Biology Reference
In-Depth Information
the Arabidopsis root. Proc Natl Acad Sci U S A
109:6811-6818
9. Agrawal GK, Pedreschi R, Barkla BJ et al
(2012) Translational plant proteomics: a per-
spective. J Proteomics 75:4588-4601
10. Xu XM, Moller SG (2011) The value of
Arabidopsis research in understanding human
disease states. Curr Opin Biotechnol
22:300-307
11. Weckwerth W (2011) Green systems biology:
from single genomes, proteomes and metabo-
lomes to ecosystems research and biotechnol-
ogy. J Proteomics 75:284-305
12. Cánovas FM, Dumas-Gaudot E, Recorbet G
(2004) Plant proteome analysis. Proteomics
4:285-298
13. Rossignol M, Peltier JB, Mock HP (2006)
Plant proteome analysis: a 2004-2006 update.
Proteomics 6:5529-5548
14. Jorrin JV, Rubiales D, Dumas-Gaudot E
(2006) Proteomics: a promising approach to
study biotic stresses in legumes. A review.
Euphytica 147:37-47
15. Rispail N, Dita MA, González verdejo N et al
(2007) Plant resistance to parasitic plants:
molecular approaches to an old foe. New
Phytol 173:703-712
16. Jorrin Novo J, Maldonado AM, Castillejo MA
(2007) Plant proteome analysis: a 2006
update. Proteomics 7:2947-2962
17. Jorrin Novo J, Maldonado AM, Echevarria
Zomeño S et al (2009) Plant proteomics
update (2007-2008). Second generation pro-
teomic techniques, an appropiate experimental
design and data analysis to fulfi ll MIAPE stan-
dards, increase plant proteome coverage and
biological
the coming decade: report of roundtable dis-
cussions at the 4th EuPA scientifi c meeting,
Portugal, Estoril 2010. J Proteomics 75:4-17
21. Valledor L, Jorrin JV (2011) Back to the
basics: maximizing the information obtained
by quantitative two dimensional gel electro-
phoresis analyses by an appropriate experimen-
tal design and statistical analyses. J Proteomics
74:1-18
22. González-Fernández R, Jorrin-Novo JV
(2012) Contribution of proteomics to the
study of plant pathogenic fungi. J Proteome
Res 11:3-16
23. Salamanca G, Rodriguez R, Quiralte J et al
(2010) Pectin methylesterases of pollen tissue,
a major allergen in olive tree. FEBS J
277:2729-2739
24. Liu CW, Hsu Y-K, Cheng Y-H et al (2012)
Proteomic analysis of salt-responsive ubiquitin-
related proteins in rice roots. Rapid Commun
Mass Spectrom 26:1649-1660
25. Bantscheff M, Lemeer S, Savitski MM et al
(2012) Quantitative mass spectrometry in pro-
teomics: critical review update from 2007 to
the present. Anal Bioanal Chem 404:939-965
26. Cappadona S, Baker PR, Cutillas PR et al
(2012) Current challenges in software solu-
tions for mass spectrometry-based quantitative
proteomics. Amino Acids 43:1087-1108
27. Ghaemmaghami S, Huh W-K, Bower K et al
(2003) Global analysis of protein expression in
yeast. Nature 425:737-741
28. Zhang QC, Petrey D, Deng L et al (2012)
Structure-based prediction of protein-protein.
Nature. doi: 10.1038/nature11503
29. Kaundal R, Saini R, Zhao PX (2010)
Combining machine learning and homology-
based approaches to accurately predict subcel-
lular localization in Arabidopsis. Plant Physiol
154:36-54
30. Tran JC, Zamdborg L, Ahlf DR (2011)
Mapping intact protein isoforms in discovery
mode using top-down proteomics. Nature
480:254-258
31. Wu C, Tran JC, Zamdborg L (2012) A prote-
ase for “middle-down” proteomics. Nat
Methods 9:822
knowledge.
J
Proteomics
72:285-314
18. Whitelegge JP, Komatsu S, Jorrin-Novo JV
(2011) Diverse facets of plant proteomics.
Phytochemistry 72:961-962, Editorial
19. Abril N, Gion J-M, Kerner R et al (2011)
Proteomics research on forest trees, the most
recalcitrant and orphan plant species.
Phytochemistry 72:1219-1242
20. Cox J, Heeren RMA, James P et al (2011)
Facing challenges in proteomics today and in
Search WWH ::




Custom Search