Shao Zhengyao, Bai Yanan, Huq Enamul, Qiao Hong
bioRxiv. 2024 Mar 4:2024.03.01.583049. doi: 10.1101/2024.03.01.583049.
Ethylene signaling has been indicated as a potential positive regulator of plant warm ambient temperature response but its underlying molecular mechanisms are largely unknown. Here, we show that LHP1 and INO80 cooperate with ethylene signaling for warm ambient temperature response by activating specific bivalent genes. We found that the presence of warm ambient temperature activates ethylene signaling through EIN2 and EIN3, leading to an interaction between LHP1 and accumulated EIN2-C to co-regulate a subset of LHP1-bound genes marked by H3K27me3 and H3K4me3 bivalency. Furthermore, we demonstrate that INO80 is recruited to bivalent genes by interacting with EIN2-C and EIN3, promoting H3K4me3 enrichment and facilitating transcriptional activation in response to warm ambient temperature. Together, our findings illustrate a novel mechanism wherein ethylene signaling orchestrates LHP1 and INO80 to regulate warm ambient temperature response through activating specific bivalent genes in Arabidopsis.
乙烯信号已被表明是植物对温暖环境温度响应的潜在正调控因子,但其潜在的分子机制在很大程度上尚不清楚。在这里,我们表明LHP1和INO80通过激活特定的二价基因与乙烯信号协同作用以响应温暖环境温度。我们发现温暖环境温度的存在通过EIN2和EIN3激活乙烯信号,导致LHP1与积累的EIN2-C相互作用,共同调节以H3K27me3和H3K4me3双价性为特征的一部分LHP1结合基因。此外,我们证明INO80通过与EIN2-C和EIN3相互作用被招募到二价基因,促进H3K4me3富集并促进对温暖环境温度的转录激活。总之,我们的研究结果阐明了一种新机制,其中乙烯信号通过激活拟南芥中的特定二价基因来协调LHP1和INO80以调节对温暖环境温度的响应。