Zhang Wei, Danilova Tatiana, Zhang Mingyi, Ren Shuangfeng, Zhu Xianwen, Zhang Qijun, Zhong Shaobin, Dykes Linda, Fiedler Jason, Xu Steven, Frels Katherine, Wegulo Stephen, Boehm Jeffrey, Cai Xiwen
Shanxi Key Laboratory of Minor Crop Germplasm Innovation and Molecular Breeding, Shanxi Agricultural University, Taiyuan, 030031, China.
Departments of Plant Sciences, North Dakota State University, Fargo, ND, 58108, USA.
Theor Appl Genet. 2022 Dec;135(12):4409-4419. doi: 10.1007/s00122-022-04228-3. Epub 2022 Oct 6.
We identified and integrated the novel FHB-resistant Fhb7 allele into wheat B genome and made it usable in both common and durum wheat breeding programs without yellow flour linkage drag. A novel tall wheatgrass-derived (Thinopyrum elongatum, genome EE) Fhb7 allele, designated Fhb7, was identified and integrated into the wheat B genome through a small 7B-7E translocation (7BS·7BL-7EL) involving the terminal regions of the long arms. Fhb7 conditions significant Type II resistance to Fusarium head blight (FHB) in wheat. Integration of Fhb7 into the wheat B genome makes this wild species-derived FHB resistance gene usable for breeding in both common and durum wheat. By contrast, other Fhb7 introgression lines involving wheat chromosome 7D can be utilized only in common wheat breeding programs, not in durum wheat. Additionally, we found that Fhb7 does not have the linkage drag of the yellow flour pigment gene that is tightly linked to the decaploid Th. ponticum-derived Fhb7 allele Fhb7. This will further improve the utility of Fhb7 in wheat breeding. DNA sequence analysis identified 12 single nucleotide polymorphisms (SNPs) in Fhb7, Fhb7, and another Th. elongatum-derived Fhb7 allele Fhb7, which led to seven amino acid conversions in Fhb7, Fhb7, and Fhb7, respectively. However, no significant variation was observed in their predicted protein configuration as a glutathione transferase. Diagnostic DNA markers were developed specifically for Fhb7. The 7EL segment containing Fhb7 in the translocation chromosome 7BS·7BL-7EL exhibited a monogenic inheritance pattern in the wheat genetic background. This will enhance the efficacy of marker-assisted selection for Fhb7 introgression, pyramiding, and deployment in wheat germplasm and varieties.
我们将新的抗赤霉病Fhb7等位基因鉴定并整合到小麦B基因组中,使其可用于普通小麦和硬粒小麦育种计划,而不会出现黄粉连锁累赘。一个新的源自高冰草(长穗偃麦草,基因组EE)的Fhb7等位基因,命名为Fhb7,通过涉及长臂末端区域的小的7B - 7E易位(7BS·7BL - 7EL)被鉴定并整合到小麦B基因组中。Fhb7赋予小麦对赤霉病显著的II型抗性。将Fhb7整合到小麦B基因组中,使得这个源自野生种的抗赤霉病基因可用于普通小麦和硬粒小麦的育种。相比之下,其他涉及小麦7D染色体的Fhb7渐渗系仅可用于普通小麦育种计划,而不能用于硬粒小麦。此外,我们发现Fhb7没有与十倍体长穗偃麦草衍生的Fhb7等位基因Fhb7紧密连锁的黄粉色素基因的连锁累赘。这将进一步提高Fhb7在小麦育种中的实用性。DNA序列分析在Fhb7、Fhb7以及另一个源自长穗偃麦草的Fhb7等位基因Fhb7中鉴定出12个单核苷酸多态性(SNP),分别导致Fhb7、Fhb7和Fhb7中有七个氨基酸转换。然而,作为谷胱甘肽转移酶,它们预测的蛋白质结构未观察到显著变化。专门为Fhb7开发了诊断性DNA标记。易位染色体7BS·7BL - 7EL中包含Fhb7的7EL片段在小麦遗传背景中表现出单基因遗传模式。这将提高在小麦种质和品种中对Fhb7渐渗、聚合和应用进行标记辅助选择的效率。