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小麦长芒 3Ns 附加系的分子细胞遗传学分析及特异标记的开发。

Molecular Cytological Analysis and Specific Marker Development in Wheat- Keng 3Ns Additional Line with Elongated Glume.

机构信息

State Key Laboratory of Crop Stress Biology for Arid Areas and College of Agronomy, Northwest A&F University, Xianyang 712100, China.

Shaanxi Research Station of Crop Gene Resources and Germplasm Enhancement, Ministry of Agriculture, Xianyang 712100, China.

出版信息

Int J Mol Sci. 2023 Apr 4;24(7):6726. doi: 10.3390/ijms24076726.

Abstract

Keng ( = 2x = 14, NsNs) is an excellent gene resource for wheat breeding, which is characterized by early maturity, low plant height, and disease resistance. The wheat- derivatives were created by the elite genes of and permeate into common wheat through hybridization. Among them, a long-glume material 20JH1155 was identified, with larger grains and longer spike than its parents. In the present study, the methods of cytological observation, GISH, and sequential FISH analysis showed that 20JH1155 contained 21 pairs of wheat chromosomes and a pair of . There were some differences in 5A and 7B chromosomes between 20JH1155 and parental wheat 7182. Molecular marker, FISH, and sequence cloning indicated 20JH1155 alien chromosomes were 3Ns of . In addition, differentially expressed genes during immature spikelet development of 20JH1155 and 7182 and predicted transcription factors were obtained by transcriptome sequencing. Moreover, a total of 7 makers derived from Ph#3Ns were developed from transcriptome data. Taken together, the wheat- derived line 20JH1155 provides a new horizon on distant hybridization of wheat and accelerates the utilization of genes of .

摘要

Keng(=2x=14,NsNs)是小麦育种的优秀基因资源,其特点是早熟、株型矮、抗病。通过杂交将 的优良基因导入普通小麦,创制了小麦衍生系。其中,长颖材料 20JH1155 的穗粒数和穗长均大于双亲。本研究通过细胞学观察、GISH 和顺序 FISH 分析表明,20JH1155 含有 21 对小麦染色体和 1 对 。20JH1155 与亲本小麦 7182 的 5A 和 7B 染色体存在一些差异。分子标记、FISH 和序列克隆表明,20JH1155 的外源染色体是 3Ns 的 。此外,通过转录组测序获得了 20JH1155 和 7182 未成熟小穗发育过程中的差异表达基因和预测的转录因子。此外,从转录组数据中开发了总共 7 个来自 Ph#3Ns 的标记。综上所述,小麦衍生系 20JH1155 为小麦远缘杂交提供了新的视野,加速了 的基因利用。

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