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101.
Christiane Lichtlé 《Protoplasma》1980,102(1-2):11-19
Summary C.rufescens excystment, experimentally induced, corresponds to a general metabolism recovery of the cell, previously in a resting phase. The cytoplasm changes without any polarity, and organelles like gullet and flagella redifferentiate. The thylakoids develop mainly from the stored lipidic compounds which then disappear. Phycoerythrin immediately fills the intrathylakoidal lumen. Pigment synthesis seems closely associated with the development of membranes. The activated cell divides and the cyst wall breaks down. The destruction of the wall begins in the median layer and is followed by a mechanical rupture of the external and internal layers. Each germinative cyst releases two or four fully differentiated cells. There is an exact symmetry between excystment and encystment, all the transformations of theC. rufescens cell being reversible. 相似文献
102.
Ingrid Lombeck K. Kasperek L. E. Feinendegen H. J. Bremer 《Biological trace element research》1980,2(3):193-198
The rubidium content of whole blood was estimated by instrumental neutron activation analysis. In 46 healthy children it amounts
to {ie193-1} g/g dry weight. There was no difference between the values found for infants, toddlers, and school children.
In 29 dietetically treated patients with phenylketonuria and maple-syrup-urine disease the values were significantly lower
than in healthy children. During the first three months of diet therapy the rubidium levels remained in the lower range of
the normal values, decreasing to about 60% of the mean of normal values later on. With increasing length of diet therapy these
values tended to decrease. It remains questionable whether these decreased levels reflect only an induced biochemical phenomenon
without biological importance, or whether they are the first signs of a deficiency syndrome. 相似文献
103.
Summary Peanut (Arachis hypogaea L., var. TMV-2) plants were raised in sand cultures salinized with sodium chloride at 0.4% on air dry weight basis. Phosphate was sprayed to the drip point, once daily for five days from 20th to 25th day and from 30th to 35th day. Shoot apices and mature leaves were harvested for nucleic acid analyses at 30th and 40th day, receiving one and two sets of sprays respectively. Salinity decreased RNA and DNA levels which were partially restored by foliar application of phosphate. 相似文献
104.
A review of experimental studies of the effect of zinc nutrition on insulin metabolism is presented. In addition to a short
introduction to the synthesis, secretion, and action of insulin, the effects of zinc deficiency—specifically on glucose tolerance,
insulin secretion, insulin synthesis and storage, and on total insulin-like activity—are dealt with. The concentrations of
zinc and chromium in serum, pancreas, and liver are compared to those of zinc-deficient animals and pair-fed controls.
In contrast to pair-fed controls, zinc-deficient rats had unaltered proinsulin contents after glucose stimulation, but they
showed a diminished glucose tolerance, lowered serum insulin content, and an elevated total insulin-like activity. The serum
zinc concentration of the deficient animals was greatly reduced and did not change during glucose stimulation, whereas it
rose in the case of the pair-fed controls. The serum chromium concentration increased in both groups in response to glucose
stimulation. In the pancreas of the deficient animals, the zinc concentration was reduced 60% and it increased during the
glucose tolerance test. In the liver there were no significant differences. The chromium concentrations were elevated in both
the pancreas and liver of the zinc-deficient rats by 60 and 100%, respectively, and were not influenced by glucose injection.
These studies show clearly that nutritional zinc deficiency influences insulin metabolism and action. 相似文献
105.
Edith Wallace Harold I. Calvin George W. Cooper 《Molecular reproduction and development》1983,7(4):377-387
Three successive generations of mice were fed a Torula yeast based Se-deficient diet with or without 0.1 ppm Se in the drinking water. The Se-deficient mice, in the course of three generations, showed a decrease in body weight, testis weight, epididymal weight, and sperm production. The percentage of morphologically abnormal sperm increased in successive generations. The majority of sperm defects were found in the midpiece region of the tail. Many of these aberrant sperm were motile. A progressive decrease in fertility was noted during the first two generations of Se deficiency. This system confirms the essential role of Se in spermatogenesis and provides a model for the evaluation of the primary effect of Se deprivation on the structural development of sperm. 相似文献
106.
Liver tissues and fibroblasts from patients with propionic acidemia assigned to the pcc BC genetic complementation group have previously been shown to contain normal or near-normal quantities of structurally altered propionyl CoA carboxylases (PCC). Biochemical comparisons of PCCs from extracts of three livers and one placenta belonging to the pcc BC complementation group revealed that the K
m values for the enzyme's major substrates, propionyl CoA, bicarbonate, and ATP, and its monovalent activator, potassium, were similar to those of normal PCC. PCC in extracts of one of the livers, however, had an altered isoelectric point (pI = 5.4) compared to that of PCC from normal and other PCC-deficient tissues (pK = 4.6–4.7). Thermostability in the presence of sucrose or ATP differed among several of the mutant PCCs, including the PCC with an altered pI, and from that of normal PCC. To confirm these results and to determine whether valid inferences may be derived from comparisons of mutant and normal PCC in crude extracts, PCC was purified from normal liver and from one of the PCC-deficient livers. The biochemical parameters of the purified carboxylases were similar to those observed in liver extracts. These studies further-more confirmed that, whether purified or in extracts, PCC from the pcc BC group reflects structural mutations. Nevertheless, the abnormal enzyme structure appears to have no corresponding effect on the clinical features of the disorder in various affected individuals. Moreover, there is biochemical heterogeneity within the pcc BC complementation group that probably represents different interallelic gene mutations.This work was supported by NIH Research Grants Am 25675 and AM 26127. B. Wolf is the recipient of NIH Research Career Development Award AM 00677 and is aided by Basil O'Connor Starter Research Grant 5-263 from The National Foundation-March of Dimes. This article is No. 131 from the Department of Human Genetics at the Medical College of Virginia. 相似文献
107.
大鼠实验性脾虚证胃粘膜内分泌细胞变化的免疫组织化学研究 总被引:5,自引:1,他引:4
用正常成年雄性Wistar大鼠53只,体重100~150g,分为正常对照组、实验性脾虚组、自然恢复组和四君子汤治疗组。取胃,固定于Bouin液。制成石蜡切片,进行(1)HE染色;(2)免疫组织化学染色,按Sternberger PAP法显示胃泌素细胞(G细胞)、生长抑素细胞(D细胞)和5-HT细胞。根据细胞的免疫反应程度,将细胞分为强阳性、中等阳性和弱阳性三级,每例动物计数三种细胞各1,000个,并计算各级细胞占的百分比;(3)从正常对照组,脾虚组随机选择各5例动物,对D细胞和G细胞进行显微分光光度计的定量测定;(4)由四组动物随机选择各5例,进行G细胞和D细胞密度及G/D细胞比值的测定。本文的观察表明:(1)脾虚组胃粘膜未见明显的组织学变化;(2)内分泌细胞:与对照组相比,脾虚组G细胞和5-HT细胞中,弱阳性细胞增多,表明分泌活动增强;D细胞弱阳性和中等阳性细胞减少,强阳性细胞增多,表明分泌释放减弱,合成增强。与自然恢复组比较,治疗组G细胞和D细胞的分泌活动接近于对照组;5-HT细胞无明显的恢复;(3)显微分光光度计的测定结果与光镜观察一致,脾虚组G细胞胃泌素反应物的含量低于对照组,D细胞内生长抑素反应物的含量高于对照组;(4)脾虚组G细胞密度低于对照组(P<0.01),D细胞密度略高于对照组,G/D细胞比值也低于对照组(P<0.01)。本文结果提示,脾虚证这些内分泌细胞的分泌活动出现异常,可能是导致消化功能紊乱的原因之一。经四君子汤治疗后,内分泌细胞的分泌活动接近于对照组,说明此药对脾虚证有一定的治疗作用。 相似文献
108.
R. De Philippis C. Sili G. Tassinato M. Vincenzini R. Materassi 《Bioresource technology》1991,38(2-3)
Batch cultures of Cyanospira capsulata, a heterocystous cyanobacterium possessing a thick polysaccharidic capsule, were characterized by increasing viscosity owing to the continuous release of a soluble polysaccharide (EPS) into the culture medium. Both capsulated trichomes and solubilized EPS contributed to the flow properties of whole cultures. A typical pseudoplastic behaviour, the more marked the more aged were the cultures, was evidenced.The production of EPS was investigated under different growth conditions by changing some nutritional and physical parameters known to affect the synthesis of exopolysaccharides in algae and cyanobacteria. Among the factors tested (Ca2+, Mg2+ or PO4−4 deficiencies, salinity and pH) only Mg2+ shortage caused a significant enhancement of the EPS production. Under continuous illumination in open ponds, the EPS productivity of batch cultures on standard mineral medium was about 5·8 g m−2 day−1, whereas under Mg2+ deficiency with a consequent increase of the cultures' viscosity 相似文献
109.
I. G. Burns 《Plant and Soil》1992,142(2):221-233
A method is described for determining the way in which growth rate varies with plant nutrient concentration using a simple
nutrient interruption technique incorporating only 2 treatments. The method involves measuring the changes in growth and nutrient
composition of otherwise well-nourished plants after the supply of one particular nutrient has been withheld. Critical concentrations
are estimated from the relationship between the growth rate (expressed as a fraction of that for control plants of the same
size which remained well-nourished throughout) and the concentration of the growth-limiting nutrient in the plants as deficiency
developed. Trials of the method using young lettuce plants showed that shoot growth rate was directly proportional to total
N (nitrate plus organic N) concentration, and linearly or near-linearly related to K and P concentration over a wide range;
the corresponding relationship for nitrate was strongly curvi-linear. Critical concentrations (corresponding to a 10% reduction
in growth rate) determined from these results were similar to critical values calculated from models derived from field data,
but were generally higher than published estimates of critical concentration (based on reductions in shoot weight) for plants
of a similar size. Reasons for these discrepancies are discussed. Nitrate, phosphate or potassium concentrations in sap from
individual leaf petioles were highly sensitive to changes in shoot growth rate as deficiency developed, with the slope of
the relationships varying with leaf position, due to differences both in their initial concentration and in the rates at which
they were utilized in individual leaves. Each nutrient was always depleted more quickly in younger leaves than in older ones,
providing earlier evidence of deficiency for diagnostic purposes. Although the plants were capable of accumulating nitrate,
phosphate and potassium well in excess of that needed for optimum dry matter production during periods of adequate supply,
the rate of mobilization of these reserves was insufficient to prevent reductions in growth rate as the plants became deficient.
This brings into question the validity of the conventional concept that luxury consumption provides a store of nutrients which
are freely available for use in times of shortage. The implications of these results for the use of plant analysis for assessing
plant nutrient status are discussed. 相似文献
110.
The etiology of selenium-vitamin E (Se-E) deficiency diseases may be complex. Many of the syndromes involve combined deficiency
of selenium and vitamin E. Selenium moves into the animal and human food chain from soil and plants, which may contain inadequate
amounts of the nutrient in many areas of the world. Vitamin E may be in low concentration in many animal feeds unless supplements
are added. Some syndromes, such as steatitis in cats, result from an increased requirement of vitamin E in diets that contain
large amounts of polyunsaturated fatty acids, and these diseases will only respond to vitamin E administration. Deficiency
syndromes in animals owing to pure Se deficiency are infrequent and have been produced mainly by laboratory studies utilizing
extreme deficiency conditions. Other factors that may affect the occurrence of these deficiency diseases are concurrent dietary
deficiency of S-containing amino acids, bioavailability of different forms of dietary Se, intake of compounds that antagonize
Se (e.g., silver salts), and exposure to various prooxidant substances (e.g., iron compounds, oxygen, ozone, and various drugs).
A wide variety of pathologic alterations occur in animals and humans with Se-E deficiency. Myocardial lesions are seen most
frequently in calves, lambs, pigs, turkey poults, and ducklings. In humans, Keshan disease, an endemic cardiomyopathy in China,
is attributed to Se deficiency. Necrosis of skeletal muscle is the most frequent lesion observed in animal species. Necrosis
of smooth muscle of the gizzard and intestine may be a prominent lesion in turkey poults, ducklings, and quail. Other Se-E
deficiency lesions include hepatic necrosis, gastric ulceration, intestinal and uterine lipofuscinosis, pancreatic damage,
steatitis, exudative diathesis, encephalomalacia, and testicular necrosis. Selenium toxicosis is well characterized in animals
and humans by neurological, hoof, and hair alterations. 相似文献