Xinjiang Key Laboratory of Biological Resources and Genetic Engineering, College of Life Science and Technology, Xinjiang University, Urumqi, 830046, China.
Institute of Economic Crops, Xinjiang Academy of Agricultural Sciences, Urumqi, China.
Sci Rep. 2020 Jun 30;10(1):10626. doi: 10.1038/s41598-020-67210-3.
Salinity is a major abiotic stress that affects plant growth and development and leads to crop yield loss. Many crop species are more sensitive to salinity stress at the seed germination stage than at other developmental stages. Some studies have shown that sunflower is tolerant to salinity to a certain degree. However, no systematic screening data for sunflower germplasms are available for salinity stress. In this study, 552 sunflower germplasms with different genetic backgrounds were evaluated for salt tolerance. Among them, 30 and 53 sunflower germplasms were identified as highly salt-tolerant and salt-tolerant germplasms, respectively, while 80 and 23 were grouped as salt-sensitive and highly salt-sensitive materials, respectively. Of all the traits tested, the germination index and the germination vigor index were the two most reliable traits, showing the highest correlation with salt tolerance during the seed germination stage of sunflower. Thus, a highly efficient and reliable method for evaluating salinity tolerance of sunflower seed germination was established. These results provided a good foundation for studying salt-tolerance mechanisms and breeding highly salt-tolerant sunflower cultivars.
盐度是一种主要的非生物胁迫因素,会影响植物的生长和发育,导致作物减产。许多作物在种子萌发阶段比在其他发育阶段对盐度胁迫更为敏感。一些研究表明,向日葵在一定程度上耐受盐度。然而,目前还没有向日葵种质资源对盐度胁迫的系统筛选数据。在本研究中,对 552 份具有不同遗传背景的向日葵种质资源进行了耐盐性评价。其中,分别有 30 份和 53 份向日葵种质资源被鉴定为高耐盐性和耐盐性种质资源,而 80 份和 23 份则分别被归类为盐敏感性和高盐敏感性材料。在所有测试的性状中,发芽指数和发芽活力指数是两个最可靠的性状,在向日葵种子萌发阶段与耐盐性的相关性最高。因此,建立了一种高效、可靠的评价向日葵种子萌发耐盐性的方法。这些结果为研究向日葵耐盐性机制和培育高耐盐性向日葵品种提供了良好的基础。