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1.
Isolated small intestine of toad (Bufo bufo) was mounted on glass tubes for perfusion studies with oxygenated amphibian Ringer's solution containing glucose and acetate. Under open-circuit conditions (V t =−3.9 ± 1.8 mV, N= 14) the preparation generated a net influx of 134Cs+. The time course of unidirectional 134Cs+-fluxes was mono-exponential with similar rate constants for influx and outflux when measured in the same preparation. The flux-ratio was time invariant from the beginning of appearance of the tracers to steady state was achieved. Thus, just a single pathway, the paracellular pathway, is available for transepithelial transport of Cs+. From the ratio of unidirectional Cs+-fluxes the paracellular force was calculated to be, 18.2 ± 1.5 mV (N= 6), which is directed against the small transepithelial potential difference. The paracellular netflux of cesium ions, therefore, is caused by solvent drag. The flux of 134Cs+ entering and trapped by the cells was of a magnitude similar to that passing the paracellular route. Therefore, independent of the convective flux of 134Cs+, every second 134Cs+ ion flowing into the lateral space was pumped into the cells rather than proceeding, via the low resistance pathway, to the serosal bath. It is thus indicated that the paracellular convective flow of 134Cs+ is driven by lateral Na+/K+-pumps. Transepithelial unidirectional 42K+ fluxes did not reach steady state within an observation period of 70 min, indicating that components of the fluxes in both directions pass the large cellular pool of potassium ions. The ratio of unidirectional 24Na+ fluxes was time-variant and declined from an initial value of 3.66 ± 0.34 to a significantly smaller steady-state value of 2.57 ± 0.26 (P < 0.001, N= 5 paired observations), indicating that sodium ions pass the epithelium both via the paracellular and the cellular pathway. Quantitatively, the larger ratio of paracellular Na+ fluxes, as compared to that of paracellular Cs+ fluxes, is compatible with convective flow of the two alkali metal ions through the same population of water-filled pores. With a new set of equations, the fraction of the sodium flux passing the basement membrane barrier of the lateral space that is recirculated through the cellular compartment is estimated. This fraction was, on average, 0.72 ± 0.03 (N= 5). It is concluded that isotonicity of the transportate can be maintained by producing a hypertonic fluid emerging from the lateral space combined with reuptake of salt via the cells. Received: 14 October 1998/Revised: 14 January 1999  相似文献   

2.
Sodium Recirculation and Loss from Phaseolus vulgaris L.   总被引:3,自引:0,他引:3  
JACOBY  B. 《Annals of botany》1979,43(6):741-744
In a split-root experiment, 22Na was supplied to Phaseolus vulgarisL. roots emerging from the stem, 2.5 cm above the main roots.Sodium exported from these upper roots was translocated a shortdistance upward in the stem and downward to the main roots.Most of the 22Na arriving in the main roots was lost to themedium. Sodium loss from P. vulgaris roots into KCI or NaCl was similarand was not affected by oligomycin. The results confirm a previous hypothesis regarding the mechanismof sodium exclusion from the tops of sodium non-accumulatorplants. Phaseolus vulgaris L., bean, sodium transport  相似文献   

3.
植物重金属镉(Cd2+)吸收、运输、积累及耐性机理研究进展   总被引:17,自引:0,他引:17  
仇硕  张敏  孙延东  黄苏珍 《西北植物学报》2006,26(12):2615-2621
本文从植物对Cd2 吸收、运输及积累机制,以及Cd2 对植物的伤害、植物对Cd2 的耐性机制等三个层面对相关研究进展进行了综述,并对该研究领域的重点问题进行了展望。  相似文献   

4.
The Na(+) recirculation theory for solute-coupled fluid absorption is an expansion of the local osmosis concept introduced by Curran and analyzed by Diamond & Bossert. Based on studies on small intestine the theory assumes that the observed recirculation of Na(+) serves regulation of the osmolarity of the absorbate. Mathematical modeling reproducing bioelectric and hydrosmotic properties of small intestine and proximal tubule, respectively, predicts a significant range of observations such as isosmotic transport, hyposmotic transport, solvent drag, anomalous solvent drag, the residual hydraulic permeability in proximal tubule of AQP1 (-/-) mice, and the inverse relationship between hydraulic permeability and the concentration difference needed to reverse transepithelial water flow. The model reproduces the volume responses of cells and lateral intercellular space (lis) following replacement of luminal NaCl by sucrose as well as the linear dependence of volume absorption on luminal NaCl concentration. Analysis of solvent drag on Na(+) in tight junctions provides explanation for the surprisingly high metabolic efficiency of Na(+) reabsorption. The model predicts and explains low metabolic efficiency in diluted external baths. Hyperosmolarity of lis is governed by the hydraulic permeability of the apical plasma membrane and tight junction with 6-7 mOsm in small intestine and < or = 1 mOsm in proximal tubule. Truly isosmotic transport demands a Na(+) recirculation of 50-70% in small intestine but might be barely measurable in proximal tubule. The model fails to reproduce a certain type of observations: The reduced volume absorption at transepithelial osmotic equilibrium in AQP1 knockout mice, and the stimulated water absorption by gallbladder in diluted external solutions. Thus, it indicates cellular regulation of apical Na(+) uptake, which is not included in the mathematical treatment.  相似文献   

5.
6.
7.
Readily available chemical fertilizers have resulted in a decline in the use of organic manure (e.g., green manures), a traditionally sustainable source of nutrients. Based on this, we applied urea at the rate of 270 kg ha−1 with and without green manure in order to assess nitrogen (N) productivity in a double rice cropping system in 2017. In particular, treatment combinations were as follows: winter fallow rice-rice (WF-R-R), milk vetch rice-rice (MV-R-R), oil-seed rape rice-rice (R-R-R) and potato crop rice-rice (P-R-R). Results revealed that green manure significantly (p ≤ 0.05) improved the soil chemical properties and net soil organic carbon content increased by an average 117.47%, total nitrogen (N) by 28.41%, available N by 26.64%, total phosphorus (P) by 37.77%, available P by 20.48% and available potassium (K) by 33.10% than WF-R-R, however pH was reduced by 3.30% across the seasons. Similarly, net dry matter accumulation rate enhanced in green manure applied treatments and ranked in order: P-R-R > R-R-R > MV-R-R > WF-R-R. Furthermore, the total leaf dry matter transport (t ha−1 ) for the P-R-R in both seasons was significantly higher by an average 11.2%, 7.2% and 36 % than MV-R-R, R-R-R, and WF-R-R, respectively. In addition, net total nitrogen accumulation (kg ha−1 ) was found higher in green manure applied plots compared to the control. Yield and yield attributed traits were observed maximum in green manure applied plots, with treatments ranking as follows: P-R-R > R-R-R > MV-R-R > WF-R-R. Thus, results obtained highlight ability of green manure to sustainably improve soil quality and rice yield.  相似文献   

8.
In this paper, uptake and distribution of sodium and potassium within the mesocotyl are considered in excised, 8-day-old corn (Zea mays L.) seedlings supplied with label via the transpiration stream. The stele and cortex were dissected following uptake and analyzed separately. At equal concentrations, sodium uptake by the stele was much more rapid than potassium uptake, and sodium was preferentially retained within the stele. Transport of sodium to the cortex halted when the supply of ions in the transpiration stream was interrupted. Potassium would not substitute for sodium in restoring this transport but neither did it compete with sodium for transport to the cortex. In the presence of continued sodium supply, transport was temperature sensitive.

By labeling first with 22Na for 2 hours and subsequently with 24Na for up to 21 hours, three sodium pools were identified within the stele. The first was rapidly transportable to the cortex. The second equilibrated rapidly with the first but was not itself directly available for transport. We postulate that these represent the stelar symplasm and apoplasm, respectively. A third pool was not transported and probably represents sequestration within the vacuoles of some cell type. Transport of label acquired during the initial 2 hours proceeded with a half-time of approximately 10 hours with 10 millimolar sodium present during the redistribution period, and with a half-time of approximately 30 hours at 1 millimolar sodium.

A working model is presented which explains these characteristics and supplies approachable questions for subsequent study.

  相似文献   

9.
植物对Si的吸收、运输和沉积   总被引:5,自引:0,他引:5  
本文综述了植物中的S i及其吸收、运输和沉积的研究进展:(1)植物含S i量因植物种、品种甚至无性系与器官的不同而有较大差异,S i在细胞中呈现区隔化分配;(2)植物中沉积的S i主要是非晶态的S iO2.nH2O(又称硅胶、植物蛋白石、植硅石等),是有机物质矿质化的产物,不同植物所形成的S i化结构及其形态不同,可用于植物分类、鉴定及古气候与环境变化的研究;(3)硅藻和高等植物主要吸收S i(OH)4,高等植物中存在S i主动吸收机制;(4)有机大分子物质(包括多胺、碳水化合物、纤维素)作为有机衬质参与了植物的S i沉积过程;(5)突变体的鉴定和应用,对S i营养研究具有重要作用.  相似文献   

10.
果实中糖的运输、代谢与积累及其调控   总被引:42,自引:0,他引:42  
叶片光合产物向果实运输的主要形态是蔗糖,但在木本蔷薇科果树中,光合产物的主要运输形态为山梨醇.糖从质外体空间跨膜运入共质体的过程由糖运输蛋白介导,而糖运输蛋白的基因表达伴随着果实糖的积累而增强.蔗糖代谢酶参与了细胞内外4个与糖运输有关的无效循环.己糖代谢抑制是果实糖快速积累的前提.在木本蔷薇科果实中,蔗糖代谢酶活力仍非常活跃,表明蔗糖可能与山梨醇在果实生长发育中都起重要的作用.糖作为信号分子,调节了承担糖运输与代谢的基因的表达.自然环境因子和栽培措施能有效调控糖运输、代谢与积累.反义抑制Ivr基因表达能提高番茄果实含糖量的实验结果表明遗传工程调控糖积累的潜力.阐明糖信号与其它信号互作对糖运输与代谢的调控机制是今后研究的重点.  相似文献   

11.
12.
植物钙素吸收和运转   总被引:9,自引:0,他引:9  
近年来,钙素在植物体内的吸收和运输研究主要集中在细胞和分子水平,但整株水平上的研究也同样重要.整株水平上的钙吸收和运输包括根细胞的钙吸收、钙离子横向穿过根系并进入木质部、在木质部运输、从木质部移出并进入叶片或果实及在叶片或果实中运转分配等环节,既经过质外体也穿越共质体.钙离子通道、Ca2 -ATP酶和Ca2 /H 反向转运器等参与根细胞的钙吸收.在钙离子横向穿根进入木质部的过程中,需要穿越内皮层和木质部薄壁细胞组织.根系内皮层凯氏带阻挡了Ca2 沿质外体途径由内皮层外侧向内侧的移动,部分Ca2 由此通过离子通道流进内皮层细胞而转入共质体并到达木质部薄壁细胞组织,而由木质部薄壁细胞组织进入中柱质外体可能需要Ca2 -ATP酶驱动;还有一些Ca2 由内皮层细胞运出,沿内皮层内侧的质外体途径进入木质部导管,并通过导管运向枝干.钙离子以螯合态的形式在枝干导管运输;水流速率是影响钙离子沿导管运输的关键因子.钙离子在果实和叶片中的运输和分配不仅通过质外体途径也通过共质体途径.  相似文献   

13.
14.
以4种不同温度类型的冬小麦品种'小偃6号'、'NR9405'、'陕229'和'RB6'为材料,在0~250 mmol/L NaCl胁迫条件下,采用水培试验研究了钙调蛋白抑制剂(CPZ)、钙离子通道阻断剂(LaNO3)和钙离子螯合剂(EGTA)等对冬小麦盐分吸收的影响及其作用机理.结果显示:在中盐(150 mmol/L NaCl)胁迫下3种制剂均显著增加了各品种小麦植株对Na+的吸收,减少了K+吸收,且其作用依次表现为CPZ>EGTA>LaNO3.中盐胁迫下,各种制剂对冷型小麦'陕229'和'RB6'盐分吸收的影响大于暖型小麦'小偃6号'和‘NR9405',而高盐(250 mmol/L)胁迫下这种差异缩小.研究表明,Ca2+对小麦Na+吸收的调节作用主要通过钙调蛋白(CaM)来完成, CaM不但控制小麦Na+净吸收和累积,而且在小麦K+吸收中也起重要作用;在盐胁迫下冷型小麦 '陕229'和'RB6'对Ca2+和CaM活性的要求大于暖型小麦'小偃6号'和'NR9405'.  相似文献   

15.
植物对土壤中铀的吸收与富集   总被引:1,自引:0,他引:1  
核工业发展导致重金属铀排放和扩散,并造成了地表土壤的污染,对人类的生存环境产生了极其不利的影响。如何修复铀污染土壤成为亟待解决的问题。近年来发展起来的植物修复技术以其成本低廉、安全和环保的特点成为修复铀污染土壤的新选择。寻找理想的铀富集植物是这一技术的基础和关键。该文通过实验模拟铀污染的土壤(土壤中铀的浓度为100 mg.kg–1),进行一次和二次铀污染土壤的植物修复后,从4个方面对植物修复铀污染土壤效果进行评估,即富集铀的浓度、生物提取量、生物富集系数(BFS)和转运系数(TFS)。实验结果表明:第1次修复时,四季香油麦菜(Lactuca dolichophylla)地上部富集铀的浓度为1.67×103 mg.kg–1,生物富集系数和转移系数均大于3;第2次修复时,麦冬(Ophiopogon japoni-cus)富集铀的浓度与第1次修复相比变化不大,而吊兰(Chlorophytum comosum)、四季豆(Phaseolus vulgaris)和艾蒿(Artemisia lavandulaefolia)富集铀的浓度与第1次修复相比均减少4–8倍;施加土壤改良剂鸡粪肥、海藻肥和柠檬酸后发现海藻肥和柠檬酸能够增强植物对铀污染土壤的修复;对两次修复土壤中铀的形态进行对比分析,发现二次修复时土壤中生物有效态铀的含量降低,造成第2次修复的难度增加。  相似文献   

16.
A compartmental model of toad bladder sodium content has been developed, whereby it is possible to measure the four unidirectional fluxes across the opposite faces of the transport compartment, as well as the amount of sodium in the compartment. 24Na is added to the mucosal medium of a short-circuited bladder mounted between halves of a chamber in which the fluid is stirred by rotating impellers. After a steady state is reached, nonradioactive medium is flushed through both sides of the chamber, collected, and counted. The data from each chamber are fitted to sums of exponentials and interpreted in terms of conventional compartmental analysis. Three exponentials are required, with half-times of 0.2, 2.2, and 14.0 min. It is shown that the first of these represents chamber washout, the second the transport pool, and the third a tissue compartment which is not involved in active sodium transport and which does not communicate with the transport pool. The second compartment contains 10.5 µEq of sodium per 100 mg dry weight, an amount equal to approximately 30% of total tissue sodium. The results also indicate, as expected from electrophysiological data, that the mucosal-facing side of the transport compartment is over 10 times as permeable to sodium as the serosal, or pump, side.  相似文献   

17.
Multiphasic Uptake in Plants I. Phosphate and Sulfate   总被引:2,自引:0,他引:2  
Uptake of phosphate and sulfate is shown by reanalysis of available data to be mediated by single, multiphasic mechanisms which may be fundamentally similar in a variety of plants and tissues.  相似文献   

18.
Reed AJ  Hageman RH 《Plant physiology》1980,66(6):1179-1183
The study presented here was an extension of a preceding field project concerned with changes in N metabolism of four maize hybrids during grain development. The objectives were to relate uptake, flux, and reduction of nitrate to accumulation of reduced N in growth-chamber-grown seedlings of the same four hybrids and to compare these results with those obtained in the field study.  相似文献   

19.
植物钙吸收、转运及代谢的生理和分子机制   总被引:6,自引:0,他引:6  
周卫  汪洪 《植物学通报》2007,24(6):762-778
钙是植物必需的营养元素。酸性砂质土壤中含钙较少,导致在其土壤上生长的作物容易缺钙。另外由于果树果实、果菜类和包心叶菜类的蒸腾作用弱,导致果树和蔬菜普遍生理缺钙。根系维管束组织可能通过共质体和质外体两种途径进行钙素吸收,而果实则可通过非维管束组织直接吸收钙素。Ca2 通过Ca2 通道内流进入胞质,并通过Ca2 -ATPase和Ca2 /H 反向转运蛋白外流以保持胞质内低Ca2 浓度。为了应对植物发育和环境胁迫信号,Ca2 由质膜、液泡膜和内质网膜的Ca2 通道内流进入胞质,导致胞质Ca2 浓度迅速增加,产生钙瞬变和钙振荡,传递到钙信号靶蛋白,如钙调素、钙依赖型蛋白激酶及钙调磷酸酶B类蛋白,引起特异的生理生化反应。本文综述了植物钙素吸收、转运以及代谢研究的最新进展,包括植物对钙的需求和作物缺钙的原因,根系维管束组织及果实钙素吸收机理,Ca2 跨膜运输特性,钙的信使作用以及钙信号靶蛋白等方面内容。  相似文献   

20.
The uptake and release of 3H-labelled fusicoccin (FC) fed topea internode segments and the transport of [3H]FC in wholeplants and in excised parts of plants of pea, maize, and pumpkinhave been investigated. FC uptake showed three phases apparentlycorresponding to the penetration of FC: (1) into the free space;(2) into the cytoplasm; (3) into the vacuole. The first phase is a little thermosensitive and apparently includesadsorption binding to some free space component (cell surface?).The second and third phases are highly temperaturesensitiveand in part energy-dependent. However, no accumulation of FCagainst a concentration gradient is observed at high externalFC concentration. Accumulation at low concentration seems dueto the formation of a poorly exchangeable complex with somecell structure. The efflux of the FC penetrated within the cells is limitedby some highly temperature-sensitive process. A small fractionof the accumulated FC tends to be retained in the tissue, eitherbecause sequestered in some compartment or because bound tosome cellular component. FC transport in whole plants as well as in isolated plant partsseems to depend mainly on simple diffusion and on transportby mass flow in the xylem. Long distance transport of the toxinin pumpkin plants mainly occurs in the xylem, while the slowmovement in non-vascular tissues seems to depend on diffusioncombined with mass flow in the free space, and does not seemheavily influenced by metabolic factors.  相似文献   

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