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1.
Hironori Hirata 《Bulletin of mathematical biology》1982,44(5):697-704
This paper has studied the evolution of a predator-prey Volterra-Lotka ecosystem with saturation effect for the general case
where both predator and prey evolve. We have interesting results under the evolutional condition, as follows: (1) the predator
population and the ratio of predator to prey populations increase; (2) the parameters of the prey drift in the direction of
increasing multiplication rate and saturation level, while the parameters of the predator drift in the direction of decreasing
death rate. 相似文献
2.
3.
Kunitoshi Yamanaka Teru Ogura Kazuyoshi Murata Toshinobu Suzaki Hironori Niki Sota Hiraga 《FEMS microbiology letters》1994,116(1):61-66
Abstract The smbA gene of Escherichia coli is essential for cell proliferation. The smbA2 mutant shows cold-sensitive colony formation at 22°C. A novel morphological phenotype, formation of a translucent segment at midcell or at a cell pole, was observed by phase-contrastt microscopy at a high frequency in the smbA2 mutant cells incubated in L medium lacking NaCl at 22°C, but not observed in L medium containing 1% NaCl or 20% sucrose at the same temperature. No translucent segment was observed in the wild-type cells in any of the media used. Electron microscopic observation revealed that the translucent segments resulted from the enlargement of a periplasmic space by separation of the inner membrane from the peptidoglycan layer and the outer membrane. 相似文献
4.
Hironori Hirata 《Bulletin of mathematical biology》1980,42(1):119-130
A model of ecosystems with migration is proposed from the viewpoint of flow. This model explains the following two points:
(1) How the density-dependent terms in population dynamics arise as a consequence of migration. (2) How the ecosystem exhibits
a hierarchy in energy per unit biomass. 相似文献
5.
MCPIP1 ribonuclease antagonizes dicer and terminates microRNA biogenesis through precursor microRNA degradation 总被引:2,自引:0,他引:2
Suzuki HI Arase M Matsuyama H Choi YL Ueno T Mano H Sugimoto K Miyazono K 《Molecular cell》2011,44(3):424-436
MicroRNAs (miRNAs) are versatile regulators of gene expression and undergo complex maturation processes. However, the mechanism(s) stabilizing or reducing these small RNAs remains poorly understood. Here we identify mammalian immune regulator MCPIP1 (Zc3h12a) ribonuclease as a broad suppressor of miRNA activity and biogenesis, which counteracts Dicer, a central ribonuclease in miRNA processing. MCPIP1 suppresses miRNA biosynthesis via cleavage of the terminal loops of precursor miRNAs (pre-miRNAs). MCPIP1 also carries a vertebrate-specific oligomerization domain important for pre-miRNA recognition, indicating its recent evolution. Furthermore, we observed potential antagonism between MCPIP1 and Dicer function in human cancer and found a regulatory role of MCPIP1 in the signaling axis comprising miR-155 and its target c-Maf. These results collectively suggest that the balance between processing and destroying ribonucleases modulates miRNA biogenesis and potentially affects pathological miRNA dysregulation. The presence of this abortive processing machinery and diversity of MCPIP1-related genes may imply a dynamic evolutional transition of the RNA silencing system. 相似文献
6.
During the R/V Hakuho-maru Cruise KH-95-2, Ocean Research Institute, University of Tokyo, from Tokyo, Japan to the South Pacific east of Australia (22°
N–30° S; 126° E–176° E) from June to September, 1995, 77 unidentified gonostomatid larvae (5.5–20.0 mm SL) were collected
south of 20° S with an IKMT net. They subsequently were identified as Sigmops longipinnis (Mukhacheva), and its ontogeny during the latter part of the larval stage (body form and proportions, photophores, pigmentation,
and meristics) is described here. The larvae develop a species-specific row of melanophores along the midlateral line anterior
to the caudal peduncle and another along the middorsal line from before the dorsal fin to just before the caudal fin.
Received: June 24, 2002 / Revised: November 2, 2002 / Accepted: January 31, 2003 相似文献
7.
Function of RNA-binding protein Musashi-1 in stem cells 总被引:19,自引:0,他引:19
Okano H Kawahara H Toriya M Nakao K Shibata S Imai T 《Experimental cell research》2005,306(2):349-356
Musashi is an evolutionarily conserved family of RNA-binding proteins that is preferentially expressed in the nervous system. The first member of the Musashi family was identified in Drosophila. This protein plays an essential role in regulating the asymmetric cell division of ectodermal precursor cells known as sensory organ precursor cells through the translational regulation of target mRNA. In the CNS of Drosophila larvae, however, Musashi is expressed in proliferating neuroblasts and likely has a different function. Its probable mammalian homologue, Musashi-1, is a neural RNA-binding protein that is strongly expressed in fetal and adult neural stem cells (NSCs). Mammalian Musashi-1 augments Notch signaling through the translational repression of its target mRNA, m-Numb, thereby contributing to the self-renewal of NSCs. In addition to its functions in NSCs, the role of mammalian Musashi-1 protein in epithelial stem cells, including intestinal and mammary gland stem cells, is attracting increasing interest. 相似文献
8.
Geethalakshmi Radhakrishnan Hironori Maeda Rajesh KatareGopalrao Hideaki Nishimori Eiji Toda Shiro Sasaguri 《Biochemical and biophysical research communications》2009,387(1):25-30
Dissolved organic matter (DOM) in seawater can be defined as the fraction of organic matter that passes through a filter of sub micron pore size. In this study, we have examined the effect of DOM of deep seawater (DSW) from Pacific Ocean on platelet aggregation and atherosclerosis progression. DSW was passed through a series of filters and then through an Octadecyl C18 filter; the retained substance in ethanol was designated as C18 extractable DOM (C18-DOM). Our studies showed that C18-DOM treatment inhibited platelet aggregation, P-selectin expression and activity of COX-1 significantly. C18-DOM increased the expression of anti-atherogenic molecule namely heme oxygenase-1 in endothelial cells and all these data showed that C18-DOM is exhibiting aspirin-like effects. Moreover our in vivo studies showed that C18-DOM feeding slowed remarkably the progression of atherosclerosis. Our study demonstrated a novel biological effect of oceanic DOM, which has several important implications, including a possible therapeutic strategy for atherosclerosis. 相似文献
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