State Key Laboratory of Crop Stress Biology in Arid Areas, College of Agronomy, Northwest A&F University, Yangling, 712100, Shaanxi, China.
Center for Agricultural Genetic Resources Research, Shanxi Agricultural University, Taiyuan, 030031, Shanxi, China.
Theor Appl Genet. 2024 Jan 31;137(2):36. doi: 10.1007/s00122-023-04538-0.
A total of 90,000 capture probes derived from wheat and Thinopyrum elongatum were integrated into one chip, which served as an economical genotype for explorating Thinopyrumspecies and their derivatives. Thinopyrum species play a crucial role as a source of new genetic variations for enhancing wheat traits, including resistance to both abiotic and biotic factors. Accurate identification of exogenous chromosome(s) or chromosome segments or genes is essential following the introduction of alien genetic material into wheat, but this task remains challenging. This study aimed to develop a high-resolution wheat-Thinopyrum elongatum array, named GenoBaits®WheatplusEE, to trace alien genetic information by genotyping using a target sequencing system. This GenoBaits®WheatplusEE array included 90,000 capture probes derived from two species and integrated into one chip, with 10,000 and 80,000 originating from wheat and Th. elongatum, respectively. The capture probes were strategically positioned in genes and evenly distributed across the genome, facilitating the development of a roadmap for identifying each alien gene. The array was applied to the high-throughput identification of the alien chromosomes or segments in Thinopyrum and distantly related species and their derivatives. Our results demonstrated that the GenoBaits®WheatplusEE array could be used for direct identification of the breakpoint of alien segments, determine copy number of alien chromosomes, and reveal variations in wheat chromosomes by a single round of target sequencing of the sample. Additionally, we could efficiently and cost-effectively genotype, supporting the exploration of subgenome composition, phylogenetic relationships, and polymorphisms in essential genes (e.g., Fhb7 gene) among Thinopyrum species and their derivatives. We hope that GenoBaits®WheatplusEE will become a widely adopted tool for exporting wild germplasm for wheat improvement in the future.
共将 90,000 个来自小麦和长穗偃麦草的捕获探针集成到一个芯片上,作为探索长穗偃麦草种及其衍生物的经济型基因型。长穗偃麦草种作为增强小麦特性的新遗传变异的来源,发挥着至关重要的作用,包括对非生物和生物因素的抗性。在将外源遗传物质引入小麦后,准确鉴定外源染色体或染色体片段或基因是至关重要的,但这一任务仍然具有挑战性。本研究旨在开发一种高分辨率的小麦-长穗偃麦草芯片,命名为 GenoBaits® WheatplusEE,通过使用目标测序系统进行基因分型来追踪外源遗传信息。该 GenoBaits® WheatplusEE 芯片包含 90,000 个来自两个物种的捕获探针,集成到一个芯片上,其中 10,000 个来自小麦,80,000 个来自长穗偃麦草。捕获探针在基因中进行了策略性定位,并均匀分布在基因组中,有助于为每个外源基因开发鉴定路线图。该芯片被应用于高通量鉴定长穗偃麦草和远缘种及其衍生物中的外源染色体或片段。我们的结果表明,GenoBaits® WheatplusEE 芯片可用于直接鉴定外源片段的断点、确定外源染色体的拷贝数,并通过对样本进行一轮目标测序揭示小麦染色体的变异。此外,我们可以高效、经济地进行基因分型,支持探索长穗偃麦草种及其衍生物中的亚基因组组成、系统发育关系和关键基因(如 Fhb7 基因)的多态性。我们希望 GenoBaits® WheatplusEE 将成为未来用于小麦改良的野生种质资源输出的广泛采用的工具。