Genomes of leafy and leafless Platanthera orchids illuminate the evolution of mycoheterotrophy

被引:0
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作者
Ming-He Li
Ke-Wei Liu
Zhen Li
Hsiang-Chia Lu
Qin-Liang Ye
Diyang Zhang
Jie-Yu Wang
Yu-Feng Li
Zhi-Ming Zhong
Xuedie Liu
Xia Yu
Ding-Kun Liu
Xiong-De Tu
Bin Liu
Yang Hao
Xing-Yu Liao
Yu-Ting Jiang
Wei-Hong Sun
Jinliao Chen
Yan-Qiong Chen
Ye Ai
Jun-Wen Zhai
Sha-Sha Wu
Zhuang Zhou
Yu-Yun Hsiao
Wan-Lin Wu
You-Yi Chen
Yu-Fu Lin
Jui-Ling Hsu
Chia-Ying Li
Zhi-Wen Wang
Xiang Zhao
Wen-Ying Zhong
Xiao-Kai Ma
Liang Ma
Jie Huang
Gui-Zhen Chen
Ming-Zhong Huang
Laiqiang Huang
Dong-Hui Peng
Yi-Bo Luo
Shuang-Quan Zou
Shi-Pin Chen
Siren Lan
Wen-Chieh Tsai
Yves Van de Peer
Zhong-Jian Liu
机构
[1] Fujian Agriculture and Forestry University,Key Laboratory of Orchid Conservation and Utilization of National Forestry and Grassland Administration at College of Landscape Architecture
[2] Fujian Agriculture and Forestry University,Fujian Colleges and Universities Engineering Research Institute of Conservation and Utilization of Natural Bioresources, College of Forestry
[3] Tsinghua University,Tsinghua
[4] Ghent University,Berkeley Shenzhen Institute (TBSI), Center for Biotechnology and Biomedicine, Shenzhen Key Laboratory of Gene and Antibody Therapy, State Key Laboratory of Chemical Oncogenomics, State Key Laboratory of Health Sciences and Technology, Inst
[5] VIB Center for Plant Systems Biology,Department of Plant Biotechnology and Bioinformatics
[6] National Cheng Kung University,Institute of Tropical Plant Sciences
[7] Zijin Baixi Provincial Nature Reserve of Guangdong,Key Laboratory of Plant Resources Conservation and Sustainable Utilization, South China Botanical Garden
[8] Chinese Academy of Sciences,Orchid Research and Development Center
[9] National Cheng Kung University,Department of Life Sciences
[10] National Cheng Kung University,Department of Applied Chemistry
[11] National Pingtung University,State Key Laboratory of Systematic and Evolutionary Botany, Institute of Botany
[12] PubBio-Tech,Center for Microbial Ecology and Genomics, Department of Biochemistry, Genetics and Microbiology
[13] Chinese Academy of Sciences,College of Horticulture, Academy for Advanced Interdisciplinary Studies
[14] University of Pretoria,Henry Fok College of Biology and Agriculture
[15] Nanjing Agricultural University,undefined
[16] Shaoguan University,undefined
来源
Nature Plants | 2022年 / 8卷
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摘要
To improve our understanding of the origin and evolution of mycoheterotrophic plants, we here present the chromosome-scale genome assemblies of two sibling orchid species: partially mycoheterotrophic Platanthera zijinensis and holomycoheterotrophic Platanthera guangdongensis. Comparative analysis shows that mycoheterotrophy is associated with increased substitution rates and gene loss, and the deletion of most photoreceptor genes and auxin transporter genes might be linked to the unique phenotypes of fully mycoheterotrophic orchids. Conversely, trehalase genes that catalyse the conversion of trehalose into glucose have expanded in most sequenced orchids, in line with the fact that the germination of orchid non-endosperm seeds needs carbohydrates from fungi during the protocorm stage. We further show that the mature plant of P. guangdongensis, different from photosynthetic orchids, keeps expressing trehalase genes to hijack trehalose from fungi. Therefore, we propose that mycoheterotrophy in mature orchids is a continuation of the protocorm stage by sustaining the expression of trehalase genes. Our results shed light on the molecular mechanism underlying initial, partial and full mycoheterotrophy.
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页码:373 / 388
页数:15
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