首站-论文投稿智能助手
典型文献
Transcriptome and co-expression network analyses provide insights into fruit shading that enhances carotenoid accumulation in pomelo(Citrus grandis)
文献摘要:
Carotenoids are indispensable for human health,and citrus fruit are a crucial source of dietary carotenoids.Bagging,an important orchard practice to enhance fruit economic value,is widely used in many horticultural crops,including citrus fruit.The bagged'Majiayou'pomelo(Citrus grandis)produces vivid deeper red pulp,a fantastic agronomic trait,but the underlying molecular regulatory mechanism remains largely unex-plored.Here,the enhancement of carotenoids,especially lycopene,was confirmed by HPLC analysis of carotenoids in the pulp of bagged fruit and controls.qRT-PCR analysis of the 14 carotenoid pathway genes further revealed that upregulated PSY and downregulated CCD1 expression in bagged fruit could directly enhance the accumulation of carotenoids.In addition,RNA-seq analysis identified 311 differentially expressed genes(DEGs)in the bagged fruit and controls in five developmental stages.Weighted gene co-expression network analysis(WGCNA)identified 13 critical candidate genes among the DEGs,which are closely associated with lycopene accumulation.The underlying regulatory mechanism of these candidate genes on the transcription of carotenoid pathway genes in the bagged fruit was discussed.Considering that the candidate genes were involved in the corresponding metabolic pathways,the increase in sucrose content and decrease in ABA in bagged fruit were also identified,implying that these candidate genes may be indirectly related to carotenoid enhancement in pulp by regulating phytohormones,pri-mary metabolism,and stress responses.The results provide new insights into the potential regulatory mechanism of lycopene enhancement in the pulp of bagged'Majiayou'pomelo,facilitating breeding and orchard management efforts to improve the nutritional quality and esthetic value of citrus,and perhaps other fruit crops.
文献关键词:
作者姓名:
Qihang Jiang;Junili Ye;Kaijie Zhu;Fangfang Wu;Lijun Chai;Qiang Xu;Xiuxin Deng
作者机构:
Key Laboratory of Horticultural Plant Biology of MOE(Ministry of Education),Huazhong Agricultural University,Wuhan 430070,China;The Agricultural Bureau of Guangfeng County,Jiangxi Province,Shangrao 334600,China
引用格式:
[1]Qihang Jiang;Junili Ye;Kaijie Zhu;Fangfang Wu;Lijun Chai;Qiang Xu;Xiuxin Deng-.Transcriptome and co-expression network analyses provide insights into fruit shading that enhances carotenoid accumulation in pomelo(Citrus grandis))[J].园艺学报(英文版),2022(04):423-434
A类:
Majiayou
B类:
Transcriptome,expression,network,analyses,provide,insights,into,fruit,shading,that,enhances,accumulation,pomelo,Citrus,grandis,Carotenoids,are,indispensable,human,health,citrus,crucial,source,dietary,carotenoids,Bagging,important,orchard,practice,economic,value,widely,used,many,horticultural,crops,including,bagged,produces,vivid,deeper,pulp,fantastic,agronomic,trait,but,underlying,molecular,regulatory,mechanism,remains,largely,unex,plored,Here,enhancement,especially,lycopene,was,confirmed,by,HPLC,analysis,controls,qRT,genes,further,revealed,upregulated,PSY,downregulated,CCD1,could,In,addition,seq,identified,differentially,expressed,DEGs,five,developmental,stages,Weighted,WGCNA,critical,candidate,among,which,closely,associated,these,transcription,discussed,Considering,were,involved,corresponding,metabolic,pathways,increase,sucrose,content,decrease,ABA,also,implying,may,be,indirectly,related,regulating,phytohormones,pri,mary,metabolism,stress,responses,results,new,potential,facilitating,breeding,management,efforts,improve,nutritional,quality,esthetic,perhaps,other
AB值:
0.518404
相似文献
Transcriptomic analysis elucidates the enhanced skeletal muscle mass, reduced fat accumulation, and metabolically benign liver in human follistatin-344 transgenic pigs
LONG Ke-ren;LI Xiao-kai;ZHANG Ruo-wei;GU Yi-ren;DU Min-jie;XING Xiang-yang;DUJia-xiang;MAI Miao-miao;WANG Jing;JIN Long;TANG Qian-zi;HU Si-lu;MA Ji-deng;WANG Xun;PAN Deng-ke;LI Ming-zhou-Institute of Animal Genetics and Breeding,College of Animal Science and Technology,Sichuan Agricultural University,Chengdu 611130,P.R.China;Animal Breeding and Genetics Key Laboratory of Sichuan Province,Pig Science Institute,Sichuan Animal Science Academy,Chengdu 610066,P.R.China;Chengdu Clonorgan Biotechnology Co.,Ltd.,Chengdu 610041,P.R.China;Institute of Animal Sciences,Chinese Academy of Agricultural Sciences,Beijing 100193,P.R.China;Institute of Organ Transplantation,Sichuan Academy of Medical Sciences&Sichuan Provincial People's Hospital,Chengdu 610072,P.R.China
Comparative transcriptome analyses reveal that the MsNST1 gene affects lignin synthesis in alfalfa(Medicago sativa L.)
Qiang Zhou;Pei Mao;Dong Luo;Xutian Chai;Hao Deng;Qiangen Fang;Longfa Fang;Zhibiao Nan;Jiangqi Wen;Zhipeng Liu-State Key Laboratory of Grassland Agro-ecosystems,Key Laboratory of Grassland Livestock Industry Innovation,Ministry of Agriculture and Rural Affairs,Engineering Research Center of Grassland Industry,Ministry of Education,College of Pastoral Agriculture Science and Technology,Lanzhou University,Lanzhou 730020,Gansu,China;Xinjiang Key Laboratory of Desert Plant Roots Ecology and Vegetation Restoration,Xinjiang Institute of Ecology and Geography,Chinese Academy of Sciences,Urumqi 830011,Xinjiang,China;College of Grassland Science/Key Laboratory of Grassland Ecosystem of the Ministry of Education,Gansu Agricultural University,Lanzhou 730020,Gansu,China;Noble Research Institute,LLC,Ardmore,OK 73401,USA
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。