Selective egg cell polyspermy bypasses the triploid block
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https://www.ncbi.nlm.nih.gov/geo/query/acc.cgi?acc=GSE130186
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Polyploidization, the increase in genome copies, is considered a major driving force for speciation. We have recently provided the first direct in planta evidence for polyspermy induced polyploidization. Capitalizing on a novel sco1-based polyspermy assay, we here show that polyspermy can selectively polyploidize the egg cell, while rendering the genome size of the ploidy-sensitive central cell unaffected. This unprecedented result indicates that polyspermy can bypass the triploid block, which is an established postzygotic polyploidization barrier. In fact, we here show that most polyspermy-derived seeds are insensitive to the triploid block suppressor admetos. The robustness of polyspermy-derived plants is evidenced by the first transcript profiling of triparental plants and our observation that these idiosyncratic organisms segregate tetraploid offspring within a single generation. Polyspermy-derived triparental plants are thus comparable to triploids recovered from interploidy crosses. Our results expand current polyploidization concepts and have important implications for plant breeding. The dataset contains samples from biparental diploid, biparental triploid, and triparental triploid polyspermy plants. Each sample Is represented by five biological replicates and each biological replicate is represented by four technical replicates. Sequencing performed by: Bielefeld University, CeBiTec & Faculty of Biology
创建时间:
2020-02-18



