Agronomy Department, Zhejiang University, Hangzhou, China.
PLoS One. 2011;6(7):e22938. doi: 10.1371/journal.pone.0022938. Epub 2011 Jul 28.
The evaluation of both the genetic variation and the identification of salinity tolerant accessions of Tibetan annual wild barley (hereafter referred to as Tibetan barley) (Hordeum vulgare L. ssp. Spontaneum and H. vulgare L. ssp. agriocrithum) are essential for discovering and exploiting novel alleles involved in salinity tolerance. In this study, we examined tissue dry biomass and the Na(+) and K(+) contents of 188 Tibetan barley accessions in response to salt stress. We investigated the genetic variation of transcription factors HvCBF1, HvCBF3 and HvCBF4 within these accessions, conducting association analysis between these three genes and the respective genotypic salt tolerance. Salt stress significantly reduced shoot and root dry weight by 27.6% to 73.1% in the Tibetan barley lines. HvCBF1, HvCBF3 and HvCBF4 showed diverse sequence variation in amplicon as evident by the identification of single nucleotide polymorphisms (SNPs) and 3, 8 and 13 haplotypes, respectively. Furthermore, the decay of Linkage disequilibrium (LD) of chromosome 5 was 8.9 cM (r(2)<0.1). Marker bpb-4891 and haplotype 13 (Ps 610) of the HvCBF4 gene were significantly (P<0.05) and highly significantly (P<0.001) associated with salt tolerance. However, HvCBF1 and HvCBF3 genes were not associated with salinity tolerance. The accessions from haplotype 13 of the HvCBF4 gene showed high salinity tolerance, maintaining significantly lower Na(+)/K(+) ratios and higher dry weight. It is thus proposed that these Tibetan barley accessions could be of value for enhancing salinity tolerance in cultivated barley.
评估西藏一年生野生大麦(以下简称西藏大麦)(Hordeum vulgare L. ssp. Spontaneum 和 H. vulgare L. ssp. agriocrithum)的遗传变异和鉴定耐盐品种对于发现和利用与耐盐性相关的新等位基因至关重要。在这项研究中,我们检测了 188 个西藏大麦品种在盐胁迫下的组织干生物量和 Na(+)和 K(+)含量。我们研究了这些品种中 HvCBF1、HvCBF3 和 HvCBF4 转录因子的遗传变异,并对这三个基因与各自基因型耐盐性之间的关联进行了分析。盐胁迫显著降低了西藏大麦品系的地上部和根干重,降幅为 27.6%至 73.1%。HvCBF1、HvCBF3 和 HvCBF4 在扩增子中表现出不同的序列变异,单核苷酸多态性(SNP)和 3、8 和 13 个单倍型分别被鉴定出来。此外,染色体 5 的连锁不平衡(LD)衰减为 8.9 cM(r(2)<0.1)。HvCBF4 基因的标记 bpb-4891 和单倍型 13(Ps 610)与耐盐性显著(P<0.05)和高度显著(P<0.001)相关。然而,HvCBF1 和 HvCBF3 基因与盐胁迫不相关。HvCBF4 基因单倍型 13 的品种表现出较高的耐盐性,保持显著较低的 Na(+)/K(+)比值和较高的干重。因此,建议这些西藏大麦品种可用于提高栽培大麦的耐盐性。