<--- Back to Details
First PageDocument Content
Photosynthesis / Symbiosis / Plant physiology / Endosymbiotic theory / Plastid / Eukaryote / Nucleomorph / Endosymbiont / Archaeplastida / Biology / Organelles / Microbiology
Date: 2008-05-15 11:17:02
Photosynthesis
Symbiosis
Plant physiology
Endosymbiotic theory
Plastid
Eukaryote
Nucleomorph
Endosymbiont
Archaeplastida
Biology
Organelles
Microbiology

Opinion The eukaryotic tree of life:

Add to Reading List

Source URL: myweb.dal.ca

Download Document from Source Website

File Size: 834,54 KB

Share Document on Facebook

Similar Documents

ARTICLE  OPEN doi:nature11681  Algal genomes reveal evolutionary

ARTICLE OPEN doi:nature11681 Algal genomes reveal evolutionary

DocID: 19wrb - View Document

Protist, Vol. 161, 672–687, December 2010 http://www.elsevier.de/protis Published online date 30 October 2010 PROTIST Reviews

Protist, Vol. 161, 672–687, December 2010 http://www.elsevier.de/protis Published online date 30 October 2010 PROTIST Reviews

DocID: O0XX - View Document

Chromalveolates and the Evolution of Plastids by Secondary Endosymbiosis1

Chromalveolates and the Evolution of Plastids by Secondary Endosymbiosis1

DocID: AliR - View Document

Molecular Microbiology[removed]), 1439–1449 䊏  doi:[removed]j[removed]07643.x First published online 6 April[removed]Nucleus- and nucleomorph-targeted histone proteins in a

Molecular Microbiology[removed]), 1439–1449 䊏 doi:[removed]j[removed]07643.x First published online 6 April[removed]Nucleus- and nucleomorph-targeted histone proteins in a

DocID: AhDQ - View Document

REVIEWS  Horizontal gene transfer in eukaryotic evolution Patrick J. Keeling* and Jeffrey D. Palmer‡

REVIEWS Horizontal gene transfer in eukaryotic evolution Patrick J. Keeling* and Jeffrey D. Palmer‡

DocID: Abh3 - View Document