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Salt tolerance during germination and seedling growth of wild wheat Aegilops tauschii and its impact on the species range expansion

机译:野生小麦节节菜种子萌发和幼苗生长过程中的耐盐性及其对物种范围扩展的影响

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摘要

Adaptation to edaphic stress may have a key role in plant species range expansion. Aegilops tauschii Coss., the common wheat’s D-genome progenitor native to the Transcaucasus-Middle East region, is a good model to study the relationships between soil salinity and plant distributions: one of its intraspecific sublineages, TauL1b, drove the long-distance eastward expansion of this species range reaching semi-arid-central Asia. Salt tolerance during germination and seedling growth was evaluated in 206 Ae. tauschii accessions by treating seeds with NaCl solutions differing in concentrations. Differences in natural variation patterns were analyzed between sublineages and associated with natural edaphic condition variables, and then compared with reproductive trait variation patterns. The natural variations observed in NaCl-induced-stress tolerance had clear geographic and genetic structure. Seedling growth significantly increased in the TauL1b accessions that were collected from salt-affected soil habitats, whereas germinability did not. Principal component analysis suggested that the NaCl-induced-stress tolerances and reproductive traits might have had a similar degree of influence on Ae. tauschii’s eastward range expansion. Adaptation to salt-affected soils through increased seedling growth was an important factor for the species’ successful colonization of the semi-arid central Asian habitats. TauL1b accessions might provide useful genetic resources for salt-tolerant wheat breeds.
机译:适应水生胁迫可能在植物物种范围扩展中起关键作用。 Aegilops tauschii Coss,原产于高加索地区-中东地区的普通小麦的D基因组祖先,是研究土壤盐度与植物分布之间关系的良好模型:其种内亚系之一TauL1b推动了长距离东移该物种的范围扩大到半干旱中亚。在206 Ae中评估发芽和幼苗生长期间的耐盐性。通过用浓度不同的NaCl溶液处理种子而获得的tauschii品种。分析了子系之间的自然变异模式的差异,并与自然养性条件变量相关联,然后与生殖性状变异模式进行了比较。 NaCl诱导的胁迫耐受性中观察到的自然变异具有清晰的地理和遗传结构。从受盐影响的土壤生境中收集的TauL1b品种的幼苗生长显着增加,而未发芽则没有。主成分分析表明,NaCl诱导的胁迫耐受性和生殖性状可能对Ae具有相似程度的影响。 Tauschii向东扩展范围。通过增加幼苗的生长来适应受盐影响的土壤是该物种成功定居于半干旱中亚生境的重要因素。 TauL1b的加入可能为耐盐小麦品种提供有用的遗传资源。

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