Advances and prospects of orchid research and industrialization

Author:

Zhang Diyang1ORCID,Zhao Xue-Wei12ORCID,Li Yuan-Yuan1ORCID,Ke Shi-Jie12ORCID,Yin Wei-Lun3ORCID,Lan Siren1ORCID,Liu Zhong-Jian1ORCID

Affiliation:

1. Fujian Agriculture and Forestry University Key Laboratory of National Forestry and Grassland Administration for Orchid Conservation and Utilization at College of Landscape Architecture, , Fuzhou 350002, China

2. Fujian Agriculture and Forestry University College of Forestry, , Fuzhou 350002, China

3. Beijing Forestry University College of Biological Sciences and Technology, , Beijing 100083, China

Abstract

Abstract Orchidaceae is one of the largest, most diverse families in angiosperms with significant ecological and economical values. Orchids have long fascinated scientists by their complex life histories, exquisite floral morphology and pollination syndromes that exhibit exclusive specializations, more than any other plants on Earth. These intrinsic factors together with human influences also make it a keystone group in biodiversity conservation. The advent of sequencing technologies and transgenic techniques represents a quantum leap in orchid research, enabling molecular approaches to be employed to resolve the historically interesting puzzles in orchid basic and applied biology. To date, 16 different orchid genomes covering four subfamilies (Apostasioideae, Vanilloideae, Epidendroideae, and Orchidoideae) have been released. These genome projects have given rise to massive data that greatly empowers the studies pertaining to key innovations and evolutionary mechanisms for the breadth of orchid species. The extensive exploration of transcriptomics, comparative genomics, and recent advances in gene engineering have linked important traits of orchids with a multiplicity of gene families and their regulating networks, providing great potential for genetic enhancement and improvement. In this review, we summarize the progress and achievement in fundamental research and industrialized application of orchids with a particular focus on molecular tools, and make future prospects of orchid molecular breeding and post-genomic research, providing a comprehensive assemblage of state of the art knowledge in orchid research and industrialization.

Publisher

Oxford University Press (OUP)

Subject

Horticulture,Plant Science,Genetics,Biochemistry,Biotechnology

Reference237 articles.

1. An updated classification of Orchidaceae;Chase;Bot J Linn Soc.,2015

2. The number of known plants species in the world and its annual increase;Christenhusz;Phytotaxa.,2016

3. The genome sequence of the orchid Phalaenopsis equestris;Cai;Nat Genet.,2015

4. Orchid conservation: from theory to practice;Phillips;Ann Bot.,2020

5. The CITES appendices;CITES,2021

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