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双子叶植物根中独脚金内酯水平由该基因家族一个受共生调控的祖先分支决定。

Strigolactone Levels in Dicot Roots Are Determined by an Ancestral Symbiosis-Regulated Clade of the Gene Family.

作者信息

Stauder Ron, Welsch Ralf, Camagna Maurizio, Kohlen Wouter, Balcke Gerd U, Tissier Alain, Walter Michael H

机构信息

Department of Cell and Metabolic Biology, Leibniz-Institute of Plant Biochemistry, Halle, Germany.

Institute of Biology II, Faculty of Biology, University of Freiburg, Freiburg, Germany.

出版信息

Front Plant Sci. 2018 Mar 1;9:255. doi: 10.3389/fpls.2018.00255. eCollection 2018.

Abstract

Strigolactones (SLs) are apocarotenoid phytohormones synthesized from carotenoid precursors. They are produced most abundantly in roots for exudation into the rhizosphere to cope with mineral nutrient starvation through support of root symbionts. Abscisic acid (ABA) is another apocarotenoid phytohormone synthesized in roots, which is involved in responses to abiotic stress. Typically low carotenoid levels in roots raise the issue of precursor supply for the biosynthesis of these two apocarotenoids in this organ. Increased ABA levels upon abiotic stress in Poaceae roots are known to be supported by a particular isoform of phytoene synthase (PSY), catalyzing the rate-limiting step in carotenogenesis. Here we report on novel isogenes from () and () strongly expressed exclusively upon root interaction with symbiotic arbuscular mycorrhizal (AM) fungi and moderately in response to phosphate starvation. They belong to a widespread clade of conserved PSYs restricted to dicots (dPSY3) distinct from the Poaceae-PSY3s involved in ABA formation. An ancient origin of dPSY3s and a potential co-evolution with the AM symbiosis is discussed in the context of PSY evolution. Knockdown of in hairy roots of strongly reduced SL and AM-induced C α-ionol/C mycorradicin apocarotenoids. Inhibition of the reaction subsequent to phytoene synthesis revealed strongly elevated levels of phytoene indicating induced flux through the carotenoid pathway in roots upon mycorrhization. d isogenes are coregulated with upstream isogenes and downstream carotenoid cleavage steps toward SLs (, , ) suggesting a combined carotenoid/apocarotenoid pathway, which provides "just in time"-delivery of precursors for apocarotenoid formation.

摘要

独脚金内酯(SLs)是一类由类胡萝卜素前体合成的类胡萝卜素植物激素。它们在根中大量产生并分泌到根际,通过支持根际共生体来应对矿质营养饥饿。脱落酸(ABA)是另一种在根中合成的类胡萝卜素植物激素,参与对非生物胁迫的响应。通常情况下,根中类胡萝卜素水平较低,这就引发了该器官中这两种类胡萝卜素生物合成的前体供应问题。已知禾本科植物根在非生物胁迫下ABA水平的升高是由一种特定的八氢番茄红素合成酶(PSY)同工型所支持的,该酶催化类胡萝卜素合成中的限速步骤。在这里,我们报道了来自拟南芥(Arabidopsis thaliana)和蒺藜苜蓿(Medicago truncatula)的新基因,这些基因仅在根与共生丛枝菌根(AM)真菌相互作用时强烈表达,在磷饥饿时适度表达。它们属于一个广泛存在的保守PSY进化枝,仅限于双子叶植物(dPSY3),与参与ABA形成的禾本科PSY3不同。在PSY进化的背景下,讨论了dPSY3的古老起源以及与AM共生的潜在共同进化。在蒺藜苜蓿毛状根中敲低MtDPSY3会强烈降低SL以及AM诱导的C11-α-紫罗兰醇/C11-菌根红素类胡萝卜素。对八氢番茄红素合成后反应的抑制表明八氢番茄红素水平大幅升高,这表明菌根形成时根中类胡萝卜素途径的通量增加。MtDPSY3基因与上游基因以及向SLs合成的下游类胡萝卜素裂解步骤(CCD7、CCD8、MAX1)共同调控,这表明存在一个联合的类胡萝卜素/类胡萝卜素途径,该途径为类胡萝卜素形成提供前体的“及时”供应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d34/5838088/0e2003e1f982/fpls-09-00255-g001.jpg

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