首站-论文投稿智能助手
典型文献
Genome-wide identification and expression analysis of NIN-like Protein(NLP)genes reveals their potential roles in the response to nitrate signaling in watermelon
文献摘要:
To balance the relationship between high yield and low nitrogen supply,the nitrogen utilization efficiency of watermelon needs to be improved urgently.Nodule inception-like Protein(NLP)transcription factors play a key node role in nitrate response and growth and devel-opment of plant,however,comprehensive analysis of the NLP gene family in watermelon is unclear.This study explored the functional classification,evolutionary characteristics,and expression profile of the ClNLP gene family.Three ClNLPs were categorized into three groups according to their gene structure and phylogeny.All of them contained the conserved RWP-RK and PB1 domains.Evolutionary analysis of ClNLPs revealed that ClNLP1 and ClNLP3 underwent strong purified selection.In addition,cis-acting elements related to plant hormones and abiotic stresses were present in the ClNLP promoter.According to tissue-specific analysis ClNLP was widely expressed in roots,stems,leaves,flowers and fruits,and ClNLP1 was significantly induced in the roots of different nitrogen utilization varieties under different nitrate nitrogen supply.The SRTING functional protein association network suggested that ClNLP1 is associated with most genes,such as NRT1.1,NRT2.1,NIA1,and NIR1,and the dual-luciferase reporter assay found that ClNLP1 positively regulates the expression of ClNRT2.1.We speculated that ClNLP1 might play a central role in regulating the response of watermelon to nitrate nitrogen.
文献关键词:
作者姓名:
Gaopeng Yuan;Dexi Sun;Yifan Wang;Guolin An;Weihua Li;Wenjing Si;Junpu Liu;Yingchun Zhu
作者机构:
Zhengzhou Fruit Research Institute of the Chinese Academy of Agricultural Sciences,Zhengzhou 450000,China
引用格式:
[1]Gaopeng Yuan;Dexi Sun;Yifan Wang;Guolin An;Weihua Li;Wenjing Si;Junpu Liu;Yingchun Zhu-.Genome-wide identification and expression analysis of NIN-like Protein(NLP)genes reveals their potential roles in the response to nitrate signaling in watermelon)[J].园艺学报(英文版),2022(05):602-614
A类:
ClNLP,ClNLPs,RWP,ClNLP1,ClNLP3,SRTING,NIR1,ClNRT2
B类:
Genome,identification,expression,analysis,NIN,like,Protein,genes,reveals,their,potential,roles,response,nitrate,signaling,watermelon,To,balance,relationship,between,high,yield,nitrogen,supply,utilization,efficiency,needs,improved,urgently,Nodule,inception,transcription,factors,play,key,node,growth,devel,opment,plant,however,comprehensive,family,unclear,This,study,explored,functional,classification,evolutionary,characteristics,profile,Three,were,categorized,into,three,groups,according,structure,phylogeny,All,them,contained,conserved,RK,PB1,domains,Evolutionary,revealed,that,underwent,strong,purified,selection,In,addition,cis,acting,elements,related,hormones,abiotic,stresses,present,promoter,According,tissue,specific,was,widely,expressed,roots,stems,leaves,flowers,fruits,significantly,induced,different,varieties,protein,association,network,suggested,associated,most,such,NRT1,NIA1,dual,luciferase,reporter,assay,found,positively,regulates,We,speculated,might,central,regulating
AB值:
0.550635
相似文献
MdMYB10 affects nitrogen uptake and reallocation by regulating the nitrate transporter MdNRT2.4-1 in red-fleshed apple
Xin Liu;Hao-Feng Liu;Hong-Liang Li;Xiu-Hong An;Lai-Qing Song;Chun-Xiang You;Ling-Ling Zhao;Yi Tian;Xiao-Fei Wang-State Key Laboratory of Crop Biology,Shandong Collaborative Innovation Center of Fruit&Vegetable Quality and Efficient Production,Shandong Green Fertilizer Technology Innovation Center,College of Horticulture Science and Engineering,Shandong Agricultural University,Taian 271018,Shandong,China;Beijing Academy of Forestry and Pomology Sciences,Beijing,China;National Engineering Research Center for Agriculture in Northern Mountainous Areas,Agricultural Technology Innovation Center in Mountainous Areas of Hebei Province,Hebei Agricultural University,Baoding,Hebei,China;Yantai Academy of Agricultural Sciences,Yantai,Shandong,China
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。