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花粉管顶端生长缺陷导致新型多倍体不育。

Defective pollen tube tip growth induces neo-polyploid infertility.

机构信息

Institute of Molecular Plant Biology, Department of Biology, ETH Zürich, Zürich, Switzerland.

出版信息

Science. 2024 Mar;383(6686):eadh0755. doi: 10.1126/science.adh0755. Epub 2024 Mar 1.

Abstract

Genome duplication (generating polyploids) is an engine of novelty in eukaryotic evolution and a promising crop improvement tool. Yet newly formed polyploids often have low fertility. Here we report that a severe fertility-compromising defect in pollen tube tip growth arises in new polyploids of . Pollen tubes of newly polyploid grow slowly, have aberrant anatomy and disrupted physiology, often burst prematurely, and have altered gene expression. These phenotypes recover in evolved polyploids. We also show that gametophytic (pollen tube) genotypes of two tip-growth genes under selection in natural tetraploid are strongly associated with pollen tube performance in the tetraploid. Our work establishes pollen tube tip growth as an important fertility challenge for neo-polyploid plants and provides insights into a naturally evolved multigenic solution.

摘要

基因组加倍(产生多倍体)是真核生物进化的创新引擎,也是一种有前途的作物改良工具。然而,新形成的多倍体往往生育能力低。在这里,我们报告说,在新的多倍体 中,花粉管顶端生长出现严重的生育能力受损缺陷。新多倍体 的花粉管生长缓慢,解剖结构异常,生理功能紊乱,经常过早破裂,并改变基因表达。这些表型在进化后的多倍体中得到恢复。我们还表明,在自然四倍体 中受选择的两个顶端生长基因的配子体(花粉管)基因型与四倍体中花粉管的性能密切相关。我们的工作确立了花粉管顶端生长是新多倍体植物的一个重要生育挑战,并为自然进化的多基因解决方案提供了线索。

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