Department of Biological Sciences, Louisiana State University, Baton Rouge, LA, USA.
Department of Chemistry, Louisiana State University, Baton Rouge, LA, USA.
J Exp Bot. 2018 Sep 14;69(20):4907-4919. doi: 10.1093/jxb/ery244.
The H2A.Z histone variant plays a role in the modulation of environmental responses, but the nature of the associated mechanisms remains enigmatic. We investigated global H2A.Z deposition and transcriptomic changes in rice (Oryza sativa) upon exposure to phosphate (Pi) deficiency and in response to RNAi knockdown of OsARP6, which encodes a key component of the H2A.Z exchange complex. Both Pi deficiency and OsARP6-knockdown resulted in similar, profound effects on global H2A.Z distribution. H2A.Z in the gene body of stress-responsive genes was negatively correlated with gene expression, and this was more apparent in response to Pi deficiency. In contrast, the role of H2A.Z at the transcription start site (TSS) was more context dependent, acting as a repressor of some stress-responsive genes, but an activator of some genes with housekeeping functions. This was especially evident upon OsARP6-knockdown, which resulted in down-regulation of a number of genes linked to chloroplast function that contained decreases in H2A.Z at the TSS. Consistently, OsARP6-RNAi plants exhibited lower chlorophyll content relative to the wild-type. Our results demonstrate that gene body-localized H2A.Z plays a prominent role in repressing stress-responsive genes under non-inductive conditions, whereas H2A.Z at the TSS functions as a positive or negative regulator of transcription.
H2A.Z 组蛋白变体在调节环境响应中发挥作用,但相关机制的性质仍然神秘。我们研究了水稻(Oryza sativa)在暴露于磷酸盐(Pi)缺乏和 RNAi 敲低 OsARP6 时的整体 H2A.Z 沉积和转录组变化,OsARP6 编码 H2A.Z 交换复合物的关键组成部分。Pi 缺乏和 OsARP6 敲低都对全局 H2A.Z 分布产生了类似的、深远的影响。应激反应基因的基因体中的 H2A.Z 与基因表达呈负相关,而这种相关性在 Pi 缺乏时更为明显。相比之下,H2A.Z 在转录起始位点(TSS)的作用更为依赖上下文,作为一些应激反应基因的抑制剂,但作为一些具有管家功能的基因的激活剂。这在 OsARP6 敲低时尤为明显,这导致与叶绿体功能相关的许多基因下调,这些基因在 TSS 处的 H2A.Z 减少。一致地,OsARP6-RNAi 植物表现出相对野生型较低的叶绿素含量。我们的结果表明,基因体定位的 H2A.Z 在非诱导条件下抑制应激反应基因中发挥着重要作用,而 TSS 处的 H2A.Z 作为转录的正或负调节剂。