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11.
来源于木材、麦草、竹子和蔗渣的木质素磺酸钠与三聚氰胺、甲醛和焦亚硫酸钠合成出磺化木质素三聚氰胺甲醛超塑化剂(LSMF).系统研究了LSMF对砂浆减水率、抗压强度、抗折强度和加速碳化深度等应用性能的影响.结果表明,使用麦草基木质素磺酸钠合成出磺化度3.663mmol/g,特性黏度7.24mL/g的LSMF对砂浆的减水增强性能最好.当LSMF掺量为0.7%时,砂浆减水率为21.1%.硬化砂浆28d加速碳化深度为13mm,空白砂浆为34.5mm.掺加LSMF后,硬化砂浆28d抗压强度和抗折强度分别比空白砂浆提高37%和18%.LSMF超塑化剂为木质素高效利用提供了一种新的思路.  相似文献   
12.
以7~8成熟的芒果果实为材料,比较果实减压渗钙与否对后熟的效应,研究与果实后熟相关酶类的活性和钙调蛋白(CaM)含量的动态变化,寻找它们之间的相互关系。结果表明:对照果实或者Ca2+处理果实在后熟过程中,CaM含量均发生变化,与此同时,伴随着多聚半乳糖醛酸酶(PG)、淀粉酶(Amglase)活性的变化,它们之间存在极显著的相关性。Ca2+对果实后熟具有双重效应,当Ca2+处理果实置于室温下时,CaM含量、PG、淀粉酶活性明显受到抑制,后熟延缓。但把Ca2+处理果实冷藏(12 d)后回至室温第 3~4 d时,或直接减压渗钙果肉切片,其CaM含量、PG、淀粉酶活性增加,后熟加快。外源乙烯能解除Ca2+的抑制效应。并讨论了Ca2+的这些效应的可能机制。  相似文献   
13.
ABSTRACT

Effects of three supplemental calcium (Ca++; 2.5, 5.0, and 10 mole m?3) concentrations on ion accumulation, transport, selectivity, and plant growth of salt-sensitive species, Brassica rapa ‘Sani’ in saline medium were investigated. Supplemental Ca++ in the presence of 125 mol m?3 sodium chloride (NaCl) did not improve the dry weight and leaf area indicating no role played by Ca++ in the alleviation of salinity induced growth inhibition. However, calcium chloride (CaCl2) did significantly affect sodium (Na+), potassium (K+), and Ca++ contents of roots and shoots. The ion contents of shoots were significantly greater than those of roots per g dry weight, indicating ion transportation to shoots is greater than ion accumulation in roots. Use of CaCl2 in 125 mol m?3 NaCl reduced the Na+ content but increased K+ and Ca++ contents in shoots. Sodium contents in shoots differed among the supplemental Ca++ treatments indicating the role of CaCl2 in Na+ ions transportation. Calcium content in shoots declined significantly in the control treatment (0 CaCl2) but increased significantly in 10 mol m?3 CaCl2. The root also showed the effects of Ca++ on the reduction of Na+ content and the increase of K+ and Ca++ content. Unexpectedly, 5 mol m?3 CaCl2 induced the highest Na+ content in roots at 16 days after treatment. Supplemental CaCl2 application influenced the K+ or Ca++ selectivity over Na+ in two ways, ion accumulation at roots and transport to shoots. However, high CaCl2 treatments allowed greater Ca++ selectivity over Na+ than low CaCl2. Likewise, high supplemental CaCl2 showed higher K+ selectivity over Na+ than low CaCl2. A marked increase in K+ versus Na+ selectivity for the transport process occurred at 10 mol m?3 CaCl2 treatments. The roots and shoots exhibited higher K+/Na+ and Ca++/Na+ ratios in high CaCl2 treatment than in low. The results are discussed in context to supplemental Ca++ concentrations, ions accumulation, transportation and selectivity of salt sensitive Brassica rapa cultivar.  相似文献   
14.
Rice (Oryza sativa L. cv. Yamabiko) and tomato (Lycopersicon esculentum Mill cv. Saturn) plants subjected to Na-salinization (NA: 80 mmol( + ) kg-1 Na) in hydroponics were grown after the addition of K at five concentrations (K1: 10, K2: 20, K3: 30, K4: 40, K5: 50 mmol( + ) kg-1). The effect of K on their growth was analyzed in terms of transpiration, cation uptake, and transport. A similar tendency for the above parameters was obtained in both species. The addition of 10 mmol( + ) kg-1 K improved the growth by decreasing the content of Na and increasing the K content of the plants. The growth of the plants, however, was reduced along with the increase of the K concentration and became comparable to that of NA at K5. The total cation content increased with the increase of the K concentration, which was due to the increase of the K content.

A close relationship was observed among the osmotic potential of the solution, cumulative transpiration, and dry weight for both species among the K treatments.

Addition of K suppressed the uptake of other cations by rice and tomato in the order of Na>Mg>Ca, with a very small suppression for Ca and Mg. The depression of Na uptake by K could be due to the antagonism between the two cations.

In rice, the addition of K resulted in a decrease of the uptake concentration (UC) of Na and an increase of that of K, but did not bring about any changes in the UC of Ca and Mg. It was worth noting that K1 and K2 led to a higher UC of Na than NA in tomato, while the trend of the UC of K, Ca, and Mg was similar to that in rice. The transport of Na and Ca to the tops of rice was not affected by the addition of K, while that of Mg increased by K addition. In tomato, the transport of all the cations was promoted by the increase of the K concentration.  相似文献   
15.
用5日龄Arbor Acres肉仔鸡80只进行试验,分别喂以添加Ca 2.5%,2.5%+Zn 80 ppm,1%,1%+Zn 80 ppm的玉米-豆饼型基础日粮(含Ca 1%,Zn 48 ppm),对照组喂基础日粮。结果表明:高Ca影响锌的吸收,加剧Zn缺乏症,表现生长迟缓,羽毛蓬乱、无光泽、脱落,胫骨呈“短骨粗症”;在不同日龄中肝、毛的Mn.Zn,Fe,Co含量显著或极显著低于对照组,而肝中的Cu,se含量则增高;血液中的AKP,CPK,总蛋白和淀粉酶明显或极明显低于对照组,而Ca~([2+]),SGPT,γ-GT和球蛋白显著或极显著升高,其它元素和生理生化指标无明显差异。  相似文献   
16.
【背景】柑橘溃疡病是由柑橘黄单胞杆菌柑橘致病变种(Xanthomonas citri subsp. citri,Xcc)引起的细菌性病害,可侵染枝、叶、果,危害几乎所有的柑橘主栽品种。前期对湖南省39个柑橘园的调查结果显示柑橘果园土壤酸化和交换性钙缺乏严重,叶片中均存在钙缺乏现象。钙是植物所需大量元素之一,钙缺乏会造成植物营养失衡,生长势下降,植物免疫水平受影响。然而,钙元素对柑橘溃疡病抗性的影响尚不明确。【目的】分析对柑橘溃疡病敏感的枳(Poncirus trifoliata)在不同钙浓度处理下叶片注射接种Xcc后的致病差异,探讨钙在Xcc侵染枳叶片过程中的作用。【方法】采用沙培法对枳实生苗进行0、0.75、3、30 mmol·L-1钙浓度处理,分别测定枳生长期的生物量、叶绿素a和b浓度、根系和叶片钙元素含量、观察根系活性氧(ROS)的产生和胼胝质沉积,并分析枳叶片接种Xcc后细胞壁合成相关基因及免疫途径相关基因诱导表达变化特征。【结果】以3 mmol·L-1钙处理为对照,0、0.75和30 mmol·L-1钙处理后,...  相似文献   
17.
Dynamic changes in calcium content were investigated in eight apple cultivars. The results showed that the calcium concentration in leaves and shoots increased with fruit development. The cultivars displayed only a small difference in the calcium concentration during the early stage of development, the difference became very significant at the late stage of development, especially in shoots. In shoots, for example, calcium content was highest in Starkrimson (19 638.6 mg kg^-1) and lowest in Fuji (8 751.3 mg kg^-1). Calcium concentration was highest in young fruits and was found to decrease with the growth of fruit, and was characterized by a dramatic drop at the rapid expansion stage. There was a significant difference among cultivars. Young Starkrimson fruits contained the highest calcium concentration of 506.52 mg kg^-1 among cultivars tested, followed by Pink Lady and Fuji. The calcium concentration in mature fruits from high to low is as follows: Starkrimson, Sansa, Pink Lady, Senshu, Gala, Fuji, Red General and New Century. In this study, it was found that eight cultivars continuously assimilated calcium during the whole growing season, especially at the young stage when fruit took up 35-46% of total calcium. The calcium content in fruitlets was low in all cultivars; in the expansion stage, there was rapid absorption of about 30% of total calcium, whereas in the ripening fruit, content of calcium was reduced. The calcium accumulation increased with fruit growth in stalk, similar to that in fruit.  相似文献   
18.
该文研究了青杄花粉在离体培养条件下,蔗糖、硼(H3BO3)和钙(CaCl2)对其萌发和花粉管生长的影响,同时还优化了培养基的组分配比.培养基中蔗糖浓度对青杄花粉的萌发影响显著,并有明显的域值效应;应用识别酯化果胶的单克隆抗体JIM7和酸性果胶的JIM5,分别对青杄花粉管进行免疫荧光标记,发现无硼培养可导致酸性果胶在其顶端细胞壁大量富集,而酯化果胶减少;荧光探针Fluo--3/AM标记实验揭示,无硼培养使其顶端胞质的Ca2 浓度梯度消失.研究结果表明,硼可能作为一种相关因子影响关键酶活性,改变细胞壁的延展性以至影响花粉管细胞壁的构建,同时破坏了花粉管顶端极性生长依赖的Ca2 梯度,从而影响其花粉管的生长.  相似文献   
19.
为了明确油菜素内酯(Brassinolide,BR)与氯化钙(Calcium Chloride,CaCl2)复配对盐胁迫、灰霉病菌侵染复合逆境下黄瓜(Cucumis sativusL.)幼苗的诱抗作用,采用根际注射结合叶面喷洒的方法,测定了复合逆境下黄瓜幼苗的盐害和病害指数、保护酶活性和抗病相关物质含量等生理指标。结果表明:BR与CaCl2复配处理使黄瓜幼苗的盐害和病情指数最高分别比对照降低了91.04%、17.89%;提高了黄瓜叶片中脯氨酸和木质素含量,最高分别比对照增加了24.99%、22.66%;降低了电解质渗出率和丙二醛(MDA)含量,最高分别比对照降低了43.81%、50.52%;增强了超氧化物歧化酶(SOD)、过氧化氢酶(CAT)、过氧化物酶(POD)、苯丙氨酸解氨酶(PAL)和多酚氧化酶(PPO)活性。综合作用效果,BR与CaCl2复配优于BR或CaCl2单一处理。  相似文献   
20.
申加枝  张新富  胡建辉 《湖北农业科学》2014,53(17):4108-4111,4138
以平阳特早一年生茶树幼苗为试验材料,设置90、150、210、270 mg/L Ca2+浓度进行钙过量水培培养,研究其对茶树幼苗、新梢主要品质成分的动态影响,同时测定了根系形态的动态变化.结果表明,钙过量处理前2周,茶多酚含量在较低钙过量(90、150 mg/L)条件下增加,这可能是茶多酚作为抗氧化剂对钙过量胁迫的抗性;氨基酸含量从第三周开始表现出下降,且随着处理时间的增加,下降幅度越大;咖啡碱含量处理第一周即出现下降,随着处理时间的增加,下降幅度增大.钙过量对根系的伤害主要表现在根尖数减少和较高Ca2+浓度(210、270 mg/L)条件下,根系表面会附着一层白色黏膜抑制新根的生长.钙过量处理可直接造成茶树根系吸收根的衰亡,进而逐步影响到茶树新梢品质成分的合成.  相似文献   
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