An Integrative Approach to Analyze Seed Germination in Brassica napus

被引:32
作者
Boter, Marta [1 ]
Calleja-Cabrera, Julian [1 ]
Carrera-Castano, Gerardo [1 ]
Wagner, Geoffrey [2 ]
Hatzig, Sarah Vanessa [2 ]
Snowdon, Rod J. [2 ]
Legoahec, Laurie [3 ]
Bianchetti, Gregoire [3 ]
Bouchereau, Alain [3 ]
Nesi, Nathalie [3 ]
Pernas, Monica [1 ]
Onate-Sanchez, Luis [1 ]
机构
[1] Univ Politecn Madrid, Inst Nacl Invest & Tecnol Agr & Alimentaria, Ctr Biotecnol & Genom Plantas, Madrid, Spain
[2] Justus Liebig Univ Giessen, Dept Plant Breeding, Giessen, Germany
[3] IGEPP, Joint Lab Genet, Le Rheu, France
关键词
germination; seed traits; oilseed rape (Brassica napus); metabolism; hormonal pathways; transcriptomic; protein interaction; crop yield; PHYTOCHROME INTERACTING FACTOR; DEUTERATED ABSCISIC-ACID; ARABIDOPSIS-THALIANA; GIBBERELLIN BIOSYNTHESIS; SIGNALING PATHWAYS; LEPIDIUM-SATIVUM; TRANSCRIPTION FACTORS; FUNCTIONAL-ANALYSIS; HORMONE METABOLISM; NEGATIVE REGULATOR;
D O I
10.3389/fpls.2019.01342
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Seed germination is a complex trait determined by the interaction of hormonal, metabolic, genetic, and environmental components. Variability of this trait in crops has a big impact on seedling establishment and yield in the field. Classical studies of this trait in crops have focused mainly on the analyses of one level of regulation in the cascade of events leading to seed germination. We have carried out an integrative and extensive approach to deepen our understanding of seed germination in Brassica napus by generating transcriptomic, metabolic, and hormonal data at different stages upon seed imbibition. Deep phenotyping of different seed germination-associated traits in six winter-type B. napus accessions has revealed that seed germination kinetics, in particular seed germination speed, are major contributors to the variability of this trait. Metabolic profiling of these accessions has allowed us to describe a common pattern of metabolic change and to identify the levels of malate and aspartate metabolites as putative metabolic markers to estimate germination performance. Additionally, analysis of seed content of different hormones suggests that hormonal balance between ABA, GA, and IAA at crucial time points during this process might underlie seed germination differences in these accessions. In this study, we have also defined the major transcriptome changes accompanying the germination process in B. napus. Furthermore, we have observed that earlier activation of key germination regulatory genes seems to generate the differences in germination speed observed between accessions in B. napus. Finally, we have found that protein-protein interactions between some of these key regulator are conserved in B. napus, suggesting a shared regulatory network with other plant species. Altogether, our results provide a comprehensive and detailed picture of seed germination dynamics in oilseed rape. This new framework will be extremely valuable not only to evaluate germination performance of B. napus accessions but also to identify key targets for crop improvement in this important process.
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页数:24
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共 142 条
[11]  
Bentsink Leonie, 2008, Arabidopsis Book, V6, pe0119, DOI 10.1199/tab.0119
[12]   Quantitative genetic analysis of seed vigour and pre-emergence seedling growth traits in Brassica oleracea [J].
Bettey, M ;
Finch-Savage, WE ;
King, GJ ;
Lynn, JR .
NEW PHYTOLOGIST, 2000, 148 (02) :277-286
[13]   Seed germination and dormancy [J].
Bewley, JD .
PLANT CELL, 1997, 9 (07) :1055-1066
[14]   Gibberellin mobilizes distinct DELLA-dependent transcriptomes to regulate seed germination and floral development in arabidopsis [J].
Cao, Dongni ;
Cheng, Hui ;
Wu, Wei ;
Soo, Hui Meng ;
Peng, Jinrong .
PLANT PHYSIOLOGY, 2006, 142 (02) :509-525
[15]   Speeding Cis-Trans Regulation Discovery by Phylogenomic Analyses Coupled with Screenings of an Arrayed Library of Arabidopsis Transcription Factors [J].
Castrillo, Gabriel ;
Turck, Franziska ;
Leveugle, Magalie ;
Lecharny, Alain ;
Carbonero, Pilar ;
Coupland, George ;
Paz-Ares, Javier ;
Onate-Sanchez, Luis .
PLOS ONE, 2011, 6 (06)
[16]   Collinearity between a 30-centimorgan segment of Arabidopsis thaliana chromosome 4 and duplicated regions within the Brassica napus genome [J].
Cavell, AC ;
Lydiate, DJ ;
Parkin, IAP ;
Dean, C ;
Trick, M .
GENOME, 1998, 41 (01) :62-69
[17]   Early allopolyploid evolution in the post-Neolithic Brassica napus oilseed genome [J].
Chalhoub, Boulos ;
Denoeud, France ;
Liu, Shengyi ;
Parkin, Isobel A. P. ;
Tang, Haibao ;
Wang, Xiyin ;
Chiquet, Julien ;
Belcram, Harry ;
Tong, Chaobo ;
Samans, Birgit ;
Correa, Margot ;
Da Silva, Corinne ;
Just, Jeremy ;
Falentin, Cyril ;
Koh, Chu Shin ;
Le Clainche, Isabelle ;
Bernard, Maria ;
Bento, Pascal ;
Noel, Benjamin ;
Labadie, Karine ;
Alberti, Adriana ;
Charles, Mathieu ;
Arnaud, Dominique ;
Guo, Hui ;
Daviaud, Christian ;
Alamery, Salman ;
Jabbari, Kamel ;
Zhao, Meixia ;
Edger, Patrick P. ;
Chelaifa, Houda ;
Tack, David ;
Lassalle, Gilles ;
Mestiri, Imen ;
Schnel, Nicolas ;
Le Paslier, Marie-Christine ;
Fan, Guangyi ;
Renault, Victor ;
Bayer, Philippe E. ;
Golicz, Agnieszka A. ;
Manoli, Sahana ;
Lee, Tae-Ho ;
Vinh Ha Dinh Thi ;
Chalabi, Smahane ;
Hu, Qiong ;
Fan, Chuchuan ;
Tollenaere, Reece ;
Lu, Yunhai ;
Battail, Christophe ;
Shen, Jinxiong ;
Sidebottom, Christine H. D. .
SCIENCE, 2014, 345 (6199) :950-953
[18]   MeV+R: using MeV as a graphical user interface for Bioconductor applications in microarray analysis [J].
Chu, Vu T. ;
Gottardo, Raphael ;
Raftery, Adrian E. ;
Bumgarner, Roger E. ;
Yeung, Ka Yee .
GENOME BIOLOGY, 2008, 9 (07)
[19]   COORDINATE EXPRESSION OF TRANSCRIPTIONALLY REGULATED ISOCITRATE LYASE AND MALATE SYNTHASE GENES IN BRASSICA-NAPUS L [J].
COMAI, L ;
DIETRICH, RA ;
MASLYAR, DJ ;
BADEN, CS ;
HARADA, JJ .
PLANT CELL, 1989, 1 (03) :293-300
[20]   A Pivotal Role of DELLAs in Regulating Multiple Hormone Signals [J].
Daviere, Jean-Michel ;
Achard, Patrick .
MOLECULAR PLANT, 2016, 9 (01) :10-20