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Onishi, Aya Institute of Plant Science and Resources, Okayama University
Horie, Tomoaki Division of Applied Biology, Faculty of Textile Science and Technology, Shinshu University
Ishitsuka, Ryo Institute of Plant Science and Resources, Okayama University
Sasano, Shizuka Institute of Plant Science and Resources, Okayama University
Horie, Rie Division of Applied Biology, Faculty of Textile Science and Technology, Shinshu University
Mito, Yunosuke Division of Applied Biology, Faculty of Textile Science and Technology, Shinshu University
Utsugi, Shigeko Institute of Plant Science and Resources, Okayama University Kaken ID researchmap
Ishikawa, Junko Institute of Crop Science, NARO
Mahdieh, Majid Institute of Plant Science and Resources, Okayama University
Katsuhara, Maki Institute of Plant Science and Resources, Okayama University ORCID Kaken ID publons researchmap
Abstract
Aquaporins (AQPs) are membrane proteins that facilitate water transport and are present in nearly all bacterial, animal, and plant cells. In plants, AQPs are classified into four or more subfamilies, with plasma membrane intrinsic proteins (PIPs) playing a key role in root water uptake and cellular water regulation. Previous studies have demonstrated that PIPs contribute to root hydraulic conductivity (Lpr) in various plant species. In this study, we examined the specific role of OsPIP2;4, one of the PIP-type aquaporins among 11 rice (Oryza sativa) PIP2s, in regulating Lpr. Transgenic rice plants, including OsPIP2;4-knockout (KO) and overexpressing (Ox) lines, were used for this investigation. Two independent KO lines, generated via the CRISPR-Cas9 system and T-DNA insertion mutagenesis, respectively, showed significantly lower Lpr compared to wild-type rice plants. The decrease in Lpr in the T-DNA KO line was associated with reduced OsPIP2;4 transcript levels, measured by real-time PCR, and lower OsPIP2;4 protein levels, as shown by immunohistochemical analysis. Conversely, no notable increase in Lpr was observed in the Ox lines. These results suggest that OsPIP2;4 is expressed in appropriate tissues in rice roots and is a key factor influencing Lpr. This research represents a significant step toward further understanding the physiological functions of OsPIP2;4 in rice.
Keywords
PIP aquaporin
Rice
Root hydraulic conductivity
Root pressure chamber
Published Date
2026-02-01
Publication Title
Journal of Plant Research
Volume
volume139
Issue
issue2
Publisher
Springer Science and Business Media LLC
Start Page
255
End Page
265
ISSN
0918-9440
NCID
AA10900218
Content Type
Journal Article
language
English
OAI-PMH Set
岡山大学
Copyright Holders
© The Author(s) 2026, modified publication 2026
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Related Url
isVersionOf https://doi.org/10.1007/s10265-025-01691-z
License
http://creativecommons.org/licenses/by/4.0/
Citation
Onishi, A., Horie, T., Ishitsuka, R. et al. Knockout of a single aquaporin, OsPIP2;4, decreases root water permeability in rice. J Plant Res 139, 255–265 (2026). https://doi.org/10.1007/s10265-025-01691-z
助成情報
( 国立大学法人岡山大学 / Okayama University )
20K06708: デュアル輸送機能を示す新型アクアポリンの分子機構と生理機能の解明 ( 独立行政法人日本学術振興会 / Japan Society for the Promotion of Science )
( 文部科学省 / Ministry of Education )
( 公益財団法人大本育英会 / Public Interest Incorporated Foundation Ohmoto Ikueikai )