石家庄市农林科学研究院
石家庄市农业科技项目(25030);河北省小麦产业技术体系(HBCT2023010206)
Shijiazhuang Academy of Agriculture and Forestry Sciences
Shijiazhuang Agricultural Science and Technology Project(25030); Hebei Wheat Industry Technology System(HBCT2023010206)
SGP-1是小麦胚乳中负责支链淀粉侧链结构延长的关键酶,其功能缺失可提高直链淀粉含量,因而是分子标记辅助培育高直链淀粉小麦的靶基因。本研究利用根据SGP-1基因组DNA序列差异开发的分子标记筛选烟农18辐射诱变突变体库,获得sgp-A1和sgp-D1缺失突变体;SDS-PAGE电泳显示缺失突变体SGP-A1和SGP-D1蛋白缺失,外显子测序显示缺失突变体包含SGP-A1和SGP-D1的DNA大区段的缺失。以Kanto79为sgp-B1供体,通过双杂交法聚合上述缺失位点,创制出SGP-1缺失的高直链淀粉小麦新种质。新种质具有SGP-1缺失突变体的主要特征。结合农艺性状选择出最优高直链淀粉小麦新品系F2301。F2301直链淀粉含量由25.2%提高到29.2%,抗性淀粉含量由1.25%提高到2.83%,为功能性小麦育种提供了有价值的材料基础。
SGP-1 is a key enzyme responsible for the elongation of amylopectin side chains in wheat endosperm, and its loss of function increases amylose content, making SGP-1 a target gene for developing high-amylose wheat through marker-assisted selection. In this study, molecular markers developed from the genomic DNA sequences of SGP-1 were used to screen a Yannong 18 radiation-induced mutant library, and sgp-A1 and sgp-D1 deletion mutants were identified. SDS-PAGE confirmed the absence of SGP-A1 and SGP-D1 proteins, and whole-exome sequencing revealed large DNA fragment deletions encompassing SGP-A1 and SGP-D1, respectively. Using Kanto 79 as the donor of sgp-B1, we pyramided the three null alleles via a double-crossing scheme and developed a novel high-amylose wheat germplasm with SGP-1 deficiency, which exhibited the typical characteristics of SGP-1 deletion mutants. Through agronomic trait evaluation, the optimal high-amylose wheat line F2301 was selected. The amylose content of F2301 was increased from 25.2% to 29.2%, and the resistant starch content was increased from 1.25% to 2.83%, providing a valuable material foundation for functional wheat breeding.
