参考文献/References:
[1]刘德春,曾琼,刘勇,等. ‘纽荷尔’脐橙及其光泽型突变体果皮色差指数变化规律的研究[J]. 果树学报,2013,30(6):914-917.
[2]王伟杰,徐建国,徐昌杰. 宫内伊予柑果实发育期间色泽和色素的变化[J]. 园艺学报,2006,33(3):461-465.
[3]周蓉,蒋芳玲,梁梅,等. 用色差仪法定量分析番茄果实番茄红素的含量[J]. 江西农业学报,2012,24(9):45-48.
[4]GOMEZ R, COSTA J, AMO M, et al. Physicochemical and colorimetric evaluation of local varieties of tomato grown in SE Spain[J]. Journal of the Science of Food and Agriculture, 2001, 81(11): 1101-1105.
[5]LOPEZ C A F, GOMEZ P A. Comparison of color indexes for tomato ripening[J]. Horticultura Brasileira, 2004, 22(3): 534-537.
[6]王孝宣. 增强番茄果实颜色基因的精细定位及相关基因的差异表达[D]. 北京:中国农业科学研究院,2004.
[7]赵润洲,刘鸣韬. 番茄果实色泽与色素组成的关系[J]. 河南农业科学,2011,40(9):98-100.
[8]PETIT J, BRES C, JUST D, et al. Analyses of tomato fruit brightness mutants uncover both cutin-deficient and cutin-abundant mutants and a new hypomorphic allele of GDSL lipase[J]. Plant Physiology, 2014, 164(2): 888-906.
[9]周冰钰,秦智伟,周秀艳,等. 黄瓜种质资源果皮表面光泽性评价[J]. 中国蔬菜,2013,1(11):27-31.
[10]潘磊庆,孙柯,屠康,等. 一种苹果表面光泽度检测方法: CN105699397A[P]. 2016-06-22.
[11]许向阳,赵婷婷,李景富. 番茄抗叶霉病基因Cf12的分子标记及种质资源筛选[J]. 园艺学报,2011,38(S):2568.
[12]ADATO A, MANDEL T, MINTZ-ORON S, et al. Fruit-surface flavonoid accumulation in tomato is controlled by a SlMYB12-regulated transcriptional network[J]. Plos Genet, 2009, 5: e1000777.
[13]RUIZMAY E, HUCKO S, HOWE K J, et al. A comparative study of lectin affinity based plant n-glycoproteome profiling using tomato fruit as a model[J]. Molecular and Cellular Proteomics, 2014, 13(2): 566-579.
[14]王利群,戴雄泽. 色差计在辣椒果实色泽变化检测中的应用[J]. 辣椒杂志,2009,7(3):23-26.
[15]SEMAGN K, BEYENE Y, WARBURTON M L, et al. Meta-analyses of QTL for grain yield and anthesis silking interval in 18 maize populations evaluated under water-stressed and well-watered environments[J]. BMC Genomics, 2013, 14(1): 313.
[16]HOLLAND J B. Genetic architecture of complex traits in plants[J]. Current Opinion in Plant Biology, 2007, 10(2): 156-161.
[17]COLLARD B C, MACKILL D J. Marker-assisted selection: an approach for precision plant breeding in the twenty-first century[J]. Philosophical Transactions of the Royal Society of London Series B-biological Sciences, 2008, 363(1491): 557-572.
[18]SUN Y, WANG J, JONATHANH C, et al. Efficiency of selective genotyping for genetic analysis of complex traits and potential applications in crop improvement[J]. Molecular Breeding, 2010, 26(3): 493-511.
[19]杨绪勤. 黄瓜果瘤和果实无光泽性状基因的定位与功能分析[D]. 上海:上海交通大学,2014.
相似文献/References:
[1]刘金龙,辛寒晓,范学明,等.盐胁迫下鱼蛋白多肽对樱桃番茄种子发芽特性的影响[J].江苏农业学报,2017,(03):662.[doi:doi:10.3969/j.issn.1000-4440.2017.03.026]
LIU Jin-long,XIN Han-xiao,FAN Xue-ming,et al.Effects of fish protein polypeptide on salt-stressed cherry tomato seed germination[J].,2017,(03):662.[doi:doi:10.3969/j.issn.1000-4440.2017.03.026]
[2]周蓉,赵统敏,赵丽萍,等.高光泽番茄育种及果实表面光泽度[J].江苏农业学报,2018,(06):1437.[doi:doi:10.3969/j.issn.1000-4440.2018.06.033]
ZHOU Rong,ZHAO Tong-min,ZHAO Li-ping,et al.High-glossiness tomato breeding and fruit surface glossiness[J].,2018,(03):1437.[doi:doi:10.3969/j.issn.1000-4440.2018.06.033]
[3]徐达勋.不同增氧滴灌方法对温室樱桃番茄产量、品质及光合作用的影响[J].江苏农业学报,2020,(01):152.[doi:doi:10.3969/j.issn.1000-4440.2020.01.021]
XU Da-xun.Effects of different aerobic drip irrigation methods on yield, quality and photosynthesis of cherry tomato in greenhouse[J].,2020,(03):152.[doi:doi:10.3969/j.issn.1000-4440.2020.01.021]