Three-dimensional reconstruction and multiomics analysis reveal a unique pattern of embryogenesis in Ginkgo biloba

Author:

Ma Lingyu123ORCID,Hu Zijian12ORCID,Shen Weiwei12,Zhang Yingying12,Wang Guangchao12ORCID,Chang Bang4ORCID,Lu Jinkai4ORCID,Cui Yaning12,Xu Huimin5ORCID,Feng Yun6,Jin Biao4ORCID,Zhang Xi12ORCID,Wang Li4ORCID,Lin Jinxing12ORCID

Affiliation:

1. State Key Laboratory of Tree Genetics and Breeding, National Engineering Research Center of Tree Breeding and Ecological Restoration, Key Laboratory of Genetics and Breeding in Forest Trees and Ornamental Plants, Ministry of Education, College of Biological Sciences and Technology, Beijing Forestry University , Beijing 100083 , China

2. Institute of Tree and Genome Editing, Beijing Forestry University , Beijing 100083 , China

3. Research Institute of Wood Industry, Chinese Academy of Sciences , Beijing 100091 , China

4. College of Horticulture and Landscape Architecture, Yangzhou University , Yangzhou 225009 , China

5. College of Biological Sciences, China Agricultural University , Beijing 100193 , China

6. Center for Biological Imaging, Institute of Biophysics, Chinese Academy of Sciences , Beijing 100101 , China

Abstract

Abstract Ginkgo (Ginkgo biloba L.) is one of the earliest extant species in seed plant phylogeny. Embryo development patterns can provide fundamental evidence for the origin, evolution, and adaptation of seeds. However, the architectural and morphological dynamics during embryogenesis in G. biloba remain elusive. Herein, we obtained over 2,200 visual slices from 3 stages of embryo development using micro-computed tomography imaging with improved staining methods. Based on 3-dimensional (3D) spatiotemporal pattern analysis, we found that a shoot apical meristem with 7 highly differentiated leaf primordia, including apical and axillary leaf buds, is present in mature Ginkgo embryos. 3D rendering from the front, top, and side views showed 2 separate transport systems of tracheids located in the hypocotyl and cotyledon, representing a unique pattern of embryogenesis. Furthermore, the morphological dynamic analysis of secretory cavities indicated their strong association with cotyledons during development. In addition, we identified genes GbLBD25a (lateral organ boundaries domain 25a), GbCESA2a (cellulose synthase 2a), GbMYB74c (myeloblastosis 74c), GbPIN2 (PIN-FORMED 2) associated with vascular development regulation, and GbWRKY1 (WRKYGOK 1), GbbHLH12a (basic helix–loop–helix 12a), and GbJAZ4 (jasmonate zim-domain 4) potentially involved in the formation of secretory cavities. Moreover, we found that flavonoid accumulation in mature embryos could enhance postgerminative growth and seedling establishment in harsh environments. Our 3D spatial reconstruction technique combined with multiomics analysis opens avenues for investigating developmental architecture and molecular mechanisms during embryogenesis and lays the foundation for evolutionary studies of embryo development and maturation.

Funder

Beijing Municipal Natural Science Foundation

National Natural Science Foundation of China

Fundamental Research Funds for the Central Universities

Program of Introducing Talents of Discipline to Universities

Publisher

Oxford University Press (OUP)

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1. Visualizing embryogenesis in the seed;Plant Physiology;2024-05-22

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