Primary seed dormancy: a temporally multilayered riddle waiting to be unlocked

被引:127
作者
Chahtane, Hicham
Kim, Woohyun
Lopez-Molina, Luis [1 ]
机构
[1] Univ Geneva, Dept Plant Biol, Geneva, Switzerland
基金
瑞士国家科学基金会;
关键词
ABA; Arabidopsis; dormancy; endosperm; germination; seed; ABSCISIC-ACID BIOSYNTHESIS; NATURAL ALLELIC VARIATION; PROTEIN PHOSPHATASE 2C; ARABIDOPSIS-THALIANA; GENE-EXPRESSION; NITRIC-OXIDE; LOW-TEMPERATURE; SECONDARY DORMANCY; FLOWERING TIME; GERMINATION;
D O I
10.1093/jxb/erw377
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Primary seed dormancy is an important adaptive plant trait whereby seed germination is blocked under conditions that would otherwise be favorable for germination. This trait is found in newly produced mature seeds of many species, but not all. Once produced, dry seeds undergo an aging time period, called dry after-ripening, during which they lose primary dormancy and gradually acquire the capacity to germinate when exposed to favorable germination conditions. Primary seed dormancy has been extensively studied not only for its scientific interest but also for its ecological, phenological, and agricultural importance. Nevertheless, the mechanisms underlying primary seed dormancy and its regulation during after-ripening remain poorly understood. Here we review the principal developmental stages where primary dormancy is established and regulated prior to and during seed after-ripening, where it is progressively lost. We attempt to identify and summarize what is known about the molecular and genetic mechanisms intervening over time in each of these stages.
引用
收藏
页码:857 / 869
页数:13
相关论文
共 102 条
[1]   Nitrate, a signal relieving seed dormancy in Arabidopsis [J].
Alboresi, A ;
Gestin, C ;
Leydecker, MT ;
Bedu, M ;
Meyer, C ;
Truong, HN .
PLANT CELL AND ENVIRONMENT, 2005, 28 (04) :500-512
[2]   Changes in endogenous abscisic acid levels during dormancy release and maintenance of mature seeds:: studies with the Cape Verde Islands ecotype, the dormant model of Arabidopsis thaliana [J].
Ali-Rachedi, S ;
Bouinot, D ;
Wagner, MH ;
Bonnet, M ;
Sotta, B ;
Grappin, P ;
Jullien, M .
PLANTA, 2004, 219 (03) :479-488
[3]  
Alonso-Blanco C, 2003, GENETICS, V164, P711
[4]   The IBO germination quantitative trait locus encodes a phosphatase 2C-related variant with a nonsynonymous amino acid change that interferes with abscisic acid signaling [J].
Amiguet-Vercher, Amelia ;
Santuari, Luca ;
Gonzalez-Guzman, Miguel ;
Depuydt, Stephen ;
Rodriguez, Pedro L. ;
Hardtke, Christian S. .
NEW PHYTOLOGIST, 2015, 205 (03) :1076-1082
[5]   From intracellular signaling networks to cell death: the dual role of reactive oxygen species in seed physiology [J].
Bailly, Christophe ;
El-Maarouf-Bouteau, Hayat ;
Corbineau, Francoise .
COMPTES RENDUS BIOLOGIES, 2008, 331 (10) :806-814
[6]   Fluctuation of Arabidopsis seed dormancy with relative humidity and temperature during dry storage [J].
Basbouss-Serhal, Isabelle ;
Leymarie, Juliette ;
Bailly, Christophe .
JOURNAL OF EXPERIMENTAL BOTANY, 2016, 67 (01) :119-130
[7]  
Baskin CC, 2014, SEEDS: ECOLOGY, BIOGEOGRAPHY, AND EVOLUTION OF DORMANCY AND GERMINATION, 2ND EDITION, P1, DOI 10.1016/B978-0-12-416677-6.00001-9
[8]   A classification system for seed dormancy [J].
Baskin, JM ;
Baskin, CC .
SEED SCIENCE RESEARCH, 2004, 14 (01) :1-16
[9]   The AtSUC5 sucrose transporter specifically expressed in the endosperm is involved in early seed development in Arabidopsis [J].
Baud, S ;
Wuillème, S ;
Lemoine, R ;
Kronenberger, J ;
Caboche, M ;
Lepiniec, L ;
Rochat, C .
PLANT JOURNAL, 2005, 43 (06) :824-836
[10]   An integrated overview of seed development in Arabidopsis thaliana ecotype WS [J].
Baud, S ;
Boutin, JP ;
Miquel, M ;
Lepiniec, L ;
Rochat, C .
PLANT PHYSIOLOGY AND BIOCHEMISTRY, 2002, 40 (02) :151-160