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利用作物野生近缘种特异性寡核苷酸荧光原位杂交技术对外源序列进行快速可视化监测:以黄瓜染色体工程为例

Rapid and visual monitoring of alien sequences using crop wild relatives specific oligo-painting: The case of cucumber chromosome engineering.

作者信息

Zhao Qinzheng, Jin Kailing, Hu Wei, Qian Chuntao, Li Ji, Zhang Wenli, Lou Qunfeng, Chen Jinfeng

机构信息

State Key Laboratory of Crop Genetics and Germplasm Enhancement, College of Horticulture, Nanjing Agricultural University, Nanjing 210095, China.

State Key Laboratory for Crop Genetics and Germplasm Enhancement, JiangSu Collaborative Innovation Center for Modern Crop Production, Nanjing Agricultural University, Nanjing 210095, China.

出版信息

Plant Sci. 2022 Jun;319:111199. doi: 10.1016/j.plantsci.2022.111199. Epub 2022 Feb 22.

Abstract

Wild species related to domesticated crops (crop wild relatives, or CWRs) represent a high level of genetic diversity that provides a practical gene pool for crop pre-breeding employed to address climate change and food demand challenges globally. Nevertheless, rapid identifying and visual tracking of alien chromosomes and sequences derived from CWRs have been a technical challenge for crop chromosome engineering. Here, a species-specific oligonucleotide (oligo) pool was developed by using the reference genome of Cucumis hystrix (HH, 2n = 2x = 24), a wild species carrying many favorable traits and interspecific compatibility with cultivated cucumber (C. sativus, CC, 2n = 2x = 14). These synthetic double-stranded oligo probes were applied to validate the assembly and characterize the chromosome architectures of C. hystrix, as well as to rapidly identify C. hystrix-chromosomes in diverse C. sativus-hystrix chromosome-engineered germplasms, including interspecific hybrid F1 (HC), synthetic allopolyploids (HHCC, CHC, and HCH) and alien additional lines (CC-H). Moreover, a ∼2Mb of C. hystrix-specific sequences, introduced into cultivated cucumber, were visualized by CWR-specific oligo-painting. These results demonstrate that the CWR-specific oligo-painting technique holds broad applicability for chromosome engineering of numerous crops, as it allows rapid identification of alien chromosomes, reliable detection of homoeologous recombination, and visual tracking of the introgression process. It is promising to achieve directed and high-precision crop pre-breeding combined with other breeding techniques, such as CRISPR/Cas9-mediated chromosome engineering.

摘要

与驯化作物相关的野生种(作物野生近缘种,简称CWRs)具有高度的遗传多样性,为全球应对气候变化和粮食需求挑战的作物预育种提供了一个实用的基因库。然而,快速识别和可视化追踪源自CWRs的外源染色体和序列一直是作物染色体工程中的一项技术挑战。在此,利用携带许多优良性状且与栽培黄瓜(C. sativus,CC,2n = 2x = 14)具有种间兼容性的野生种——糙皮甜瓜(Cucumis hystrix,HH,2n = 2x = 24)的参考基因组,开发了一个物种特异性寡核苷酸(oligo)库。这些合成的双链oligo探针被用于验证糙皮甜瓜的组装并表征其染色体结构,以及在多种黄瓜 - 糙皮甜瓜染色体工程种质中快速识别糙皮甜瓜染色体,包括种间杂交F1(HC)、合成异源多倍体(HHCC、CHC和HCH)以及外源附加系(CC - H)。此外,通过CWR特异性oligo荧光原位杂交技术,可视化了导入栽培黄瓜中的约2Mb糙皮甜瓜特异性序列。这些结果表明,CWR特异性oligo荧光原位杂交技术在众多作物的染色体工程中具有广泛的适用性,因为它能够快速识别外源染色体、可靠检测同源重组,并可视化追踪渐渗过程。结合其他育种技术,如CRISPR/Cas9介导的染色体工程,有望实现定向和高精度的作物预育种。

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