Mérai Zsuzsanna, Xu Fei, Hajdu Anita, Kozma-Bognár László, Dolan Liam
Gregor Mendel Institute of Molecular Plant Biology (GMI), Austrian Academy of Sciences, Vienna Biocenter (VBC), Vienna, 1030, Austria.
Department of Genetics, Faculty of Sciences and Informatics, University of Szeged, Szeged, H-6726, Hungary.
New Phytol. 2025 Sep;247(5):2134-2146. doi: 10.1111/nph.70344. Epub 2025 Jul 1.
The germination of most seeds is influenced by the duration, intensity, and quality of light. The seeds of the model plant Arabidopsis are positive photoblastic and require light to germinate. The germination of negative photoblastic seeds is inhibited by white light. The molecular mechanisms that regulate negative photoblastic germination are unknown due to the lack of a suitable model plant. We identified an accession with negative photoblastic germination in Aethionema arabicum that grows in semi-arid natural habitats. In a forward genetic screen, we identified a mutant - koyash2 (koy2) - that is defective in negative photoblastic germination. There is a nonsense mutation in the gene encoding the phytochrome A photoreceptor in the koy2 mutant. Here, we show that phytochrome A is required for negative photoblastic germination. The defective negative photoblastic phenotype of the koy2 mutant is the result of defective inhibition of germination by the phytochrome A-mediated high irradiance response. This is the first example of phytochrome A-mediated response controlling negative photoblastic seed germination in white, red, far-red, and blue light. We speculate that genetically encoded variation in phytochrome A-mediated germination responses is responsible for local adaptation of Ae. arabicum throughout the Irano-Turanian region.
大多数种子的萌发受光照时长、强度和质量的影响。模式植物拟南芥的种子是需光性种子,需要光照来萌发。忌光性种子的萌发会受到白光的抑制。由于缺乏合适的模式植物,调控忌光性种子萌发的分子机制尚不清楚。我们在生长于半干旱自然栖息地的阿拉伯亚麻芥中鉴定出一个具有忌光性种子萌发特性的种质。在正向遗传筛选中,我们鉴定出一个突变体——koyash2(koy2)——其在忌光性种子萌发方面存在缺陷。koy2突变体中编码光敏色素A光受体的基因存在无义突变。在此,我们表明光敏色素A是忌光性种子萌发所必需的。koy2突变体忌光性种子萌发缺陷的表型是由光敏色素A介导的高辐照度反应对萌发的抑制作用缺陷所致。这是光敏色素A介导的反应在白光、红光、远红光和蓝光下控制忌光性种子萌发的首个实例。我们推测,光敏色素A介导的萌发反应中由基因编码的变异是阿拉伯亚麻芥在整个伊朗 - 图兰地区实现局部适应的原因。