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Ray Ming

Showing results (231-240 of 240) with videos related to

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The New Phytologist|July 9, 2015
A roadmap for research on crassulacean acid metabolism (CAM) to enhance sustainable food and bioenergy production in a hotter, drier worldXiaohan Yang, John C Cushman, Anne M Borland, et al.
Science (New York, N.Y.)|September 6, 2014
The coffee genome provides insight into the convergent evolution of caffeine biosynthesisFrance Denoeud, Lorenzo Carretero-Paulet, Alexis Dereeper, et al.
Nature Genetics|November 3, 2015
The pineapple genome and the evolution of CAM photosynthesisRay Ming, Robert VanBuren, Ching Man Wai, et al.
Nature Genetics|May 3, 2019
The genome of cultivated peanut provides insight into legume karyotypes, polyploid evolution and crop domesticationWeijian Zhuang, Hua Chen, Meng Yang, et al.
Genome Biology|May 14, 2013
Genome of the long-living sacred lotus (Nelumbo nucifera Gaertn.)Ray Ming, Robert VanBuren, Yanling Liu, et al.
Cell Reports|June 19, 2026
Cunninghamia lanceolata genome illuminates the evolutionary dynamics of gymnospermsSi-Zu Lin, Yu Chen, Chao Wu, et al.
Nature|April 25, 2008
The draft genome of the transgenic tropical fruit tree papaya (Carica papaya Linnaeus)Ray Ming, Shaobin Hou, Yun Feng, et al.
Nature Genetics|October 10, 2018
Allele-defined genome of the autopolyploid sugarcane Saccharum spontaneum LJisen Zhang, Xingtan Zhang, Haibao Tang, et al.
Nature Genetics|November 15, 2018
Publisher Correction: Allele-defined genome of the autopolyploid sugarcane Saccharum spontaneum LJisen Zhang, Xingtan Zhang, Haibao Tang, et al.
Global Change Biology|January 1, 2020
TRY plant trait database - enhanced coverage and open accessJens Kattge, Gerhard Bönisch, Sandra Díaz, et al.
Pageof 24

Showing results (231-240 of 240) with videos related to

Sort By:
Pageof 24
You have reached the last page of results.This site can display upto 240 results.
The New Phytologist|July 9, 2015
A roadmap for research on crassulacean acid metabolism (CAM) to enhance sustainable food and bioenergy production in a hotter, drier worldXiaohan Yang, John C Cushman, Anne M Borland, et al.
Science (New York, N.Y.)|September 6, 2014
The coffee genome provides insight into the convergent evolution of caffeine biosynthesisFrance Denoeud, Lorenzo Carretero-Paulet, Alexis Dereeper, et al.
Nature Genetics|November 3, 2015
The pineapple genome and the evolution of CAM photosynthesisRay Ming, Robert VanBuren, Ching Man Wai, et al.
Nature Genetics|May 3, 2019
The genome of cultivated peanut provides insight into legume karyotypes, polyploid evolution and crop domesticationWeijian Zhuang, Hua Chen, Meng Yang, et al.
Genome Biology|May 14, 2013
Genome of the long-living sacred lotus (Nelumbo nucifera Gaertn.)Ray Ming, Robert VanBuren, Yanling Liu, et al.
Cell Reports|June 19, 2026
Cunninghamia lanceolata genome illuminates the evolutionary dynamics of gymnospermsSi-Zu Lin, Yu Chen, Chao Wu, et al.
Nature|April 25, 2008
The draft genome of the transgenic tropical fruit tree papaya (Carica papaya Linnaeus)Ray Ming, Shaobin Hou, Yun Feng, et al.
Nature Genetics|October 10, 2018
Allele-defined genome of the autopolyploid sugarcane Saccharum spontaneum LJisen Zhang, Xingtan Zhang, Haibao Tang, et al.
Nature Genetics|November 15, 2018
Publisher Correction: Allele-defined genome of the autopolyploid sugarcane Saccharum spontaneum LJisen Zhang, Xingtan Zhang, Haibao Tang, et al.
Global Change Biology|January 1, 2020
TRY plant trait database - enhanced coverage and open accessJens Kattge, Gerhard Bönisch, Sandra Díaz, et al.
Pageof 24