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Cited 4 time in webofscience Cited 4 time in scopus
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C-Type LECTIN receptor-like kinase 1 and ACTIN DEPOLYMERIZING FACTOR 3 are key components of plasmodesmata callose modulation

Authors
Kumar, RiteshIswanto, Arya B. B.Kumar, DhineshShuwei, WuOh, KyujinMoon, JiyunSon, Geon H.Oh, Eun-SeokVu, Minh H.Lee, JinsuLee, Keun W.Oh, Man-HoKwon, ChianChung, Woo SikKim, Jae-YeanKim, Sang Hee
Issue Date
Oct-2024
Publisher
Blackwell Publishing Inc.
Keywords
3-glucan; ADF3; CLRLK1; PD callose; Plasmodesmata; symplasmic contiunity; beta-1
Citation
Plant, Cell and Environment, v.47, no.10, pp 3749 - 3765
Pages
17
Indexed
SCIE
SCOPUS
Journal Title
Plant, Cell and Environment
Volume
47
Number
10
Start Page
3749
End Page
3765
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/70808
DOI
10.1111/pce.14957
ISSN
0140-7791
1365-3040
Abstract
Plasmodesmata (PDs) are intercellular organelles carrying multiple membranous nanochannels that allow the trafficking of cellular signalling molecules. The channel regulation of PDs occurs dynamically and is required in various developmental and physiological processes. It is well known that callose is a critical component in regulating PD permeability or symplasmic connectivity, but the understanding of the signalling pathways and mechanisms of its regulation is limited. Here, we used the reverse genetic approach to investigate the role of C-type lectin receptor-like kinase 1 (CLRLK1) in the aspect of PD callose-modulated symplasmic continuity. Here, we found that loss-of-function mutations in CLRLK1 resulted in excessive PD callose deposits and reduced symplasmic continuity, resulting in an accelerated gravitropic response. The protein interactome study also found that CLRLK1 interacted with actin depolymerizing factor 3 (ADF3) in vitro and in plants. Moreover, mutations in ADF3 result in elevated PD callose deposits and faster gravitropic response. Our results indicate that CLRLK1 and ADF3 negatively regulate PD callose accumulation, contributing to fine-tuning symplasmic opening apertures. Overall, our studies identified two key components involved in the deposits of PD callose and provided new insights into how symplasmic connectivity is maintained by the control of PD callose homoeostasis. In the current research article, we have identified a novel C-TYPE LECTIN RECEPTOR-LIKE KINASE 1 (CLRLK1) in Arabidopsis, which modulates symplasmic connectivity and gravitropic response via plasmodesmata callose regulation. And this modulation might recruit an actin-depolymerizing factor 3 (ADF3) function.
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Chung, Woo Sik
대학원 (응용생명과학부)
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