Leonardo M Casano
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Explore the profile of Leonardo M Casano including associated specialties, affiliations and a list of published articles.
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Articles
24
Citations
293
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Recent Articles
1.
Del Campo E, Gasulla F, Hell A, Gonzalez-Hourcade M, Casano L
Microb Ecol
. 2023 Apr;
86(3):1725-1739.
PMID: 37039841
Desiccation tolerance (DT) is relatively frequent in non-vascular plants and green algae. However, it is poorly understood how successive dehydration/rehydration (D/R) cycles shape their transcriptomes and proteomes. Here, we report...
2.
Gasulla F, Del Campo E, Casano L, Guera A
Plants (Basel)
. 2021 Apr;
10(4).
PMID: 33923980
Lichens are symbiotic associations (holobionts) established between fungi (mycobionts) and certain groups of cyanobacteria or unicellular green algae (photobionts). This symbiotic association has been essential in the colonization of terrestrial...
3.
Vingiani G, Gasulla F, Baron-Sola A, Sobrino-Plata J, Henandez L, Casano L
Microb Ecol
. 2021 Jan;
82(2):334-343.
PMID: 33452613
Several studies on aeroterrestrial microalgae are unravelling their resistance mechanisms to different abiotic stressors, including hazardous metals, pointing to their future role as bioremediation microorganisms. In the present study, physiological...
4.
Gonzalez-Hourcade M, Del Campo E, Casano L
Microb Ecol
. 2020 Sep;
81(2):437-453.
PMID: 32989484
Trebouxia sp. (TR9) and Coccomyxa simplex (Csol) are desiccation-tolerant lichen microalgae with different adaptive strategies in accordance with the prevailing conditions of their habitats. The remodelling of cell wall and...
5.
Gonzalez-Hourcade M, Del Campo E, Braga M, Salgado A, Casano L
Environ Microbiol
. 2020 Apr;
22(8):3096-3111.
PMID: 32337764
Trebouxia sp. TR9 and Coccomyxa simplex are desiccation-tolerant microalgae with flexible cell walls, which undergo species-specific remodelling during dehydration-rehydration (D/R) due to their distinct ultrastructure and biochemical composition. Here, we...
6.
Gonzalez-Hourcade M, Braga M, Del Campo E, Ascaso C, Patino C, Casano L
Ann Bot
. 2019 Nov;
125(3):459-469.
PMID: 31679006
Background And Aims: One of the most distinctive features of desiccation-tolerant plants is their high cell wall (CW) flexibility. Most lichen microalgae can tolerate drastic dehydration-rehydration (D/R) conditions; however, their...
7.
Martinez-Alberola F, Barreno E, Casano L, Gasulla F, Molins A, Moya P, et al.
J Phycol
. 2019 Oct;
56(1):170-184.
PMID: 31578712
The Trebouxiophyceae is the class of Chlorophyta algae from which the highest number of chloroplast genome (cpDNA) sequences has been obtained. Several species in this class participate in symbioses with...
8.
Martinez-Alberola F, Barreno E, Casano L, Gasulla F, Molins A, Del Campo E
Sci Rep
. 2019 Jun;
9(1):8209.
PMID: 31160653
Trebouxiophyceae (Chlorophyta) is a species-rich class of green algae with a remarkable morphological and ecological diversity. Currently, there are a few completely sequenced mitochondrial genomes (mtDNA) from diverse Trebouxiophyceae but...
9.
Hell A, Gasulla F, Gonzi Lez-Hourcade M, Del Campo E, Centeno D, Casano L
Plant Cell Physiol
. 2019 May;
60(8):1880-1891.
PMID: 31127294
Oxidative stress is a crucial challenge for lichens exposed to cyclic desiccation and rehydration (D/R). However, strategies to overcome this potential stress are still being unraveled. Therefore, the physiological performance...
10.
Centeno D, Hell A, Braga M, Del Campo E, Casano L
Environ Microbiol
. 2016 Feb;
18(5):1546-60.
PMID: 26914009
Most lichens in general, and their phycobionts in particular, are desiccation tolerant, but their mechanisms of desiccation tolerance (DT) remain obscure. The physiological responses and cell wall features of two...