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细胞分裂素促进高山南芥多年生茎区的次生生长和养分储存。

Cytokinin-promoted secondary growth and nutrient storage in the perennial stem zone of Arabis alpina.

机构信息

Institute of Botany, Heinrich Heine University, Düsseldorf, D-40225, Germany.

Cluster of Excellence on Plant Science (CEPLAS), Heinrich Heine University, Düsseldorf, Germany.

出版信息

Plant J. 2021 Mar;105(6):1459-1476. doi: 10.1111/tpj.15123. Epub 2021 Feb 1.

Abstract

Perennial plants maintain their lifespan through several growth seasons. Arabis alpina serves as a model Brassicaceae species to study perennial traits. Lateral stems of A. alpina have a proximal vegetative zone with a dormant bud zone and a distal senescing seed-producing inflorescence zone. We addressed how this zonation is distinguished at the anatomical level, whether it is related to nutrient storage and which signals affect the zonation. We found that the vegetative zone exhibits secondary growth, which we termed the perennial growth zone (PZ). High-molecular-weight carbon compounds accumulate there in cambium and cambium derivatives. Neither vernalization nor flowering were requirements for secondary growth and the sequestration of storage compounds. The inflorescence zone with only primary growth, termed the annual growth zone (AZ), or roots exhibited different storage characteristics. Following cytokinin application cambium activity was enhanced and secondary phloem parenchyma was formed in the PZ and also in the AZ. In transcriptome analysis, cytokinin-related genes represented enriched gene ontology terms and were expressed at a higher level in the PZ than in the AZ. Thus, A. alpina primarily uses the vegetative PZ for nutrient storage, coupled to cytokinin-promoted secondary growth. This finding lays a foundation for future studies addressing signals for perennial growth.

摘要

多年生植物通过几个生长季节来维持其寿命。拟南芥(Arabis alpina)作为研究多年生特性的模式拟南芥科物种。拟南芥的侧茎具有近端营养生长区、休眠芽区和远端衰老的种子生殖花序区。我们研究了这种分区在解剖学水平上是如何区分的,它是否与营养物质储存有关,以及哪些信号影响分区。我们发现,营养生长区表现出次生生长,我们称之为多年生生长区(PZ)。高分子量的碳化合物在形成层和形成层衍生物中积累。次生生长和贮藏化合物的隔离既不需要春化也不需要开花。只有初生生长的花序区,称为一年生生长区(AZ)或根,表现出不同的贮藏特性。细胞分裂素处理后,PZ 和 AZ 中形成了次生韧皮部薄壁组织,同时增强了形成层的活性。在转录组分析中,细胞分裂素相关基因代表了富集的基因本体术语,并在 PZ 中的表达水平高于 AZ。因此,拟南芥主要使用营养生长的 PZ 进行营养物质储存,并与细胞分裂素促进的次生生长相耦合。这一发现为未来研究多年生生长的信号奠定了基础。

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