WRKY22 Transcription Factor from Iris laevigata Regulates Flowering Time and Resistance to Salt and Drought

Plants Pub Date : 2024-04-25 DOI:10.3390/plants13091191
Lijuan Fan, Zhaoqian Niu, Gongfa Shi, Ziyi Song, Qianqian Yang, Sheng Zhou, Ling Wang
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Abstract

Iris laevigata Fisch. is an excellent ornamental plant in cold regions due to its unique ornamental ability and strong cold resistance. However, the flowering period of the population is only about 20 days, greatly limiting its potential uses in landscaping and the cutting flower industry. In addition, I. laevigata is often challenged with various abiotic stresses including high salinity and drought in its native habitats. Thus, breeding novel cultivars with delayed flowering time and higher resistance to abiotic stress is of high importance. In this study, we utilized sequencing data from the I. laevigata transcriptome to identify WRKYs and characterized IlWRKY22, a key transcription factor that modulates flowering time and abiotic stress responses. IlWRKY22 is induced by salt and drought stress. We cloned IlWRKY22 and found that it is a Group IIe WRKY localized in the nucleus. Overexpressing IlWRKY22 in Arabidopsis thaliana (L.) Heynh. and Nicotiana tabacum L. resulted in a delayed flowering time in the transgenic plants. We created transgenic N. tabacum overexpressing IlWRKY22, which showed significantly improved resistance to both salt and drought compared to the control plants. Thus, our study revealed a unique dual function of IlWRKY22, an excellent candidate gene for breeding novel Iris cultivars of desirable traits.
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鸢尾的 WRKY22 转录因子调控花期及抗盐抗旱能力
Iris laevigata Fisch. 具有独特的观赏性和较强的抗寒能力,是寒冷地区的优良观赏植物。然而,该种群的花期只有 20 天左右,大大限制了其在园林绿化和切花行业的潜在用途。此外,I. laevigata 在其原生地经常受到各种非生物胁迫的挑战,包括高盐度和干旱。因此,培育花期延迟、抗非生物胁迫能力更强的新型栽培品种非常重要。在本研究中,我们利用 I. laevigata 转录组的测序数据识别了 WRKYs,并鉴定了 IlWRKY22 的特征,它是一个调节开花时间和非生物胁迫响应的关键转录因子。IlWRKY22 由盐胁迫和干旱胁迫诱导。我们克隆了 IlWRKY22,发现它是一个定位于细胞核的 IIe 组 WRKY。在拟南芥(Arabidopsis thaliana (L.) Heynh.)和烟草(Nicotiana tabacum L.)中过表达 IlWRKY22 会导致转基因植株开花时间延迟。我们创建了过表达 IlWRKY22 的转基因 N. tabacum,与对照植物相比,它们对盐和干旱的抗性都有显著提高。因此,我们的研究揭示了 IlWRKY22 独特的双重功能,它是培育具有理想性状的新型鸢尾栽培品种的绝佳候选基因。
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