Molecular Mechanisms of HMW Glutenin Subunits from 1Sl Genome of Aegilops longissima Positively Affecting Wheat Breadmaking Quality

@inproceedings{Wang2013MolecularMO,
  title={Molecular Mechanisms of HMW Glutenin Subunits from 1Sl Genome of Aegilops longissima Positively Affecting Wheat Breadmaking Quality},
  author={Shunli Wang and Zitong Yu and Min Cao and Xixi Shen and Ning Li and Xiaohui Li and Wujun Ma and H. Wei{\ss}gerber and Friedrich Josef Zeller and Sai L. K. Hsam and Yueming Yan},
  booktitle={PloS one},
  year={2013}
}
A wheat cultivar "Chinese Spring" chromosome substitution line CS-1S(l)(1B), in which the 1B chromosome was substituted by 1S(l) from Aegilops longissima, was developed and found to possess superior dough and breadmaking quality. The molecular mechanism of its super quality conformation is studied in the aspects of high molecular glutenin genes, protein accumulation patterns, glutenin polymeric proteins, protein bodies, starch granules, and protein disulfide isomerase (PDI) and PDI-like protein… CONTINUE READING

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