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    Listar por autor "Kesten, Christopher"

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      • Calling for reinforcements: the role of TTL proteins in the regulación of cell wall biosynthesis 

        Percio-Vargas, Francisco; Kesten, Christopher; García-Moreno, Álvaro; Amorim-Silva, Vitor; Castillo-Garriga, AraceliAutoridad Universidad de Málaga; Ruiz-López, NoemíAutoridad Universidad de Málaga; Sánchez-Rodríguez, Clara; Botella-Mesa, Miguel ÁngelAutoridad Universidad de Málaga[et al.] (2022-09-14)
        Cellulose is the most abundant organic compound of all biomass on Earth1, with highly relevant roles in plant development and defence. Hence, it is essential to understand the regulation of its biosynthesis to improve the ...
      • Overcoming stress: new insights in the regulation of cell wall biosynthesis 

        Sánchez-Rodríguez, Clara; Percio-Vargas, Francisco; Kesten, Christopher; García-Moreno, Álvaro; Amorim-Silva, Vitor; Castillo-Garriga, AraceliAutoridad Universidad de Málaga; Ruiz-López, NoemíAutoridad Universidad de Málaga; Botella-Mesa, Miguel ÁngelAutoridad Universidad de Málaga[et al.] (2022)
        In addition to being crucial in plant development and defence, cellulose is the most abundant organic compound of all biomass on Earth1. Therefore, it is essential to elucidate the regulation of its biosynthesis to improve ...
      • Peripheral membrane proteins modulate stress tolerance by safeguarding cellulose synthases 

        Kesten, Christopher; García-Moreno, Álvaro; Amorim-Silva, Vitor; Menna, Alexandra; Castillo-Garriga, AraceliAutoridad Universidad de Málaga; Percio, Francisco; Armengot, Laia; Ruiz-López, NoemíAutoridad Universidad de Málaga; Jaillais, Yvon; Sánchez-Rodríguez, Clara; Botella-Mesa, Miguel ÁngelAutoridad Universidad de Málaga[et al.] (American Association for the Advancement of Science, 2022-11-16)
        Controlled primary cell wall remodeling allows plant growth under stressful conditions, but how these changes are conveyed to adjust cellulose synthesis is not understood. Here, we identify the TETRATRICOPEPTIDE THIOREDOXIN-LIKE ...
      • Peripheral membrane TTL proteins safeguard cellulose synthesis under stress. 

        Amorim-Silva, Vitor; García-Moreno, Álvaro; Kesten, Christopher; Menna, Alexandra; Castillo-Garriga, AraceliAutoridad Universidad de Málaga; Percio-Vargas, Francisco; Pagano Márquez, Raquel; Moya-Cuevas, José; Armengot, Laia; Ruiz-López, NoemíAutoridad Universidad de Málaga; Jallais, Yvon; Sánchez-Rodríguez, Clara; Botella-Mesa, Miguel ÁngelAutoridad Universidad de Málaga[et al.] (2023)
        Land plants provide around eighty percent of biomass on Earth and roughly one-third corresponds to cellulose (Bar-On et al 2018). Despite its biological and societal importance, many aspects of cellulose biosynthesis and ...
      • Unraveling the mechanism of TTL genes in cellulose biosynthesis 

        García-Moreno, Álvaro; Amorim-Silva, Vitor; Castillo-Garriga, AraceliAutoridad Universidad de Málaga; Menna, Alexandra; Kesten, Christopher; Valpuesta-Fernández, VictorianoAutoridad Universidad de Málaga; Macho, Alberto P.; Jaillais, Yvon; Sánchez-Rodríguez, Clara; Botella-Mesa, Miguel ÁngelAutoridad Universidad de Málaga[et al.] (2019-05-10)
        As sessile organisms, plants require mechanisms to sense and respond to the challenging environment, that encompass both biotic and abiotic factors that results in differential development. In these conditions is essential ...
        REPOSITORIO INSTITUCIONAL UNIVERSIDAD DE MÁLAGA
        REPOSITORIO INSTITUCIONAL UNIVERSIDAD DE MÁLAGA
         

         

        REPOSITORIO INSTITUCIONAL UNIVERSIDAD DE MÁLAGA
        REPOSITORIO INSTITUCIONAL UNIVERSIDAD DE MÁLAGA