Multifaceted roles of LhWRKY44 in promoting anthocyanin accumulation in Asiatic hybrid lilies (Lilium spp.).

IF 7.6 Q1 GENETICS & HEREDITY 园艺研究(英文) Pub Date : 2023-08-22 eCollection Date: 2023-09-01 DOI:10.1093/hr/uhad167
Mengmeng Bi, Rui Liang, Jiawen Wang, Yuxiao Qu, Xin Liu, Yuwei Cao, Guoren He, Yue Yang, Panpan Yang, Leifeng Xu, Jun Ming
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引用次数: 1

Abstract

The Asiatic hybrid lily (Lilium spp.) is a horticultural crop with high commercial value and diverse anthocyanin pigmentation patterns. However, the regulatory mechanism underlying lily flower color has been largely unexplored. Here, we identified a WRKY transcription factor from lily tepals, LhWRKY44, whose expression was closely associated with anthocyanin accumulation. Functional verification indicated that LhWRKY44 positively regulated anthocyanin accumulation. LhWRKY44 physically interacted with LhMYBSPLATTER and directly bound to the LhMYBSPLATTER promoter, which enhanced the effect of the LhMYBSPLATTER-LhbHLH2 MBW complex activator on anthocyanin accumulation. Moreover, EMSA and dual-luciferase assays revealed that LhWRKY44 activated and bound to the promoters of gene LhF3H and the intracellular anthocyanin-related glutathione S-transferase gene LhGST. Interestingly, our further results showed that LhWRKY44 participated in light and drought-induced anthocyanin accumulation, and improved the drought tolerance in lily via activating stress-related genes. These results generated a multifaceted regulatory mechanism for the LhWRKY44-meditaed enhancement by the environmental signal pathway of anthocyanin accumulation and expanded our understanding of the WRKY-mediated transcriptional regulatory hierarchy modulating anthocyanin accumulation in Asiatic hybrid lilies.

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LhWRKY44在促进亚洲杂交百合花青素积累中的多方面作用。
亚洲杂交百合(Lilium spp.)是一种具有较高商业价值和多种花青素色素沉着模式的园艺作物。然而,百合花颜色的调控机制在很大程度上尚未被探索。在这里,我们从百合花被中鉴定了一种WRKY转录因子LhWRKY44,其表达与花青素积累密切相关。功能验证表明,LhWRKY44对花青素积累具有正向调控作用。LhWRKY44与LhMYBSPLATTER物理相互作用,并直接结合到LhMYBSPLATER启动子上,这增强了LhMYBSCPLATTER-LhbHLH2 MBW复合物激活剂对花青素积累的影响。此外,EMSA和双荧光素酶测定显示,LhWRKY44激活并结合基因LhF3H和细胞内花青素相关谷胱甘肽S-转移酶基因LhGST的启动子。有趣的是,我们的进一步研究结果表明,LhWRKY44参与了光照和干旱诱导的花青素积累,并通过激活胁迫相关基因提高了百合的耐旱性。这些结果为LhWRKY44通过花青素积累的环境信号途径介导的中期增强提供了一个多方面的调控机制,并扩展了我们对WRKY介导的调节亚洲杂交百合花青素积累的转录调控体系的理解。
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