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73篇 您的检索式:作者名="MAOKA"
    题名 作者 年代 出处 被引量
1超声波辅助农杆菌介导CP基因转化番小瓜(Carioca papaya L.)的有效方法显示文摘本研究探索了通过农杆菌介导,超声波辅助处理,转化番木瓜胚性愈伤组织,获得转基因植株的有效方法。分别将含有日本PLDMV 外壳蛋白基因(PTi-Epj-TL-PLDMV)和含有台湾PRSV 菌株、美国夏威夷PRSV 菌株、泰国PRSV 菌株及日本PLDMV 菌株的多元外壳蛋白基因编码序列(PTi-NP-YKT)插入双元载体质粒pGA482G,借助于农杆菌系LBA4404将双元载体上的外壳蛋白基因和新霉素磷酸转移酶基因(nptⅡ)转移到番木瓜品种Sunset 的胚性愈伤组织中,从而获得抗卡那霉素的转化再生植株。试验着重在转化方法上进行探索。结果表明,农杆菌过夜培养后,用高渗透压培养液(1/2 MS+6%蔗糖+1%葡萄糖,pH 5.7)调整至光密度OD_(600(?)m)=0.15-0.20,然后用该菌液感染材料30min,其间辅以超声波处理,可以大大提高转化效率。用15ml 无菌离心管装载胚性愈伤材料进行15s 的超声波处理,在80块被转化的胚性愈伤中获得21个CP 基因G 转化系(26.3%),而在对照处理64块胚性愈伤中仅获得1个转化系(1.6%);在经过15s 的超声波处理48块被转化的胚性愈伤中获得8个CP 基因B 转化系(16.7%),而在对照处理25块胚性愈伤中未出现转化系。上述操作方法用在两种CP 基因转化上均表现出相似的效果。试验还表明:120mg/L 是卡那霉素抗性筛选的最佳浓度。抗性筛选9个月后,在421块胚性愈伤组织中产生了42个抗卡那霉素的转化系。所获得的转基因植株分别用PCR 和Southern 印迹杂交进行了鉴定。姜玲 MAOKA Tetsuo KOMORI Sadao FUKAMACHI Hiroshi KATO Hidenori OGAWA Kazunori 2004实验生物学报2004,37,3:11
2Siphonaxanthin, a marine carotenoid from green algae, effectively induces apoptosis in human leukemia (HL-60) cells显示文摘Ponesakki Ganesan Kenji Noda Yuki Manabe Takeshi Ohkubo Yukihisa Tanaka Takashi Maoka Tatsuya Sugawara Takashi Hirata 2011BBA - General Subjects2011,,:1
32,2’-β-Hydroxylase(CrtG)isinvolved in carotenogenesis of both nostoxanthin and 2-hydroxymyxol 2’-fucoside in Thermosynechococcus elongatus strain BP-1显示文摘IWAI M MAOKA T IKEUCHI M 2008Plant CellPhysiol2008,49,:1
4The occurrence of Potato virus Y on potato in Syria显示文摘Chikh Ali M Katayama K Maoka T 2006Jpn J Trop Agric2006,50,:1
5The occurrence of enantiomeric and meso-astaxanthin in aquatic animals显示文摘MATSUNO T MAOKA T KATSUYAMA M 0,,:1
6Characterization and singlet oxygen quenching activity of (3R)-3-hydroxy-4-ketotorulene and (3R)-3-hydroxy-4-keto-),-carotene from the yeast Xanthophyllomyces dendrorhrous显示文摘MAOKA T ETOH T OSAWA A 2012Journal of Oleo Science2012,61,7:1
7Stereochemical investigation of carotenoids in the Antarctic krill Euphausia superb显示文摘MAOKA T KATSUYAMA M KANEKO N 1985Bulletin of the Japanese Society of Scientific Fisheries1985,51,10:1
8Carotenoids and their metabolism in the goldfish Carassius auratus(Hibuna)显示文摘Ohkubo M Tsushima M Maoka T 1999Comp Biochem Physiol1999,,124:1
9Carotenoids in the Japanese stick insect Neophirasea japonica显示文摘MATSUNO T MAOKA T TORIIMINAMI Y 0,,:1
10Stereochemical investigation of carotenoids in the antarctic krill Euphausia superba显示文摘MAOKA T KATSUYAMA M KANEKO N 0,,:1
11A new approach to chemoe -mbolization therapy for hepatoma using ethiodized oil,cisplation and gelatin sponge显示文摘Sasaki Y Maoka Kasugai H 1987Cancer1987,60,5:1
12Novel diterpenes, excoeearins M and N from the resinous wood of Excoecaria agallocha 显示文摘Konishi T Konoshima T Maoka T 2000Tetrahedron Lett2000,41,34:1
13The complete nucleotide sequence and biotype variability of Papaya leaf distortion mosaic virus显示文摘Maoka T Hataya T 2005Phytopathology2005,95,2:1
143-β-Glucosyl-3'-β-Quinovosyl Zeaxanthin, a Novel Carotenoid Glycoside Synthe-sized by Escherichia Coli Ceils Expressing the Pantoea Ananatis Carotenoid Biosynthesis Gene Cluster显示文摘Choi S K Osawa A Maoka T 2013Applied M crobiology and Biotechnology2013,97,19:1
15A point mutation changes the serotype of a potato virus Y isolate; genomic determination of the serotype of PVY strains 显示文摘Chikh A M Maoka T Natsuaki K T 2007Virus Genes2007,35,2:1
16Major Carotenoid Isolated from Paracoccus Schoinia NBRC 1006377 is Adonix anthin Diglucoside显示文摘Takaichi S Maoka T Akimoto N 2006Journal of natural products2006,69,12:1
17Dihydrobenzofuran lignans from Boreava orientalis 显示文摘Sakushima A Coskun M Maoka T etal 1996Phytochemistry1996,43,6:1
18Carotenids with a 5,6-dihydro-5,6-dihydroxy-β-end group,from yellow sweet potato“Benimasari”,Ipomoea batatas Lam显示文摘MAOKA T AKIMOTO N ISHIGURO K 2007Phytochemistry2007,68,13:1
19Recent progress in structural studies ofcarotenoids in animals and plants显示文摘MAOKA T 2009Archives ofbiochemistry and biophysics2009,483,2:1
20Isolation of a series of apocarotenoids from the fruit of the red paprika Capsicum annuum L显示文摘Maoka T Fujiwara Y Hashimoto K 2001J Agric Food Chem2001,49,:1
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