2019South African Journal of BotanyOpen access

Changes in the morphology of the bud meristem and the levels of endogenous hormones after low temperature treatment of different Phalaenopsis cultivars

Yuhan Zhang, A. Li, X.Q. Liu, Jingzhe Sun, Woei‐Jiun Guo, J.W. Zhang, Yu‐Shu Lyu

Open full text 24 citations

Abstract

Phalaenopsis (Orchidaceae) is one of the most popular and trendy potted plants in the world. In order to achieve a better understanding of the influence of cold treatment to flowering, the morphological and hormonal changes were determined in three Phalaenopsis cultivars during flower bud differentiation and development. It was found that the three cultivars were all coordinated by the cold-induced release of reproductive bud dormancy, which was vernalisation pathway. The morphological development of flower bud differentiation was similar in Phalaenopsis cultivars: flower organ differentiation began with the formation of the outer petal primordia, followed by the inner petal primordia and finally, by the lip and column (stamen and carpel) primordia. The earlier the flower bud started differentiation, the earlier the flower bloomed. The timing of inflorescence primordium differentiation and flower bud development was controlled by plant hormones. It was found that ABA and GA3 levels of apical meristems of stalk before flower bud differentiation was high. High levels of IAA and ZR controlled the vegetative growth phase and the floral inductive phase, like the elongation of stalk.

Open-access reader

About this research paper

What this paper is about

Phalaenopsis (Orchidaceae) is one of the most popular and trendy potted plants in the world. In order to achieve a better understanding of the influence of cold treatment to flowering, the morphological and hormonal changes were determined in three Phalaenopsis cultivars during flower bud differentiation and development. It was found that the three cultivars were all coordinated by the cold-induced release of reproductive bud dormancy, which was vernalisation pathway. The morphological development of flower bud differentiation was similar in Phalaenopsis cultivars: flower organ differentiation began with the formation of the outer petal primordia, followed by the inner petal primordia and finally, by the lip and column (stamen and carpel) primordia. The earlier the flower bud started differentiation, the earlier the flower bloomed. The timing of inflorescence primordium differentiation and flower bud development was controlled by plant hormones. It was found that ABA and GA3 levels of apical meristems of stalk before flower bud differentiation was high. High levels of IAA and ZR controlled the vegetative growth phase and the floral inductive phase, like the elongation of stalk.

Why it matters

OpenAlex reports 24 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Phalaenopsis (Orchidaceae) is one of the most popular and trendy potted plants in the world. In order to achieve a better understanding of the influence of cold treatment to flowering, the morphological and hormonal changes were determined in three Phalaenopsis cultivars during flower bud differentiation and development. It was found that the three cultivars were all coordinated by the cold-induced release of reproductive bud dormancy, which was vernalisation pathway. The morphological development of flower bud differentiation was similar in Phalaenopsis cultivars: flower organ differentiation began with the formation of the outer petal primordia, followed by the inner petal primordia and finally, by the lip and column (stamen and carpel) primordia. The earlier the flower bud started differentiation, the earlier the flower bloomed. The timing of inflorescence primordium differentiation and flower bud development was controlled by plant hormones. It was found that ABA and GA3 levels of apical meristems of stalk before flower bud differentiation was high. High levels of IAA and ZR controlled the vegetative growth phase and the floral inductive phase, like the elongation of stalk.

Key concepts: Primordium, Phalaenopsis, Biology, Gynoecium, Petal, Bud, Meristem, Stamen

Related papers

Back to paper searchBrowse research topicsOriginal source
Changes in the morphology of the bud meristem and the levels of endogenous hormones after low temperature treatment of different Phalaenopsis cultivars — Research Paper | ScholarLens