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  4. The pineapple genome and the evolution of CAM photosynthesis
 
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The pineapple genome and the evolution of CAM photosynthesis

Journal
Nature genetics
Journal Volume
47
Journal Issue
12
Date Issued
2015-12
Author(s)
Ming, Ray
VanBuren, Robert
Wai, Ching Man
Tang, Haibao
Schatz, Michael C
Bowers, John E
Lyons, Eric
Wang, Ming-Li
Chen, Jung
Biggers, Eric
Zhang, Jisen
Huang, Lixian
Zhang, Lingmao
Miao, Wenjing
Zhang, Jian
Ye, Zhangyao
Miao, Chenyong
Lin, Zhicong
Wang, Hao
Zhou, Hongye
Yim, Won C
Priest, Henry D
Zheng, Chunfang
Woodhouse, Margaret
Edger, Patrick P
Guyot, Romain
Guo, Hao-Bo
Guo, Hong
Zheng, Guangyong
Singh, Ratnesh
Sharma, Anupma
Min, Xiangjia
Zheng, Yun
Lee, Hayan
Gurtowski, James
Sedlazeck, Fritz J
Harkess, Alex
McKain, Michael R
Liao, Zhenyang
Fang, Jingping
Liu, Juan
Zhang, Xiaodan
Zhang, Qing
Hu, Weichang
Qin, Yuan
Wang, Kai
Chen, Li-Yu
Shirley, Neil
Yann Rong Lin  
Li Yu Liu  
Hernandez, Alvaro G
Wright, Chris L
Bulone, Vincent
Tuskan, Gerald A
Heath, Katy
Zee, Francis
Moore, Paul H
Sunkar, Ramanjulu
Leebens-Mack, James H
Mockler, Todd
Bennetzen, Jeffrey L
Freeling, Michael
Sankoff, David
Paterson, Andrew H
Zhu, Xinguang
Yang, Xiaohan
Smith, J Andrew C
Cushman, John C
Paull, Robert E
Yu, Qingyi
DOI
10.1038/ng.3435
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/535441
Abstract
Pineapple (Ananas comosus (L.) Merr.) is the most economically valuable crop possessing crassulacean acid metabolism (CAM), a photosynthetic carbon assimilation pathway with high water-use efficiency, and the second most important tropical fruit. We sequenced the genomes of pineapple varieties F153 and MD2 and a wild pineapple relative, Ananas bracteatus accession CB5. The pineapple genome has one fewer ancient whole-genome duplication event than sequenced grass genomes and a conserved karyotype with seven chromosomes from before the ρ duplication event. The pineapple lineage has transitioned from C3 photosynthesis to CAM, with CAM-related genes exhibiting a diel expression pattern in photosynthetic tissues. CAM pathway genes were enriched with cis-regulatory elements associated with the regulation of circadian clock genes, providing the first cis-regulatory link between CAM and circadian clock regulation. Pineapple CAM photosynthesis evolved by the reconfiguration of pathways in C3 plants, through the regulatory neofunctionalization of preexisting genes and not through the acquisition of neofunctionalized genes via whole-genome or tandem gene duplication.
Type
journal article

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