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The Rice SPOTTED LEAF4 (SPL4) Encodes a Plant Spastin That Inhibits ROS Accumulation in Leaf Development and Functions in Leaf Senescence

Lesion mimic mutants (LMMs) are usually controlled by single recessive mutations that cause the formation of necrotic lesions without pathogen invasion. These genetic defects are useful to reveal the regulatory mechanisms of defense-related programmed cell death in plants. Molecular evidence has bee...

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Autores principales: Song, Giha, Kwon, Choon-Tak, Kim, Suk-Hwan, Shim, Yejin, Lim, Chaemyeong, Koh, Hee-Jong, An, Gynheung, Kang, Kiyoon, Paek, Nam-Chon
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6330318/
https://www.ncbi.nlm.nih.gov/pubmed/30666263
http://dx.doi.org/10.3389/fpls.2018.01925
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author Song, Giha
Kwon, Choon-Tak
Kim, Suk-Hwan
Shim, Yejin
Lim, Chaemyeong
Koh, Hee-Jong
An, Gynheung
Kang, Kiyoon
Paek, Nam-Chon
author_facet Song, Giha
Kwon, Choon-Tak
Kim, Suk-Hwan
Shim, Yejin
Lim, Chaemyeong
Koh, Hee-Jong
An, Gynheung
Kang, Kiyoon
Paek, Nam-Chon
author_sort Song, Giha
collection PubMed
description Lesion mimic mutants (LMMs) are usually controlled by single recessive mutations that cause the formation of necrotic lesions without pathogen invasion. These genetic defects are useful to reveal the regulatory mechanisms of defense-related programmed cell death in plants. Molecular evidence has been suggested that some of LMMs are closely associated with the regulation of leaf senescence in rice (Oryza sativa). Here, we characterized the mutation underlying spotted leaf4 (spl4), which results in lesion formation and also affects leaf senescence in rice. Map-based cloning revealed that the γ ray-induced spl4-1 mutant has a single base substitution in the splicing site of the SPL4 locus, resulting in a 13-bp deletion within the encoded microtubule-interacting-and-transport (MIT) spastin protein containing an AAA-type ATPase domain. The T-DNA insertion spl4-2 mutant exhibited spontaneous lesions similar to those of the spl4-1 mutant, confirming that SPL4 is responsible for the LMM phenotype. In addition, both spl4 mutants exhibited delayed leaf yellowing during dark-induced or natural senescence. Western blot analysis of spl4 mutant leaves suggested possible roles for SPL4 in the degradation of photosynthetic proteins. Punctate signals of SPL4-fused fluorescent proteins were detected in the cytoplasm, similar to the cellular localization of animal spastin. Based on these findings, we propose that SPL4 is a plant spastin that is involved in multiple aspects of leaf development, including senescence.
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spelling pubmed-63303182019-01-21 The Rice SPOTTED LEAF4 (SPL4) Encodes a Plant Spastin That Inhibits ROS Accumulation in Leaf Development and Functions in Leaf Senescence Song, Giha Kwon, Choon-Tak Kim, Suk-Hwan Shim, Yejin Lim, Chaemyeong Koh, Hee-Jong An, Gynheung Kang, Kiyoon Paek, Nam-Chon Front Plant Sci Plant Science Lesion mimic mutants (LMMs) are usually controlled by single recessive mutations that cause the formation of necrotic lesions without pathogen invasion. These genetic defects are useful to reveal the regulatory mechanisms of defense-related programmed cell death in plants. Molecular evidence has been suggested that some of LMMs are closely associated with the regulation of leaf senescence in rice (Oryza sativa). Here, we characterized the mutation underlying spotted leaf4 (spl4), which results in lesion formation and also affects leaf senescence in rice. Map-based cloning revealed that the γ ray-induced spl4-1 mutant has a single base substitution in the splicing site of the SPL4 locus, resulting in a 13-bp deletion within the encoded microtubule-interacting-and-transport (MIT) spastin protein containing an AAA-type ATPase domain. The T-DNA insertion spl4-2 mutant exhibited spontaneous lesions similar to those of the spl4-1 mutant, confirming that SPL4 is responsible for the LMM phenotype. In addition, both spl4 mutants exhibited delayed leaf yellowing during dark-induced or natural senescence. Western blot analysis of spl4 mutant leaves suggested possible roles for SPL4 in the degradation of photosynthetic proteins. Punctate signals of SPL4-fused fluorescent proteins were detected in the cytoplasm, similar to the cellular localization of animal spastin. Based on these findings, we propose that SPL4 is a plant spastin that is involved in multiple aspects of leaf development, including senescence. Frontiers Media S.A. 2019-01-07 /pmc/articles/PMC6330318/ /pubmed/30666263 http://dx.doi.org/10.3389/fpls.2018.01925 Text en Copyright © 2019 Song, Kwon, Kim, Shim, Lim, Koh, An, Kang and Paek. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Song, Giha
Kwon, Choon-Tak
Kim, Suk-Hwan
Shim, Yejin
Lim, Chaemyeong
Koh, Hee-Jong
An, Gynheung
Kang, Kiyoon
Paek, Nam-Chon
The Rice SPOTTED LEAF4 (SPL4) Encodes a Plant Spastin That Inhibits ROS Accumulation in Leaf Development and Functions in Leaf Senescence
title The Rice SPOTTED LEAF4 (SPL4) Encodes a Plant Spastin That Inhibits ROS Accumulation in Leaf Development and Functions in Leaf Senescence
title_full The Rice SPOTTED LEAF4 (SPL4) Encodes a Plant Spastin That Inhibits ROS Accumulation in Leaf Development and Functions in Leaf Senescence
title_fullStr The Rice SPOTTED LEAF4 (SPL4) Encodes a Plant Spastin That Inhibits ROS Accumulation in Leaf Development and Functions in Leaf Senescence
title_full_unstemmed The Rice SPOTTED LEAF4 (SPL4) Encodes a Plant Spastin That Inhibits ROS Accumulation in Leaf Development and Functions in Leaf Senescence
title_short The Rice SPOTTED LEAF4 (SPL4) Encodes a Plant Spastin That Inhibits ROS Accumulation in Leaf Development and Functions in Leaf Senescence
title_sort rice spotted leaf4 (spl4) encodes a plant spastin that inhibits ros accumulation in leaf development and functions in leaf senescence
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6330318/
https://www.ncbi.nlm.nih.gov/pubmed/30666263
http://dx.doi.org/10.3389/fpls.2018.01925
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