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基于 dmp 的同源多倍体诱导体系的建立,用于油菜和烟草的雌核发育。

Establishment of a dmp based maternal haploid induction system for polyploid Brassica napus and Nicotiana tabacum.

机构信息

National Maize Improvement Center of China, Key Laboratory of Crop Heterosis and Utilization/Engineering Research Center for Maize Breeding, Ministry of Education, College of Agronomy and Biotechnology, China Agricultural University, Beijing, 100193, China.

Bioscience, Wageningen University and Research, 6700 AA, Wageningen, The Netherlands.

出版信息

J Integr Plant Biol. 2022 Jun;64(6):1281-1294. doi: 10.1111/jipb.13244. Epub 2022 Apr 11.

Abstract

Doubled haploid (DH) technology is used to obtain homozygous lines in a single generation, a technique that significantly accelerates the crop breeding trajectory. Traditionally, in vitro culture is used to generate DHs, but this technique is limited by species and genotype recalcitrance. In vivo haploid induction (HI) through seed is widely and efficiently used in maize and was recently extended to several other crops. Here we show that in vivo HI can be triggered by mutation of DMP maternal haploid inducer genes in allopolyploid (allotetraploid) Brassica napus and Nicotiana tabacum. We developed a pipeline for selection of DMP orthologs for clustered regularly interspaced palindromic repeats mutagenesis and demonstrated average amphihaploid induction rates of 2.4% and 1.2% in multiple B. napus and N. tabacum genotypes, respectively. These results further confirmed the HI ability of DMP gene in polyploid dicot crops. The DMP-HI system offers a novel DH technology to facilitate breeding in these crops. The success of this approach and the conservation of DMP genes in dicots suggest the broad applicability of this technique in other dicot crops.

摘要

加倍单倍体(DH)技术用于在一代中获得纯合系,这一技术极大地加速了作物的育种进程。传统上,体外培养用于产生 DH,但该技术受到物种和基因型抗性的限制。通过种子进行体内单倍体诱导(HI)在玉米中被广泛有效地应用,并且最近已经扩展到其他几种作物。在这里,我们表明在异源四倍体( allotetraploid)油菜和烟草中,通过突变 DMP 母本单倍体诱导基因可以触发体内 HI。我们开发了一个用于选择 DMP 直系同源物的流水线,用于簇状规则间隔的回文重复序列诱变,并在多个油菜和烟草基因型中分别证明了平均双单倍体诱导率为 2.4%和 1.2%。这些结果进一步证实了 DMP 基因在多倍体双子叶作物中的 HI 能力。DMP-HI 系统为这些作物的育种提供了一种新的 DH 技术。该方法的成功和 DMP 基因在双子叶植物中的保守性表明,该技术在其他双子叶作物中具有广泛的适用性。

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