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New strigolactone analogs as plant hormones with low activities in the rhizosphere.

机译:新的草酸内酯类似物作为植物激素,在根际中的活性较低。

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Strigolactones (SLs) are known not only as plant hormones, but also as rhizosphere signals for establishing symbiotic and parasitic interactions. The design of new specific SL analogs is a challenging goal in understanding the basic plant biology and is also useful to control plant architectures without favoring the development of parasitic plants. Two different molecules (23 (3'-methyl-GR24), 31 (thia-3'-methyl-debranone-like molecule)) already described, and a new one (AR36), for which the synthesis is presented, are biologically compared with the well-known GR24 and the recently identified CISA-1. These different structures emphasize the wide range of parts attached to the D-ring for the bioactivity as a plant hormone. These new compounds possess a common dimethylbutenolide motif but their structure varies in the ABC part of the molecules: 23 has the same ABC part as GR24, while 31 and AR36 carry, respectively, an aromatic ring and an acyclic carbon chain. Detailed information is given for the bioactivity of such derivatives in strigolactone synthesis or in perception mutant plants (pea rms1 and rms4, Arabidopsis max2 and, max4) for different hormonal functions along with their action in the rhizosphere on arbuscular mycorrhizal hyphal growth and parasitic weed germination.
机译:Strigolactones(SLs)不仅被称为植物激素,而且还被视为用于建立共生和寄生相互作用的根际信号。新的特定SL类似物的设计是理解植物基本生物学的一项具有挑战性的目标,并且在控制植物结构而不有助于寄生植物的发展方面也很有用。在生物学上比较了已经描述的两个不同分子(23个(3'-甲基-GR24),31个(thia-3'-甲基-地勃龙样分子)和一个新的(AR36)分子,该分子已提出合成方法与著名的GR24和最近确定的CISA-1。这些不同的结构强调了与D环相连的各部分的广泛作用,以作为植物激素发挥生物活性。这些新化合物具有共同的二甲基丁烯内酯基序,但它们的结构在分子的ABC部分中有所不同:23与GR24具有相同的ABC部分,而31和AR36分别带有芳环和无环碳链。给出了有关此类衍生物在链内酯内酯合成或感知突变植物(豌豆rms1和rms4,拟南芥max2和max4)中具有不同激素功能的生物活性的详细信息,以及它们在根际中对丛枝菌根菌丝生长和寄生性杂草萌发的作用。 。

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