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The Calcium Sensor CBL2 and Its Interacting Kinase CIPK6 Are Involved in Plant Sugar Homeostasis via Interacting with Tonoplast Sugar Transporter TST21
Calcineurin B-like protein interacting protein kinase 6 (CIPK6) is recruited to the tonoplast by Calcineurin B-like protein 2 (CBL2) and interacts with the tonoplast-localized sugar transporter TST2 to promote sugar accumulation, in particular glucose, in cotton. Calcineurin B-like protein (CBL) and...
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Published in: | Plant physiology (Bethesda) 2020-03, Vol.183 (1), p.236-249 |
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Main Authors: | , , , , , |
Format: | Article |
Language: | English |
Online Access: | Get full text |
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Summary: | Calcineurin B-like protein interacting protein kinase 6 (CIPK6) is recruited to the tonoplast by Calcineurin B-like protein 2 (CBL2) and interacts with the tonoplast-localized sugar transporter TST2 to promote sugar accumulation, in particular glucose, in cotton.
Calcineurin B-like protein (CBL) and CBL-interacting protein kinase (CIPK)-mediated calcium signaling has been widely reported to function in plant development and various stress responses, particularly in ion homeostasis. Sugars are the most important primary metabolites, and thus sugar homeostasis requires precise regulation. Here, we describe a CBL2-CIPK6-Tonoplast-Localized Sugar Transporter2 (TST2) molecular module in cotton (
Gossypium hirsutum
) that regulates plant sugar homeostasis, in particular Glc homeostasis. GhCIPK6 is recruited to the tonoplast by GhCBL2 and interacts with the tonoplast-localized sugar transporter GhTST2. Overexpression of either
GhCBL2
,
GhCIPK6
, or
GhTST2
was sufficient to promote sugar accumulation in transgenic cotton, whereas RNAi-mediated knockdown of
GhCIPK6
expression or CRISPR-Cas9-mediated knockout of
GhTST2
resulted in significantly decreased Glc content. Moreover, mutation of
GhCBL2
or
GhTST2
in
GhCIPK6
-overexpressing cotton reinstated sugar contents comparable to wild-type plants. Heterologous expression of
GhCIPK6
in Arabidopsis (
Arabidopsis thaliana
) also promoted Glc accumulation, whereas mutation of
AtTST1/2
in
GhCIPK6
-overexpressing Arabidopsis similarly reinstated wild-type sugar contents, thus indicating conservation of CBL2-CIPK6-TST2-mediated sugar homeostasis among different plant species. Our characterization of the molecular players behind plant sugar homeostasis may be exploited to improve sugar contents and abiotic stress resistance in plants. |
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ISSN: | 0032-0889 1532-2548 |
DOI: | 10.1104/pp.19.01368 |