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蔗糖合酶决定了发育中木材的碳分配,并改变了杨树整株水平的碳流。

Sucrose synthase determines carbon allocation in developing wood and alters carbon flow at the whole tree level in aspen.

作者信息

Dominguez Pia Guadalupe, Donev Evgeniy, Derba-Maceluch Marta, Bünder Anne, Hedenström Mattias, Tomášková Ivana, Mellerowicz Ewa J, Niittylä Totte

机构信息

Umeå Plant Science Centre, Department of Forest Genetics and Plant Physiology, Swedish University of Agricultural Sciences, Umeå, 90183, Sweden.

Department of Chemistry, Umeå University, Umeå, 90187, Sweden.

出版信息

New Phytol. 2021 Jan;229(1):186-198. doi: 10.1111/nph.16721. Epub 2020 Jul 3.

Abstract

Despite the ecological and industrial importance of biomass accumulation in wood, the control of carbon (C) allocation to this tissue and to other tree tissues remain poorly understood. We studied sucrose synthase (SUS) to clarify its role in biomass formation and C metabolism at the whole tree level in hybrid aspen (Populus tremula × tremuloides). To this end, we analysed source leaves, phloem, developing wood, and roots of SUSRNAi trees using a combination of metabolite profiling, CO pulse labelling experiments, and long-term field experiments. The glasshouse grown SUSRNAi trees exhibited a mild stem phenotype together with a reduction in wood total C. The CO pulse labelling experiments showed an alteration in the C flow in all the analysed tissues, indicating that SUS affects C metabolism at the whole tree level. This was confirmed when the SUSRNAi trees were grown in the field over a 5-yr period; their stem height, diameter and biomass were substantially reduced. These results establish that SUS influences C allocation to developing wood, and that it affects C metabolism at the whole tree level.

摘要

尽管木材中生物量积累具有生态和工业重要性,但碳(C)分配到该组织和其他树木组织的控制仍知之甚少。我们研究了蔗糖合酶(SUS),以阐明其在杂交杨树(Populus tremula × tremuloides)整株水平上生物量形成和碳代谢中的作用。为此,我们结合代谢物谱分析、CO脉冲标记实验和长期田间实验,分析了SUSRNAi树的源叶、韧皮部、发育中的木材和根。温室中生长的SUSRNAi树表现出轻微的茎表型,同时木材总碳含量降低。CO脉冲标记实验表明,所有分析组织中的碳流均发生了变化,这表明SUS在整株水平上影响碳代谢。当SUSRNAi树在田间生长5年时,这一点得到了证实;它们的茎高、直径和生物量显著降低。这些结果表明,SUS影响碳向发育中木材的分配,并在整株水平上影响碳代谢。

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