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1.
Genetically stable cell lines of cucumber for the large-scale production of diploid somatic embryos 总被引:2,自引:0,他引:2
Marc Kreuger Wiert van der Meer Erik Postma Rob Abbestee Natasja Raaijmakers Gerrit-Jan van Holst 《Physiologia plantarum》1996,97(2):303-310
For the initiation of embryogenic cucumber ( Cucumis sativus L.) cell lines, from excised radicles, directly in liquid medium, the culture regime, explant density and type and concentration of hormones were adjusted so that pro-embryogenic masses (PEMs) were formed within about 8 weeks. The established cucumber cell lines were maintained tor several years without loss of embryogenic and genetic stability. The ploidy level of somatic embryos from different cucumber eell lines was either diploid or tetraploid and depended on the ploidy level of Ihe cell line. Cucumber cell lines that produced only diploid embryos were obtained by selecting completely diploid explant material and growing it in the dark during the initiation phase. Mixoploid explains could lead to tetraploid or mixoploid ceil lines. Isolation and additional selection and subculturing of single PEMs resulted in either completely diploid or tetraploid cell lines, indicating that all cells of individual PEMs are either diploid or tetraploid. The ernbryogenic cucumber cell Imes, differing only in ploidy level, were indistinguishable in growth rate and embryogetiic potential and were genetically stable over several years. 相似文献
2.
The lozenge locus is genetically complex, containing two functionally distinct units, cistrons A and B, that influence the structure of
the compound eye. Extreme mutations of either cistron produce adult phenotypes that share similarities and that have striking
differences. We have analyzed the expression of several developmentally important eye genes including boss, scabrous, rhomboid, seven-up, and Bar in lozenge mutant backgrounds representing both cistrons. This analysis follows the progressive recruitment of photoreceptor neurons
during eye development and has confirmed that the initial development of photoreceptors is normal up to the five cell precluster
stage (R8, R2/5 and R3/4). However, when lozenge is mutant, further eye development is perturbed. As cells R1, R6 and R7 are recruited, patterns of gene expression for seven-up and Bar become abnormal. We have also characterized the expression of two different enhancer trap alleles of lozenge. The lozenge product(s) appear to be first expressed in the eye disc in undifferentiated cells shortly after the five cell precluster forms.
Then, as distinct cells are recruited to a fate, lozenge expression persists and is refined in those cells. Our data suggests that lozenge functions in cone cells and pigment cells as well as in specific glia. With respect to photoreceptor neurons, lozenge biases the developmental potential of cells R1, R6 and R7, by directly influencing the expression of genes important for establishing
cell fate.
Received: 26 July 1996 / Accepted: 6 January 1997 相似文献
3.
Patterson KD Cleaver O Gerber WV White FG Krieg PA 《Development genes and evolution》2000,210(3):140-144
The BarH1 and BarH2 homeobox genes are coexpressed in cells of the fly retina and in the central and peripheral nervous systems. The fly Bar genes are required for normal development of the eye and external sensory organs. In Xenopus we have identified two distinct vertebrate Bar-related homeobox genes, XBH1 and XBH2. XBH1 is highly related in sequence and expression pattern to a mammalian gene, MBH1, suggesting that they are orthologues. XBH2 has not previously been identified but is clearly related to the Drosophila
Bar genes. During early Xenopus embryogenesis XBH1 and XBH2 are expressed in overlapping regions of the central nervous system. XBH1, but not XBH2, is expressed in the developing retina. By comparing the expression of XBH1 with that of hermes, a marker of differentiated retinal ganglion cells, we show that XBH1 is expressed in retinal ganglion cells during the differentiation process, but is down-regulated as cells become terminally
differentiated.
Received: 12 August 1999 / Accepted: 5 October 1999 相似文献
4.
Ac/Ds(GUS)结构介导的水稻启动子捕获系统的建立 总被引:5,自引:0,他引:5
构建了基于Activator/Dissociation(β-glucuronidase)[简称Ac/Ds(GUS)]结构的捕获质粒p13B,用于分离水稻基因启动子.以此质粒用衣杆菌介导的方法转化粳稻品种中花11的胚性愈伤组织,对获得的18个独立转化株的T2代植株进行了抗除草剂筛选,从141个抗除草剂转基因植株中用PCR方法检测到其中37株是Ds因子发生了转座的植株,而且这种转座到新位置上的Ds因子是遗传的.初步观察到其中5株的GUS染色呈阳性. 相似文献
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6.
B M Anner 《FEBS letters》1983,158(1):7-11
Purified Na+,K+-ATPase is treated with trypsin. The altered enzyme is then reconstituted into liposomes and the change in active and passive Na+,K+-fluxes is recorded. Trypsin treatment transforms the slow passive Na+,K+-fluxes into leaks. The leak formation is correlated with the degree of proteolysis and the associated decrease in Na+,K+-ATPase activity. The active Na+,K+-transport capacity decreases in parallel with the passive transport. It is thus proposed that the Na+,K+-ATPase molecule primarily contains unspecific transmembrane tunnels that are rendered ion-selective by transverse bars of specific length (bar model). 相似文献
7.
Paleozoologists have long used graphs of diverse styles to describe, analyze, and summarize their data. Some of these graphs provide excellent visual representations of complex data and are readily deciphered. Other graph styles require close study to be interpreted. Ease of visual decoding of information contained in a graph – graph perception – varies from graph style to graph style. Historical instances of graphing paleozoological data indicate some difficult to decipher graph styles have been used for at least a century. Graphs with three-dimensions, moiré effects, superimposed lines, or segmented bars, or which demand simultaneous decipherment of position and magnitude, are ill-advised. Temporal trends in data are best graphed following the principle of superposition such that data from old material is graphed at the bottom and data from younger material is graphed at the top of the diagram. 相似文献
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花粉管介导的转bar基因水稻植株的获得及其遗传 总被引:8,自引:0,他引:8
采用花粉管通道法将bar基因导入籼稻品系E32,得到对除草剂Basta具有抗性的转基因水稻。遗传分析表明外源bar基因在受体植株后代中呈单基因显性遗传,在世代间可以稳定遗传。目前已分离出抗性稳定的株系。 相似文献
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