Laboratory of Pollen Biology, Institute of Experimental Botany v.v.i. ASCR, Rozvojová 263, Prague 6, 165 02, Czech Republic.
Plant Cell Environ. 2014 Mar;37(3):670-83. doi: 10.1111/pce.12186. Epub 2013 Oct 3.
Heat shock transcription factors (Hsfs) are involved in multiple aspects of stress response and plant growth. However, their role during male gametophyte development is largely unknown, although the generative phase is the most sensitive and critical period in the plant life cycle. Based on a wide screen of T-DNA mutant lines, we identified the atren1 mutation (restricted to nucleolus1) in early male gametophytic gene At1g77570, which has the closest homology to HSFA5 gene, the member of a heat shock transcription factor (HSF) gene family. The mutation causes multiple defects in male gametophyte development in both structure and function. Because the mutation disrupts an early acting (AtREN1) gene, these pollen phenotype abnormalities appear from bicellular pollen stage to pollen maturation. Moreover, the consequent progamic phase is compromised as well as documented by pollen germination defects and limited transmission via male gametophyte. In addition, atren1/- plants are defective in heat stress (HS) response and produce notably higher proportion of aberrant pollen grains. AtREN1 protein is targeted specifically to the nucleolus that, together with the increased size of the nucleolus in atren1 pollen, suggests that it is likely to be involved in ribosomal RNA biogenesis or other nucleolar functions.
热休克转录因子(Hsfs)参与多种应激反应和植物生长的方面。然而,尽管生殖阶段是植物生命周期中最敏感和关键的时期,但它们在雄性配子体发育中的作用在很大程度上是未知的。基于广泛的 T-DNA 突变体筛选,我们鉴定了雄性早期配子体基因 At1g77570 中的 atren1 突变(仅限于核仁 1),该基因与热休克转录因子(HSF)基因家族的 HSFA5 基因具有最密切的同源性。该突变导致雄性配子体发育在结构和功能上的多种缺陷。由于突变破坏了一个早期作用的(AtREN1)基因,这些花粉表型异常从二细胞花粉阶段到花粉成熟都出现。此外,正如花粉萌发缺陷和通过雄性配子体的有限传递所记录的那样,随后的亲配子体阶段也受到了影响。此外,atren1/- 植物在热应激(HS)反应中存在缺陷,并产生明显更高比例的异常花粉粒。AtREN1 蛋白特异性靶向核仁,atren1 花粉中的核仁增大,这表明它可能参与核糖体 RNA 的生物发生或其他核仁功能。