| [1]郭瑾,聂祝欣,王静。酵母双杂交技术在植物研究中的应用
[J.东南园艺,2024,12(05):438-444.
[2]Keegan L,Gill G,Ptashne M.Separation of DNA bind from the
transcripation-activating function of eukaryotic regulatory pro-tein
[J].Science,.1986,231(4739):699-704.
[3]王关林,方宏筠.植物基因工程[M].第2版.北京:科学出
版社,2002:242-246.
[4]管蕊.利用酵母双杂交系统筛选与BmNPVPE38和VLF-1相互
作用的蛋白[D].镇江:江苏科技大学,2012.
[5]吴娟,钱凯,杨译峰。酵母双杂交系统的研究进展[J].安庆
师范学院学报(自然科学版),2005,11(02):59-63.
[6]肖海华,印莉萍,许雪峰,等。酵母双杂交在植物功能基因组
研究中的应用[J].生物信息学,2006,4(01):34-37.
[7]孟子瞳.拟南芥copine蛋白PUIP4调控抗逆与发育功能研究
[D].长沙:湖南农业大学,2022.
[8]Wang Y,Gao Y K,Cui Y X,et al.Functional characterization of
two NAC transcription factors HfNAP1 and HfNAC090 associated
with flower programmed cell death in daylily (Hemerocallis fulva)
[J].Plant Science,2023,337:111872.
[9]Chen P,Chen L C,Ye X,et al.Phytoplasma effector Zaofeng6
induces shoot proliferation by decreasing the expression of ZjTCP7 in
Ziziphus jujuba [J].Horticulture Research,2022,9:uhab032.
[10]林文秋,刘胜辉,张秀梅,等.利用酵母双杂交筛选菠萝A心
SWEET11的互作蛋白[J].热带作物学报,2024,45(09):
1791-1800.
[11]王子颖,龙晨洁,范兆字,等.利用酵母双杂交系统筛选水
稻中与0CRK5互作蛋白[J].生物技术通报,2023,39(09):
117-125
[12]邢丽南,张艳芳,葛明然,等.山药DoWRKY40基因表达特
征分析及互作蛋白筛选[J].生物技术通报,2024,40(08):
118-128.
13]Wang L,Sun Y,Xia X L,et al.Screening of proteins interac-ting with ERF transcriptional factor from Populus simonii x P.
nigra by yeast two-hybrid method [J].Biotechnology Biotechn-
ological Equipment,2018,32 (3):543-549.
[14]王秋月,段鹏亮,李海笑,等.玉米大斑病菌cDNA文库的
构建及转录因子SR1互作蛋白的筛选[J].生物技术通
报,2024,40(06):281-289.
15]Yu R M,Suo YY,Yang R,et al.StMBFle positively regulates
disease resistance to Ralstonia solanacearum via it's primary and
secondary upregulation combining expression of StTPS5 and resist-
ance marker genes in po-tato [J].Plant Science:An Intemation-
al Joumal of Exper-imental Plant Biology,2021,307:110877.
[16]Zhang Y Z,Zheng J Q,Zhan Y H,et al.GmPLP1 negatively
regulates soybean resistance to high light stress by modulating pho-
tosynthetic capacity and reactive oxygen species accumulation in a
blue light-dependent manner J].Plant Biotechnology Joumal,
2023,21(12):2625-2640.
[17]Lin C W,Dai D W,Zhao G M,et al.Identification of MPK4interacting proteins in guard cells [J.Joumal of Proteomics,
2023,281:104903.
[18]Wang X Y,Li Q,Niu X W,et al.Characterization of a canola
C2 domain gene that interacts with PG an effector of the necrotro-
phic fungus Sclerotinia sclerotiorum [J].Joumal of Experimental
Boay,2009,60(9):2613-2620.
[19]Kang H,Zhang TT,Li YY,et al.The apple BTB protein Md-
BT2 positively regulates MdCOP1 abundance to repress anthocyanin
biosynthesis [J].Plant Physiology,2022,190 (1):305-318.
[20]Guo R Z,Zhang Q,Qian K,et al.Phosphate-dependent regu-
lation of vacuolar trafficking of OsSPX-MFSs is critical for maintai-
ning intracellular phosphate homeostasis in rice [J.Molecular
Plant,2023,16(8):1304-1320
[21]王婷,葛怀娜,郭宏.酵母双杂交技术应用进展[J]:
生物技术进展,2015,5(05):392-396. |