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The result showed that the best is Coreopsis drummondii, its semi-lethal concentration and limit concentration both reached as high as 1.4%; The next was Callistephus chinensis, its semi-lethal concentration was 0.6%, and its limit concentration was 1.2%; The middle was Althaea rosea, its semi-lethal concentration was 0.4%, and its limit concentration was 1.2%; The lower one was Rudbeckia hirta, its semi-lethal concentration was 0.4%, and its limit concentration was 1.0%.
结果表明:耐盐性最强的是金鸡菊,其耐盐半致死浓度和耐盐极限浓度高达1.4%;其次为翠菊,耐盐半致死浓度为0.6%,耐盐极限浓度为1.2%;耐盐力中等的是蜀葵,其耐盐半致死浓度为0.4%,耐盐极限浓度为1.2%;耐盐性最差的是黑心菊,耐盐半致死浓度为0.4%,耐盐极限浓度为1.0%。
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Recently, Thellungiella halophila, a close-relative ofArabidopsis thaliana, which is been suggested and be developed as a new salttolerance model plant. Thellungiella halophila is a salt-tolerance crucifer with a shortlife cycle, small genome, and with high sequence similarity(about 90-95% on cDNAlevel), similar heredity characteristics and growth habits with Arabidopsis thaliana.So it is convenience for T. halophila to benefit from a lot of Arabidopsis thalianainformation data.
最近,另一个盐生植物盐芥被提议为研究植物耐盐性的模式系统,它是拟南芥的近缘,为生长周期短、基因组较小、耐盐性较强的十字花科的盐生植物;在cDNA水平上与拟南芥有大约90-95%的同源性,因此,可以方便地将拟南芥的很多信息移至盐芥耐盐性的分子生物学研究;而且,盐芥具有拟南芥很多同样的优点以作为实验系统。
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Perhaps the most brazen (marked by contemptuous boldness) case occurred when the ITC investigated allegations that Canadian companies were injuring the United States salt industry by dumping rock salt (rock salt: n.岩盐,石盐), used to de-ice roads.
也许最著名的案例发生于当 ITC 调查声称加拿大公司通过倾销岩盐损害了美国的盐工业时,岩盐被用于去除路上的冰。
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The results were as the follows: maize inbreeds were sensitive to salt stress;different salinity stress had inhibition effects on the germination rate,shoot length,relative water content and net photosynthetic rate;different inbreed had obvious difference in salinity tolerance;the best one was XS98-28;the next was XSK5;the middle were in turn XSF,XS01-61;the lower were other inbreeds.
结果表明:玉米对盐胁迫非常敏感,不同盐浓度均对玉米芽苗期的发芽率、胚根长度、叶片相对含水量及净光合速率产生抑制作用;不同材料间耐盐性存在明显差异,各指标均能反映出不同材料的耐盐性;通过鉴定筛选,14个材料中,耐盐性极强的为XS98-28,耐盐性较强的为XSK5,耐盐性中等的为XSF,XS01-61,其余材料耐盐性均较弱。
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It shows the produce technology recorded by Aobotu only showed the one of the two-Zhe salt administrative setup in the Yuan Dynesty. The sea salt production increased greatly than before. The system of the administration of the Zhe salt administrative setup was province, salt administrative setup, the sub-administrative setup, saltern and Tuan .And the setup of the salt warehouse and the Piyansuo widely make the saltadministration more close. Like the region along the Bo sea. the transpotion and sale of salt by salt merchant were the main way. but the way allotting the salt to the people often existed in the region along the coast.
指出元代《熬波图》所载仅代表了元代两浙海盐区的生产技术;与宋相比,元代该地区盐课额急剧增加;就海盐的管理机构而言,两浙盐司形成了行省—盐司—分司—盐场—团为系统的管理模式,而盐仓和批验所的广泛设立使元代东南盐区的盐务管理更趋严密;东南盐区的食盐运销以商运商销为主,而沿海区域多行以人口来买食官盐的食盐法。
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Low concentration of NaCl solution could promote the growth on the shoot of seed germination. The growing length of roots and shoots of two halophytes treated by 100 mmol·L~(-1) NaCl reached the highest and the growing condition on shoots was best. Then some physiological and biochemical parameters including the content of Na~+, K~+, Ca~(2+), proline and plant leaf tissue water potential, the assays of membrane lipid peroxidation and antioxidant enzymes were determined with the two halophytic plants on salinity.
研究工作首先对盐爪爪和盐穗木在种子萌发阶段的耐盐性进行了比较研究,表明盐爪爪和盐穗木都是很耐盐的盐生植物,在种子萌发期,盐穗木比盐爪爪更耐盐;NaCl和等渗的聚乙二醇对种子的萌发都产生抑制作用,且PEG的抑制程度大于等渗的NaCl。
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The experimental results show that:(1) the primary salt forming regions of K2SO4, Leonite, Langbenite and MgSO4H2O were observably different from those in Equilibria Phase Diagram.
实验结果表明:(1)该体系K2SO4,Leonite,langbenite和MgSO4H2O等盐能够形成初级晶核的初级成盐区与溶解平衡相区存在明显偏离,其中K2SO4成盐区域缩小,而Leonite和MgSO4H2O结晶区域均有不同程度的增大;(2)在蒸发结晶过程中,成盐晶种的存在使该盐的成盐区比初级成盐区有所扩展;(3)由于成盐区的扩展,使成盐区域出现不同程度的交错。
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Experimental result makes clear:(K2SO4 of 1) this system, leonite, what the salt such as Langbenite and MgSO4.H2O can form primary nucleus is primary the area that become salt and area of deliquescent balance photograph are put in apparent deviate, among them K2SO4 narrows into saline area, and the accretion that Leonite and MgSO4.H2O crystallization area all have different rate;(2) is evaporating in crystallization process, the existence that plants into saline brilliant makes the area becoming salt of this salt is compared primary the area that become salt expands somewhat because;(3) becomes saline division patulous, salify area appears the crisscross of different level.
实验结果表明:(1)该体系K2SO4,Leonite,langbenite和MgSO4.H2O等盐能够形成初级晶核的初级成盐区和溶解平衡相区存在明显偏离,其中K2SO4成盐区域缩小,而Leonite和MgSO4.H2O结晶区域均有不同程度的增大;(2)在蒸发结晶过程中,成盐晶种的存在使该盐的成盐区比初级成盐区有所扩展;(3)由于成盐区的扩展,使成盐区域出现不同程度的交错。
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Rabbit was immunized by the conjugated alginate-BSA (1.0mg/kg) for 40-days routine immunity method; ELISA method was used to examine the titration of anti-alginate serum; The first generation parotid acinar cells were chosen to divided five groups (group A :contrast, group B: BAS, group C: alginate, group D: anti-alginate serum, group E: alginate +anti-alginate serum), We examined the proliferation of each part by MTT method at four times (lh, 6h,12h and 24h); In the meanwhile, The growth and shape of parotid acinar cells were observed under phase contrast microscope and scanning electron microscope.16 of the immunized rabbits by alginate were divided equally into Al and Bl groups, 12 normal rabbits were divided equally into A2 and B2 groups as control groups, Each rabbit was affused by 0.3ml(40fil/ml)alginate though parotid duct once time two days.
将藻酸盐与BSA偶连形成具有较强免疫原性的Alginate-BSA交联物免疫兔,按抗原量1.0mg/kg接种于新西兰白兔皮内,间隔10d加强免疫1次,共加强4次后,利用间接ELISA法检测藻酸盐抗体效价:将原代培养的兔腮腺腺细胞按10~4个/ml接种到96孔板上,置入细胞培养箱继续培养3d,分为5组:A空白对照组、B牛血清白蛋白组、C藻酸盐组、D抗藻酸盐血清组和E抗藻酸盐血清+藻酸盐组,分别加入PBS、牛血清白蛋白、藻酸盐或新鲜抗藻酸盐血清继续培养,分别于1h、6h、12h和24h不同的时间点,取出96孔培养板,采用MTT法检测5组腮腺腺细胞增殖情况
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Western blot analysis with the antiserum ATP95 revealed a significant increase of protein amounts of the V-H〓-ATPase subunits B and c of S. slasa under 100 and 400 mmol/L NaCl treatment, which gave another evidence for a salt-induced coordinate up-regulation of V-H〓-ATPase subunits at transcription and translation levels. The coordinated salt-induced increase of subunit B, H and c of V-H〓-ATPase from S. salsa at transcription and translation levels indicated an increase of V-H〓-ATPase holoenzyme amounts, which might be the reason for the increase of V-H〓-ATPase activity of S. salsa under salt stress.
400 mmol/L NaCl处理盐地碱蓬植株分离其叶片液泡膜微囊进行Western-blot分析发现盐胁迫明显诱导了盐地碱蓬液泡膜H〓-ATPase B、c亚基蛋白的表达,证明盐胁迫下,盐地碱蓬液泡膜H〓-ATPase各亚基在转录、翻译水平存在协同表达。100、400mmol/L NaCl处理亦明显增加了盐地碱蓬叶片液泡膜微囊H〓-ATPase活性,表明盐胁迫下,盐地碱蓬液泡膜H〓-ATPase各亚基在转录、翻译水平的协同表达增加了H〓-ATPase全酶的数量,进而增大了H〓-ATPase的活性。
- 更多网络解释与盐相关的网络解释 [注:此内容来源于网络,仅供参考]
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Bile salt:胆汁盐,胆盐,胆汁酸盐
bile salt independent bile flow,BSIF 非胆盐依赖胆汁流 | bile salt 胆汁盐,胆盐,胆汁酸盐 | bile 胆汁
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bile salt micelle:胆汁盐微团,胆汁盐胶团,胆汁盐胶束
bile salt 胆汁盐 | bile salt micelle 胆汁盐微团,胆汁盐胶团,胆汁盐胶束 | bili- 词头]胆汁
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unsalted dried fish:无盐鱼干,素干鱼
无盐白脱,无盐奶酪 unsalted butter | 无盐鱼干,素干鱼 unsalted dried fish | 无盐鲜乳油白脱,无盐鲜乳油奶酪 unsalted sweet-cream butter
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halophyte; halophilous plants:盐生植物;耐盐植物
嫌盐的 halophobous | 盐生植物;耐盐植物 halophyte; halophilous plants | 盐生植被 halophytic vegetation
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halophilous plants; halophyte:好盐性植物;盐生植物;耐盐植物
好盐性的 halophilous | 好盐性植物;盐生植物;耐盐植物 halophilous plants; halophyte | 嫌盐的 halophobous
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oxalate:草酸盐
它在植物中大多以草酸盐(oxalate)的形式存在. 草酸盐广泛存在于植物界. Zindler_Frand(1976)对草酸盐在植物界的分布情况的调查表明在93个属中,除11个属不含草酸盐外,其余各属绝大多数的种都含有大量草酸盐. 常见的富含草酸盐的饲用植物及野生植物有以下数种:
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halophilous:嗜盐的;耐盐的;适盐的
halophilic mold 嗜盐霉菌 | halophilous 嗜盐的;耐盐的;适盐的 | halophilous bacteria 嗜盐细菌
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halophilous bacteria:嗜盐细菌
halophilous 嗜盐的;耐盐的;适盐的 | halophilous bacteria 嗜盐细菌 | halophobic 避盐的;厌盐的
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hydroferrocyanate:氢亚铁氰酸盐 氰亚铁酸盐
hydroferricyanate 氢高铁氰酸盐 氢铁氰酸盐 氰高铁酸盐 | hydroferrocyanate 氢亚铁氰酸盐 氰亚铁酸盐 | hydrofilter 湿法除尘器
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salt-glazed tile:盐釉面砖,盐釉瓦
salt-glazed brick ==> 盐釉瓷砖,盐釉砖 | salt-glazed tile ==> 盐釉面砖,盐釉瓦 | salt-hunger ==> 盐饥饿