1 |
Weedon B,Moss G P.ChemInform Abstract:Structure and Nomenclature[J]. ChemInform,1995:26(32).
|
2 |
Britton G.Structure and nomenclature of carotenoids[M].//Britton G,Young A.Carotenoids in Photosynthesis.London:Chapman and Hall,1993:1-15.
|
3 |
Bartley G E,Scolnik P A.Plant carotenoids:pigments for photoprotection,visual attraction,and human health[J].The Plant Cell,1995,7(7):1027-1038.
|
4 |
Tracewell C A,Vrettos J S,Bautista J A,et al.Carotenoid photooxidation in photosystem Ⅱ[J].Archives of Biochemistry and Biophysics,2001,385(1):61-69.
|
5 |
Bouvier F,Isner J C,Dogbo O,et al.Oxidative tailoring of carotenoids:a prospect towards novel functions in plants[J].Trends in Plant Science,2005,10(4):187-194.
|
6 |
Heo J,Kim S H,Lee P C.New insight into the cleavage reaction of Nostoc sp.strain PCC 7120 carotenoid cleavage dioxygenase in natural and nonnatural carotenoids[J].Applied and Environmental Microbiology,2013,79(11):3336-3345.
|
7 |
Ohmiya A,Sumitomo K,Aida R.“Yellow Jimba”:suppression of carotenoid cleavage dioxygenase(CmCCD4a) expression turns white chrysanthemum petals yellow[J].The of the Japanese Society for Horticultural Science,2009,78(4):450-455.
|
8 |
Kloer D P,Ruch S,Al-Babili S,et al.The structure of a retinal-forming carotenoid oxygenase[J].Science,2005,308(5719):267-269.
|
9 |
Auldridge M E,Block A,Vogel J T,et al.Characterization of three members of the Arabidopsis carotenoid cleavage dioxygenase family demonstrates the divergent roles of this multifunctional enzyme family[J].The Plant Journal,2006,45(6):982-993.
|
10 |
Kim Y,Hwang I,Jung H J,et al.Genome-wide classification and abiotic stress-responsive expression profiling of carotenoid oxygenase genes in Brassica rapa and Brassica oleracea[J].Journal of Plant Growth Regulation,2016,35(1):202-214.
|
11 |
Lashbrooke J G,Young P R,Dockrall S J,et al.Functional characterisation of three members of the Vitis vinifera L.carotenoid cleavage dioxygenase gene family[J].BMC Plant Biology,2013,13(1):156.
|
12 |
Vallabhaneni R,Bradbury L M T,Wurtzel E T.The carotenoid dioxygenase gene family in maize,sorghum,and rice[J].Archives of Biochemistry and Biophysics,2010,504(1):104-111.
|
13 |
Walter M H,Floss D S,Strack D.Apocarotenoids:hormones,mycorrhizal metabolites and aroma volatiles[J].Planta,2010,232(1):1-17.
|
14 |
Wei Y P,Wan H J,Wu Z M,et al.A comprehensive analysis of carotenoid cleavage dioxygenases genes in Solanum lycopersicum[J].Plant Molecular Biology Reporter,2016,34(2):512-523.
|
15 |
Tan B C,Schwartz S H,Zeevaart J A D,et al.Genetic control of abscisic acid biosynthesis in maize[J].Proceedings of the National Academy of Sciences of the United States of America,1997,94(22):12235-12240.
|
16 |
Kloer D P,Schulz G E.Structural and biological aspects of carotenoid cleavage[J].Cellular and Molecular Life Sciences CMLS,2006,63(19-20):2291-2303.
|
17 |
Ilg A,Beyer P,Al-Babili S.Characterization of the rice carotenoid cleavage dioxygenase 1 reveals a novel route for geranial biosynthesis[J].The FEBS Journal,2009,276(3):736-747.
|
18 |
Simkin A J,Schwartz S H,Auldridge M,et al.The tomato Carotenoid cleavage dioxygenase 1 genes contribute to the formation of the flavor volatiles β-ionone,pseudoionone,and geranylacetone[J].The The Plant Journal,2004,40(6):882-892.
|
19 |
Alder A,Jamil M,Marzorati M,et al.The path from β-carotene to carlactone,a strigolactone-like plant hormone[J].Science,2012,335(6074):1348-1351.
|
20 |
Booker J,Sieberer T,Wright W,et al.MAX1 encodes a cytochrome P450 family member that acts downstream of MAX3/4 to produce a carotenoid-derived branch-inhibiting hormone[J].Developmental Cell,2005,8(3):443-449.
|
21 |
Schwartz S H,Qin X Q,Loewen M C.The biochemical characterization of two carotenoid cleavage enzymes from Arabidopsis indicates that a carotenoid-derived compound inhibits lateral branching[J].Journal of Biological Chemistry,2004,279(45):46940-46945.
|
22 |
Seo M,Koshiba T.Complex regulation of ABA biosynthesis in plants[J].Trends in Plant Science,2002,7(1):41-48.
|
23 |
Wang R K,Wang C E,Fei Y Y,et al.Genome-wide identification and transcription analysis of soybean carotenoid oxygenase genes during abiotic stress treatments[J].Molecular Biology Reports,2013,40(8):4737-4745.
|
24 |
Chen H F,Zuo X Y,Shao H X,et al.Genome-wide analysis of carotenoid cleavage oxygenase genes and their responses to various phytohormones and abiotic stresses in apple(Malus domestica)[J].Plant Physiology and Biochemistry,2018,123:81-93.
|
25 |
Walker J M.The proteomics protocols handbook[M].Totowa:Humana Press2005.
|
26 |
Chou K C,Shen H B.Cell-PLoc:a package of Web servers for predicting subcellular localization of proteins in various organisms[J].Nature Protocols,2008,3(2):153-162.
|
27 |
Qin C B,Wang X M.The arabidopsis phospholipase D family.characterization of a calcium-independent and phosphatidylcholine-selective PLDζ1 with distinct regulatory domains[J].Plant Physiology,2002,128(3):1057-1068.
|
28 |
Kumar S,Stecher G,Li M,et al.MEGA X:molecular evolutionary genetics analysis across computing platforms[J].Molecular Biology and Evolution,2018,35(6):16547-1549.
|
29 |
Tamura K,Stecher G,Peterson D,et al.MEGA6:molecular evolutionary genetics analysis version 6.0[J].Molecular Biology and Evolution,2013,30(12):2725-2729.
|
30 |
Chen C J,Chen H,Zhang Y,et al.TBtools:an integrative toolkit developed for interactive analyses of big biological data[J].Molecular Plant,2020,13(8):1194-1202.
|
31 |
Wang L Z,Hu W,Sun J T,et al.Genome-wide analysis of SnRK gene family in Brachypodium distachyon and functional characterization of BdSnRK2.9[J].Plant Science,2015,237:33-45.
|
32 |
Sun X,Cao L N,Zhang S,et al.Genome-wide analysis of the RGP gene family in Populus trichocarpa and their expression under nitrogen treatment[J].Gene Expression Patterns,2020,38.119142.
|
33 |
Zhang Y,Liu C,Cheng H,et al.DNA methylation and its effects on gene expression during primary to secondary growth in poplar stems[J].BMC Genomics,2020,21(1):498.
|
34 |
Priya R,Siva R.Phylogenetic analysis and evolutionary studies of plant carotenoid cleavage dioxygenase gene[J].Gene,2014,548(2):223-233.
|
35 |
陈鸿飞.苹果CCO和GATA基因家族的鉴定、系统进化和非生物胁迫的表达分析[D].杨凌:西北农林科技大学,2018.
|
|
Chen H F.Genome-wide identification,phylogenetic evolution and expression analysis of CCO and GATA gene families in apple[D].Yangling:Northwest A&F University,2018.
|
36 |
Vision T J,Brown D G,Tanksley S D.The origins of genomic duplications in Arabidopsis[J].Science,2000,290(5499):2114-2117.
|
37 |
Yang S H,Zhang X H,Yue J X,et al.Recent duplications dominate NBS-encoding gene expansion in two woody species[J].Molecular Genetics and Genomics,2008,280(3):187-198.
|
38 |
张亚飞,彭洁,朱延松,等.柑橘CCD基因家族鉴定及CcCCD4a对果肉颜色的影响[J].中国农业科学,2020,53(9):1874-1883,1885-1889.
|
|
Zhang Y F ,Peng J ,Zhu Y S,et al.Genome wide identification of CCD gene family in Citrus and effect of CcCCD4a on the color of citrus flesh[J].Scientia Agricultura Sinica,2020,53(9):1874-1883,1885-1889.
|
39 |
Rushton P J,Somssich I E,Ringler P,et al.WRKY transcription factors[J].Trends in Plant Science,2010,15(5):247-258.
|
40 |
王佺珍,刘倩,高娅妮,等.植物对盐碱胁迫的响应机制研究进展[J].生态学报,2017,37(16):5565-5577.
|
|
Wang Q Z,Liu Q,Gao Y N,et al.Review on the mechanisms of the response to salinity-alkalinity stress in plants[J].Acta Ecologica Sinica,2017,37(16):5565-5577.
|
41 |
Capula-Rodríguez R,Valdez-Aguilar L A,Cartmill D L,et al.Supplementary calcium and potassium improve the response of tomato(Solanum lycopersicum L.) to simultaneous alkalinity,salinity,and boron stress[J].Communications in Soil Science and Plant Analysis,2016,47(4):505-511.
|
42 |
Chen W C,Cui P J,Sun H Y,et al.Comparative effects of salt and alkali stresses on organic acid accumulation and ionic balance of seabuckthorn(Hippophae rhamnoides L.)[J].Industrial Crops and Products,2009,30(3):351-358.
|
43 |
郭瑞,李峰,周际,等.亚麻响应盐、碱胁迫的生理特征[J].植物生态学报,2016,40(1):69-79.
|
|
Guo R,Li F,Zhou J,et al.Eco-physiological responses of linseed(Linum usitatissimum) to salt and alkali stresses[J].Chinese Journal of Plant Ecology,2016,40(1):69-79.
|