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己糖激酶1信号传导促进枝条分枝,并与细胞分裂素和独脚金内酯途径相互作用。

HEXOKINASE1 signalling promotes shoot branching and interacts with cytokinin and strigolactone pathways.

作者信息

Barbier Francois F, Cao Da, Fichtner Franziska, Weiste Christoph, Perez-Garcia Maria-Dolores, Caradeuc Mathieu, Le Gourrierec José, Sakr Soulaiman, Beveridge Christine A

机构信息

School of Biological Sciences, The University of Queensland, St Lucia, Qld, 4072, Australia.

Institut Agro, INRAE, IRHS, SFR QUASAV, Université Angers, Angers, 49000, France.

出版信息

New Phytol. 2021 Aug;231(3):1088-1104. doi: 10.1111/nph.17427. Epub 2021 Jun 2.

Abstract

Plant architecture is controlled by several endogenous signals including hormones and sugars. However, only little information is known about the nature and roles of the sugar signalling pathways in this process. Here we test whether the sugar signalling pathway mediated by HEXOKINASE1 (HXK1) is involved in the control of shoot branching. To test the involvement of HXK1 in shoot branching and in the hormonal network controlling this process, we modulated the HXK1 pathway using physiological and genetic approaches in rose, pea and arabidopsis. Mannose-induced HXK signalling triggered bud outgrowth in rose and pea. In arabidopsis, both HXK1 deficiency and defoliation led to decreased shoot branching and conferred hypersensitivity to auxin. Complementation of the HXK1 knockout mutant gin2 with a catalytically inactive HXK1, restored shoot branching to the wild-type level. HXK1-deficient plants displayed decreased cytokinin levels and increased expression of MAX2, which is required for strigolactone signalling. The branching phenotype of HXK1-deficient plants could be partly restored by cytokinin treatment and strigolactone deficiency could override the negative impact of HXK1 deficiency on shoot branching. Our observations demonstrate that HXK1 signalling contributes to the regulation of shoot branching and interacts with hormones to modulate plant architecture.

摘要

植物形态受多种内源性信号控制,包括激素和糖类。然而,关于糖类信号通路在这一过程中的性质和作用,我们所知甚少。在此,我们测试了由己糖激酶1(HXK1)介导的糖类信号通路是否参与调控枝条分枝。为了测试HXK1在枝条分枝以及控制这一过程的激素网络中的作用,我们在玫瑰、豌豆和拟南芥中采用生理学和遗传学方法调节HXK1通路。甘露糖诱导的HXK信号触发了玫瑰和豌豆的芽生长。在拟南芥中,HXK1缺失和去叶均导致枝条分枝减少,并使其对生长素超敏感。用无催化活性的HXK1对HXK1基因敲除突变体gin2进行互补,可使枝条分枝恢复到野生型水平。HXK1缺陷型植株的细胞分裂素水平降低,独脚金内酯信号传导所需的MAX2表达增加。细胞分裂素处理可部分恢复HXK1缺陷型植株的分枝表型,独脚金内酯缺乏可抵消HXK1缺乏对枝条分枝的负面影响。我们的观察结果表明,HXK1信号有助于调控枝条分枝,并与激素相互作用以调节植物形态。

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