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1.
Rayle DL 《Planta》1989,178(1):92-95
I examined the ability of frozen-thawed Avena sativa L. coleoptile sections under applied load to extend in response to the calcium chelators ethyleneglycol-bis-(-aminoethylether)-N,N,N,N-tetraacetic acid (EGTA) and 2-[(20bis-[carboxymethyl] amino-5-methylphenoxy)methyl]-6-methoxy-8-bis [carboxymethyl]aminoquinoline (Quin II). Addition of 5 mM EGTA to weakly buffered (0.1 mM, pH 6.2) solutions of 2(N-morpholino) ethanesulfonic acid (Mes) initiated rapid extension and wall acidification. When the buffer strength was increased (e.g. from 20 to 100 mM Mes, pH 6.2) EGTA did not initiate extension nor did it cause wall acidification. At 5 mM Quin II failed to stimulate cell extension or wall acidification at all buffer molarities tested (0.1 to 100 mM Mes). Both chelators rapidly and effectively removed Ca2+ from Avena sections. These data indicate that Ca2+ chelation per se does not result in loosening of Avena cells walls. Rather, EGTA promotes wall extension indirectly via wall acidification.Abbreviations EGTA ethyleneglycol-bis-(-aminoethylether)-N,N,N,N-tetraacetic acid - Quin II 2-[(2-bis-[carboxymethyl]amino-5-methylphenoxy)methyl]-6-methoxy-8-bis(carboxymethyl)aminoquinoline - Mes 2(N-morpholino)ethanesulfonic acid  相似文献   
2.
The role of calcium in the mechanical strength of isolated cell walls of soybean (Glycine max (L.) Merr. cv. Wayne) hypocotyls has been investigated, using the Instron technique to measure the plastic extensibility (PEx) of methanol-boiled, bisected hypocotyl sections and epidermal strips, and atomic absorption spectroscopy to measure wall calcium. Plastic extensibility was closely correlated with the growth rate of intact soybean hypocotyls. Removal of calcium from isolated cell walls by ethylene glycol-bis(2-aminoethyl ether)-N,N,N,N-tetraacetic acid (EGTA) or low pH increased PEx, while addition of calcium decreased PEx; both effects were reversible. The amount of calcium removed and the increase in PEx at pH 4.5 were strongly dependent upon the chelating ability of the buffer anion. There was a direct correlation between the amount of calcium removed from the wall by EGTA or acid and the increase in PEx. Removal of up to 60% of the calcium increased PEx of half-section up to two fold, but further loss of calcium caused a much greater increase in PEx. With epidermal strips, PEx increased only when calcium was reduced below a threshold. At pH 3.5, there was an additional increase in PEx after a lag of about 2 h; this additional increase may be the result of acid-induced cleavage of a different set of load-bearing bonds. We conclude that calcium bridges are part of the load-bearing bonds in soybean hypocotyl cell walls, and that breakage of these crosslinks by apoplastic acid participates in wall loosening. Acid-induced solubilization of wall calcium may be one mechanism involved in wall loosening of dicotyledonous stems.Abbreviations EGTA ethylene glycol-bis(2-aminoethyl ether)-N,N,N,N-tetraacetic acid - PEx Instron plastic extensibility  相似文献   
3.
Summary Maximum penetrometer pressure was measured on artificial soil aggregates of finite size (2–29 mm) using blunt probes (total cone angle 60°) driven at 3 mm min−1. Maximum penetrometer pressure increased asymptotically with increase in dimensionless aggregate radius,b/a, wherea andb are the probe and aggregate radii, respectively. A theory was developed for penetration of blunt probes into soil aggregates of finite size. The theory assumed that plastic failure occurs out to a radius,R, and that beyond this only elastic straining occurs. This theory can be applied to estimate the radial and tangential stresses adjacent to a blunt probe. The estimated radial and tangential stresses increased with increase in dimensionless aggregate radius,b/a. The radius of the plastic front,R, around the probe is predicted to increase with increased aggregate size. The results also demonstrate the effect of soil shear cohesion and internal friction angle onR. The results are discussed with reference to root penetration.  相似文献   
4.
Golluscio RA  Oesterheld M 《Oecologia》2007,154(1):207-217
The variation of plant water use efficiency (WUE) with water availability has two interacting components: a plastic response, evident when individuals of the same genotype are compared (e.g. wet versus dry years), and an interspecific response, evident when different species living in habitats with different water availability are compared. We analysed the WUE of 25 Patagonian species that belong to four life forms (grasses, shrubs, annual herbs and perennial herbs) in relation to the climatic conditions of 2 years and the mean historic water availability experienced by each species. To estimate water availability, we calculated the effective soil water potential (EWP) of each species, based on available information about soil water dynamics, phenology and root system structure. To estimate WUE, we used isotopic discrimination of leaf C (Δ13C) and mean annual water vapour difference between leaves and atmosphere (Δe) measured in situ. For the plastic response, for every species and life form, WUE increased from the dry to the wet year. We hypothesize that photosynthesis was less nutrient limited in the wet than in the dry year, facilitating higher net photosynthesis rates per unit of stomatal conductance in the wet year. For the interspecific response, WUE was lower in species native to drier habitats than in species native to wetter habitats. This response was mostly accounted for by a decrease in Δe with EWP. Annual herbs, which avoid drought in time (they have the earliest growth cycle), and shrubs, which avoid drought in space (they have the deepest roots), showed the highest EWP and WUE. We conclude that the conventional wisdom which states that the highest WUE occurs within a species during the driest years, and among species in the driest habitats, does not always hold true, and that co-existing life forms drastically differ in water availability and water economy.  相似文献   
5.
Cells detection is crucial in microbiological analysis of clinical, food, water or environmental samples. However, currently employed methods are time consuming. Plastic optical fiber (POF) biosensors consist in a viable alternative for rapid and inexpensive scheme for detection. In order to study the sensitivity of tapers for microbiological detection, geometric parameters are studied, such as the taper waist diameter since the formation of taper regions are the key sensing element in this particular type of sensors. In this study, a series of POF taper sensors were prepared using a specially developed tapering machine, and the dispersion of geometric dimensions is evaluated, aiming to achieve the best tapering characteristics which will provide a better sensitivity on the sensor response. The fiber tapers that presented the finest results were those constructed in U-shaped (bended) configurations, with taper waist diameters ranging from 0.40 mm up to 0.50 mm. These fiber tapers were used as the main section of the monitoring device, and when chemically treated as immunosensors for the detection of bacteria, yeast and erythrocytes.  相似文献   
6.
残留地膜对番茄幼苗形态和生理特性的影响   总被引:10,自引:0,他引:10  
采用盆栽试验的方法,研究了土壤中残留地膜对番茄(Lycopersicon esculentum L.)幼苗形态及生理特性的影响.结果表明,残留地膜使番茄幼苗的株高、茎粗、地上部和根系鲜重、根系活力及叶片氮代谢水平等降低;而且根系的IBA含量降低和ABA含量增加,抑制了根系的生长.同时地膜残留量越大,抑制的效果越显著.这...  相似文献   
7.
Growth form is one of the important life history traits ultimately influencing plant fitness. Potentilla palustris is a stoloniferous plant growing in a range of habitats from densely vegetated wet meadows to acidic transitional fens, and its growth form varies according to habitat. In a four year multi-site comparative study, we investigated which biotic and abiotic characteristics influence most its growth traits. Vegetation composition and physiognomy, as well as numerous abiotic environmental variables, were recorded at 32 study sites located on an altitudinal gradient. Growth traits of P. palustris were best explained by the surrounding vegetation physiognomy and not by abiotic conditions, although the latter obviously represents the factors indirectly influencing its growth. Stolon length traits and branching were positively correlated with vegetation density and height, and negatively with altitude. Plants flowered more in taller vegetation, and leaf area was greater in wetter sites with lower vegetation cover. Potentilla palustris appeared to be well adapted to transitional fens, but its vegetative growth was fastest in wet meadows and alluvial habitats on highly organic humid soils. It produced more branches and larger leaves in alluvial habitats with open water, while it had enhanced generative reproduction in wet meadows. Species composition was less important than vegetation physiognomy. In less favorable habitat types, P. palustris prefers an escape strategy of linear growth. Internode length exhibited pronounced plasticity, increasing particularly in tall dense vegetation of lower altitude, whereas internode number remained fairly constant over various habitats. It is evident that both plastic low cost growth traits (internode elongation), and constant high cost traits (internode number) contribute to the P. palustris escape strategy under tall dense vegetation. Phenotypic plasticity enhances the potential of P. palustris to grow in a wide range of habitats and so increases plant fitness on regional scale.  相似文献   
8.
In this work, which is a follow-up of an earlier work by the authors in this journal, we discuss the effects of particles, interstitials, vacancies and indenter-tip geometry on indentation-induced plasticity. A nano-indentation model based on a close-packed array of straws was used. Upon indentation with a cylindrical indenter, the results observed in situ, match qualitatively computer atomistic and finite-element simulation models. This model helps explain the phenomenon and physical reasons for annihilation of vacancies. It also shows the strong effect of interstitials on the inception of plasticity at their sites. It shows that a rigid particle acts as a stress concentrator even away from the indenter. On indentation with a flat indenter, curling of atoms at the indenter edges was observed, along with slip lines reported in the literature.  相似文献   
9.
互花米草生物质能利用潜力   总被引:1,自引:1,他引:0  
作为外来种,互花米草(Spartina alterniflora)对入侵地的生态系统产生了较强的干扰,但同时高生物量的互花米草也是一种潜在的生物质能源.发展生物质能是充分利用互花米草资源并控制其恶性扩张的较为有效和实用的途径,具有生态和经济双重效益.本文总结了互花米草生物质能的利用潜力,其表现为时间与空间上的生物量资源优势、高效的光合作用机制与高生产力、高贮能、较高的碳水化合物、蛋白质和脂肪储量以及不占用耕地等;同时介绍了互花米草生物质能开发利用现状,并指出互花米草生物质能的开发与利用有着光明的前景.  相似文献   
10.
目的:探讨A型肉毒毒素联合眼袋整形术对眼周皮肤松弛患者的治疗效果和对患者满意度的影响,为临床提供参考。方法:选取2015年6月至2016年6月间因眼周皮肤松弛来我院治疗的患者60例。患者根据自身意愿选择治疗方式,按其选择的治疗方式分组为对照组(n=28)和治疗组(n=32)。对照组采用单纯眼袋整形术进行治疗,治疗组采用A型肉毒毒素联合眼袋整形术治疗。治疗后对两组患者均随访6个月。观察记录患者手术后鱼尾纹的改善效果、眼袋减轻的情况和眼周皮肤光泽的改善效果。观察患者并发症的发生情况。随访结束时采用自制的满意度调查问卷对患者满意度进行调查。结果:经过治疗,治疗组鱼尾纹改善率为100.00%,明显高于对照组的60.71%;治疗组眼袋改善率为96.88%,明显高于对照组的32.14%;治疗组皮肤光泽改善率为87.50%,明显高于对照组的53.57%,差异均具有统计学意义(均P0.05)。治疗后,两组患者切口红肿、少量分泌物、小血肿的发生率比较无明显差异(P0.05),治疗组术眼红肿与外眦部切口瘀痕发生率明显少于对照组(P0.05)。治疗组总满意率为93.75%(30/32),明显高于对照组的67.86%(19/28),差异具有统计学意义(P0.05)。结论:A型肉毒毒素与眼袋整形术联合应用在眼周皮肤松弛的治疗上有较好的疗效和安全性,能明显降低患者术眼红肿与外眦部切口瘀痕的发生,并提高患者满意率,值得在临床上推广应用。  相似文献   
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