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991.
A single hypoxic shock was used to induce division synchrony in Tetrahymena pyriformis. Hypoxia results in accumulation of the cells in the G2 phase of the cell cycle. Cyclic AMP and adenyl cyclase activity were measured in this system. Cell-cycle blockade was associated with extraordinarily high levels of intracellular cyclic AMP. After release from hypoxia, the cells retain a characteristic pattern of modulation of cyclic AMP associated with division that is found in selection-synchronized cells. The results are discussed with reference to other methods of induction synchrony and related studies on the natural cell cycle in this organism. 相似文献
992.
Isolation of uridine 5'-pyrophosphate glucuronic Acid pyrophosphorylase and its assay using p-pyrophosphate 下载免费PDF全文
A procedure was devised to detect and assay uridine 5′-pyrophosphate (UDP)-glucuronic acid pyrophosphorylase in plant extracts. Substrates are UDP-glucuronic acid and 32P-pyrophosphate, and the 32P-uridine 5′-triphosphate produced is selectively adsorbed to charcoal. The charcoal adsorption procedure is a modification of that used to determine 32P-adenosine 5′-triphosphate produced by adenosine 5′-pyrophosphate glucose pyrophosphorylase, and the modification greatly improves the retention of uridine 5′-triphosphate. 相似文献
993.
B. Wiggins A. W. B. Wiggins J. Aitken McEwen J. H. Fairclough P. Lewis E. S. L. Allott M. Allott J. S. L. Allott H. N. Skelton J. H. Ritchie P. D. Leslie H. A. L. Banham D. W. Mayman H. M. Mills W. Jardine L. Taylor W. G. Maxwell G. W. Etches J. W. Whitworth C. B. Ball J. C. Pickup J. Dickinson M. F. Grenfell 《BMJ (Clinical research ed.)》1948,1(4554):749-750
994.
This study describes the anatomical and developmental aspects of muscular development from the early embryo to competent larval stage in the gastropod Ilyanassa obsoleta. Staining of F‐actin revealed differential spatial and temporal patterns of several muscles. In particular, two major muscles, the larval retractor and pedal retractor muscles originate independently and display distinct developmental patterns similar to observations in other gastropod species. Additionally, together with the larval retractor muscle, the accessory larval muscle developed in the embryo at the trochophore stage. Therefore, both these muscles develop prior to ontogenetic torsion. The pedal retractor muscle marked the most abundant growth in the mid veliger stage. Also during the middle stage, the metapodial retractor muscle and opercular retractor muscle grew concurrently with development of the foot. We show evidence that juvenile muscles, such as the buccal mass muscle and siphon muscle develop initially during the late veliger stage. Collectively, these findings substantiate that larval myogenesis involves a complex sequence of events that appear evolutionary conserved within the gastropods, and set the stage for future studies using this model species to address issues concerning the evolution and eventual fates of larval musculature in molluscs. J. Morphol., 2009. © 2009 Wiley‐Liss, Inc. 相似文献
995.
Physiological Characterization of the ARO10-Dependent, Broad-Substrate-Specificity 2-Oxo Acid Decarboxylase Activity of Saccharomyces cerevisiae 下载免费PDF全文
996.
997.
998.
Pennington PD Costa LM Gutierrez-Marcos JF Greenland AJ Dickinson HG 《Annals of botany》2008,101(6):833-843
Background and Aims: The results of wide- or interploidy crosses in angiosperms areunpredictable and often lead to seed abortion. The consequencesof reciprocal interploidy crosses have been explored in maizein detail, focusing on alterations to tissue domains in themaize endosperm, and changes in endosperm-specific gene expression. Methods: Following reciprocal interploidy crosses between diploid andtetraploid maize lines, development of endosperm domains wasstudied using GUS reporter lines, and gene expression in resultingkernels was investigated using semi-quantitative RT-PCR on endospermsisolated at different stages of development. Key Results: Reciprocal interploidy crosses result in very small, largelyinfertile seeds with defective endosperms. Seeds with maternalgenomic excess are smaller than those with paternal genomicexcess, their endosperms cellularize earlier and they accumulatesignificant quantities of starch. Endosperms from the reciprocalcross undergo an extended period of cell proliferation, andaccumulate little starch. Analysis of reporter lines and geneexpression studies confirm that functional domains of the endospermare severely disrupted, and are modified differently accordingto the direction of the interploidy cross. Conclusions: Interploidy crosses affect factors which regulate the balancebetween cell proliferation and cell differentiation within theendosperm. In particular, unbalanced crosses in maize affecttransfer cell differentiation, and lead to the temporal deregulationof the ontogenic programme of endosperm development. 相似文献
999.
Melissa Spielman Rinke Vinkenoog Hugh G. Dickinson Rod J. Scott 《Trends in genetics : TIG》2001,17(12):705-711
What makes a sperm male or an egg female, and how can we tell? A gamete's gender could be defined in many ways, such as the sex of the individual or organ that produced it, its cellular morphology, or its behaviour at fertilization. In flowering plants and mammals, however, there is an extra dimension to the gender of a gamete – due to parental imprinting, some of the genes it contributes to the next generation will have different expression patterns depending on whether they were maternally or paternally transmitted. The non-equivalence of gamete genomes, along with natural and experimental modification of imprinting, reveal a level of sexual identity that we describe as ‘epigender’. In this paper, we explore epigender in the life history of plants and animals, and its significance for reproduction and development. 相似文献
1000.
Philip E. Taylor Gwyneth Card James House Michael H. Dickinson Richard C. Flagan 《Sexual plant reproduction》2006,19(1):47-24
Anemophilous plants described as catapulting pollen explosively into the air have rarely attracted detailed examination. We
investigated floral anthesis in a male mulberry tree with high-speed video and a force probe. The stamen was inflexed within
the floral bud. Exposure to dry air initially resulted in a gradual movement of the stamen. This caused fine threads to tear
at the stomium, ensuring dehiscence of the anther, and subsequently enabled the anther to slip off a restraining pistillode.
The sudden release of stored elastic energy in the spring-like filament drove the stamen to straighten in less than 25 μs,
and reflex the petals to velocities in excess of half the speed of sound. This is the fastest motion yet observed in biology,
and approaches the theoretical physical limits for movements in plants.
Electronic Supplementary Material Supplementary material is available for this article at and is accessible for authorized users.
An erratum to this aticle is available at . 相似文献