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1.
在喀麦隆芋芳根涡病病原研究中,测定了不同碳源、氮源对分离自喀麦隆芋艿田间及来自中国的腐霉菌株生长习性的影响。实验结果表明,除了钟腐霉(Pythiumvexans)菌株只能吸收葡萄糖、果糠而不能吸收蔗糖外,其余腐霉菌株均能利葡萄糖、果糖、蔗糖作为碳源。所有试验菌株均不能利用半乳糖、麦芽糖及可溶性淀粉。钟腐霉菌株之形态特征与特殊碳源营养的相关性显示了用碳源作为菌株鉴定辅助标准的可行性,氮源营养试验结果表明,所有腐霉菌株均能利用四种氮源,根据不同氮源对菌丝生长的影响,依次为L-天门冬氨酸,L-精氨酸,硝酸铵,硝酸钾。  相似文献   
2.
The accumulation of soluble carbohydrates in vegetative parts of sweet sorghum ( Sorghum bicolor (L.) Moench.) represents an intermediate reserve pool for grain filling as well as an irreversible storage up to maturity. In order to study the effect of Sterility on soluble sugar accumulation in vegetative parts, two cytoplasmic male sterile (CMS) lines of sweet sorghum were compared with their corresponding fertile mamtainers for non-structural carbohydrate concentrations in shoots. Plants were harvested at four different physiological stages. The lines showed significant differences in the yield of non-structural carbohydrates. At maturity, the yields of soluble carbohydrates from vegetative parts of the two sterile lines were 93 % and 43 % higher than the yield of the two corresponding fertile lines. At that stage, sucrose represented about 80 % of total soluble carbohydrates and the higher yield of soluble carbohydrates of sterile lines was mainly due to the higher yield of sucrose. This indicates that the yield of extractable carbohydrates, especially sucrose, in vegetative parts of sweet sorghum could be considerably improved by using sterile lines which are utilized in hybrid production.  相似文献   
3.
In wheat, the ability to store and remobilise large amounts of stem water soluble carbohydrates (WSC) to grain constitutes a desirable trait to incorporate into germplasm targeted to regions with frequent terminal drought. The main aim of this paper was to examine the relationships between WSC storage, grain number and grain weight across several environments. A small set of recombinant inbred lines (2–4) contrasting in stem WSC were grown in six field trials where water availability, sowing date and/or N level were manipulated, with line yields ranging from 400 to 850 g m−2 across experiments. Biomass, N and WSC concentration (WSCc, mg g−1 dry weight) and amount (WSCa, g m−2) were monitored. A resource-oriented area-based model [Fischer, R.A., 1984. Growth and yield of wheat. In: Smith, W.H., Bante, S.J. (Eds.), Potential Productivity of Field Crops Under Different Environments. International Rice Research Institute, Los Baños, pp. 129–154] and intrinsic rates of organ growth were used to investigate the consequences on grain number of potential competition between spike and stem around flowering.  相似文献   
4.
《Journal of plant nutrition》2013,36(12):1995-2007
Uptake of the two forms of nitrogen NO3 ? and NH4 + and nitrate reduction have been studied in two varieties of Moroccan wheat seedlings, cvs. Sais and Jouda, cultivated under controlled conditions in a hydroponic medium. The available form of nitrogen in the medium had a direct effect on the rate of nitrogen absorption. A brief nitrogen starvation increased the root length and stimulated accumulation of soluble carbohydrates, especially in the root tissues. A resupply of nitrogen stimulated ammonium and nitrate uptake and assimilation with higher mobilization of the soluble carbohydrates previously accumulated in root seedlings. It is suggested that root nitrogen and carbohydrate status might both regulate nitrate uptake and reduction in Moroccan wheat seedlings.

The seedlings raised with the nitrate supply accumulated nitrate in the vacuole as an osmoticum. Shoots are the preferential site for such accumulation. The accumulation of mineral nitrogen was absent in the seedlings cultivated with ammonium supply but was compensated by accumulation of soluble organic nitrogen.  相似文献   
5.
【目的】 探明 CO2 浓度倍增对干旱胁迫下白羊草光合特性及非结构性碳水化合物含量的影响,为未来大气 CO2 浓度升高以及干旱、半干旱地区水分亏缺等逆境下白羊草的生长提供理论依据和技术参数。 【方法】 盆栽试验采用裂区设计,研究了黄土丘陵区典型草本植物白羊草光合特性和非结构性碳水化合物 (NSC) 及其组分 (可溶性糖和淀粉) 的含量对不同 CO2 浓度 (400 μmol/mol 和 800 μmol/mol) 和不同水分处理 [35%~40% FC (重度干旱胁迫)、55%~60% FC (轻度干旱胁迫) 和 75%~80% FC (对照)] 的响应。 【结果】 CO2 浓度倍增和干旱胁迫对白羊草光合–光响应曲线参数和 NSC 及其组分含量有显著影响,但 2 个因素之间没有显著的交互作用。CO2 浓度倍增显著提高了白羊草叶片最大净光合速率 (Pmax )、表观量子效率 (AQY)、光饱和点 (LSP) 和光补偿点 (LCP)(P < 0.01),而干旱胁迫则显著降低了Pmax 、AQY 和LSP (P < 0.01)。CO2 浓度倍增和干旱胁迫均提高了白羊草地上部分可溶性糖含量。在正常 CO2 浓度条件下,与对照相比,轻度干旱胁迫和重度干旱胁迫均显著降低了白羊草地上部分和根系部分淀粉含量。CO2 浓度倍增使对照、轻度干旱胁迫和重度干旱胁迫处理下白羊草地上部分淀粉含量分别提高了 17.4%、44.2% 和 18.7%,根系部分淀粉含量分别提高了 17.3%、88.4% 和 54.4%。轻度和重度干旱胁迫均显著降低了正常 CO2 浓度条件下白羊草根系部分 NSC 含量。CO2 浓度倍增显著提高了对照处理和轻度干旱胁迫处理下白羊草地上部分以及轻度干旱胁迫处理和重度干旱胁迫处理下白羊草根系部分 NSC 含量。在正常 CO2 浓度下,轻度和重度干旱胁迫导致白羊草地上部分和根系部分可溶性糖含量与总 NSC 含量比值的显著提高。在倍增 CO2 浓度下,重度干旱胁迫显著提高了白羊草地上部分可溶性糖含量与总 NSC 含量的比值,而对照处理和轻度干旱胁迫处理无显著差异。 【结论】 干旱胁迫促进了白羊草体内淀粉向可溶性糖的转化,导致可溶性糖含量的升高和淀粉含量的降低。CO2 浓度倍增促进了白羊草地上部分和根系部分淀粉和 NSC 含量的积累,为干旱胁迫下白羊草生理代谢活动所需可溶性糖提供了来源。CO2 浓度升高能够缓解干旱胁迫造成的不利影响,提高了白羊草的抗旱性。   相似文献   
6.
This work has evaluated the effects of thermally dried (TDS) or composted (CDS) dewatered sewage sludge on β-glucosidase activity, total (TCH) and extractable (ECH) carbohydrate content, microbial biomass carbon and basal respiration of soils from limestone quarries under laboratory conditions. Two doses (low and high) of the dewatered sludge (DS) or of the respective TDS or CDS were applied to a clayey and a sandy soil, both coming from working quarries. The soil mixtures and the controls (soils with no added sludge) were incubated for 9 months at 25°C and 30% of field capacity. The addition of sludge increased all the studied soil parameters, and the increase depended on the amount of sludge. Except in the case of TCH and ECH, the enhancing effect decreased with time, but at the end of incubation, parameters of the treated soils were higher than those of the control. The rank order of the initial stimulating effect was soil–TDS ≥ soil–DS ≥ soil–CDS, and probably, this order depended on the proportion of stable organic matter, which was the lowest in the TDS. Values of metabolic quotient (qCO2) were higher at the lower dose, and they did not change during incubation in the CDS-treated soils. Both TCH and ECH were the parameters with the greatest significant sludge and dose effects. Basal respiration, microbial biomass carbon and β-glucosidase activity were the best measured parameters in distinguishing the long-term effects of the three sludge types over the soils.  相似文献   
7.
分别采用无溶剂机械球磨法和浸渍法合成了V/ZSM-5固体催化剂,通过X射线粉末衍射(XRD)、扫描电子显微镜(SEM)、X射线光电子能谱分析(XPS)、N2物理吸附和电感耦合等离子体质谱(ICP-MS)等手段表征了催化剂的物相、表面形貌、V的价态、比表面积以及V的含量。结果表明,两种方法合成的催化剂中V元素的负载量接近(约为1.7%)。相比于传统浸渍法,本研究提出的球磨法无需任何溶剂,时间短(1 h),其合成的催化剂颗粒较小,比表面积更大(367.0 m^2·g^-1 vs 223.9 m^2·g^-1),且球磨法得到的催化剂V的价态较高,相同催化条件下球磨法合成的催化剂性能优于浸渍法合成的催化剂(45%vs 35%)。系统研究了不同实验因素对催化反应的影响规律,在温度180℃、水为溶剂、催化剂与底物质量比为1∶2、氧气3 MPa、反应时间30 min时,葡萄糖转化产甲酸的产率最高,达到45%。此外,在该球磨法合成的催化剂作用下,多种生物质基碳水化合物均能用来制备甲酸。本研究为金属负载型催化剂的设计合成提供了另一种途径,简单、高效、易操作且环境友好,对于木质纤维素类农林废弃物向高附加值化学品的转化具有重要意义。  相似文献   
8.
高温胁迫对黄瓜幼苗N素及C素代谢的影响   总被引:14,自引:0,他引:14  
高温胁迫 3 d 后,黄瓜耐热品种津杂 2 号幼苗中蛋白质降解速率(4.36% )比不耐热品种中农 11 号(8.51% )慢;氨基酸增幅较小,耐热品种为 26.34% ,不耐热品种为 34.7% ,其中脯氨酸质量分数增幅与品种耐热性呈正相关.耐热品种比不耐热品种具有较高的净光合速率(分别为7.66、6.64 μm ol·m - 2·s- 1),较低的呼吸速率(分别为445.66、563.49 μ L·g- 1 ·h- 1)和乙醇酸氧化酶活性[△ D(620 nm )分别为2.02、2.42].解除高温胁迫后,耐热品种的蛋白质合成和净光合速率均较不耐热品种恢复得快,表明耐热品种无论在高温胁迫下或解除胁迫后均比不耐热品种具有较强的平衡 N、 C代谢的能力  相似文献   
9.
Spatial pattern of nonstructural carbohydrates (NSC) was analyzed in two alpine timberline species (Abies georgei and Juniperus saltuaria) growing at the timberline in Sergyemla Mountain, southeastern Tibetan Plateau. We aimed to examine the effect of canopy height and leaf age on balance between carbon uptake and consumption of timberline tree species in extremely environmental condition. The results showed that no significantly vertical variation in sugars, starch or NSC (soluble sugars plus starch) in A. georgei was found for any aged needles. Also, there were no significant differences among vertical gradients in both current and last-year leaves for J. saltuaria. However, different-aged needles/leaves showed significant differences in NSC concentrations in both A. georgei and J. saltuaria. For A. georgei, needle mean NSC across vertical canopies showed a significant increase from current-year to 2-year needles (P < 0.05), followed by a gradual decrease from 2- to 5-year needles (P < 0.05), whereas for J. saltuaria, last-year leaves had significant higher NSC except sugars compared with current-year leaves across canopies (P < 0.01). The observed trends of NSC along vertical canopy heights and leaf ages suggested that, in extreme environmental condition, not only light-induced carbon acquisition in photosynthesis but also carbohydrate export from leaves should be taken into account to explain the spatial pattern of NSC.  相似文献   
10.
Abstract

Elevated levels of atmospheric carbon dioxide (CO2) can directly affect the cold hardening process in evergreens through their effect on the accumulation of carbon and nitrogen reserves. This study investigated the biochemical responses of black spruce [Picea mariana (Mill.) B.S.P.] seedlings to CO2 enrichment during growth, cold hardening and dehardening. Seedlings were grown under 350 (ambient) or 710 (elevated) ppm of CO2 for 12 months in eight mini-greenhouses. Photoperiod and temperature were gradually lowered in autumn to induce cold hardening, and the conditions were reversed in spring to promote dehardening. At regular intervals, cold tolerance was assessed and sugars, starch and amino acid concentrations were measured. The freezing tolerance differed between the two treatments only in early autumn, with seedlings growing under high CO2 being more tolerant. The northern ecotype was more cold tolerant with concomitant higher concentrations of sucrose, fructose, pinitol, glucose and total soluble sugars. The concentration of soluble sugars increased in needles and roots of black spruce along with cold hardening, and the concentrations of the cryoprotective sugars sucrose and raffinose were lower under elevated CO2. Amino acid concentrations were also lower under elevated than under ambient CO2. The lower level of reserve did not translate into a lower level of freezing tolerance.  相似文献   
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