Laboratory of Genetics, Wageningen University & Research, Droevendaalsesteeg 1, Wageningen, 6700 AA, the Netherlands.
Department of Developmental Biology, Institut für Pflanzenwissenschaften und Mikrobiologie, University of Hamburg, Ohnhorststrasse 18, Hamburg, 22609, Germany.
Plant J. 2022 Jul;111(1):19-37. doi: 10.1111/tpj.15733. Epub 2022 Jun 18.
Through the inactivation of genes that act during meiosis it is possible to direct the genetic make-up of plants in subsequent generations and optimize breeding schemes. Offspring may show higher recombination of parental alleles resulting from elevated crossover (CO) incidence, or by omission of meiotic divisions, offspring may become polyploid. However, stable mutations in genes essential for recombination, or for either one of the two meiotic divisions, can have pleiotropic effects on plant morphology and line stability, for instance by causing lower fertility. Therefore, it is often favorable to temporarily change gene expression during meiosis rather than relying on stable null mutants. It was previously shown that virus-induced gene silencing (VIGS) can be used to transiently reduce CO frequencies. We asked if VIGS could also be used to modify other processes throughout meiosis and during pollen formation in Arabidopsis thaliana. Here, we show that VIGS-mediated knock-down of FIGL1, RECQ4A/B, OSD1 and QRT2 can induce (i) an increase in chiasma numbers, (ii) unreduced gametes and (iii) pollen tetrads. We further show that VIGS can target both sexes and different genetic backgrounds and can simultaneously silence different gene copies. The successful knock-down of these genes in A. thaliana suggests that VIGS can be exploited to manipulate any process during or shortly after meiosis. Hence, the transient induction of changes in inheritance patterns can be used as a powerful tool for applied research and biotechnological applications.
通过使参与减数分裂的基因失活,可以定向改变植物后代的遗传组成,优化育种方案。后代可能表现出更高的亲本等位基因重组,这是由于交叉(CO)频率增加,或者减数分裂的省略,后代可能成为多倍体。然而,对于重组或减数分裂的两个过程所必需的基因的稳定突变,可能会对植物形态和系稳定性产生多效性影响,例如导致较低的育性。因此,在减数分裂期间临时改变基因表达而不是依赖稳定的无效突变体通常是有利的。先前已经表明,病毒诱导的基因沉默(VIGS)可用于暂时降低 CO 频率。我们询问 VIGS 是否也可用于修饰拟南芥减数分裂过程中的其他过程和花粉形成过程。在这里,我们表明,FIGL1、RECQ4A/B、OSD1 和 QRT2 的 VIGS 介导的敲低可诱导(i)交叉数增加,(ii)非减数配子和(iii)花粉四分体。我们进一步表明,VIGS 可以靶向两性和不同的遗传背景,并可以同时沉默不同的基因副本。这些基因在拟南芥中的成功敲低表明,VIGS 可用于操纵减数分裂期间或之后不久的任何过程。因此,遗传模式的短暂改变可以被用作应用研究和生物技术应用的强大工具。