Cargando…

Overexpression of BUNDLE SHEATH DEFECTIVE 2 improves the efficiency of photosynthesis and growth in Arabidopsis

Bundle Sheath Defective 2, BSD2, is a stroma‐targeted protein initially identified as a factor required for the biogenesis of ribulose 1,5‐bisphosphate carboxylase/oxygenase (RuBisCO) in maize. Plants and algae universally have a homologous gene for BSD2 and its deficiency causes a RuBisCO‐less phen...

Descripción completa

Detalles Bibliográficos
Autores principales: Busch, Florian A., Tominaga, Jun, Muroya, Masato, Shirakami, Norihiko, Takahashi, Shunichi, Yamori, Wataru, Kitaoka, Takuya, Milward, Sara E., Nishimura, Kohji, Matsunami, Erika, Toda, Yosuke, Higuchi, Chikako, Muranaka, Atsuko, Takami, Tsuneaki, Watanabe, Shunsuke, Kinoshita, Toshinori, Sakamoto, Wataru, Sakamoto, Atsushi, Shimada, Hiroshi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7217058/
https://www.ncbi.nlm.nih.gov/pubmed/31755157
http://dx.doi.org/10.1111/tpj.14617
_version_ 1783532540298002432
author Busch, Florian A.
Tominaga, Jun
Muroya, Masato
Shirakami, Norihiko
Takahashi, Shunichi
Yamori, Wataru
Kitaoka, Takuya
Milward, Sara E.
Nishimura, Kohji
Matsunami, Erika
Toda, Yosuke
Higuchi, Chikako
Muranaka, Atsuko
Takami, Tsuneaki
Watanabe, Shunsuke
Kinoshita, Toshinori
Sakamoto, Wataru
Sakamoto, Atsushi
Shimada, Hiroshi
author_facet Busch, Florian A.
Tominaga, Jun
Muroya, Masato
Shirakami, Norihiko
Takahashi, Shunichi
Yamori, Wataru
Kitaoka, Takuya
Milward, Sara E.
Nishimura, Kohji
Matsunami, Erika
Toda, Yosuke
Higuchi, Chikako
Muranaka, Atsuko
Takami, Tsuneaki
Watanabe, Shunsuke
Kinoshita, Toshinori
Sakamoto, Wataru
Sakamoto, Atsushi
Shimada, Hiroshi
author_sort Busch, Florian A.
collection PubMed
description Bundle Sheath Defective 2, BSD2, is a stroma‐targeted protein initially identified as a factor required for the biogenesis of ribulose 1,5‐bisphosphate carboxylase/oxygenase (RuBisCO) in maize. Plants and algae universally have a homologous gene for BSD2 and its deficiency causes a RuBisCO‐less phenotype. As RuBisCO can be the rate‐limiting step in CO(2) assimilation, the overexpression of BSD2 might improve photosynthesis and productivity through the accumulation of RuBisCO. To examine this hypothesis, we produced BSD2 overexpression lines in Arabidopsis. Compared with wild type, the BSD2 overexpression lines BSD2ox‐2 and BSD2ox‐3 expressed 4.8‐fold and 8.8‐fold higher BSD2 mRNA, respectively, whereas the empty‐vector (EV) harbouring plants had a comparable expression level. The overexpression lines showed a significantly higher CO(2) assimilation rate per available CO(2) and productivity than EV plants. The maximum carboxylation rate per total catalytic site was accelerated in the overexpression lines, while the number of total catalytic sites and RuBisCO content were unaffected. We then isolated recombinant BSD2 (rBSD2) from E. coli and found that rBSD2 reduces disulfide bonds using reductants present in vivo, for example glutathione, and that rBSD2 has the ability to reactivate RuBisCO that has been inactivated by oxidants. Furthermore, 15% of RuBisCO freshly isolated from leaves of EV was oxidatively inactivated, as compared with 0% in BSD2‐overexpression lines, suggesting that the overexpression of BSD2 maintains RuBisCO to be in the reduced active form in vivo. Our results demonstrated that the overexpression of BSD2 improves photosynthetic efficiency in Arabidopsis and we conclude that it is involved in mediating RuBisCO activation.
format Online
Article
Text
id pubmed-7217058
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-72170582020-05-13 Overexpression of BUNDLE SHEATH DEFECTIVE 2 improves the efficiency of photosynthesis and growth in Arabidopsis Busch, Florian A. Tominaga, Jun Muroya, Masato Shirakami, Norihiko Takahashi, Shunichi Yamori, Wataru Kitaoka, Takuya Milward, Sara E. Nishimura, Kohji Matsunami, Erika Toda, Yosuke Higuchi, Chikako Muranaka, Atsuko Takami, Tsuneaki Watanabe, Shunsuke Kinoshita, Toshinori Sakamoto, Wataru Sakamoto, Atsushi Shimada, Hiroshi Plant J Original Articles Bundle Sheath Defective 2, BSD2, is a stroma‐targeted protein initially identified as a factor required for the biogenesis of ribulose 1,5‐bisphosphate carboxylase/oxygenase (RuBisCO) in maize. Plants and algae universally have a homologous gene for BSD2 and its deficiency causes a RuBisCO‐less phenotype. As RuBisCO can be the rate‐limiting step in CO(2) assimilation, the overexpression of BSD2 might improve photosynthesis and productivity through the accumulation of RuBisCO. To examine this hypothesis, we produced BSD2 overexpression lines in Arabidopsis. Compared with wild type, the BSD2 overexpression lines BSD2ox‐2 and BSD2ox‐3 expressed 4.8‐fold and 8.8‐fold higher BSD2 mRNA, respectively, whereas the empty‐vector (EV) harbouring plants had a comparable expression level. The overexpression lines showed a significantly higher CO(2) assimilation rate per available CO(2) and productivity than EV plants. The maximum carboxylation rate per total catalytic site was accelerated in the overexpression lines, while the number of total catalytic sites and RuBisCO content were unaffected. We then isolated recombinant BSD2 (rBSD2) from E. coli and found that rBSD2 reduces disulfide bonds using reductants present in vivo, for example glutathione, and that rBSD2 has the ability to reactivate RuBisCO that has been inactivated by oxidants. Furthermore, 15% of RuBisCO freshly isolated from leaves of EV was oxidatively inactivated, as compared with 0% in BSD2‐overexpression lines, suggesting that the overexpression of BSD2 maintains RuBisCO to be in the reduced active form in vivo. Our results demonstrated that the overexpression of BSD2 improves photosynthetic efficiency in Arabidopsis and we conclude that it is involved in mediating RuBisCO activation. John Wiley and Sons Inc. 2019-12-26 2020-04 /pmc/articles/PMC7217058/ /pubmed/31755157 http://dx.doi.org/10.1111/tpj.14617 Text en © 2019 The Authors The Plant Journal published by Society for Experimental Biology and John Wiley & Sons Ltd This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Original Articles
Busch, Florian A.
Tominaga, Jun
Muroya, Masato
Shirakami, Norihiko
Takahashi, Shunichi
Yamori, Wataru
Kitaoka, Takuya
Milward, Sara E.
Nishimura, Kohji
Matsunami, Erika
Toda, Yosuke
Higuchi, Chikako
Muranaka, Atsuko
Takami, Tsuneaki
Watanabe, Shunsuke
Kinoshita, Toshinori
Sakamoto, Wataru
Sakamoto, Atsushi
Shimada, Hiroshi
Overexpression of BUNDLE SHEATH DEFECTIVE 2 improves the efficiency of photosynthesis and growth in Arabidopsis
title Overexpression of BUNDLE SHEATH DEFECTIVE 2 improves the efficiency of photosynthesis and growth in Arabidopsis
title_full Overexpression of BUNDLE SHEATH DEFECTIVE 2 improves the efficiency of photosynthesis and growth in Arabidopsis
title_fullStr Overexpression of BUNDLE SHEATH DEFECTIVE 2 improves the efficiency of photosynthesis and growth in Arabidopsis
title_full_unstemmed Overexpression of BUNDLE SHEATH DEFECTIVE 2 improves the efficiency of photosynthesis and growth in Arabidopsis
title_short Overexpression of BUNDLE SHEATH DEFECTIVE 2 improves the efficiency of photosynthesis and growth in Arabidopsis
title_sort overexpression of bundle sheath defective 2 improves the efficiency of photosynthesis and growth in arabidopsis
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7217058/
https://www.ncbi.nlm.nih.gov/pubmed/31755157
http://dx.doi.org/10.1111/tpj.14617
work_keys_str_mv AT buschfloriana overexpressionofbundlesheathdefective2improvestheefficiencyofphotosynthesisandgrowthinarabidopsis
AT tominagajun overexpressionofbundlesheathdefective2improvestheefficiencyofphotosynthesisandgrowthinarabidopsis
AT muroyamasato overexpressionofbundlesheathdefective2improvestheefficiencyofphotosynthesisandgrowthinarabidopsis
AT shirakaminorihiko overexpressionofbundlesheathdefective2improvestheefficiencyofphotosynthesisandgrowthinarabidopsis
AT takahashishunichi overexpressionofbundlesheathdefective2improvestheefficiencyofphotosynthesisandgrowthinarabidopsis
AT yamoriwataru overexpressionofbundlesheathdefective2improvestheefficiencyofphotosynthesisandgrowthinarabidopsis
AT kitaokatakuya overexpressionofbundlesheathdefective2improvestheefficiencyofphotosynthesisandgrowthinarabidopsis
AT milwardsarae overexpressionofbundlesheathdefective2improvestheefficiencyofphotosynthesisandgrowthinarabidopsis
AT nishimurakohji overexpressionofbundlesheathdefective2improvestheefficiencyofphotosynthesisandgrowthinarabidopsis
AT matsunamierika overexpressionofbundlesheathdefective2improvestheefficiencyofphotosynthesisandgrowthinarabidopsis
AT todayosuke overexpressionofbundlesheathdefective2improvestheefficiencyofphotosynthesisandgrowthinarabidopsis
AT higuchichikako overexpressionofbundlesheathdefective2improvestheefficiencyofphotosynthesisandgrowthinarabidopsis
AT muranakaatsuko overexpressionofbundlesheathdefective2improvestheefficiencyofphotosynthesisandgrowthinarabidopsis
AT takamitsuneaki overexpressionofbundlesheathdefective2improvestheefficiencyofphotosynthesisandgrowthinarabidopsis
AT watanabeshunsuke overexpressionofbundlesheathdefective2improvestheefficiencyofphotosynthesisandgrowthinarabidopsis
AT kinoshitatoshinori overexpressionofbundlesheathdefective2improvestheefficiencyofphotosynthesisandgrowthinarabidopsis
AT sakamotowataru overexpressionofbundlesheathdefective2improvestheefficiencyofphotosynthesisandgrowthinarabidopsis
AT sakamotoatsushi overexpressionofbundlesheathdefective2improvestheefficiencyofphotosynthesisandgrowthinarabidopsis
AT shimadahiroshi overexpressionofbundlesheathdefective2improvestheefficiencyofphotosynthesisandgrowthinarabidopsis