Maria Jose Clemente-Moreno
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Explore the profile of Maria Jose Clemente-Moreno including associated specialties, affiliations and a list of published articles.
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18
Citations
229
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Recent Articles
1.
Cell wall composition in relation to photosynthesis across land plants' phylogeny: crops as outliers
Roig-Oliver M, Flexas J, Clemente-Moreno M, Carriqui M
New Phytol
. 2025 Jan;
PMID: 39763112
No abstract available.
2.
Quintanilla L, Aranda I, Clemente-Moreno M, Pons-Perpinya J, Gago J
Plants (Basel)
. 2023 Apr;
12(7).
PMID: 37050155
Theoretically, the coexistence of diploids and related polyploids is constrained by reproductive and competitive mechanisms. Although niche differentiation can explain the commonly observed co-occurrence of cytotypes, the underlying ecophysiological differentiation...
3.
Gago J, Nadal M, Clemente-Moreno M, Figueroa C, Medeiros D, Cubo-Ribas N, et al.
J Exp Bot
. 2023 Mar;
74(8):2620-2637.
PMID: 36880307
Deschampsia antarctica is one of the only two native vascular plants in Antarctica, mostly located in the ice-free areas of the Peninsula's coast and adjacent islands. This region is characterized...
4.
Del-Saz N, Iglesias-Sanchez A, Alonso-Forn D, Lopez-Gomez M, Palma F, Clemente-Moreno M, et al.
Front Plant Sci
. 2022 Jun;
13:833113.
PMID: 35656009
In plants salt and water stress result in an induction of respiration and accumulation of stress-related metabolites (SRMs) with osmoregulation and osmoprotection functions that benefit photosynthesis. The synthesis of SRMs...
5.
Clemente-Moreno M, Omranian N, Saez P, Figueroa C, Del-Saz N, Elso M, et al.
Plant Cell Environ
. 2020 Feb;
43(6):1376-1393.
PMID: 32012308
The species Deschampsia antarctica (DA) is one of the only two native vascular species that live in Antarctica. We performed ecophysiological, biochemical, and metabolomic studies to investigate the responses of...
6.
Garcia G, Clemente-Moreno M, Diaz-Vivancos P, Garcia M, Hernandez J
Antioxidants (Basel)
. 2020 Jan;
9(1).
PMID: 31940899
The response of apoplastic antioxidant systems in root and leaf tissues from two onion genotypes ('Texas 502', salt-sensitive and 'Granex 429', salt-resistant) in response to salinity was studied. Electrolyte leakage...
7.
Roig-Oliver M, Nadal M, Clemente-Moreno M, Bota J, Flexas J
J Plant Physiol
. 2019 Dec;
244:153084.
PMID: 31812907
Environmental conditions determine plants performance as they shape - among other key factors - leaf features and physiology. However, little is known regarding to the changes occurring in leaf cell...
8.
Clemente-Moreno M, Omranian N, Saez P, Figueroa C, Del-Saz N, Elso M, et al.
New Phytol
. 2019 Sep;
225(2):754-768.
PMID: 31489634
Understanding the strategies employed by plant species that live in extreme environments offers the possibility to discover stress tolerance mechanisms. We studied the physiological, antioxidant and metabolic responses to three...
9.
Gago J, Carriqui M, Nadal M, Clemente-Moreno M, Coopman R, Fernie A, et al.
Trends Plant Sci
. 2019 Aug;
24(10):947-958.
PMID: 31362860
Until recently, few data were available on photosynthesis and its underlying mechanistically limiting factors in plants, other than crops and model species. Currently, a new large pool of data from...
10.
Clemente-Moreno M, Gago J, Diaz-Vivancos P, Bernal A, Miedes E, Bresta P, et al.
Plant J
. 2019 Jun;
99(6):1031-1046.
PMID: 31215089
Mesophyll conductance (g ), the diffusion of CO from substomatal cavities to the carboxylation sites in the chloroplasts, is a highly complex trait driving photosynthesis (net CO assimilation, A )....