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ICE1 与 IDD14 相互作用,转录激活 QQS,从而增加花粉的萌发和活力。

ICE1 interacts with IDD14 to transcriptionally activate QQS to increase pollen germination and viability.

机构信息

CAS Key Laboratory of Tropical Plant Resources and Sustainable Use, Xishuangbanna Tropical Botanical Garden, The Chinese Academy of Sciences, Xishuangbanna, 666303, China.

Germplasm Bank of Wild Species, Yunnan Key Laboratory for Crop Wild Relatives Omics, Kunming Institute of Botany, The Chinese Academy of Sciences, Kunming, 650201, China.

出版信息

J Integr Plant Biol. 2024 Aug;66(8):1801-1819. doi: 10.1111/jipb.13725. Epub 2024 Jun 28.

Abstract

In flowering plants, sexual reproductive success depends on the production of viable pollen grains. However, the mechanisms by which QUA QUINE STARCH (QQS) regulates pollen development and how transcriptional activators facilitate the transcription of QQS in this process remain poorly understood. Here, we demonstrate that INDUCER OF CBF EXPRESSION 1 (ICE1), a basic helix-loop-helix (bHLH) transcription factor, acts as a key transcriptional activator and positively regulates QQS expression to increase pollen germination and viability in Arabidopsis thaliana by interacting with INDETERMINATE DOMAIN14 (IDD14). In our genetic and biochemical experiments, overexpression of ICE1 greatly promoted both the activation of QQS and high pollen viability mediated by QQS. IDD14 additively enhanced ICE1 function by promoting the binding of ICE1 to the QQS promoter. In addition, mutation of ICE1 significantly repressed QQS expression; the impaired function of QQS and the abnormal anther dehiscence jointly affected pollen development of the ice1-2 mutant. Our results also showed that the enhancement of pollen activity by ICE1 depends on QQS. Furthermore, QQS interacted with CUT1, the key enzyme for long-chain lipid biosynthesis. This interaction both promoted CUT1 activity and regulated pollen lipid metabolism, ultimately determining pollen hydration and fertility. Our results not only provide new insights into the key function of QQS in promoting pollen development by regulating pollen lipid metabolism, but also elucidate the mechanism that facilitates the transcription of QQS in this vital developmental process.

摘要

在开花植物中,有性生殖的成功取决于有活力花粉粒的产生。然而,QUA QUINE STARCH(QQS)调控花粉发育的机制以及转录激活因子如何促进这一过程中 QQS 的转录仍知之甚少。在这里,我们证明了诱导型冷响应元件结合蛋白 1(ICE1),一种碱性螺旋-环-螺旋(bHLH)转录因子,作为一个关键的转录激活因子,通过与不确定域蛋白 14(IDD14)相互作用,正向调控 QQS 的表达,从而增加拟南芥花粉的萌发和活力。在我们的遗传和生化实验中,ICE1 的过表达极大地促进了 QQS 的激活和由 QQS 介导的高花粉活力。IDD14 通过促进 ICE1 与 QQS 启动子的结合,增加了 ICE1 的功能。此外,ICE1 的突变显著抑制了 QQS 的表达;QS 功能受损和异常的花药开裂共同影响了 ice1-2 突变体的花粉发育。我们的结果还表明,ICE1 增强花粉活力依赖于 QQS。此外,QS 与 CUT1 相互作用,CUT1 是长链脂质生物合成的关键酶。这种相互作用既促进了 CUT1 的活性,又调节了花粉的脂质代谢,最终决定了花粉的水合作用和育性。我们的研究结果不仅为 QQS 通过调节花粉脂质代谢促进花粉发育的关键功能提供了新的见解,还阐明了在这一重要发育过程中促进 QQS 转录的机制。

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