Maximizing Blad-containing oligomerfungicidal activity in sweet cultivars of Lupinus albus seeds

Detalhes bibliográficos
Autor(a) principal: Cruz, Filipe
Data de Publicação: 2021
Outros Autores: Batista-Santos, Paula, Monteiro, Sara, Neves-Martins, J., Ferreira, Ricardo Boavida
Tipo de documento: Artigo
Idioma: eng
Título da fonte: Repositório Científico de Acesso Aberto de Portugal (Repositórios Cientìficos)
Texto Completo: http://hdl.handle.net/10400.5/21982
Resumo: During seed germination and plantlet growth, an important aspect of Lupinus β-conglutin proteolysis is the accumulation of blad in the cotyledons. Blad, a 20.4 kDa, 173 residue polypeptide which inhibits fungal growth, is the main subunit of BCO (Blad-containing oligomer), a Lupinus bioactive polypeptide oligomer, which underwent a successful translational research during the last thirty years. The development of this recent broad-spectrum biological fungicide for plant disease control made evident the advantage of being non-toxic to the environment, plants, humans and other animals, an interesting characteristic given the increasing consumer’s concern about food safety. The industrial-scale production of the edible fungicide BCO for agricultural purposes involves germinating and growing for ca. 8 days massive amounts of Lupinus plantlets. Therefore, it becomes economically relevant to maximize/increment the amount of extractable BCO. Although BCO represents an alternative pathway for lupin production in Europe, there is no previous evidence on lupin cultivars concerning BCO activity or its cotyledonary concentration, and therefore on the most promising cultivars for BCO extraction 16 and fungicide production. In this work, the amount of BCO and its level of fungicide activity was evaluated in seven sweet cultivars of L. albus (cvs. Amiga, Energy, Estoril, Ludic, Misak, Multitalia and Rumbo), along 20 days after the onset of germination. In addition, four distinct lots of cv. Energy and six lots of cv Misak, with different harvest years (1997, 2010, 2013 and 2014) and/or different sites of production in Portugal (Alto Alentejo, Baixo Alentejo and Beira Litoral) were also analysed. Quantitative assays demonstrated maximal accumulation of BCO in the cotyledons of 4-days-old L. albus plantlets, apart from significant differences between seeds’ harvest year or production site. The assays also showed that cv. Energy had significant higher accumulation of BCO (31.67 μg mg-1 wet weight) than Rumbo (25.67 μg mg-1) and Misak (22.12 μg mg-1), respectively second and third cultivars with highest accumulation of the oligomer. Additionally, very significant differences were also observed among seeds’ harvest year or production site. These observations reduced dramatically the original purpose of this work on the study of BCO variations at the level of sweet L. albus cultivars, since the ‘noise’ detected in BCO levels caused by the year and location of their production was far greater than its variation among cultivars. The observation that storing for several years the seeds at -20ºC did not seem to decrease BCO activity and suggests that the variation in cotyledonary BCO accumulation is essentially controlled by the prevailing edaphoclimatic conditions during seed formation. Furthermore, the activity tests exhibited significant antifungal activity between 3 and 5 days-old plantlets, with absence of antifungal activity on 8 days-old plantlets or older. Overall this study is of considerable importance to maximize BCO extraction from the cotyledons of sweet L. albus cultivars
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spelling Maximizing Blad-containing oligomerfungicidal activity in sweet cultivars of Lupinus albus seedsBladBCOLupinus albusantifungal activityfungicide productionseed germinationDuring seed germination and plantlet growth, an important aspect of Lupinus β-conglutin proteolysis is the accumulation of blad in the cotyledons. Blad, a 20.4 kDa, 173 residue polypeptide which inhibits fungal growth, is the main subunit of BCO (Blad-containing oligomer), a Lupinus bioactive polypeptide oligomer, which underwent a successful translational research during the last thirty years. The development of this recent broad-spectrum biological fungicide for plant disease control made evident the advantage of being non-toxic to the environment, plants, humans and other animals, an interesting characteristic given the increasing consumer’s concern about food safety. The industrial-scale production of the edible fungicide BCO for agricultural purposes involves germinating and growing for ca. 8 days massive amounts of Lupinus plantlets. Therefore, it becomes economically relevant to maximize/increment the amount of extractable BCO. Although BCO represents an alternative pathway for lupin production in Europe, there is no previous evidence on lupin cultivars concerning BCO activity or its cotyledonary concentration, and therefore on the most promising cultivars for BCO extraction 16 and fungicide production. In this work, the amount of BCO and its level of fungicide activity was evaluated in seven sweet cultivars of L. albus (cvs. Amiga, Energy, Estoril, Ludic, Misak, Multitalia and Rumbo), along 20 days after the onset of germination. In addition, four distinct lots of cv. Energy and six lots of cv Misak, with different harvest years (1997, 2010, 2013 and 2014) and/or different sites of production in Portugal (Alto Alentejo, Baixo Alentejo and Beira Litoral) were also analysed. Quantitative assays demonstrated maximal accumulation of BCO in the cotyledons of 4-days-old L. albus plantlets, apart from significant differences between seeds’ harvest year or production site. The assays also showed that cv. Energy had significant higher accumulation of BCO (31.67 μg mg-1 wet weight) than Rumbo (25.67 μg mg-1) and Misak (22.12 μg mg-1), respectively second and third cultivars with highest accumulation of the oligomer. Additionally, very significant differences were also observed among seeds’ harvest year or production site. These observations reduced dramatically the original purpose of this work on the study of BCO variations at the level of sweet L. albus cultivars, since the ‘noise’ detected in BCO levels caused by the year and location of their production was far greater than its variation among cultivars. The observation that storing for several years the seeds at -20ºC did not seem to decrease BCO activity and suggests that the variation in cotyledonary BCO accumulation is essentially controlled by the prevailing edaphoclimatic conditions during seed formation. Furthermore, the activity tests exhibited significant antifungal activity between 3 and 5 days-old plantlets, with absence of antifungal activity on 8 days-old plantlets or older. Overall this study is of considerable importance to maximize BCO extraction from the cotyledons of sweet L. albus cultivarsRepositório da Universidade de LisboaCruz, FilipeBatista-Santos, PaulaMonteiro, SaraNeves-Martins, J.Ferreira, Ricardo Boavida2021-09-24T09:56:42Z20212021-01-01T00:00:00Zinfo:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/articleapplication/pdfhttp://hdl.handle.net/10400.5/21982engCruz, Filipe; Batista-Santos, Paula; Monteiro, Sara; Neves-Martins, João; Ferreira, Ricardo Boavida. "Maximizing Blad-containing oligomer fungicidal activity in sweet cultivars of Lupinus albus seeds". Industrial Crops and Products 162 (2021): 113242http://dx.doi.org/10.1016/j.indcrop.2021.113242info:eu-repo/semantics/openAccessreponame:Repositório Científico de Acesso Aberto de Portugal (Repositórios Cientìficos)instname:Agência para a Sociedade do Conhecimento (UMIC) - FCT - Sociedade da Informaçãoinstacron:RCAAP2023-03-06T14:51:32Zoai:www.repository.utl.pt:10400.5/21982Portal AgregadorONGhttps://www.rcaap.pt/oai/openaireopendoar:71602024-03-19T17:06:30.190384Repositório Científico de Acesso Aberto de Portugal (Repositórios Cientìficos) - Agência para a Sociedade do Conhecimento (UMIC) - FCT - Sociedade da Informaçãofalse
dc.title.none.fl_str_mv Maximizing Blad-containing oligomerfungicidal activity in sweet cultivars of Lupinus albus seeds
title Maximizing Blad-containing oligomerfungicidal activity in sweet cultivars of Lupinus albus seeds
spellingShingle Maximizing Blad-containing oligomerfungicidal activity in sweet cultivars of Lupinus albus seeds
Cruz, Filipe
Blad
BCO
Lupinus albus
antifungal activity
fungicide production
seed germination
title_short Maximizing Blad-containing oligomerfungicidal activity in sweet cultivars of Lupinus albus seeds
title_full Maximizing Blad-containing oligomerfungicidal activity in sweet cultivars of Lupinus albus seeds
title_fullStr Maximizing Blad-containing oligomerfungicidal activity in sweet cultivars of Lupinus albus seeds
title_full_unstemmed Maximizing Blad-containing oligomerfungicidal activity in sweet cultivars of Lupinus albus seeds
title_sort Maximizing Blad-containing oligomerfungicidal activity in sweet cultivars of Lupinus albus seeds
author Cruz, Filipe
author_facet Cruz, Filipe
Batista-Santos, Paula
Monteiro, Sara
Neves-Martins, J.
Ferreira, Ricardo Boavida
author_role author
author2 Batista-Santos, Paula
Monteiro, Sara
Neves-Martins, J.
Ferreira, Ricardo Boavida
author2_role author
author
author
author
dc.contributor.none.fl_str_mv Repositório da Universidade de Lisboa
dc.contributor.author.fl_str_mv Cruz, Filipe
Batista-Santos, Paula
Monteiro, Sara
Neves-Martins, J.
Ferreira, Ricardo Boavida
dc.subject.por.fl_str_mv Blad
BCO
Lupinus albus
antifungal activity
fungicide production
seed germination
topic Blad
BCO
Lupinus albus
antifungal activity
fungicide production
seed germination
description During seed germination and plantlet growth, an important aspect of Lupinus β-conglutin proteolysis is the accumulation of blad in the cotyledons. Blad, a 20.4 kDa, 173 residue polypeptide which inhibits fungal growth, is the main subunit of BCO (Blad-containing oligomer), a Lupinus bioactive polypeptide oligomer, which underwent a successful translational research during the last thirty years. The development of this recent broad-spectrum biological fungicide for plant disease control made evident the advantage of being non-toxic to the environment, plants, humans and other animals, an interesting characteristic given the increasing consumer’s concern about food safety. The industrial-scale production of the edible fungicide BCO for agricultural purposes involves germinating and growing for ca. 8 days massive amounts of Lupinus plantlets. Therefore, it becomes economically relevant to maximize/increment the amount of extractable BCO. Although BCO represents an alternative pathway for lupin production in Europe, there is no previous evidence on lupin cultivars concerning BCO activity or its cotyledonary concentration, and therefore on the most promising cultivars for BCO extraction 16 and fungicide production. In this work, the amount of BCO and its level of fungicide activity was evaluated in seven sweet cultivars of L. albus (cvs. Amiga, Energy, Estoril, Ludic, Misak, Multitalia and Rumbo), along 20 days after the onset of germination. In addition, four distinct lots of cv. Energy and six lots of cv Misak, with different harvest years (1997, 2010, 2013 and 2014) and/or different sites of production in Portugal (Alto Alentejo, Baixo Alentejo and Beira Litoral) were also analysed. Quantitative assays demonstrated maximal accumulation of BCO in the cotyledons of 4-days-old L. albus plantlets, apart from significant differences between seeds’ harvest year or production site. The assays also showed that cv. Energy had significant higher accumulation of BCO (31.67 μg mg-1 wet weight) than Rumbo (25.67 μg mg-1) and Misak (22.12 μg mg-1), respectively second and third cultivars with highest accumulation of the oligomer. Additionally, very significant differences were also observed among seeds’ harvest year or production site. These observations reduced dramatically the original purpose of this work on the study of BCO variations at the level of sweet L. albus cultivars, since the ‘noise’ detected in BCO levels caused by the year and location of their production was far greater than its variation among cultivars. The observation that storing for several years the seeds at -20ºC did not seem to decrease BCO activity and suggests that the variation in cotyledonary BCO accumulation is essentially controlled by the prevailing edaphoclimatic conditions during seed formation. Furthermore, the activity tests exhibited significant antifungal activity between 3 and 5 days-old plantlets, with absence of antifungal activity on 8 days-old plantlets or older. Overall this study is of considerable importance to maximize BCO extraction from the cotyledons of sweet L. albus cultivars
publishDate 2021
dc.date.none.fl_str_mv 2021-09-24T09:56:42Z
2021
2021-01-01T00:00:00Z
dc.type.status.fl_str_mv info:eu-repo/semantics/publishedVersion
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format article
status_str publishedVersion
dc.identifier.uri.fl_str_mv http://hdl.handle.net/10400.5/21982
url http://hdl.handle.net/10400.5/21982
dc.language.iso.fl_str_mv eng
language eng
dc.relation.none.fl_str_mv Cruz, Filipe; Batista-Santos, Paula; Monteiro, Sara; Neves-Martins, João; Ferreira, Ricardo Boavida. "Maximizing Blad-containing oligomer fungicidal activity in sweet cultivars of Lupinus albus seeds". Industrial Crops and Products 162 (2021): 113242
http://dx.doi.org/10.1016/j.indcrop.2021.113242
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