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Chlamydiae Has Contributed at Least 55 Genes to Plantae with Predominantly Plastid Functions
www.plosone.org
PLoS ONE 3(5): e2205. doi:10.1371/journal.pone.0002205
 
Solute transporters of the plastid envelope membrane.
Andreas P.M. Weber, Rainer Schwacke, and Ulf-Ingo Flugge
Annual Review of Plant Biology 56 (1), 133-64 (01 Jun 2005)
 
Dynamic morphology of plastids and stromules in angiosperm plants
Maureen Hanson and Amirali Sattarzadeh
Plant, Cell & Environment 31 (5), 646-57 (01 May 2008)
 
Dual Role of the Plastid Terminal Oxidase in Tomato
Maryam Shahbazi et al.
PLANT PHYSIOLOGY 145 (3), 691-702 (01 Nov 2007)
 
Altered cytokinin metabolism affects cytokinin, auxin, and abscisic acid contents in leaves and chloroplasts, and chloroplast ultrastructure in transgenic tobacco.[J Exp Bot. 2007]
Altered cytokinin metabolism affects cytokinin auxin and abscisic acid contents in leaves and chloroplasts and chloroplast ultrastructure in transgenic tobacco
Lenka Polanská et al.
Journal of experimental botany 58 (3), 637-49 (2007)
Cytokinins (CKs) are involved in the regulation of plant development including plastid differentiation and function. Partial location of CK biosynthetic pathways in plastids suggests the importance of CKs for chloroplast development. The impact of genetically modified CK metabolism on endogenous CK, indole-3-acetic acid, and abscisic acid contents in leaves and isolated intact chloroplasts of Nicotiana tabacum was determined by liquid chromatography/mass spectrometry and two-dimensional high-performance liquid chromatography, and alterations in chloroplast ultrastructure by electron microscopy. Ectopic expression of Sho, a gene encoding a Petunia hybrida isopentenyltransferase, was employed to raise CK levels. The increase in CK levels was lower in chloroplasts than in leaves. CK levels were reduced in leaves of tobacco harbouring a CK oxidase/dehydrogenase gene, AtCKX3. The total CK content also decreased in chloroplasts, but CK phosphate levels were higher than in the wild type. In a transformant overexpressing a maize beta-glucosidase gene, Zm-p60.1, naturally targeted to plastids, a decrease of CK-O-glucosides in chloroplasts was found. In leaves, the changes were not significant. CK-O-glucosides accumulated to very high levels in leaves, but not in chloroplasts, of plants overexpressing a ZOG1 gene, encoding trans-zeatin-O-glucosyltransferase from Phaseolus lunatus. Manipulation of the CK content affected levels of indole-3-acetic and abscisic acid. Chloroplasts of plants constitutively overexpressing Sho displayed ultrastructural alterations including the occasional occurrence of crystalloids and an increased number of plastoglobuli. The other transformants did not exhibit any major differences in chloroplast ultrastructure. The results suggest that plant hormone compartmentation plays an important role in hormone homeostasis and that chloroplasts are rather independent organelles with respect to regulation of CK metabolism.
Posted by lilian to Plastids cytokinin tobacco on Mon Jun 11 2007 at 17:32 UTC | info | related
 
Evolution of the chloroplast genome.
Christopher J Howe et al.
Philosophical transactions of the Royal Society of London. Series B, Biological sciences 358 (1429), 99-106; discussion 106-7 (29 Jan 2003)
Posted by lru to Plastids genome on Thu Apr 26 2007 at 21:54 UTC | info | related
 
Gene transfer from organelles to the nucleus: frequent and in big chunks.
William Martin
Proceedings of the National Academy of Sciences of the United States of America 100 (15), 8612-4 (22 Jul 2003)
Posted by lru and 2 others to Plastids genome on Thu Apr 26 2007 at 21:54 UTC | info | related
 
Genomics and chloroplast evolution: what did cyanobacteria do for plants?
John Raven and John Allen
Genome biology 4 (3), 209 (2003)
Posted by lru to Plastids genome on Thu Apr 26 2007 at 21:26 UTC | info | related
 
Gene replacement of fructose-1,6-bisphosphate aldolase supports the hypothesis of a single photosynthetic ancestor of chromalveolates.
Gene Replacement of Fructose16Bisphosphate Aldolase Supports the Hypothesis of a Single Photosynthetic Ancestor of Chromalveolates
Eukaryotic Cell 3 (5), 1169 (2004)
Plastids (photosynthetic organelles of plants and algae) are known to have spread between eukaryotic lineages by secondary endosymbiosis, that is, by the uptake of a eukaryotic alga by another eukaryote. But the number of times this has taken place is controversial. This is particularly so in the case of eukaryotes with plastids derived from red algae, which are numerous and diverse. Despite their diversity, it has been suggested that all these eukaryotes share a recent common ancestor and that their plastids originated in a single endosymbiosis, the so-called chromalveolate hypothesis. Here we describe a novel molecular character that supports the chromalveolate hypothesis. Fructose-1,6-bisphosphate aldolase (FBA) is a glycolytic and Calvin cycle enzyme that exists as two nonhomologous types, class I and class II. Red algal plastid-targeted FBA is a class I enzyme related to homologues from plants and green algae, and it would be predicted that the plastid-targeted FBA from algae with red algal secondary endosymbionts should be related to this class I enzyme. However, we show that plastid-targeted FBA of heterokonts, cryptomonads, haptophytes, and dinoflagellates (all photosynthetic chromalveolates) are class II plastid-targeted enzymes, completely unlike those of red algal plastids. The chromalveolate enzymes form a strongly supported group in FBA phylogeny, and their common possession of this unexpected plastid characteristic provides new evidence for their close relationship and a common origin for their plastids.

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