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首页> 外文期刊>Plant signaling & behavior >Arabidopsis sos1 mutant in a salt-tolerant accession revealed an importance of salt acclimation ability in plant salt tolerance.
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Arabidopsis sos1 mutant in a salt-tolerant accession revealed an importance of salt acclimation ability in plant salt tolerance.

机译:耐盐材料中的拟南芥sos1突变体显示出盐分驯化能力在植物耐盐性中的重要性。

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摘要

An analysis of the salinity tolerance of 354 Arabidopsis thaliana accessions showed that some accessions were more tolerant to salt shock than the reference accession, Col-0, when transferred from 0 to 225 mM NaCl. In addition, several accessions, including Zu-0, showed marked acquired salt tolerance after exposure to moderate salt stress. It is likely therefore that Arabidopsis plants have at least two types of tolerance, salt shock tolerance and acquired salt tolerance. To evaluate a role of well-known salt shock tolerant gene SOS1 in acquired salt tolerance, we isolated a sos1 mutant from ion-beam-mutagenized Zu-0 seedlings. The mutant showed severe growth inhibition under salt shock stress owing to a single base deletion in the SOS1 gene and was even more salt sensitive than Col-0. Nevertheless, it was able to survive after acclimation on 100 mM NaCl for 7 d followed by 750 mM sorbitol for 20 d, whereas Col-0 became chlorotic under the same conditions. We propose that genes for salt acclimation ability are different from genes for salt shock tolerance and play an important role in the acquisition of salt or osmotic tolerance.
机译:对354种拟南芥种质的盐分耐性进行的分析表明,当从0到225 mM NaCl转移时,某些种质比参考种质Col-0更耐盐冲击。另外,包括Zu-0在内的一些种质在暴露于中度盐胁迫后表现出明显的获得性盐耐性。因此,拟南芥植物可能至少具有两种耐受性,即耐盐冲击性和获得性耐盐性。为了评估著名的耐盐冲击基因SOS1在获得的耐盐性中的作用,我们从离子束诱变的Zu-0幼苗中分离了一个sos1突变体。该突变体由于在SOS1基因中单个碱基的缺失而在盐冲击胁迫下显示出严重的生长抑制作用,并且比Col-0对盐更敏感。然而,在100 mM NaCl适应7 d,然后在750 mM山梨糖醇适应20 d后,它仍然能够存活,而Col-0在相同条件下变成褪绿的。我们建议盐适应能力的基因不同于盐冲击耐受性的基因,并且在盐或渗透耐受性的获得中起重要作用。

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