Capturing and Selecting Senescence Variation in Wheat

被引:22
作者
Chapman, Elizabeth A. [1 ]
Orford, Simon [1 ]
Lage, Jacob [2 ]
Griffiths, Simon [1 ]
机构
[1] John Innes Ctr, Dept Crop Genet, Norwich Res Pk, Norwich, Norfolk, England
[2] KWS UK Ltd, Thriplow, England
基金
英国生物技术与生命科学研究理事会;
关键词
senescence; phenotyping; selection; staygreen; grain development; peduncle; leaves; quantification; STAY-GREEN TRAITS; GRAIN PROTEIN-CONCENTRATION; FLAG LEAF SENESCENCE; WINTER-WHEAT; GENETIC-VARIATION; USE EFFICIENCY; SPRING WHEAT; YIELD; REMOBILIZATION; DURATION;
D O I
10.3389/fpls.2021.638738
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Senescence is a highly quantitative trait, but in wheat the genetics underpinning senescence regulation remain relatively unknown. To select senescence variation and ultimately identify novel genetic regulators, accurate characterization of senescence phenotypes is essential. When investigating senescence, phenotyping efforts often focus on, or are limited to, the visual assessment of flag leaves. However, senescence is a whole-plant process, involving remobilization and translocation of resources into the developing grain. Furthermore, the temporal progression of senescence poses challenges regarding trait quantification and description, whereupon the different models and approaches applied result in varying definitions of apparently similar metrics. To gain a holistic understanding of senescence, we phenotyped flag leaf and peduncle senescence progression, alongside grain maturation. Reviewing the literature, we identified techniques commonly applied in quantification of senescence variation and developed simple methods to calculate descriptive and discriminatory metrics. To capture senescence dynamism, we developed the idea of calculating thermal time to different flag leaf senescence scores, for which between-year Spearman's rank correlations of r >= 0.59, P < 4.7 x 10(-5) (TT70), identify as an accurate phenotyping method. Following our experience of senescence trait genetic mapping, we recognized the need for singular metrics capable of discriminating senescence variation, identifying thermal time to flag leaf senescence score of 70 (TT70) and mean peduncle senescence (MeanPed) scores as most informative. Moreover, grain maturity assessments confirmed a previous association between our staygreen traits and grain fill extension, illustrating trait functionality. Here we review different senescence phenotyping approaches and share our experiences of phenotyping two independent recombinant inbred line (RIL) populations segregating for staygreen traits. Together, we direct readers toward senescence phenotyping methods we found most effective, encouraging their use when investigating and discriminating senescence variation of differing genetic bases, and aid trait selection and weighting in breeding and research programs alike.
引用
收藏
页数:17
相关论文
共 67 条
[1]  
Adu M. O., 2011, Journal of Agricultural and Biological Science, V6, P16
[2]   Associations of NAM-A1 alleles with the onset of senescence and nitrogen use efficiency under Western Australian conditions [J].
Alhabbar, Zaid ;
Islam, Shahidul ;
Yang, Rongchang ;
Diepeveen, Dean ;
Anwar, Masood ;
Balotf, Sadegh ;
Sultana, Nigarin ;
Maddern, Rowan ;
She, Maoyun ;
Zhang, Jingjuan ;
Ma, Wujun ;
Juhasz, Angela .
EUPHYTICA, 2018, 214 (10)
[3]  
[Anonymous], 2018, Wheat Growth Guide
[4]   R/qtl: high-throughput multiple QTL mapping [J].
Arends, Danny ;
Prins, Pjotr ;
Jansen, Ritsert C. ;
Broman, Karl W. .
BIOINFORMATICS, 2010, 26 (23) :2990-2992
[5]   Functional characterization of GPC-1 genes in hexaploid wheat [J].
Avni, Raz ;
Zhao, Rongrong ;
Pearce, Stephen ;
Jun, Yan ;
Uauy, Cristobal ;
Tabbita, Facundo ;
Fahima, Tzion ;
Slade, Ann ;
Dubcovsky, Jorge ;
Distelfeld, Assaf .
PLANTA, 2014, 239 (02) :313-324
[6]   Genotypic variation in the uptake, partitioning and remobilisation of nitrogen during grain-filling in wheat [J].
Barraclough, Peter B. ;
Lopez-Bellido, Rafael ;
Hawkesford, Malcolm J. .
FIELD CROPS RESEARCH, 2014, 156 :242-248
[7]  
Bates D., 2015, Journal of Statistical Software, DOI [10.18637/jss.v067.i01, DOI 10.18637/JSS.V067.I01]
[8]   Anthesis date mainly explained correlations between post-anthesis leaf senescence, grain yield, and grain protein concentration in a winter wheat population segregating for flowering time QTLs [J].
Bogard, Matthieu ;
Jourdan, Matthieu ;
Allard, Vincent ;
Martre, Pierre ;
Perretant, Marie Reine ;
Ravel, Catherine ;
Heumez, Emmanuel ;
Orford, Simon ;
Snape, John ;
Griffiths, Simon ;
Gaju, Oorbessy ;
Foulkes, John ;
Le Gouis, Jacques .
JOURNAL OF EXPERIMENTAL BOTANY, 2011, 62 (10) :3621-3636
[9]   Identification of Transcription Factors Regulating Senescence in Wheat through Gene Regulatory Network Modelling [J].
Borrill, Philippa ;
Harrington, Sophie A. ;
Simmonds, James ;
Uauy, Cristobal .
PLANT PHYSIOLOGY, 2019, 180 (03) :1740-1755
[10]   Wheat Grain Filling Is Limited by Grain Filling Capacity rather than the Duration of Flag Leaf Photosynthesis: A Case Study Using NAM RNAi Plants [J].
Borrill, Philippa ;
Fahy, Brendan ;
Smith, Alison M. ;
Uauy, Cristobal .
PLOS ONE, 2015, 10 (08)