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Strigolactone Promotes Degradation of DWARF14 an α/β Hydrolase Essential for Strigolactone Signaling in Arabidopsis

机译:Strigolactone促进DWARF14的降解DWARF14是拟南芥中Strigolactone信号转导必不可少的α/β水解酶。

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摘要

Strigolactones () are phytohormones that play a central role in regulating shoot branching. perception and signaling involves the F-box protein MAX2 and the hydrolase DWARF14 (D14), proposed to act as an receptor. We used strong loss-of-function alleles of the Arabidopsis thaliana D14 gene to characterize D14 function from early axillary bud development through to lateral shoot outgrowth and demonstrated a role of this gene in the control of flowering time. Our data show that D14 distribution in vivo overlaps with that reported for MAX2 at both the tissue and subcellular levels, allowing physical interactions between these proteins. Our grafting studies indicate that neither D14 mRNA nor the protein move over a long range upwards in the plant. Like MAX2, D14 is required locally in the aerial part of the plant to suppress shoot branching. We also identified a mechanism of -induced, MAX2-dependent proteasome-mediated degradation of D14. This negative feedback loop would cause a substantial drop in perception, which would effectively limit signaling duration and intensity.
机译:Strigolactones()是植物激素,在调节枝条的分支中起着重要作用。感知和信号传导涉及F-box蛋白MAX2和水解酶DWARF14(D14),拟作为受体发挥作用。我们使用了拟南芥D14基因的功能弱等位基因来表征从早期腋芽发育到侧芽生长的D14功能,并证明了该基因在控制开花时间中的作用。我们的数据显示,D14在体内的分布与在组织和亚细胞水平上报告的MAX2重叠,从而允许这些蛋白质之间发生物理相互作用。我们的嫁接研究表明,D14 mRNA和蛋白质都不会在植物中长时间向上移动。像MAX2一样,植物的空中局部需要D14以抑制枝条分支。我们还确定了诱导,MAX2依赖蛋白酶体介导的D14降解的机制。该负反馈回路将导致感知力的大幅下降,这将有效地限制信令持续时间和强度。

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