Characterization of a Natural Accession of Elymus sibiricus with In Situ Hybridization and Agronomic Evaluation

文献类型: 外文期刊

第一作者: Liu, Yizhuo

作者: Liu, Yizhuo;Ding, Jiarui;Wu, Chunfei;Song, Weiwei;Zhao, Xinyu;Li, Mingyao;Yan, Xinyu;Zhu, Liangyu;Bao, Yaqi;Liu, Dianhao;Li, Xinling;Zhang, Yanming;Zhao, Haibin;Jin, Hui;Zhang, Rui;Qu, Yunfeng;Li, Hongjie;Cui, Lei

作者机构:

关键词: Elymus; smGISH; karyotype; chromosome; cold-hardiness

期刊名称:PLANTS-BASEL ( 影响因子:4.1; 五年影响因子:4.5 )

ISSN: 2223-7747

年卷期: 2025 年 14 卷 1 期

页码:

收录情况: SCI

摘要: Elymus sibiricus, valued for its perennial nature, broad adaptability, strong cold tolerance, and high economic value in forage production, plays a crucial role in combating grassland degradation, desertification, and salinization. Using morphological and cytogenetic methods, this study evaluated the cold tolerance, post-harvest regeneration capacity, and perennial characteristics of the E. sibiricus accession 20HSC-Z9 in the Harbin region of China from 2020 to 2023. This accession exhibited a germination rate of over 90% and a 100% green-up rate, with purple coleoptiles indicating its strong cold tolerance. Over the three growing seasons, 20HSC-Z9 maintained stable green-up and regeneration rates, confirming its perennial nature. Morphologically, 20HSC-Z9 had an average tiller count ranging from 56 to 74, similar to that of the control accession 20HSC-ES, and its plant height was significantly lower than that of 20HSC-IWG. Furthermore, 20HSC-Z9 produced over 100 grains per spike, with a seed setting rate exceeding 90%, and a thousand-grain weight comparable to that of 20HSC-IWG. The grain protein content of 20HSC-Z9 reached a maximum of 21.19%, greater than that of the control accessions (15.6% and 18.5%). Chromosome composition analysis, using sequential multicolor genomic in situ hybridization and multicolor fluorescence in situ hybridization, confirmed the StStHH genomic constitution of 20HSC-Z9 and revealed translocations between the St and H subgenome chromosomes. These results suggest that 20HSC-Z9 has significant potential as a new perennial forage grass germplasm for cold regions, suitable for further domestication and breeding efforts.

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