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11.
Summary Post-mitotic epidermal cells of barley leaves were found to contain, in addition to cortical microtubules (CMTs), distinct arrays of endoplasmic microtubules (EMTs). These encircle nuclei and continuously merge into the CMT arrays that underly the plasmalemma. Detailed three-dimensional reconstruction of both types of MTs during fungal infection showed that profound and very rapid MT rearrangements occurred especially in the case of incompatible (resistant) barley-powdery mildew genotype combination. The most early MT responses, followed by their subsequent complete disintegration, were recorded around nuclei. These events might be relevant for the induction of such nuclear processes as onset of DNA synthesis and nuclear chromatin condensation. Observed pattern of early infection events, as well as less prominent responses in the case of compatible (susceptible) barley-powdery mildew genotype combination, both findings suggest that rapid reorganization of the MT cytoskeleton could be involved in recognition of the fungus by host cells and in the initiation of resistance responses in barley leaves. We hypothesize that the integrity and dynamics of the MT cytoskeleton, especially of its perinuclear part, might participate in control mechanisms involved in activation of resistance genes.Abbreviations CMTs
cortical microtubules
- EMTs
endoplasmic microtubules
- MT
microtubules
- PI
propidium iodide
- SC
sensitive combination
- RC
resistant combination 相似文献
12.
E. Stoupel J. Abramson S. Domarkiene M. Shimshoni J. Sulkes 《International journal of biometeorology》1997,40(2):113-116
The influence of solar activity (SA) and geomagnetic activity (GMA) on human homeostasis has long been investigated. The
aim of the present study was to analyse the relationship between monthly proton flux (>90 MeV) and other SA and GMA parameters
and between proton flux and temporal (monthly) distribution of total and cardiovascular-related deaths. The data from 180
months (1974–1989) of distribution in the Beilinson Campus of the Rabin Medical Centre, Israel, and of 108 months (1983–1991)
from the Kaunas Medical Academy, were analysed and compared with SA, GMA and space proton flux (>90 MeV). It was concluded:
(1) monthly levels of SA, GMA and radiowave propagation (Fof2) are significantly and adversely correlated with monthly space
proton flux (>90 MeV); (2) medical-biological phenomena that increase during periods of low solar and/or geomagnetic activity
may be stimulated by physical processes provoked by the concomitant increase in proton flux; (3) the monthly number of deaths
related (positively or negatively) to SA are significantly and adversely related to the space proton flux (>90 MeV).
Received: 14 January 1996 / Accepted: 14 October 1996 相似文献
13.
Release of Excitatory Amino Acids from Cultured Hippocampal Astrocytes Induced by a Hypoxic-Hypoglycemic Stimulation 总被引:2,自引:0,他引:2
Tadanori Ogata† Yoichi Nakamura Taiho Shibata† Kiyoshi Kataoka 《Journal of neurochemistry》1992,58(5):1957-1959
An excess release of excitatory amino acids (EAA) is an important factor for postischemic brain damage. In the present communication, we demonstrate that cultured hippocampal cells release EAA after hypoxic-hypoglycemic treatment. The amounts of EAA released from astrocytes were appreciably above those released from neurons. Furthermore, the amount of aspartate released from astrocytes was comparable to that of glutamate, although the endogenous content of aspartate was one-fifth that of glutamate. The endogenous content of aspartate in astrocytes increased even after hypoxic-hypoglycemic treatment. These results suggests that ischemic neuronal death is due, at least in part, to the excitotoxicity of aspartate and glutamate derived from surrounding astrocytes. 相似文献
14.
Auer Martin T. Storey Michelle L. Effler Steven W. Auer Nancy A. Sze Philip 《Hydrobiologia》1990,200(1):603-617
The transparency of polluted, hypereutrophic Onondaga Lake, New York, USA has improved substantially in the late 1980's as
a result of reductions in phytoplankton biomass, in the absence of significant reductions in external phosphorus loading.
Much of this improvement has been due to the occurrence of clearing events, e.g. sudden and dramatic increases in transparency.
Field measurements, laboratory experiments, and modelling analyses were utilized to identify processes regulating phytoplankton
standing crop during the spring to fall interval of 1987. Changes in the zooplankton community documented over the past decade
support the conclusion that increased zooplankton grazing has contributed to improvements in transparency. Herbivores now
represent a greater fraction of the zooplankton population and more efficient cladocerans are present in greater numbers.
Biomanipulation practices, e.g. reestablishment of piscivorous species, designed to reduce the abundance of planktivorous
fish species in Onondaga Lake, may serve to reduce pressure on the grazing community and thus result in further improvements
in transparency. 相似文献
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目的:探讨静脉溶栓时机对急性ST段抬高型心肌梗死患者溶栓效果及主要不良心脏事件发生率的影响。方法:将2016年1月至2017年12月我院接诊的314例急性ST段抬高型心肌梗死患者纳入本研究,按照溶栓治疗时间不同分为A组(发病至溶栓时间6 h)172例、B组(发病至溶栓时间为6~12 h)102例和C组(发病至溶栓时间12 h)40例,比较三组患者溶栓效果、溶栓后ST段回落情况以及住院期间主要不良心脏事件发生情况。结果:A组患者梗死冠脉溶通率、溶栓后ST段回落幅度高于B组和C组,且B组高于C组,差异均有统计学意义(P0.05)。A组患者治疗后ST段回落最大幅度所需时间、住院期间主要不良心脏事件总发生率低于B组和C组,且B组低于C组,差异均有统计学意义(P0.05)。结论:急性ST段抬高型心肌梗死患者发病后6 h内静脉溶栓治疗梗死冠脉溶通率更高、ST段回落效果更好,可降低住院期间主要不良心脏事件发生风险。 相似文献
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19.
Michael J. D'Occhio Giuseppe Campanile Luigi Zicarelli Jos A. Visintin Pietro S. Baruselli 《Molecular reproduction and development》2020,87(2):206-222
Cell–cell adhesion molecules have critically important roles in the early events of reproduction including gamete transport, sperm–oocyte interaction, embryonic development, and implantation. Major adhesion molecules involved in reproduction include cadherins, integrins, and disintegrin and metalloprotease domain‐containing (ADAM) proteins. ADAMs on the surface of sperm adhere to integrins on the oocyte in the initial stages of sperm–oocyte interaction and fusion. Cadherins act in early embryos to organize the inner cell mass and trophectoderm. The trophoblast and uterine endometrial epithelium variously express cadherins, integrins, trophinin, and selectin, which achieve apposition and attachment between the elongating conceptus and uterine epithelium before implantation. An overview of the major cell–cell adhesion molecules is presented and this is followed by examples of how adhesion molecules help shape early reproductive events. The argument is made that a deeper understanding of adhesion molecules and reproduction will inform new strategies that improve embryo survival and increase the efficiency of natural mating and assisted breeding in cattle. 相似文献
20.
Giulia Masoero Toni Laaksonen Chiara Morosinotto Erkki Korpimki 《Global Change Biology》2020,26(10):5414-5430
Changing climate can modify predator–prey interactions and induce declines or local extinctions of species due to reductions in food availability. Species hoarding perishable food for overwinter survival, like predators, are predicted to be particularly susceptible to increasing temperatures. We analysed the influence of autumn and winter weather, and abundance of main prey (voles), on the food‐hoarding behaviour of a generalist predator, the Eurasian pygmy owl (Glaucidium passerinum), across 16 years in Finland. Fewer freeze–thaw events in early autumn delayed the initiation of food hoarding. Pygmy owls consumed more hoarded food with more frequent freeze–thaw events and deeper snow cover in autumn and in winter, and lower precipitation in winter. In autumn, the rotting of food hoards increased with precipitation. Hoards already present in early autumn were much more likely to rot than the ones initiated in late autumn. Rotten food hoards were used more in years of low food abundance than in years of high food abundance. Having rotten food hoards in autumn resulted in a lower future recapture probability of female owls. These results indicate that pygmy owls might be partly able to adapt to climate change by delaying food hoarding, but changes in the snow cover, precipitation and frequency of freeze–thaw events might impair their foraging and ultimately decrease local overwinter survival. Long‐term trends and future predictions, therefore, suggest that impacts of climate change on wintering food‐hoarding species could be substantial, because their ‘freezers’ may no longer work properly. Altered usability and poorer quality of hoarded food may further modify the foraging needs of food‐hoarding predators and thus their overall predation pressure on prey species. This raises concerns about the impacts of climate change on boreal food webs, in which ecological interactions have evolved under cold winter conditions. 相似文献