candidate genes of known biological function. The discovery of growth QTLs expressed under salt stress provides important information for marker-assisted breeding of salt tolerant Salix varieties and founds the basis for the application of S. matsudana in coastal afforestation.
机译:柳树(Salix)是园林植物中最重要的观赏树种之一。松柳(Salix matsudana)是一种树种,由于其柔软的树枝和丰满的树冠而被广泛用作遮荫树和边界树。松散链球菌的某些品种耐盐,可以在沿海地区正常生长。但是,对松散链球菌的耐盐性的分子机制尚不清楚。在这里,我们通过进行映射实验解决了这个问题,该映射实验包含195个松散链球菌的种内F1后代,这些后代来自对盐敏感的“盐江”和对盐耐受的“ 9901”,它们是通过在100μmMNaCl溶液中切割而生长的。研究了这些子代在盐胁迫下的生长性能,显示出明显的基因型变异性,其茎和根生长性状的变异系数为28.64–86.11%。我们进一步绘制了对Salix基因组造成这些差异的特定QTL。在确定的204个QTL中,检测到的少数QTL比许多其他QTL解释的表型变异大得多。发现许多检测到的QTL位于已知生物学功能的候选基因区域。盐胁迫下表达的生长QTLs的发现为耐盐柳品种的标记辅助育种提供了重要信息,并为松材线虫在沿海造林中的应用奠定了基础。

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