College of Life Sciences, Inner Mongolia Agricultural University/Key Laboratory of Germplasm Innovation and Utilization of Triticeae Crops at Universities of Inner Mongolia Autonomous Region, 306 Zhaowuda Road, Hohhot, 010018, Inner Mongolia, China.
Hebei Provincial Laboratory of Crop Genetics and Breeding, Institute of Cereal and Oil Crops, Hebei Academy of Agriculture and Forestry Sciences, Shijiazhuang, 050031, Hebei, China.
Theor Appl Genet. 2024 Sep 28;137(10):240. doi: 10.1007/s00122-024-04753-3.
We identified a pivotal transcription factor TaABI5-A4 that is significantly associated with pre-harvest sprouting in wheat; its function in regulating seed dormancy was confirmed in transgenic rice. ABI5 is a critical transcription factor in regulation of crop seed maturation, dormancy, germination, and post-germination. Sixteen copies of homologous sequences of ABI5 were identified in Chinese wheat line Zhou 8425B. Cultivars of two haplotypes TaABI5-A4a and TaABI5-A4b showed significantly different seed dormancies. Based on two SNPs between the sequences of TaABI5-A4a and TaABI5-A4b, two complementary dominant sequence-tagged site (STS) markers were developed and validated in a natural population of 103 Chinese wheat cultivars and advanced lines and 200 recombinant inbred lines (RILs) derived from the Yangxiaomai/Zhongyou 9507 cross; the STS markers can be used efficiently and reliably to evaluate the dormancy of wheat seeds. The transcription level of TaABI5-A4b was significantly increased in TaABI5-A4a-GFP transgenic rice lines compared with that in TaABI5-A4b-GFP. The average seed germination index of TaABI5-A4a-GFP transgenic rice lines was significantly lower than those of TaABI5-A4b-GFP. In addition, seeds of TaABI5-A4a-GFP transgenic lines had higher ABA sensitivity and endogenous ABA content, lower endogenous GA content and plant height, and thicker stem internodes than those of TaABI5-A4b-GFP. Allelic variation of TaABI5-A4-affected wheat seed dormancy and the gene function was confirmed in transgenic rice. The transgenic rice lines of TaABI5-A4a and TaABI5-A4b had significantly different sensitivities to ABA and contents of endogenous ABA and GA in mature seeds, thereby influencing the seed dormancy, plant height, and stem internode length and diameter.
我们鉴定出一个关键的转录因子 TaABI5-A4,它与小麦的收获前发芽显著相关;其在转基因水稻中调节种子休眠的功能已得到证实。ABI5 是调节作物种子成熟、休眠、萌发和萌发后过程的关键转录因子。在中国小麦品种 Zhou 8425B 中鉴定出了 ABI5 的 16 个同源序列拷贝。两个单倍型 TaABI5-A4a 和 TaABI5-A4b 的品种表现出明显不同的种子休眠性。基于 TaABI5-A4a 和 TaABI5-A4b 序列之间的两个 SNPs,开发并验证了两个互补的显性序列标签(STS)标记,这些标记在 103 个中国小麦品种和品系以及 200 个来自 Yangxiaomai/Zhongyou 9507 杂交的重组自交系(RILs)的自然群体中得到验证;这些 STS 标记可有效地、可靠地用于评估小麦种子的休眠性。与 TaABI5-A4b-GFP 转基因水稻相比,TaABI5-A4a-GFP 转基因水稻中 TaABI5-A4b 的转录水平显著升高。TaABI5-A4a-GFP 转基因水稻的平均种子发芽指数显著低于 TaABI5-A4b-GFP。此外,TaABI5-A4a-GFP 转基因系的种子具有更高的 ABA 敏感性和内源 ABA 含量、更低的内源 GA 含量和株高、以及更厚的茎节间,而 TaABI5-A4b-GFP 的种子则相反。TaABI5-A4 的等位变异影响小麦种子休眠,其基因功能在转基因水稻中得到证实。TaABI5-A4a 和 TaABI5-A4b 的转基因水稻系在成熟种子中对 ABA 和内源 ABA 和 GA 的含量具有显著不同的敏感性,从而影响种子休眠、株高和茎节间长度和直径。