隐花色素,cryptochrome
1)cryptochrome隐花色素
1.Functional Analysis on Genes Related to Cryptochromes in Arabidopsis Thaliana拟南芥隐花色素相关基因功能分析
2.Advances in the Structure and Function of Cryptochrome in Plant植物隐花色素结构与功能研究进展
3.CRY2 is the apoprotein of cryptochrome 2and CRY2 cDNA has been cloned from Sorghum bi-color in this study.R111)幼苗中提取总RNA,利用RT-PCR和cDNA的3'末端的快速扩增方法(3'RACE),第一次克隆了高粱隐花色素2基因(CRY2)的cDNA序列。
英文短句/例句

1.Yeast Two-hybrid Analysis on Cryptochromes of Soybean;大豆隐花色素基因的酵母双杂交分析
2.Increasing Carotenoid Content in Tomato by over Expressing Cryptochrome;过量表达隐花色素基因提高番茄类胡萝卜素含量的研究
3.Function Analysis of Soybean Cryptochrome Gene and Establishment of Soybean Transformation System via Agrobacterium-mediated Method;大豆隐花色素基因的功能分析及大豆遗传转化体系的建立
4.Screening and Phenotypic Analysis of a Suppressor of Cryptochromes Mutant in Arabidopsis拟南芥隐花色素突变体抑制子的筛选及其表型分析
5.This Batch of cotton textile faBrics has a pattern of a quiet color.这批棉织品,花色素净。
6.Cyanin substance of the flower color pigment and dynamic variations of the flower color of Prunus mume “Fenpi Gongfen” (pink peeled palace pink)梅花“粉皮宫粉”花色色素的花青苷实质和花色的动态变化(英文)
7.STUDY ON MICROWAVE EXTRACTION TECHNOLOGY OF RED PIGMENT IN BAUBINIA BLAKEANA DUNN微波萃取红花羊蹄甲花红色素的研究
8.Components of flower pigments in the petals of different color Gerbera jamesonii不同花色非洲菊品种花色素成分初步分析
9.small tree of southern United States having panicles of dull white flowers followed by dark purple fruits.美国南方的小树,有开隐约白花的圆锥花序,结暗紫色果实。
10.Bacterial endotoxin test for Honghuahuangsesu injection注射用红花黄色素细菌内毒素检查法
11.Separation and Identification of Vaccinium Uliginosum Anthocyanins and Quantitative Analysis of Cultivated Vaccinium Anthocyanins;笃斯越橘花色素的分离鉴定及栽培种花色素的定量分析
12.Studies on Assay of Safflor Yellow A and Its Pharmacokinetics;红花中红花黄色素A的含量测定及其药动学研究
13.Callus Induction and Anthocyanin Accumulation in Celosia Cristata Phumosa ;穗冠花愈伤组织的诱导和花色素苷积累的研究
14.Microwave-assisted Extraction of Proanthocyanidins from Peanut Skin微波辅助提取花生衣原花色素工艺优化
15.They have shown that there is only one anthocyanin in pseudotsuga.他们还证明了黄杉只有一种花色素苷。
16.A PIGMENT OF A FOLK RICE DYEING PLANT BUDDLEIA OFFINALIS民间常用染饭植物密蒙花的色素(英文)
17.Study on Stability of Anther Pigment of Lilium Siberia西伯利亚百合花药色素稳定性的研究
18.Study on extraction and characterization of red pigment from Hibiscus syriacus L.木槿花红色素的提取及理化性质研究
相关短句/例句

cryptochromes隐花色素
1.Thefamily of plants cryptochromes (CRYs) are blue light photoreceptors, whosesignaling pathway is critical for the regulation of the developmental growth.植物中存在的隐花色素(cryptochrome,CRY)可以接收太阳光谱中的蓝光信号,并通过其信号传递途径调控植物的生长发育。
2.Cryptochromes are blue light receptors that regulate various photomorphogenesis responses in plants, including inhibition of hypocotyls elongation, stimulation of cotyledon expansion, and regulation of flowering time.隐花色素(Cryptochrome)是植物的蓝光受体,它介导蓝光调节植物光形态建成,如抑制下胚轴生长、促进子叶伸展、去黄化、控制植物叶片气孔的张开及关闭以及在植物中调控植物开花。
3.The study shown that many of the cryptochromes were proteins which had a molecular weight of 70-80 kD.隐花色素(cryptochrome)是吸收蓝光和近紫外光而调节植物形态、新陈代谢变化以及向光反应的一类光敏受体。
3)Cryptochrome 2隐花色素2
1.Cryptochrome 2 (CRY2) gene was cloned, identified and analyzed from both Rllland harl.本文以高粱(Sorghum bicolor)野生型R111和航天突变体har1为材料,对幼苗的光形态建成反应、特别是蓝光下的形态反应进行了研究;克隆、鉴定和比较了野生型和突变体隐花色素2(cryptochrome 2,cry2)脱辅基蛋白基因CRY2的cDNA和基因组DNA;将野生型CRY2的3-端进行了原核表达,制备了抗高粱CRY2抗体;对CRY2在高梁野生型和har1突变体幼苗中的时空表达和har1蓝光超敏反应的机理进行了初步的研究。
4)kryptocyanin隐花青色素
5)Cryptochrome gene CRY2隐花色素CRY2基因
6)Cryptochrome隐花素
1.Proteome Comparative Analysis of Cryptochromes of Arabidopsis;拟南芥隐花素蛋白质组学研究
2.Cryptochromes are blue light receptors that regulate various photomophogenic responses in plant, including inhibition of hypocotyl elongation, stimulation of cotyledon expansion, and regulation of flowering time.隐花素(Cryptochrome)是植物感受蓝光的蓝光受体,它介导蓝光调节植物的光形态建成反应,如抑制下胚轴伸长、促进子叶伸展及调节开花等。
3.In higher plants, there are at least three kinds of light receptors to capture light signal: phytochrome, cryptochromes and phototropin, which receptor absorb different spectrum of light.隐花素(cryptochrome)是植物感受蓝光的蓝光受体,它介导蓝光调节植物的光形态建成反应,如抑制下胚轴伸长、促进子叶伸展及调节开花等。
延伸阅读

隐花色素分子式:CAS号:性质:植物中对蓝光诱导的反应,是不同于光敏色素的另一个吸光色素系统。在藻类、真菌、苔藓、蕨类和种子植物中都找到了有隐花色素的存在。如青霉孢梗束的形成,糖海带雌配子体卵发生诱导,燕麦胚芽鞘的向光反应,豌豆卷须的螺旋,都受蓝光的控制;凤尾蕨的细胞分裂,鳞毛蕨属绵马的丝状体发育成心形原叶体等,也均受蓝光诱导,并被红光抑制。