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拟南芥中的花粉杀手解毒剂 APOK3。

APOK3, a pollen killer antidote in Arabidopsis thaliana.

机构信息

Université Paris-Saclay, INRAE, AgroParisTech, Institut Jean-Pierre Bourgin (IJPB), 78000 Versailles, France.

LIPME, Université de Toulouse, INRAE, CNRS, 31326 Castanet-Tolosan, France.

出版信息

Genetics. 2022 Jul 30;221(4). doi: 10.1093/genetics/iyac089.

Abstract

The principles of heredity state that the two alleles carried by a heterozygote are equally transmitted to the progeny. However, genomic regions that escape this rule have been reported in many organisms. It is notably the case of genetic loci referred to as gamete killers, where one allele enhances its transmission by causing the death of the gametes that do not carry it. Gamete killers are of great interest, particularly to understand mechanisms of evolution and speciation. Although being common in plants, only a few, all in rice, have so far been deciphered to the causal genes. Here, we studied a pollen killer found in hybrids between two accessions of Arabidopsis thaliana. Exploring natural variation, we observed this pollen killer in many crosses within the species. Genetic analyses revealed that three genetically linked elements are necessary for pollen killer activity. Using mutants, we showed that this pollen killer works according to a poison-antidote model, where the poison kills pollen grains not producing the antidote. We identified the gene encoding the antidote, a chimeric protein addressed to mitochondria. De novo genomic sequencing in 12 natural variants with different behaviors regarding the pollen killer revealed a hyper variable locus, with important structural variations particularly in killer genotypes, where the antidote gene recently underwent duplications. Our results strongly suggest that the gene has newly evolved within A. thaliana. Finally, we identified in the protein sequence polymorphisms related to its antidote activity.

摘要

遗传定律表明,杂合子携带的两个等位基因平等地传递给后代。然而,许多生物体中都有报道称,存在一些逃避这一规律的基因组区域。特别值得一提的是被称为配子杀手的遗传基因座,其中一个等位基因通过导致不携带它的配子死亡来增强其传递。配子杀手非常有趣,特别是对于理解进化和物种形成的机制。尽管在植物中很常见,但迄今为止,只有少数几个,全部在水稻中,已经被解码到因果基因。在这里,我们研究了在拟南芥两个品系的杂种中发现的花粉杀手。通过探索自然变异,我们在该物种的许多杂交中观察到了这种花粉杀手。遗传分析表明,花粉杀手活性需要三个遗传上连锁的元素。使用突变体,我们表明这种花粉杀手根据毒药解毒剂模型起作用,其中毒药杀死不产生解毒剂的花粉粒。我们鉴定了编码解毒剂的基因,这是一种定位于线粒体的嵌合蛋白。对 12 个具有不同花粉杀手行为的自然变异体进行从头基因组测序,揭示了一个高度可变的基因座,在杀手基因型中存在重要的结构变异,其中解毒剂基因最近经历了复制。我们的研究结果强烈表明,该基因在拟南芥中是新进化的。最后,我们在与其解毒剂活性相关的蛋白序列中鉴定出了多态性。

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