Plant Thermosensors.

IF 8.7 1区 生物学 Q1 GENETICS & HEREDITY
Jorge J Casal, Germán Murcia, Luciana Bianchimano
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引用次数: 0

Abstract

Plants are exposed to temperature conditions that fluctuate over different time scales, including those inherent to global warming. In the face of these variations, plants sense temperature to adjust their functions and minimize the negative consequences. Transcriptome responses underlie changes in growth, development, and biochemistry (thermomorphogenesis and acclimation to extreme temperatures). We are only beginning to understand temperature sensation by plants. Multiple thermosensors convey complementary temperature information to a given signaling network to control gene expression. Temperature-induced changes in protein or transcript structure and/or in the dynamics of biomolecular condensates are the core sensing mechanisms of known thermosensors, but temperature impinges on their activities via additional indirect pathways. The diversity of plant responses to temperature anticipates that many new thermosensors and eventually novel sensing mechanisms will be uncovered soon.

植物温度传感器。
植物暴露在不同时间尺度波动的温度条件下,包括全球变暖所固有的温度条件。面对这些变化,植物通过感知温度来调整自身功能,最大限度地减少负面影响。转录组反应是生长、发育和生物化学(热形态发生和适应极端温度)变化的基础。我们对植物感知温度的了解才刚刚开始。多个温度传感器向特定信号网络传递互补的温度信息,从而控制基因表达。温度诱导的蛋白质或转录物结构变化和/或生物分子凝聚物的动态变化是已知温度传感器的核心传感机制,但温度还通过其他间接途径影响它们的活动。植物对温度反应的多样性预示着许多新的温度传感器和新型传感机制将很快被发现。
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来源期刊
Annual review of genetics
Annual review of genetics 生物-遗传学
CiteScore
18.30
自引率
0.90%
发文量
17
期刊介绍: The Annual Review of Genetics, published since 1967, comprehensively covers significant advancements in genetics. It encompasses various areas such as biochemical, behavioral, cell, and developmental genetics, evolutionary and population genetics, chromosome structure and transmission, gene function and expression, mutation and repair, genomics, immunogenetics, and other topics related to the genetics of viruses, bacteria, fungi, plants, animals, and humans.
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