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PIF7 是光形态建成中向光性的主控因子。

PIF7 is a master regulator of thermomorphogenesis in shade.

机构信息

Institute of Plant Sciences, ARO, Volcani Institute, HaMaccabbim Road 68, Rishon LeZion, 7505101, Israel.

Howard Hughes Medical Institute, Salk Institute for Biological Studies, La Jolla, CA, 92037, USA.

出版信息

Nat Commun. 2022 Aug 29;13(1):4942. doi: 10.1038/s41467-022-32585-6.

Abstract

The size of plant organs is highly responsive to environmental conditions. The plant's embryonic stem, or hypocotyl, displays phenotypic plasticity, in response to light and temperature. The hypocotyl of shade avoiding species elongates to outcompete neighboring plants and secure access to sunlight. Similar elongation occurs in high temperature. However, it is poorly understood how environmental light and temperature cues interact to effect plant growth. We found that shade combined with warm temperature produces a synergistic hypocotyl growth response that dependent on PHYTOCHROME-INTERACTING FACTOR 7 (PIF7) and auxin. This unique but agriculturally relevant scenario was almost totally independent on PIF4 activity. We show that warm temperature is sufficient to promote PIF7 DNA binding but not transcriptional activation and we demonstrate that additional, unknown factor/s must be working downstream of the phyB-PIF-auxin module. Our findings will improve the predictions of how plants will respond to increased ambient temperatures when grown at high density.

摘要

植物器官的大小对环境条件高度敏感。植物的胚胎茎或下胚轴表现出表型可塑性,以响应光和温度。避荫物种的下胚轴伸长以与邻近的植物竞争,并确保获得阳光。在高温下也会发生类似的伸长。然而,人们对环境光和温度线索如何相互作用以影响植物生长知之甚少。我们发现,遮荫与温暖的温度相结合会产生协同的下胚轴生长反应,这种反应依赖于 PHYTOCHROME-INTERACTING FACTOR 7 (PIF7) 和生长素。这种独特但与农业相关的情况几乎完全独立于 PIF4 活性。我们表明,温暖的温度足以促进 PIF7 的 DNA 结合,但不能促进转录激活,并且我们证明,phyB-PIF-auxin 模块下游必须有其他未知的因素/物质在起作用。我们的研究结果将提高对植物在高密度生长时如何应对环境温度升高的预测能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3e6b/9424238/cffde733a7a5/41467_2022_32585_Fig1_HTML.jpg

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