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A Holistic Approach to Analyze Systemic Jasmonate Accumulation in Individual Leaves of Arabidopsis Rosettes Upon Wounding

机译:一种整体方法,分析伤口拟南芥玫瑰花的个体叶片的全身茉莉族积累

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摘要

Phytohormones, especially jasmonates, are known to be mediators of the plant responses to wounding and herbivore feeding. Their role in such stress responses has been largely studied locally in treated leaves. However, less is known about the induced systemic distribution of phytohormone signals upon these kinds of stresses. Here, a holistic approach was performed in order to investigate the systemic phytohormone pattern in the rosette of Arabidopsisthaliana after herbivore-related wounding. Levels of different stress-related phytohormones such as jasmonates, abscisic acid, and salicylic acid were analyzed in individual leaves. We demonstrate that the typically used sampling method, where leaves are first cut and immediately frozen, causes false-positive results since cutting already induces systemic jasmonate elevations within less than 1.6 min. Therefore, this approach is not suitable to study systemic phytohormone changes in the whole plant. By developing a new method where leaves are frozen first and subsequently cut, sampling-induced phytohormone elevations could be reduced. Using this new method, we show that jasmonic acid and its active isoleucine conjugate (jasmonoyl-isoleucine) are involved in the fast systemic wound response of Arabidopsis. A systemic induction of the jasmonates’ precursor, 12-oxo-phytodienoic acid, was not observed throughout our treatments. The systemic phytohormone distribution pattern is strongly linked to the vascular connections between the leaves, providing further evidence that the vascular system is used for long distance-signaling in Arabidopsis. Besides already known vascular connections, we also demonstrate that the systemic distribution of jasmonate signals can be extended to distant leaves, which are systemically but indirectly connected via another vascularly connected leaf. This holistic approach covering almost the whole Arabidopsis rosette introduces a method to overcome false-positive results in systemic phytohormone determinations and demonstrates that wounding-induced long-distance signaling includes fast changes in jasmonate levels in systemic, non-treated leaves.
机译:众所周知,植物激素,尤其是茉鲸酸盐是对植物对伤害和食草动物喂养的介质的介质。他们在这种压力反应中的作用在很大程度上在治疗的叶片本地研究。然而,较少是关于植物激素信号对这些压力的诱导的全身分布的较少。在这里,进行整体方法,以便在食草动物相关的伤口后探讨拟南芥内的玫瑰花属植物中的全身植物精神冬模式。在个体叶片中分析了不同应激相关的植物激素等不同应力相关的植物激素的水平。我们证明,通常使用叶片的常用采样方法,其中叶片是冻结的,导致假阳性结果,因为切割已经在小于1.6分钟内诱导全身嗜蛋白升高。因此,这种方法不适合研究整个植物的全身植物激素变化。通过开发一种新的方法,其中叶被冷冻并随后切割,可以减少采样诱导的植物激素升高。使用这种新方法,我们表明茉莉酸及其活性异亮氨酸缀合物(Jasmonoyl-异氨酸)参与了拟南芥的快速全身伤口响应。在我们的治疗过程中未观察到茉莉酸盐的前体,12-氧 - 植物酸12-氧杂藻酸的全身诱导。全身性植物激素分布图案与叶子之间的血管连接强烈地连接,提供了进一步的证据,即血管系统用于拟南芥中的长距离信号。除了已知的血管连接之外,我们还表明茉莉酸盐信号的全身分布可以延伸到远处叶子,其通过另一个血管连接的叶片全身而间接地连接。这种覆盖整个拟南芥玫瑰花的整体方法介绍了一种克服全身植物激素测定中的假阳性结果的方法,并证明了伤口诱导的长距离信号传导包括系统性,未处理的叶片中的茉莉酸盐水平的快速变化。

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