[1]Shetty A A. Vegetables as sources of antioxidants[J]. Journal of Food & Nutritional Disorders,2013,2(1):1-5.
[2]Kwon Y I,Apostolidis E,Shetty K. Evaluation of pepper (Capsicum annuum) for management of diabetes and hypertension[J]. Journal of Food Biochemistry,2007,31(3):370-385.
[3]Mueller-Seitz E,Hiepler C,Petz M. Chili pepper fruits:content and pattern of capsaicinoids in single fruits of different ages[J]. Journal of Agricultural and Food Chemistry,2008,56(24):12114-12121.
[4]Sun T H,Yuan H,Cao H B,et al. Carotenoid metabolism in plants:the role of plastids[J]. Molecular Plant,2018,11(1):58-74.
[5]Huang J J,Lin S L,Xu W W,et al. Occurrence and biosynthesis of carotenoids in phytoplankton[J]. Biotechnology Advances,2017,35(5):597-618.
[6]孟纯阳,魏小春,姚秋菊,等. 辣椒维生素C生物合成及代谢研究进展[J]. 基因组学与应用生物学,2018,37(6):2558-2565.
[7]Olatunji T L,Afolayan A J. The suitability of chili pepper (Capsicum annuum L.) for alleviating human micronutrient dietary deficiencies:a review[J]. Food Science & Nutrition,2018,6(8):2239-2251.
[8]Eggersdorfer M,Wyss A. Carotenoids in human nutrition and health[J]. Archives of Biochemistry and Biophysics,2018,652:18-26.
[9]Sharma A,Shahzad B,Rehman A,et al. Response of phenylpropanoid pathway and the role of polyphenols in plants under abiotic stress[J]. Molecules,2019,24(13):2452.
[10]Panche A N,Diwan A D,Chandra S R. Flavonoids:an overview[J]. Journal of Nutritional Science,2016,5:e47.
[11]Nadi M,Fikri F,Purnama M T E. Determination of capsaicin levels in Capsicum annum Linn ethanolic extract using thin layer chromatography analysis[J]. Systematic Reviews in Pharmacy,2020,11(6):2020.
[12]Douventzidis A,Landquist E. Logarithms are hot stuff:a new rating scale for chili peppers[J]. Problems,Resources,and Issues in Mathematics Undergraduate Studies,2021(3):1-20.
[13]Velázquez R,Hernández A,Martín A,et al. Quality assessment of commercial paprikas[J]. International Journal of Food Science & Technology,2014,49(3):830-839.
[14]Bosland P W,Baral J B. ‘Bhut Jolokia’-the worlds hottest known Chile pepper is a putative naturally occurring interspecific hybrid[J]. HortScience,2007,42(2):222-224.
[15]Shiva K,Gobinath P,Zachariah J. Variability in quality attributes of paprika and paprika alike chillies (Capsicum annuum L.)[J]. Journal of Spices & Aromatic Crops,2014,23(1):17-25.
[16]Farwah S,Kashmir J &,Hussain I K,et al. Genetic variability,heritability and genetic advance studies in chilli (Capsicum annuum L.) genotypes[J]. International Journal of Chemical Studies,2020,8(3):1328-1331.
[17]Arpaci B B,Baktemur G,Keles D,et al. Determination of color and heat level of some resistance sources and improved pepper genotypes[J]. Crop Breeding,Genetics and Genomics,2020,2(1):e200006.
[18]Muoz-Ramírez L S,Pea-Yam L P,Avilés-Vias S A,et al. Behavior of the hottest chili peppers in the world cultivated in yucatan,Mexico[J]. HortScience,2018,53(12):1772-1775.
[19]Duelund L,Mouritsen O G. Contents of capsaicinoids in chillies grown in Denmark[J]. Food Chemistry,2017,221:913-918.
[20]Giuffrida D,Dugo P,Torre G,et al. Characterization of 12 Capsicum varieties by evaluation of their carotenoid profile and pungency determination[J]. Food Chemistry,2013,140(4):794-802.
[21]González-Zamora A,Sierra-Campos E,Luna-Ortega J G,et al. Characterization of different Capsicum varieties by evaluation of their capsaicinoids content by high performance liquid chromatography,determination of pungency and effect of high temperature[J]. Molecules,2013,18(11):13471-13486.
[22]Jang S,Han K,Jo Y D,et al. Substitution of a dysfunctional pAMT allele results in low-pungency but high levels of capsinoid in Capsicum chinense ‘Habanero’[J]. Plant Breeding and Biotechnology,2015,3(2):119-128.
[23]Yazawa S,Suetom N,Okamoto K,et al. Content of capsaicinoids and capsaicinoid-like substances in fruit of pepper (Capsicum annuum L.) hybrids made with ‘CH-19 sweet’ as a parent[J]. Journal of the Japanese Society for Horticultural Science,1989,58(3):601-607.
[24]Tanaka Y,Hosokawa M,Miwa T,et al. Novel loss-of-function putative aminotransferase alleles cause biosynthesis of capsinoids,nonpungent capsaicinoid analogues,in mildly pungent chili peppers (Capsicum chinense)[J]. Journal of Agricultural and Food Chemistry,2010,58(22):11762-11767.
[25]Han K,Jeong H J,Sung J,et al. Biosynthesis of capsinoid is controlled by the Pun1 locus in pepper[J]. Molecular Breeding,2013,31(3):537-548.
[26]Park Y J,Nishikawa T,Minami M,et al. A low-pungency S3212 genotype of Capsicum frutescens caused by a mutation in thputative aminotransferase (p-AMT) gene[J]. Molecular Genetics and Genomics,2015,290(6):2217-2224.
[27]Nahak S C,Nandi A,Sahu G S,et al. Assessment of genetic diversity in different chilli (Capsicum annuum L.) genotypes[J]. International Journal of Current Microbiology and Applied Sciences,2018,7(9):634-639.
[28]Srinivas J,Reddy K R,Saidaiah P,et al. Performance of chilli genotypes for yield and yield attributes of fruit quality in southern telangana[J]. International Journal of Current Microbiology and Applied Sciences,2017,6(11):469-477.
[29]Vijaya H M,Gowda A P M,Umesha K,et al. Evaluation and correlation studies in chilli (Capsicum annuum L.) genotypes for quality parameters[J]. Progressive Horticulture,2015,47(2):341.
[30]蓬桂华,张爱民,苏丹,等. 93份贵州地方辣椒资源品质性状分析[J]. 植物遗传资源学报,2017,18(3):429-435.
[31]张军,赵丽华,张洁,等. 四川省辣椒种质资源的辣椒素含量评价[J]. 中国农学通报,2018,34(28):43-49.
[32]苏丹,蓬桂华,付文婷,等. 贵州部分地方辣椒资源辣度特性分析[J]. 种子,2019,38(5):94-99.
[33]Stewart C,Mazourek M,Stellari G M,et al. Genetic control of pungency in C.chinense via the Pun1 locus[J]. Journal of Experimental Botany,2007,58(5):979-991.
[34]Arce-Rodríguez M L,Ochoa-Alejo N. Biochemistry and molecular biology of capsaicinoid biosynthesis:recent advances and perspectives[J]. Plant Cell Reports,2019,38(9):1017-1030.
[35]Tian S L,Li L,Shah S N M,et al. The relationship between red fruit colour formation and key genes of capsanthin biosynthesis pathway in Capsicum annuum[J]. Biologia Plantarum,2015,59(3):507-513.
[36]Guzman I,Hamby S,Romero J,et al. Variability of carotenoid biosynthesis in orange colored Capsicum spp.[J]. Plant Science,2010,179(1/2):49-59.
[37]Hulse-Kemp A M,Maheshwari S,Stoffel K,et al. Reference quality assembly of the 3.5-Gb genome of Capsicum annuum from a single linked-read library[J]. Horticulture Research,2018,5:4.
[38]Li W P,Cheng J W,Wu Z M,et al. An InDel-based linkage map of hot pepper (Capsicum annuum)[J]. Molecular Breeding,2015,35(1):32.
[39]刘周斌. 基于microRNAs、转录组和蛋白质组学的辣椒果实发育与营养品质形成机制研究[D]. 长沙:湖南大学,2020:2-11.
[40]Nimmakayala P,Abburi V L,Saminathan T,et al. Genome-wide diversity and association mapping for capsaicinoids and fruit weight in Capsicum annuum L.[J]. Scientific Reports,2016,6:38081.
[41]Qin C,Yu C S,Shen Y O,et al. Whole-genome sequencing of cultivated and wild peppers provides insights into Capsicum domestication and specialization[J]. Proceedings of the National Academy of Sciences of the United States of America,2014,111(14):5135-5140.
[42]Ou L J,Li D,Lü J H,et al. Pan-genome of cultivated pepper (Capsicum) and its use in gene presence-absence variation analyses[J]. The New Phytologist,2018,220(2):360-363.
[43]Heidari-Zefreh A A,Shariatpanahi M E,Mousavi A,et al. Enhancement of microspore embryogenesis induction and plantlet regeneration of sweet pepper (Capsicum annuum L.) using putrescine and ascorbic acid[J]. Protoplasma,2019,256(1):13-24.
[44]孙国胜,杨宇,许可翠,等. 纳米磁性颗粒介导的辣椒遗传转化体系建立[J]. 核农学报,2021,35(6):1307-1312.
[45]Tian S L,Li L,Chai W G,et al. Effects of silencing key genes in the capsanthin biosynthetic pathway on fruit color of detached pepper fruits[J]. BMC Plant Biology,2014,14:314.
[46]胡田田,何琼,洪霞,等. 基于模糊Borda组合模型评价番茄产量及品质对水肥供应响应[J]. 农业工程学报,2019,35(19):142-151.
[47]胡晓辉,高子星,马永博,等. 基于产量品质及水肥利用率的袋培辣椒水肥耦合方案[J]. 农业工程学报,2020,36(17):81-89.
[48]高子星,马雪强,王君正,等. 水肥耦合对越冬基质栽培辣椒产量、品质和水分利用效率的影响[J]. 中国农业大学学报,2022,27(1):96-108.
[49]马国礼,张国斌,强浩然,等. 水氮耦合对日光温室基质栽培辣椒生长发育、产量及品质的影响[J]. 甘肃农业大学学报,2018,53(1):58-64,70.
[50]刘发万,宋泽州,钟利,等. 辣椒、玉米、芋头间套作对辣椒主要病害的控制及增值效应[J]. 西南农业学报,2009,22(3):659-662.
[51]曹国璠,丁飞. 间作栽培措施对辣椒主要品质指标的影响[J]. 南方农业学报,2011,42(9):1112-1115.
[1]任旭琴,彭莉,章宇萍,等.邻苯二甲酸二丁酯对辣椒根系生理特性和土壤酶活性的影响[J].江苏农业科学,2015,43(12):191.
Ren Xuqin,et al.Effects of dibutyl phthalate (DBP) on root physiological characteristics and soil enzyme activity of pepper[J].Jiangsu Agricultural Sciences,2015,43(16):191.
[2]祁建波,张永吉,张永泰,等.耐低温弱光辣椒新品种扬椒5号的选育[J].江苏农业科学,2014,42(10):153.
Qi Jianbo,et al.Breeding of new pepper cultivar“Yangjiao No.5”with tolerance to low-temperature and low light-intensity[J].Jiangsu Agricultural Sciences,2014,42(16):153.
[3]刘金兵,王述彬,潘宝贵,等.辣椒新品种苏椒20号的选育与栽培技术[J].江苏农业科学,2013,41(11):110.
Liu Jinbing,et al.Breeding and cultivation techniques of new hot pepper cultivar “Sujiao No.20”[J].Jiangsu Agricultural Sciences,2013,41(16):110.
[4]陈素娟,陈国元,马运涛.醋糟混合基质在辣椒育苗中的应用[J].江苏农业科学,2013,41(11):178.
Chen Sujuan,et al.Application of vinegar residue mixed matrix in cultivation of pepper seedlings[J].Jiangsu Agricultural Sciences,2013,41(16):178.
[5]吴永成,郑佳秋,郭军,等.涝害对辣椒幼苗生理活性的影响[J].江苏农业科学,2013,41(12):156.
Wu Yongcheng,et al.Effect of waterlogging catastrophe on physiological activity of pepper seedlings[J].Jiangsu Agricultural Sciences,2013,41(16):156.
[6]王付娟,李淑梅,库丽霞.玉米豫综5号群体果穗不同部位品质含量分析[J].江苏农业科学,2014,42(02):272.
Wang Fujuan,et al.Analysis of quality of different spike position of maize cultivar“Yuzong No.5”[J].Jiangsu Agricultural Sciences,2014,42(16):272.
[7]周玲玲,张黎杰,姜若勇,等.不同墙体材料的日光温室环境变化及其对辣椒产量与品质的影响[J].江苏农业科学,2014,42(02):339.
Zhou Lingling,et al.Effects of different materials of greenhouse walls on environmental factors and yield and quality of pepper[J].Jiangsu Agricultural Sciences,2014,42(16):339.
[8]徐广春,孙亚萍,徐德进,等.设施大棚辣椒蚜虫对烟碱类药剂的敏感性[J].江苏农业科学,2016,44(04):177.
Xu Guangchun,et al.Susceptibility of capsicum aphides to neonicotinoid insecticides in greenhouse[J].Jiangsu Agricultural Sciences,2016,44(16):177.
[9]母养秀,杜燕萍,陈彩锦,等.不同苦荞品种营养品质与农艺性状及产量的相关性[J].江苏农业科学,2016,44(06):139.
Mu Yangxiu,et al.Correlation analysis of nutritional quality with agronomic traits and seed yield of different varieties of tartary buckwheat[J].Jiangsu Agricultural Sciences,2016,44(16):139.
[10]莫熙礼,蒋选利,武华文,等.白粉病菌对不同抗性辣椒品种防御酶活性的影响及其互作超微结构分析[J].江苏农业科学,2016,44(06):229.
Mo Xili,et al.Effects of powdery mildew on defense enzyme activity in pepper with different resistant and ultrastructural analysis of interaction of pepper with Leveillula taurica (Lev.) Arn.[J].Jiangsu Agricultural Sciences,2016,44(16):229.