Proteomic analysis of a clavata-like phenotype mutant in Brassica napus
Abstract Rapeseed is one of important oil crops in China. Better understanding of the regulation network of main agronomic traits of rapeseed could improve the yielding of rapeseed. In this study, we obtained an influrescence mutant that showed a fusion phenotype, similar with the Arabidopsis clavata-like phenotype, so we named the mutant as Bnclavata-like (Bnclv-like). Phenotype analysis illustrated that abnormal development of the inflorescence meristem (IM) led to the fused-inflorescence phenotype. At the stage of protein abundance, major regulators in metabolic processes, ROS metabolism, and cytoskeleton formation were seen to be altered in this mutant. These results not only revealed the relationship between biological processes and inflorescence meristem development, but also suggest bioengineering strategies for the improved breeding and production of Brassica napus.
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Sociedade Brasileira de Genética
2020
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oai:scielo:S1415-475720200001003082020-03-03Proteomic analysis of a clavata-like phenotype mutant in Brassica napusZhu,KemingZhang,WeiweiSarwa,RehmanXu,ShuoLi,KaixiaYang,YanhuaLi,YulongWang,ZhengCao,JunLi,YaomingTan,Xiaoli Brassica napus proteomic inflorescence meristem (IM) Bnclavata-like (Bnclv-like) quantitative real-time PCR Abstract Rapeseed is one of important oil crops in China. Better understanding of the regulation network of main agronomic traits of rapeseed could improve the yielding of rapeseed. In this study, we obtained an influrescence mutant that showed a fusion phenotype, similar with the Arabidopsis clavata-like phenotype, so we named the mutant as Bnclavata-like (Bnclv-like). Phenotype analysis illustrated that abnormal development of the inflorescence meristem (IM) led to the fused-inflorescence phenotype. At the stage of protein abundance, major regulators in metabolic processes, ROS metabolism, and cytoskeleton formation were seen to be altered in this mutant. These results not only revealed the relationship between biological processes and inflorescence meristem development, but also suggest bioengineering strategies for the improved breeding and production of Brassica napus.info:eu-repo/semantics/openAccessSociedade Brasileira de GenéticaGenetics and Molecular Biology v.43 n.1 20202020-01-01info:eu-repo/semantics/articletext/htmlhttp://old.scielo.br/scielo.php?script=sci_arttext&pid=S1415-47572020000100308en10.1590/1678-4685-gmb-2019-0305 |
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Zhu,Keming Zhang,Weiwei Sarwa,Rehman Xu,Shuo Li,Kaixia Yang,Yanhua Li,Yulong Wang,Zheng Cao,Jun Li,Yaoming Tan,Xiaoli |
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Zhu,Keming Zhang,Weiwei Sarwa,Rehman Xu,Shuo Li,Kaixia Yang,Yanhua Li,Yulong Wang,Zheng Cao,Jun Li,Yaoming Tan,Xiaoli Proteomic analysis of a clavata-like phenotype mutant in Brassica napus |
author_facet |
Zhu,Keming Zhang,Weiwei Sarwa,Rehman Xu,Shuo Li,Kaixia Yang,Yanhua Li,Yulong Wang,Zheng Cao,Jun Li,Yaoming Tan,Xiaoli |
author_sort |
Zhu,Keming |
title |
Proteomic analysis of a clavata-like phenotype mutant in Brassica napus |
title_short |
Proteomic analysis of a clavata-like phenotype mutant in Brassica napus |
title_full |
Proteomic analysis of a clavata-like phenotype mutant in Brassica napus |
title_fullStr |
Proteomic analysis of a clavata-like phenotype mutant in Brassica napus |
title_full_unstemmed |
Proteomic analysis of a clavata-like phenotype mutant in Brassica napus |
title_sort |
proteomic analysis of a clavata-like phenotype mutant in brassica napus |
description |
Abstract Rapeseed is one of important oil crops in China. Better understanding of the regulation network of main agronomic traits of rapeseed could improve the yielding of rapeseed. In this study, we obtained an influrescence mutant that showed a fusion phenotype, similar with the Arabidopsis clavata-like phenotype, so we named the mutant as Bnclavata-like (Bnclv-like). Phenotype analysis illustrated that abnormal development of the inflorescence meristem (IM) led to the fused-inflorescence phenotype. At the stage of protein abundance, major regulators in metabolic processes, ROS metabolism, and cytoskeleton formation were seen to be altered in this mutant. These results not only revealed the relationship between biological processes and inflorescence meristem development, but also suggest bioengineering strategies for the improved breeding and production of Brassica napus. |
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Sociedade Brasileira de Genética |
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2020 |
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http://old.scielo.br/scielo.php?script=sci_arttext&pid=S1415-47572020000100308 |
work_keys_str_mv |
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1756419302004621312 |