Cargando…

Disruption of OsEXO70A1 Causes Irregular Vascular Bundles and Perturbs Mineral Nutrient Assimilation in Rice

Normal uptake, transportation, and assimilation of primary nutrients are essential to plant growth. Tracheary elements (TEs) are tissues responsible for the transport of water and minerals and characterized by patterned secondary cell wall (SCW) thickening. Exocysts are involved in the regulation of...

Descripción completa

Detalles Bibliográficos
Autores principales: Tu, Bin, Hu, Li, Chen, Weilan, Li, Tao, Hu, Binhua, Zheng, Ling, Lv, Zheng, You, Shuju, Wang, Yuping, Ma, Bingtian, Chen, Xuewei, Qin, Peng, Li, Shigui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4686888/
https://www.ncbi.nlm.nih.gov/pubmed/26691393
http://dx.doi.org/10.1038/srep18609
_version_ 1782406518503636992
author Tu, Bin
Hu, Li
Chen, Weilan
Li, Tao
Hu, Binhua
Zheng, Ling
Lv, Zheng
You, Shuju
Wang, Yuping
Ma, Bingtian
Chen, Xuewei
Qin, Peng
Li, Shigui
author_facet Tu, Bin
Hu, Li
Chen, Weilan
Li, Tao
Hu, Binhua
Zheng, Ling
Lv, Zheng
You, Shuju
Wang, Yuping
Ma, Bingtian
Chen, Xuewei
Qin, Peng
Li, Shigui
author_sort Tu, Bin
collection PubMed
description Normal uptake, transportation, and assimilation of primary nutrients are essential to plant growth. Tracheary elements (TEs) are tissues responsible for the transport of water and minerals and characterized by patterned secondary cell wall (SCW) thickening. Exocysts are involved in the regulation of SCW deposition by mediating the targeted transport of materials and enzymes to specific membrane areas. EXO70s are highly duplicated in plants and provide exocysts with functional specificity. In this study, we report the isolation of a rice mutant rapid leaf senescence2 (rls2) that exhibits dwarfism, ferruginous spotted necrotic leaves, decreased hydraulic transport, and disordered primary nutrient assimilation. Histological analysis of rls2-1 mutants has indicated impaired cell expansion, collapsed vascular tissues, and irregular SCW deposition. Map-based cloning has revealed that RLS2 encodes OsEXO70A1, which is one of the 47 members of EXO70s in rice. RLS2 was widely expressed and spatially restricted in vascular bundles. Subcellular localization analysis demonstrated that RLS2 was present on both membrane and nuclear regions. Expression analysis revealed that mutations in rls2 triggers transcriptional fluctuation of orthologous EXO70 genes and affects genes involved in primary nutrient absorption and transport. In brief, our study revealed that RLS2 is required for normal vascular bundle differentiation and primary nutrient assimilation.
format Online
Article
Text
id pubmed-4686888
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Nature Publishing Group
record_format MEDLINE/PubMed
spelling pubmed-46868882015-12-31 Disruption of OsEXO70A1 Causes Irregular Vascular Bundles and Perturbs Mineral Nutrient Assimilation in Rice Tu, Bin Hu, Li Chen, Weilan Li, Tao Hu, Binhua Zheng, Ling Lv, Zheng You, Shuju Wang, Yuping Ma, Bingtian Chen, Xuewei Qin, Peng Li, Shigui Sci Rep Article Normal uptake, transportation, and assimilation of primary nutrients are essential to plant growth. Tracheary elements (TEs) are tissues responsible for the transport of water and minerals and characterized by patterned secondary cell wall (SCW) thickening. Exocysts are involved in the regulation of SCW deposition by mediating the targeted transport of materials and enzymes to specific membrane areas. EXO70s are highly duplicated in plants and provide exocysts with functional specificity. In this study, we report the isolation of a rice mutant rapid leaf senescence2 (rls2) that exhibits dwarfism, ferruginous spotted necrotic leaves, decreased hydraulic transport, and disordered primary nutrient assimilation. Histological analysis of rls2-1 mutants has indicated impaired cell expansion, collapsed vascular tissues, and irregular SCW deposition. Map-based cloning has revealed that RLS2 encodes OsEXO70A1, which is one of the 47 members of EXO70s in rice. RLS2 was widely expressed and spatially restricted in vascular bundles. Subcellular localization analysis demonstrated that RLS2 was present on both membrane and nuclear regions. Expression analysis revealed that mutations in rls2 triggers transcriptional fluctuation of orthologous EXO70 genes and affects genes involved in primary nutrient absorption and transport. In brief, our study revealed that RLS2 is required for normal vascular bundle differentiation and primary nutrient assimilation. Nature Publishing Group 2015-12-22 /pmc/articles/PMC4686888/ /pubmed/26691393 http://dx.doi.org/10.1038/srep18609 Text en Copyright © 2015, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Tu, Bin
Hu, Li
Chen, Weilan
Li, Tao
Hu, Binhua
Zheng, Ling
Lv, Zheng
You, Shuju
Wang, Yuping
Ma, Bingtian
Chen, Xuewei
Qin, Peng
Li, Shigui
Disruption of OsEXO70A1 Causes Irregular Vascular Bundles and Perturbs Mineral Nutrient Assimilation in Rice
title Disruption of OsEXO70A1 Causes Irregular Vascular Bundles and Perturbs Mineral Nutrient Assimilation in Rice
title_full Disruption of OsEXO70A1 Causes Irregular Vascular Bundles and Perturbs Mineral Nutrient Assimilation in Rice
title_fullStr Disruption of OsEXO70A1 Causes Irregular Vascular Bundles and Perturbs Mineral Nutrient Assimilation in Rice
title_full_unstemmed Disruption of OsEXO70A1 Causes Irregular Vascular Bundles and Perturbs Mineral Nutrient Assimilation in Rice
title_short Disruption of OsEXO70A1 Causes Irregular Vascular Bundles and Perturbs Mineral Nutrient Assimilation in Rice
title_sort disruption of osexo70a1 causes irregular vascular bundles and perturbs mineral nutrient assimilation in rice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4686888/
https://www.ncbi.nlm.nih.gov/pubmed/26691393
http://dx.doi.org/10.1038/srep18609
work_keys_str_mv AT tubin disruptionofosexo70a1causesirregularvascularbundlesandperturbsmineralnutrientassimilationinrice
AT huli disruptionofosexo70a1causesirregularvascularbundlesandperturbsmineralnutrientassimilationinrice
AT chenweilan disruptionofosexo70a1causesirregularvascularbundlesandperturbsmineralnutrientassimilationinrice
AT litao disruptionofosexo70a1causesirregularvascularbundlesandperturbsmineralnutrientassimilationinrice
AT hubinhua disruptionofosexo70a1causesirregularvascularbundlesandperturbsmineralnutrientassimilationinrice
AT zhengling disruptionofosexo70a1causesirregularvascularbundlesandperturbsmineralnutrientassimilationinrice
AT lvzheng disruptionofosexo70a1causesirregularvascularbundlesandperturbsmineralnutrientassimilationinrice
AT youshuju disruptionofosexo70a1causesirregularvascularbundlesandperturbsmineralnutrientassimilationinrice
AT wangyuping disruptionofosexo70a1causesirregularvascularbundlesandperturbsmineralnutrientassimilationinrice
AT mabingtian disruptionofosexo70a1causesirregularvascularbundlesandperturbsmineralnutrientassimilationinrice
AT chenxuewei disruptionofosexo70a1causesirregularvascularbundlesandperturbsmineralnutrientassimilationinrice
AT qinpeng disruptionofosexo70a1causesirregularvascularbundlesandperturbsmineralnutrientassimilationinrice
AT lishigui disruptionofosexo70a1causesirregularvascularbundlesandperturbsmineralnutrientassimilationinrice