4.7 Article

Identification of QTLs and a Candidate Gene for Reducing Pre-Harvest Sprouting in Aegilops tauschii-Triticum aestivum Chromosome Segment Substitution Lines

期刊

出版社

MDPI
DOI: 10.3390/ijms22073729

关键词

chromosome segment substitution lines (CSSL); Kompetitive allele-specific PCR (KASP); pre-harvest sprouting (PHS); quantitative trait loci (QTLs); RNA-Sequence; qRT-PCR

资金

  1. National Natural Science Foundation of China [31871615, 31571649, 31601297]
  2. China Postdoctoral Science Foundation [2020M672218]
  3. Kaifeng Key R&D and Promotion Project [1902002]

向作者/读者索取更多资源

In this study, three Ae. tauschii-derived QTLs related to pre-harvest sprouting resistance in wheat were identified, with TraesCS3D01G466100 playing a key role. The results offer insights into the mechanism of PHS resistance and have potential value for marker-assisted selection in wheat breeding efforts.
Wheat pre-harvest sprouting (PHS) causes serious losses in wheat yield. In this study, precise mapping was carried out in the chromosome segment substitution lines (CSSL) F-2 population generated by a direct cross of Zhoumai 18 (PHS-sensitive) and Aegilops tauschii accession T093 (highly PHS-resistant). Three Ae. tauschii-derived quantitative trait loci (QTLs), QDor.3D.1, QDor.3D.2, and QDor.3D.3, were detected on chromosome 3DL using four simple sequence repeats (SSR) markers and 10 developed Kompetitive allele-specific PCR (KASP) markers. Alongside these QTL results, the RNA-Seq and qRT-PCR analysis revealed expression levels of TraesCS3D01G466100 in the QDor.3D.2 region that were significantly higher in CSSLs 495 than in Zhoumai 18 during the seed imbibition treatment. The cDNA sequencing results of TraesCS3D01G466100 showed two single nucleotide polymorphisms (SNPs), resulting in two changed amino acid substitutions between Zhoumai 18 and line 495, and the 148 nt amino acid substitution of TraesCS3D01G466100, derived from Ae. tauschii T093, which may play an important role in the functioning of ubiquitin ligase enzymes 3 (E3) according to the homology protein analysis, which could lead to differential PHS-resistance phenotypes. Taken together, our results may foster a better understanding of the mechanism of PHS resistance and are potentially valuable for marker-assisted selection in practical wheat breeding efforts.

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