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Gibberellin–Abscisic Acid Balances during Arbuscular Mycorrhiza Formation in Tomato

机译:番茄丛枝菌根形成过程中赤霉素-脱落酸的平衡

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摘要

Plant hormones have become appropriate candidates for driving functional plant mycorrhization programs, including the processes that regulate the formation of arbuscules in arbuscular mycorrhizal (AM) symbiosis. Here, we examine the role played by ABA/GA interactions regulating the formation of AM in tomato. We report differences in ABA and GA metabolism between control and mycorrhizal roots. Active synthesis and catabolism of ABA occur in AM roots. GAs level increases as a consequence of a symbiosis-induced mechanism that requires functional arbuscules which in turn is dependent on a functional ABA pathway. A negative interaction in their metabolism has been demonstrated. ABA attenuates GA-biosynthetic and increases GA-catabolic gene expression leading to a reduction in bioactive GAs. Vice versa, GA activated ABA catabolism mainly in mycorrhizal roots. The negative impact of GA3 on arbuscule abundance in wild-type plants is partially offset by treatment with ABA and the application of a GA biosynthesis inhibitor rescued the arbuscule abundance in the ABA-deficient sitiens mutant. These findings, coupled with the evidence that ABA application leads to reduce bioactive GA1, support the hypothesis that ABA could act modifying bioactive GA level to regulate AM. Taken together, our results suggest that these hormones perform essential functions and antagonize each other by oppositely regulating AM formation in tomato roots.
机译:植物激素已经成为驱动功能性植物菌根程序的合适候选者,包括调节丛枝菌根(AM)共生中丛枝形成的过程。在这里,我们检查了ABA / GA相互作用调节番茄中AM形成的作用。我们报告控制和菌根之间的ABA和GA代谢差异。 ABA的主动合成和分解代谢发生在AM根中。由于共生诱导的机制需要功能性丛枝,而功能性丛枝又取决于功能性ABA途径,因此GAs水平升高。已经证明它们的代谢中存在负作用。 ABA减弱GA的生物合成并增加GA分解代谢基因的表达,从而导致生物活性GA的减少。反之亦然,GA主要在菌根中激活ABA分解代谢。 GA3对野生型植物丛枝丰富度的负面影响被ABA处理部分抵消,并且GA生物合成抑制剂的应用挽救了ABA缺失西替斯突变体中的丛枝丰富度。这些发现,再加上ABA的使用会降低生物活性GA1的证据,佐证了ABA可以通过改变生物活性GA水平来调节AM的假设。两者合计,我们的结果表明,这些激素通过相反地调节番茄根中的AM形成而发挥必要的功能并互相拮抗。

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