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1.
添加CaCl2可提高黄瓜幼苗中CaM含量,降低MDA(丙二醛)和质膜透性,减轻盐害,添加CaM抑制剂CPZ(氯丙嗪)、TFP(三氟拉嗪)则取得相反效果,添加外源CaM在体内合成,起到降低盐害作用。  相似文献   

2.
不同钙-醇溶解体系丝素蛋白的制备及表征研究   总被引:1,自引:0,他引:1  
采用 4种中性盐溶液 Ca(NO3)24H2O 甲醇、Ca(NO3)24H2O 乙醇、CaCl2 甲醇 水和 CaCl2 乙醇 水(摩尔比分别为 1∶2、1∶2、1∶2∶8、1∶2∶8)处理蚕丝纤维,透析后经冷冻干燥制成固体,利用SDS PAGE、电镜扫描和红外光谱对制得的固体进行表征。SDS PAGE结果表明:Ca(NO3)24H2O 醇体系降解丝素蛋白较 CaCl2 醇 水体系降解程度高;电镜扫描的结果表明 Ca(NO3)24H2O 甲醇和 CaCl2 乙醇 水溶解体系处理的丝素蛋白溶解比较完全,Ca(NO3)24H2O 甲醇处理的丝素蛋白冻干后为颗粒状,而 CaCl2 乙醇 水处理的丝素蛋白冻干后为片状。红外光谱的结果表明:4种溶液处理后的丝素蛋白构象均介于 β折叠和无规则卷曲之间,从而为丝素蛋白在药物缓释载体领域的应用提供了一定的理论依据。  相似文献   

3.
盐度和CO2倍增环境下碱蓬幼苗呼吸酶活性的变化   总被引:3,自引:0,他引:3  
研究了生长在正常大气CO2和CO2倍增环境中的盐生植物碱蓬(Suaedasalsa)幼苗呼吸酶活性对KCl和NaCl的反应.结果表明,在CO2倍增(700μl·L-1)和正常大气CO2(350μl·L-1)下,300mmol·L-1KCl和NaCl均能抑制琥珀酸脱氢酶(SDH)和苹果酸脱氢酶(MDH)活性,而异柠檬酸脱氢酶(IDH)活性为NaCl抑制、KCl促进;NaCl和KCl明显抑制细胞色素氧化酶(CO)和光呼吸中乙醇酸氧化酶(GO)、羟基丙酮酸还原酶(HPR)活性;并指出在KCl胁迫下,CO2使三羧酸循环(TCAC)的运行变慢,NaCl胁迫下使其加快,TCAC运行限速步骤与MDH无关,CO为盐对呼吸代谢影响的重要位点.另外,K+、Na+对蛋白表达的影响有差异,CO2可使盐胁迫下的碱蓬幼苗蛋白表达降低.  相似文献   

4.
张宝泽 《植物学报》1997,14(4):48-50
利用Ca(N03)2和CaCl2可以提高生长在盐渍条件下小麦幼苗的耐盐能力,增加幼苗的干、鲜重。其原因是由于两种钙盐均能防止膜脂过氧化,降低质膜透性,减少细胞内营养物质外渗,阻止Na+进入细胞。实验结果证明,在降低小麦幼苗盐害方面,Ca(N03)2好于CaCl2。讨论了两个钙盐在降低盐害机理方面的差异。  相似文献   

5.
抗寒锻炼对冬小麦幼苗质膜Ca^2+—ATPase的稳定作用   总被引:14,自引:0,他引:14  
王红  卢存福 《Acta Botanica Sinica》1998,40(12):1098-1101
通过氯化铈(CeCl3)沉淀的电镜细胞化学方法,观察了抗寒锻炼对冬小麦(TriticumaestivumL.)幼苗质膜Ca2+ATPase的稳定作用,主要结果是:(1)正常温度(20℃)下生长的冬小麦幼苗(未经抗寒锻炼),其质膜上有很强的Ca2+ATPase活性反应;当经过-9℃3h的低温处理后,质膜的Ca2+ATPase活性明显降低;在处理12h后,质膜的Ca2+ATPase活性进一步降低;当处理时间延长到24h,质膜的Ca2+ATPase完全失活,同时细胞的超微结构受到破坏。(2)冬小麦幼苗在2℃低温下锻炼15d后,其质膜的Ca2+ATPase活性高于未经抗寒锻炼的小麦幼苗。抗寒锻炼后的小麦幼苗在-9℃处理3h后,质膜的Ca2+ATPase活性与低温处理前相比无明显降低;经低温处理12h,质膜仍保持较高的Ca2+ATPase活性,较同样低温处理(-9℃,12h)但未经抗寒锻炼的幼苗高;当-9℃低温处理24h后,质膜上仍可观察到Ca2+ATPase的活性反应,而且细胞的超微结构也未受到破坏。结果表明,抗寒锻炼可提高冬小麦幼苗质膜Ca2+ATPase在低温下的稳定性  相似文献   

6.
水稻幼苗冷锻炼过程中钙的效应   总被引:29,自引:0,他引:29  
冷锻炼处理提高了水稻(Oryza sativa L.)幼苗叶片中抗氧化剂(还原型谷胱甘肽,GSH;抗坏血酸,AsA)含量和膜保护酶(超氧化物歧化酶,SOD)的活性,同时也提高了可溶性蛋白质中热稳定蛋白的含量。CaCl2 浸种处理对上述冷锻炼的作用有加强的效果,且明显地提高了过氧化氢酶(CAT)和过氧化物酶(POD)的活性。有无CaCl2 处理的冷锻炼处理均减轻冷胁迫引起的GSH 及AsA 含量、SOD 活性及热稳定蛋白质含量的下降程度,有利于幼苗在恢复过程中GSH、AsA、CAT、SOD、POD及热稳定蛋白质水平迅速回升。结合CaCl2 处理的冷锻炼苗在冷胁迫恢复生长时增长迅速,且苗健壮浓绿,说明CaCl2浸种对冷锻炼处理提高水稻幼苗的抗冷力有明显的促进作用,这与CaCl2 浸种结合冷锻炼能更有效的提高细胞膜保护能力有关  相似文献   

7.
不同种子预处理方法对提高三树种幼苗耐盐性的效应   总被引:10,自引:0,他引:10  
刺槐(RobiniapseudoacaciaLinn.)、湿地松(PinuseliotiEngelm.)和侧柏〔Platycladusorientalis(L.)Franco〕种子经03%CaCl2,250μg/gH3BO3和250μg/g多效唑(MET)浸种24h,然后测定幼苗的耐盐性。结果表明,在0.3%NaCl胁迫条件下,不同种子预处理方法对种子发芽率、平均苗高、根茎比、简易活力指数(SVIS)以及幼苗中Na+与K+的累积量、Na+/K+比及游离脯氨酸含量有较大影响。树种不同,处理效果也存在明显差异。湿地松以0.3%CaCl2,侧柏以250μg/gH3BO3浸种处理效果最好,显著提高种子发芽率、平均苗高、根茎比和SVIS,降低幼苗Na+吸收量和Na+/K+比,缓解盐胁迫逆境。3种种子预处理方法均降低刺槐种子发芽率、平均苗长和SVIS,但提高刺槐幼苗游离脯氨酸含量和幼苗根茎比,减少幼苗对Na+的吸收,降低Na+/K+比  相似文献   

8.
CO2倍增环境生长的小麦幼苗对盐胁迫的生理反应   总被引:10,自引:0,他引:10  
研究了CO2倍增/盐胁迫对不同抗盐性冬小麦幼苗有机干重,K^+,Na^+,Ca^++,Mg^++含量,脯氨酸水平及蛋白质变化的效应,表明两种小麦生长在150mmol/LNaCl下,其有机干重,K^+,Ca^++,Mg^++含量下降,而Na^+明显长高;CO2倍增可增加小麦有机干重,使一价阳离子K^+,Na^+含量升高,二价阳离子Ca^++,Mg^++呈下降趋势,同时有利于游离脯氨酸的积累,并为植物  相似文献   

9.
利用不同浓度NaCl处理高冰草、小麦、小麦和高冰草体细胞杂种F3代Ⅲ-1、Ⅱ-2的幼苗,5d后观察其形态,计算耐盐系数,测定生长量脯按酸含量,Na^+、K^+、Ca^+等生理指标。结果表明,高冰草具有典型耐盐单子叶植物的特征,。亲本小麦属非生植物,抗盐能力较弱,当NaCl浓度达0.5%时已有盐害影响,超过后迅速加重甚至死亡,而杂 受害的盐度比小麦高。1.0%以上NaCl浓度达0.5%时已有盐害影  相似文献   

10.
硝酸钾缓解氯化钠胁迫蓝藻Anabaena 7120固氮的生理基础   总被引:1,自引:0,他引:1  
营养液中添加适量KNO3可在一定程度上缓解NaCl对鱼腥藻固氮活性的抑制作用。暗处理或加光合抑制剂时,KNO3对NaCl胁迫的缓解作用便消失。供给外源蔗糖、提高CO2浓度、同时供给CO2和N2时,KNO3对缓解NaCl胁迫的作用则增高.同时供给O2和H2对KNO3的缓解作用增高影响较小,而在厌氧(Ar或N2中)或单加氧下,KNO3的缓解效应则明显减弱或消失.  相似文献   

11.
Hou W  Lian B  Zhang X 《Bioresource technology》2011,102(2):1562-1566
Formation of CaCO3 induced by fungal physiological activities is a potential way to sequestrate atmospheric CO2 in ecosystem. Alternaria sp. is a saprophytic fungus isolated from a forest soil. We examined the precipitation of CaCO3 induced by the fungus in response to different levels of Ca(NO3)2 or CaCl2 in agar media, and the biogenesis of CaCO3 was verified by low δ13C value. The formed CaCO3 was identified as calcite by X-ray diffraction analysis. Square, rectangular and rhombic CaCO3 crystals and amorphous calcium carbonate were observed around mycelia at higher levels of Ca(NO3)2. Acidification occurred in media at low concentrations (0 and 0.0002 M) of Ca(NO3)2, and no CaCO3 formed in these media. The quantities of CaCO3 formed in media increased with increasing concentrations of Ca(NO3)2 and were significantly correlated to fungal biomass, pH value and nitrite concentrations. No CaCO3 was formed in media with CaCl2 at all levels. These results collectively indicated that the formation of CaCO3 can be induced by the fungal assimilation of nitrate. The study also revealed that biogenic crystal of CaCO3 tended to grow on a silicon nucleus and the amorphous calcium carbonate (ACC) was the transient stage of CaCO3 crystal.  相似文献   

12.
刘慧敏  朱月林  陈磊 《植物研究》2007,27(2):175-181
采用组培的方法,对15个番茄普通栽培品种的幼苗进行系列浓度Ca(NO3)2胁迫处理,10 d后调查不同品种单株幼苗的生长情况和盐害程度。结果表明,15个供试品种幼苗期硝酸盐耐性存在显著差异。上海903、苏红2003、阳光906、大禹中蔬4号、三星L402、番茄大红、中蔬4号、宝大903、霞粉、毛粉 802为硝酸盐敏感品种;早丰番茄、江蔬14号、宝粉和三星906为中等耐硝酸盐品种;日本大粉皇后为耐硝酸盐品种。同时对7个番茄砧木自交系(TR-1、TR-2、TR-3、TR-4、TR-5、TR-7、TR-8)进行了幼苗期高浓度Ca(NO3)2的耐盐分析。结果表明,砧木自交系的平均侧根数均显著高于同浓度下供试的普通番茄栽培品种,盐胁迫指数均显著低于普通栽培品种,具有较强的耐盐性;其中TR-8耐盐性最强。  相似文献   

13.
水霉(Saprolegia ferax)菌丝在pH6.0-8.0的OM液体培养基中生长良好,在pH5.0时生长速率有所下降,在pH3.0—4.0时停止生长。短时间(30min)作用研究表明,低浓度的CaCl_2促进pH5.0(1—5mmol/L)和pH6.0(1mmol/L)条件下的菌丝顶端生长,抑制pH7.0—8.0条件下的菌丝生长。1mmol/L以上的EGTA则抑制pH5.0条件下菌丝顶端生长,促进pH6.0—8.0条件下的菌丝顶端生长。但CaCl_2和EGTA都不能使pH3.0—4.0条件下的菌丝恢复生长。长时间(8h)作用跟踪观察表明,2mmol/L EGTA(pH6.8)短时间作用可促进菌丝生长,但随着培养时间延长,则产生抑制作用,并诱导原生质从菌丝最顶端喷出。说明细胞壁Ca~(2 )起着提供胞外Ca~(2 )源和细胞壁修饰成分的双重作用。Ca~(2 )通道阻断剂verapamil对菌丝顶端生长的抑制作用也说明顶端生长所需的Ca~(2 )来自胞外。  相似文献   

14.
The role of Trp3 in cellular regulation of Ca(2+) entry by NO was studied in human embryonic kidney (HEK) 293 cells. In vector-transfected HEK293 cells (controls), thapsigargin (TG)-induced (capacitative Ca(2+) entry (CCE)-mediated) intracellular Ca(2+) signals and Mn(2+) entry were markedly suppressed by the NO donor 2-(N,N-diethylamino)diazenolate-2-oxide sodium salt (3 microm) or by authentic NO (100 microm). In cells overexpressing Trp3 (T3-9), TG-induced intracellular Ca(2+) signals exhibited an amplitude similar to that of controls but lacked sensitivity to inhibition by NO. Consistently, NO inhibited TG-induced Mn(2+) entry in controls but not in T3-9 cells. Moreover, CCE-mediated Mn(2+) entry into T3-9 cells exhibited a striking sensitivity to inhibition by extracellular Ca(2+), which was not detectable in controls. Suppression of mitochondrial Ca(2+) handling with the uncouplers carbonyl cyanide m-chlorophenyl hydrazone (300 nm) or antimycin A(1) (-AA(1)) mimicked the inhibitory effect of NO on CCE in controls but barely affected CCE in T3-9 cells. T3-9 cells exhibited enhanced carbachol-stimulated Ca(2+) entry and clearly detectable cation currents through Trp3 cation channels. NO as well as carbonyl cyanide m-chlorophenyl hydrazone slightly promoted carbachol-induced Ca(2+) entry into T3-9 cells. Simultaneous measurement of cytoplasmic Ca(2+) and membrane currents revealed that Trp3 cation currents are inhibited during Ca(2+) entry-induced elevation of cytoplasmic Ca(2+), and that this negative feedback regulation is blunted by NO. Our results demonstrate that overexpression of Trp3 generates phospholipase C-regulated cation channels, which exhibit regulatory properties different from those of endogenous CCE channels. Moreover, we show for the first time that Trp3 expression determines biophysical properties as well as regulation of CCE channels by NO and mitochondrial Ca(2+) handling. Thus, we propose Trp3 as a subunit of CCE channels.  相似文献   

15.
外施Ca^2+,ABA及H3PO4对盐碱胁迫的缓解效应   总被引:8,自引:0,他引:8  
分别对300mmol  相似文献   

16.
以黄瓜砧用黑籽南瓜和白籽南瓜幼苗为材料,通过营养液栽培研究了等渗Ca(NO3)2和NaCl胁迫对南瓜幼苗生长和活性氧代谢的影响。结果表明,不同盐胁迫下两砧木幼苗生长和抗氧化系统活性均受到不同程度抑制;与黑籽南瓜相比,白籽南瓜‘青砧1号’植株的生物量和SOD、POD和CAT活性均较高,而盐害指数、膜相对透性、MDA含量及O2.-产生速率则明显降低。等渗Ca(NO3)2和NaCl对两砧木南瓜幼苗的盐胁迫效应不同,Ca(NO3)2胁迫对砧木生长的抑制作用及盐害指数、膜相对透性、MDA含量、O2.-产生速率均小于等渗的NaCl处理,而其SOD、POD、CAT活性高于NaCl处理。可见,白籽南瓜‘青砧1号’具有较强的生长势和有效清除体内活性氧能力,有效降低膜质过氧化伤害程度,这是其耐盐性高于黑籽南瓜的重要原因;Ca(NO3)2处理使两砧木幼苗细胞受氧化损伤程度较轻,对植株生长的抑制程度明显低于等渗的NaCl。  相似文献   

17.
采用营养液培养方法,以耐盐性较弱的‘津春2号’黄瓜品种为试材,研究了等渗Ca(NO3)2和NaCl胁迫对黄瓜幼苗生长、根系电解质渗透率、根系活力、Na+和K+含量及渗透调节物质含量的影响。结果显示:(1)在84mmol.L-1 NaCl和56mmol.L-1 Ca(NO3)2等渗胁迫下,黄瓜幼苗鲜重和干重均显著下降,且NaCl处理下降的幅度大于等渗Ca(NO3)2处理。(2)NaCl主要通过对黄瓜根系的伤害来抑制植株生长,表现为根系活力下降、根系质膜透性增大、Na+大量积累、K+含量显著下降、Na+/K+明显上升,最终导致根冠比下降;而Ca(NO3)2处理对根系质膜透性、K+含量、Na+/K+的影响均小于NaCl胁迫,且根系活力和根冠比上升,但Ca(NO3)2胁迫后叶片含水量和渗透调节能力均小于NaCl胁迫。(3)NaCl胁迫条件下,黄瓜幼苗内渗透调节物质以可溶性糖为主,而Ca(NO3)2胁迫以可溶性蛋白为主。研究表明,NaCl胁迫对黄瓜幼苗的伤害大于等渗Ca(NO3)2,NaCl主要通过破坏根系质膜结构影响植株生长,而Ca(NO3)2主要通过引起地上部生理干旱来影响植株生长。  相似文献   

18.
Gallium nitrate is an antihypercalcemic agent with established actions on bone. The effects of Ga(NO3)3 on parathyroid hormone (PTH) release, cytoplasmic Ca2+ concentration ([Ca2+]i) and cAMP production of enzymatically dispersed parathyroid cells from bovine as well as normal and pathological human parathyroid glands have now been studied. Ga3+ at 200 microM inhibited PTH release whereas 600 microM NO3- had no effect. The inhibition was additive to that obtained by elevating extracellular Ca2+. Unlike Ca2+, Ga3+ failed to increase [Ca2+]i or reduce cAMP formation. The results indicate that Ga3+ inhibits PTH release by a mechanism other than activation of the cation receptor of the parathyroid cells. This mechanism may contribute also to inhibition by other cations.  相似文献   

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