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鉴定与马铃薯未减数花粉产生相关的两个突变的JASON相关基因。

Identification of two mutant JASON-RELATED genes associated with unreduced pollen production in potato.

作者信息

Clot Corentin R, Vexler Lea, de La O Leyva-Perez Maria, Bourke Peter M, Engelen Christel J M, Hutten Ronald C B, van de Belt José, Wijnker Erik, Milbourne Dan, Visser Richard G F, Juranić Martina, van Eck Herman J

机构信息

Plant Breeding, Wageningen University and Research, Po Box 386, 6700 AJ, Wageningen, The Netherlands.

Teagasc, Crops Research, Oak Park, Carlow, R93 XE12, Ireland.

出版信息

Theor Appl Genet. 2024 Mar 12;137(4):79. doi: 10.1007/s00122-024-04563-7.

Abstract

Multiple QTLs control unreduced pollen production in potato. Two major-effect QTLs co-locate with mutant alleles of genes with homology to AtJAS, a known regulator of meiotic spindle orientation. In diploid potato the production of unreduced gametes with a diploid (2n) rather than a haploid (n) number of chromosomes has been widely reported. Besides their evolutionary important role in sexual polyploidisation, unreduced gametes also have a practical value for potato breeding as a bridge between diploid and tetraploid germplasm. Although early articles argued for a monogenic recessive inheritance, the genetic basis of unreduced pollen production in potato has remained elusive. Here, three diploid full-sib populations were genotyped with an amplicon sequencing approach and phenotyped for unreduced pollen production across two growing seasons. We identified two minor-effect and three major-effect QTLs regulating this trait. The two QTLs with the largest effect displayed a recessive inheritance and an additive interaction. Both QTLs co-localised with genes encoding for putative AtJAS homologs, a key regulator of meiosis II spindle orientation in Arabidopsis thaliana. The function of these candidate genes is consistent with the cytological phenotype of mis-oriented metaphase II plates observed in the parental clones. The alleles associated with elevated levels of unreduced pollen showed deleterious mutation events: an exonic transposon insert causing a premature stop, and an amino acid change within a highly conserved domain. Taken together, our findings shed light on the natural variation underlying unreduced pollen production in potato and will facilitate interploidy breeding by enabling marker-assisted selection for this trait.

摘要

多个数量性状基因座(QTL)控制马铃薯中未减数花粉的产生。两个主效QTL与与AtJAS同源的基因突变等位基因共定位,AtJAS是减数分裂纺锤体取向的已知调节因子。在二倍体马铃薯中,已广泛报道产生具有二倍体(2n)而非单倍体(n)染色体数目的未减数配子。除了它们在有性多倍体化中的重要进化作用外,未减数配子作为二倍体和四倍体种质之间的桥梁,在马铃薯育种中也具有实际价值。尽管早期文章主张单基因隐性遗传,但马铃薯中未减数花粉产生的遗传基础仍然难以捉摸。在这里,使用扩增子测序方法对三个二倍体全同胞群体进行基因分型,并在两个生长季节对未减数花粉产生进行表型分析。我们鉴定出两个微效和三个主效QTL调控这一性状。两个效应最大的QTL表现出隐性遗传和加性相互作用。这两个QTL都与编码拟AtJAS同源物的基因共定位,拟AtJAS同源物是拟南芥减数分裂II纺锤体取向的关键调节因子。这些候选基因的功能与在亲本克隆中观察到的中期II板取向错误的细胞学表型一致。与未减数花粉水平升高相关的等位基因显示出有害的突变事件:一个外显子转座子插入导致提前终止,以及一个高度保守结构域内的氨基酸变化。综上所述,我们的研究结果揭示了马铃薯中未减数花粉产生的自然变异,并将通过对该性状进行标记辅助选择来促进倍间杂交育种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d203/10933213/09bec134aa65/122_2024_4563_Fig1_HTML.jpg

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