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Mitigating Strategies of Gibberellins in Various Environmental Cues and Their Crosstalk with Other Hormonal Pathways in Plants: a Review

机译:植物中其他荷尔蒙途径的各种环境线索及其串扰的减轻疣蛋白:综述

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Phytohormones are chemical substances that in minute concentration instruct a plethora of developmental and physiological responses in plants. These signal molecules synthesized within the plant body are referred to as plant growth regulators. The available literature revealed that manipulation of phytohormonal content could be a promising approach towards augmentation of environmental stress tolerance in crop plants. They play pivotal role in acclimatization against unstable environmental extremes. Gibberellins are plant hormones affecting germination, stem elongation, flowering, abolition of dormancy, determination of sex expression, leaf and fruit senescence, and enzymatic stimulation. The uncertainty in climatic condition and over expanding population has led to a heap of abiotic stresses in plants. Salinity, high temperature, chilling, freezing, heavy metals, drought, flooding, allelochemicals, and radiation are the stresses that hinder development of plants. The perception of these stresses by plants occurs in a highly coordinated and interactive manner by triggering the activation of a myriad of elaborate signaling networks in which phytohormones play a significant role. The present review describes biosynthesis, signaling, and the potential roles of gibberellins as a tool in mitigating stress, increasing growth, development, and tolerance in plants. In future, revelations evolving the comprehensive knowledge to understand the relationship of plant growth regulators and stress conditions are discussed. This review also enlightens the latest research progress in GA signaling and its crosstalk with other hormonal pathways, underlying the multitude role of DELLA proteins with components of other hormonal signaling pathways.
机译:植物激素是一种化学物质,在很小的浓度下,会指示植物产生过多的发育和生理反应。这些在植物体内合成的信号分子被称为植物生长调节剂。现有文献表明,控制植物激素含量可能是增强作物环境胁迫耐受性的一种有希望的方法。它们在适应不稳定的极端环境方面发挥着关键作用。赤霉素是影响发芽、茎伸长、开花、解除休眠、性别表达、叶片和果实衰老以及酶刺激的植物激素。气候条件的不确定性和人口的过度膨胀导致了植物中大量的非生物胁迫。盐分、高温、低温、冰冻、重金属、干旱、洪水、化感物质和辐射是阻碍植物发育的压力。植物对这些胁迫的感知是以一种高度协调和互动的方式发生的,通过激活大量复杂的信号网络,植物激素在其中发挥着重要作用。本综述描述了赤霉素的生物合成、信号传导以及作为缓解压力、增加植物生长、发育和耐受性的工具的潜在作用。在未来,我们将讨论为理解植物生长调节剂与胁迫条件之间的关系而发展综合知识的启示。这篇综述也启发了GA信号及其与其他激素信号通路的相互作用的最新研究进展,揭示了DELLA蛋白与其他激素信号通路成分的多重作用。

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