Leibniz Institute of Plant Genetics and Crop Plant Research (IPK), Corrensstr. 3, OT Gatersleben, D-06466 Stadt Seeland, Germany.
Research Group Abiotic Stress Genomics, Interdisciplinary Center for Crop Plant Research (IZN), Hoher Weg 8, 06120 Halle (Saale), Germany.
J Exp Bot. 2024 May 20;75(10):2900-2916. doi: 10.1093/jxb/erae044.
The HD-ZIP class I transcription factor Homeobox 1 (HvHOX1), also known as Vulgare Row-type Spike 1 (VRS1) or Six-rowed Spike 1, regulates lateral spikelet fertility in barley (Hordeum vulgare L.). It was shown that HvHOX1 has a high expression only in lateral spikelets, while its paralog HvHOX2 was found to be expressed in different plant organs. Yet, the mechanistic functions of HvHOX1 and HvHOX2 during spikelet development are still fragmentary. Here, we show that compared with HvHOX1, HvHOX2 is more highly conserved across different barley genotypes and Hordeum species, hinting at a possibly vital but still unclarified biological role. Using bimolecular fluorescence complementation, DNA-binding, and transactivation assays, we validate that HvHOX1 and HvHOX2 are bona fide transcriptional activators that may potentially heterodimerize. Accordingly, both genes exhibit similar spatiotemporal expression patterns during spike development and growth, albeit their mRNA levels differ quantitatively. We show that HvHOX1 delays the lateral spikelet meristem differentiation and affects fertility by aborting the reproductive organs. Interestingly, the ancestral relationship of the two genes inferred from their co-expressed gene networks suggested that HvHOX1 and HvHOX2 might play a similar role during barley spikelet development. However, CRISPR-derived mutants of HvHOX1 and HvHOX2 demonstrated the suppressive role of HvHOX1 on lateral spikelets, while the loss of HvHOX2 does not influence spikelet development. Collectively, our study shows that through the suppression of reproductive organs, lateral spikelet fertility is regulated by HvHOX1, whereas HvHOX2 is dispensable for spikelet development in barley.
HD-ZIP 类 I 转录因子 Homeobox 1(HvHOX1),也称为 Vulgare Row-type Spike 1(VRS1)或 Six-rowed Spike 1,调节大麦(Hordeum vulgare L.)的侧小穗育性。研究表明,HvHOX1 仅在侧小穗中高表达,而其同源物 HvHOX2 则在不同的植物器官中表达。然而,HvHOX1 和 HvHOX2 在小穗发育过程中的机制功能仍然不完整。在这里,我们发现与 HvHOX1 相比,HvHOX2 在不同的大麦基因型和大麦属物种中更为保守,暗示其可能具有重要但尚未阐明的生物学功能。通过双分子荧光互补、DNA 结合和转录激活测定,我们验证了 HvHOX1 和 HvHOX2 是真正的转录激活子,它们可能潜在地异源二聚化。因此,这两个基因在小穗发育和生长过程中表现出相似的时空表达模式,尽管它们的 mRNA 水平在数量上有所不同。我们发现 HvHOX1 延迟侧小穗分生组织的分化,并通过终止生殖器官来影响育性。有趣的是,从它们共表达的基因网络推断出的两个基因的祖先关系表明,HvHOX1 和 HvHOX2 可能在大麦小穗发育过程中发挥类似的作用。然而,HvHOX1 和 HvHOX2 的 CRISPR 衍生突变体表明 HvHOX1 对侧小穗具有抑制作用,而 HvHOX2 的缺失并不影响小穗发育。总的来说,我们的研究表明,通过抑制生殖器官,HvHOX1 调节侧小穗的育性,而 HvHOX2 在大麦小穗发育中是可有可无的。