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1.
盐胁迫对大豆根系木质部压力和Na+吸收的影响 总被引:1,自引:0,他引:1
取栽培大豆的水培幼苗为材料,用木质部压力探针和原子吸收分光光度计测定了盐胁迫条件下其根木质部压力和伤流液中Na~+含量的变化,以分析大豆抗盐吸水的机制.结果表明:在25~150 mmol/L NaCl的浓度范围内,随着盐胁迫强度的增加,大豆根木质部负压力的绝对值逐渐增大,但相对负压力和根的径向反射系数则逐渐减小;木质部伤流液中Na~+含量逐渐增加,但Na~+的相对含量则逐渐降低.同时,虽然根系吸水所需的木质部负压力(压力势)及根木质部伤流液的渗透势随着盐胁迫强度的增加都有所下降,但两者共同作用使木质部水势下降的幅度远远小于根外溶液水势(渗透势)下降的幅度,即随着根外溶液盐浓度的升高,根木质部溶液的总水势逐渐高出根外溶液的水势.上述结果说明,在盐胁迫下大豆可以利用相对小的木质部负压力逆水势梯度吸水,且通过避免对Na~+的过量吸收来适应盐胁迫环境. 相似文献
2.
盐胁迫下钙对大麦根系质膜和液泡膜功能的保护效应(简报) 总被引:15,自引:0,他引:15
盐胁迫下外加钙可增强大麦根系质膜液泡膜H^+-ATPase、液泡膜质子泵和Na^+/H^+逆向运输活性,促进根系对K^+的选择性吸收和运输,降低叶片的Na^+/K^+比。 相似文献
3.
钙对大麦幼苗盐胁迫的缓解效应 总被引:36,自引:0,他引:36
CaSO_4,Ca(NO_3)_2 ,CaCl_2三种钙盐缓解大麦幼苗的盐胁迫效应中,以Ca(NO_3)_2最为显著,Ca_(2 )/Na~ =1/10时最佳。钙提高盐胁迫下大麦种子α—淀粉酶活性是促进萌发的主要原因。 相似文献
4.
盐胁迫激活大麦幼苗脯氨酸合成的鸟氨酸途径 总被引:18,自引:2,他引:18
200mmol/L NaCl处理结合^14C-Glu和^14C-Arg叶面饲喂6d龄大麦(Hordeum vulgareL.)幼苗,结果证明6d龄大麦幼苗体内普遍存在Arg(谷氨酸)→Om(鸟氨酸)→Pro(脯氨酸)途径。直 迫明显激活了Arg→Om→Pro途径,胁迫处理7d,大麦幼苗叶片和根系中该途径对Pro含量上升的贡献是Glu→Pro途径的1.0-1.5倍。而盐的“鉴4”品种Arg→Om→Pro途径对Pro含量上升的贡献是对盐敏感的“科品7号”的1.7-2.0倍,结果表明盐胁迫下Arg→Om→Pro途径的激活对大麦幼苗耐盐性的提高具有重要意义。 相似文献
5.
盐胁迫对大麦胚根细胞膜系统的影响 总被引:1,自引:0,他引:1
研究了大麦种子在盐下吸胀时胚根细胞超微结构的变化,电镜观察发现,盐胁迫下胚根细胞的膜系统修复困难,细胞器分室重建受阻;并且,这种伤害作用随着盐时间的延长而加剧。作者认为,盐胁迫下吸胀对种子伤害很可能是由于盐离子毒害造成膜系统修复不完善所致。 相似文献
6.
盐胁迫下大麦根系多胺代谢与其耐盐性的关系 总被引:27,自引:0,他引:27
研究了0-300mmol/L NaCl对大麦(Hordeum vulgare L.)幼苗生长速率,根系游离和结合态多胺含量以及多胺生物合成关键酶活性的影响。结果表明,在0-200mmol/L NaCl处理下精氨酸脱羧酶(ADC)、多胺氧化酶(PAO)以及转谷酰胺酶(TGase)活性明显提高,而在300mol/L NaCl处理下活性下降,与之对应,游离腐胺(Put)含量随处理盐浓度的提高一直呈上升趋势。亚精胺(Spd)和在根系内检测到的未知多胺(PAx)在低浓度盐处理时含量上升,随盐浓度的提高含量下降,盐处理前后精胺(Spm)含量变化不明显,低浓度盐处理时游离态(Spd PAx)/Put上升,随盐浓度的提高比值明显下降,结合态Put,Spd和PAx含量以及结合态多胺总量均在低浓度盐处理时上升,随盐浓度的提高含量明显下降,统计分析显示,大麦相对生长速率与游离态(Spd PAx)/Put和结合态多胺含量间均呈极显著正相关关系,与游离态多胺和结合态多胺的比值间均呈显著负相关关系,上述结果说明盐胁迫下大麦体内游离态Spd,PAx与Put以及结合态形式之间的平衡与大麦耐盐性关系密切,游离态Put向Spd,PAx以及结合态形式转化均有利于大麦耐盐性的提高。 相似文献
7.
研究了0.1 mmol/L 腐胺 (Put) 和0.5 mmol/L 亚精胺 (Spd) 浸种对200 mmol/L NaCl胁迫下大麦(Hordeum vulgare L.)幼苗生长速率、干物质积累、离子分布、液泡膜蛋白结合多胺含量以及液泡膜膜脂组分与功能的影响.结果表明,Put和Spd浸种均可缓解盐胁迫对大麦幼苗的盐害,促进生长和干物质积累,降低大麦幼苗体内[Na+]/[K+].与盐处理的对照植株相比,Put和Spd浸种均可提高大麦幼苗根系液泡膜磷脂含量,降低糖脂结合半乳糖含量,而膜上非共价结合多胺含量Spd+PAx (一种未知多胺) 与 Put+Dap (二氨基丙烷)之比((Spd+PAx)/(Put+Dap))、共价和非共价结合多胺总量均上升.统计分析结果表明,液泡膜非共价结合多胺(Spd+PAx)/(Put+Dap)与H+-ATPase和H+-PPase活性呈显著正相关关系. 相似文献
8.
多胺浸种改善盐胁迫大麦根系液泡膜功能的机理 总被引:15,自引:0,他引:15
研究了 0 .1mmol/L腐胺 (Put)和 0 .5mmol/L亚精胺 (Spd)浸种对 2 0 0mmol/LNaCl胁迫下大麦 (HordeumvulgareL .)幼苗生长速率、干物质积累、离子分布、液泡膜蛋白结合多胺含量以及液泡膜膜脂组分与功能的影响。结果表明 ,Put和Spd浸种均可缓解盐胁迫对大麦幼苗的盐害 ,促进生长和干物质积累 ,降低大麦幼苗体内 [Na ]/[K ]。与盐处理的对照植株相比 ,Put和Spd浸种均可提高大麦幼苗根系液泡膜磷脂含量 ,降低糖脂结合半乳糖含量 ,而膜上非共价结合多胺含量Spd PAx (一种未知多胺 )与Put Dap (二氨基丙烷 )之比 ( (Spd PAx) / (Put Dap) )、共价和非共价结合多胺总量均上升。统计分析结果表明 ,液泡膜非共价结合多胺 (Spd PAx) / (Put Dap)与H _ATPase和H _PPase活性呈显著正相关关系。 相似文献
9.
盐胁迫下大麦和小麦叶片脂质过氧化伤害与超微结构变化的关系 总被引:23,自引:0,他引:23
研究了耐盐的大麦和不耐盐的小麦幼苗在 NaCl 胁迫下叶片脂质过氧化作用、膜系统伤害、叶肉细胞超微结构变化三者之间的关系。在盐胁迫初期,叶肉细胞能维持较高的 SOD 活性,脂质过氧化作用较弱,膜系统基本完整;随着胁迫强度加大,SOD 活性下降,脂质过氧化作用加强,膜透性增加,细胞内的电解质和紫外吸收物质大量外渗,细胞器破坏,甚至整个叶肉细胞结构崩溃。试验结果表明盐胁迫下超微结构的变化反映了细胞内膜系统的紊乱和伤害,而膜系统的伤害可能是脂质过氧化作用增强的结果。 相似文献
10.
核因子Y (NF-Y)是由NF-YA、NF-YB和NF-YC三个亚基组成的一类真核细胞转录因子,主要参与植物生长发育调控和非生物胁迫信号传递。该研究利用生物信息学方法解析了大麦(Hordeum vulgare) NF-YC基因家族功能。首先,基于大麦基因组数据库鉴定出11个HvNF-YC成员,分布在除第2号染色体以外的其余6条染色体上,内含子0–5个。系统进化分析显示,大麦、拟南芥(Arabidopsis thaliana)和水稻(Oryza sativa) NF-YC基因家族成员可分为5个亚家族。基因复制分析显示, 6个HvNF-YC基因存在片段复制,3个HvNF-YC基因存在串联复制。启动子顺式作用元件分析显示,大多数HvNF-YC基因启动子含有与非生物胁迫及激素响应相关的顺式作用元件。对HvNF-YC家族成员在不同组织不同时期的表达模式分析表明,不同成员的时空表达存在明显差异,其中HvNF-YC9和HvNF-YC11可能在籽粒发育初期发挥重要作用。通过分析耐盐型和盐敏感型大麦品种根和叶中HvNF-YC表达量变化,发现HvNF-YC3、HvNF-YC6和HvNF-YC10主要在盐胁... 相似文献
11.
Xin-Fu Bai Jian-Jun Zhu Ping Zhang Yan-Hua Wang Li-Qun Yang Lei Zhang 《Acta Botanica Sinica》2007,(9)
The response of halophyte arrowleaf saltbush(Atriplex triangularis Willd)plants to a gradient of salt stress were investigatedwith hydroponically cultured seedlings.Under salt stress,both the Na~ uptake into root xylem and negative pressures inxylem vessels increased with the elevation of salinity(up to 500 mol/m~3)in the root environment.However,the increment innegative pressures in root xylem far from matches the decrease in the osmotic potential of the root bathing solutions,evenwhen the osmotic potential of xylem sap is taken into consideration.The total water potential of xylem sap in arrowleafsaltbush roots was close to the osmotic potential of root bathing solutions when the salt stress was low,but a progressivelyincreased gap between the water potential of xylem sap and the osmotic potential of root bathing solutions was observedwhen the salinity in the root environment was enhanced.The maximum gap was 1.4 MPa at a salinity level of 500 mol/m~3without apparent dehydration of the tested plants.This discrepancy could not be explained with the current theories inplant physiology.The radial reflection coefficient of root in arrowleaf saltbush decreased with the enhanced salt stress wasand accompanied by an increase in the Na~ uptake into xylem sap.However,the relative Na~ in xylem exudates based onthe corresponding NaCl concentration in the root bathing solutions showed a tendency of decrease.The results showedthat the reduction in the radial reflection coefficient of roots in the arrowleaf saltbush did not lead to a mass influx of NaClinto xylem when the radial reflection coefficient of the root was considerably small;and that arrowleaf saltbush could usesmall xylem pressures to counterbalance the salt stresses,either with the uptake of large amounts of salt,or with thedevelopment of xylem pressures dangerously negative.This strategy could be one of the mechanisms behind the highresistance of arrowleaf saltbush plants to salt stress. 相似文献
12.
Xin-Fu Bai Jian-Jun Zhu Ping Zhang Yan-Hua Wang Li-Qun Yang Lei Zhang 《植物学报(英文版)》2007,49(9):1334-1340
The response of halophyte arrowleaf saltbush (Atriplex triangularis Willd) plants to a gradient of salt stress were investigated with hydroponically cultured seedlings. Under salt stress, both the Na+ uptake into root xylem and negative pressures in xylem vessels increased with the elevation of salinity (up to 500 mol/m3) in the root environment. However, the increment in negative pressures in root xylem far from matches the decrease in the osmotic potential of the root bathing solutions, even when the osmotic potential of xylem sap is taken into consideration. The total water potential of xylem sap in arrowleaf saltbush roots was close to the osmotic potential of root bathing solutions when the salt stress was low, but a progressively increased gap between the water potential of xylem sap and the osmotic potential of root bathing solutions was observed when the salinity in the root environment was enhanced. The maximum gap was 1.4 MPa at a salinity level of 500 mol/m3 without apparent dehydration of the tested plants. This discrepancy could not be explained with the current theories in plant physiology. The radial reflection coefficient of root in arrowleaf saltbush decreased with the enhanced salt stress was and accompanied by an increase in the Na+ uptake into xylem sap. However, the relative Na+ in xylem exudates based on the corresponding NaCl concentration in the root bathing solutions showed a tendency of decrease. The results showed that the reduction in the radial reflection coefficient of roots in the arrowleaf saltbush did not lead to a mass influx of NaCl into xylem when the radial reflection coefficient of the root was considerably small; and that arrowleaf saltbush could use small xylem pressures to counterbalance the salt stresses, either with the uptake of large amounts of salt, or with the development of xylem pressures dangerously negative. This strategy could be one of the mechanisms behind the high resistance of arrowleaf saltbush plants to salt stress. 相似文献
13.
盐胁迫下大麦幼苗多胺的种类和状态与多胺氧化酶活性的关系 总被引:18,自引:0,他引:18
200 mmol/L的NaCl胁迫8 d大麦幼苗叶片和根系中的三种形态多胺都有不同程度地下降,其中游离态多胺含量的下降幅度最大;高氯酸不溶性结合态多胺含量变化较小.根系中PAO的活性先上升后下降,而叶片中PAO的活性先下降后上升.游离态多胺中,亚精胺和精胺(Spd Spm)的含量变化与相应部位PAO的活性变化趋势相反,表明PAO在盐胁迫下可能调节了游离态多胺的含量从而影响高氯酸可溶结合态与高氯酸不溶结合态多胺的含量. 相似文献
14.
NaCl胁迫下大麦根系液泡膜H~ -ATPase活性与膜流动性的关系(英文) 总被引:9,自引:0,他引:9
用 5 0~ 2 0 0mmol/LNaCl处理 2d后 ,大麦 (HordeumvulgareL .)品种“滩引 2号”(耐盐性强 )根的液泡膜H _ATPase活性增强 ,6 0 0mmol/LNaCl处理下酶活性下降 ;“科品 7号”(耐盐性弱 )在 5 0~ 10 0mmol/LNaCl处理 2d后根的液泡膜H _ATPase活性增强 ,2 0 0~ 6 0 0mmol/LNaCl处理下酶活性随盐浓度增加而降低。 5 0~ 2 0 0mmol/LNaCl处理下“滩引 2号”根的液泡膜流动性下降 ,6 0 0mmol/LNaCl处理下膜流动性明显增大 ;盐胁迫下液泡膜膜脂脂肪酸不饱和度下降时 ,膜流动性下降 ,反之则膜流动性上升。由此推断高盐胁迫下液泡膜膜脂脂肪酸不饱和度上升而引起膜流动性上升可能是引起H _ATPase活性下降的原因之一。 相似文献
15.
盐胁迫对大麦叶片类囊体膜组成和功能的影响 总被引:3,自引:0,他引:3
盐胁迫下大麦叶片类囊体膜蛋白和叶绿素含量以及对绿素a/叶绿素b、磷脂/膜蛋白和膜脂结合半乳糖/膜蛋白的比值下降,膜脂中亚麻酸(18:3)摩尔百分数上升,不饱和指数上升,类囊体膜H -ATPase活性先升后降,希尔反应一直呈较高活性。类囊体膜组分和功能的变化可能与植物盐适应有关。 相似文献
16.
Xylem probe measurements in the roots of intact plants of wheat and barley revealed that the xylem pressure decreased rapidly when the roots were subjected to osmotic stress (NaCl or sucrose). The magnitude of the xylem pressure response and, in turn, that of the radial reflection coefficients (σr) depended on the transpiration rate. Under very low transpiration conditions (darkness and high relative humidity), σr assumed values of the order of about 0·2–0·4. The σr values of excised roots were also found to be rather low, in agreement with data obtained using the root pressure probe of Steudle. For transpiring plants (light intensities at least 10 μmol m?2 s?1; relative humidity 20–40%) the response was nearly 1:1, corresponding to radial reflection coefficients of σr= 1. Further increase of the light intensity to about 400 μmol m?2 s?1 resulted in a slight but significant decrease of the σr values to about 0·8. Similar measurements on maize roots confirmed our previous results (Zhu et al. 1995, Plant, Cell and Environment 18, 906–912) that, in intact transpiring plants at low light intensities of about 10 μmol m?2 s?1 and at relative humidities of 20–40% as well as in excised roots, the xylem pressure response was much less than expected from the external osmotic pressure (σr values 0·3–0·5). In contrast to wheat and barley, very high light intensities (about 700 μmol m?2 s?1) were needed to shift the radial reflection coefficients of maize roots to values of about 0·9. Osmotically induced xylem pressure changes were apparently linked to changes in turgor pressure in the root cortical parenchyma cells, as shown by simultaneous measurements of xylem and cell turgor pressure. In analogy to the σr values of the respective glycophytes, the σc values of the root cortical cells of wheat and barley were close to unity, whereas σc for maize was significantly smaller (about 0·7) under laboratory conditions. When the light intensity was increased up to about 700 μmol m?2 s?1 the cellular reflection coefficient of maize roots increased to about 0·95. In contrast to the σr values, the σc values of the three species investigated remained almost unchanged when the leaves were exposed to darkness and humidified air or when the roots were cut. The transpiration-dependent (species-specific) pattern of the cellular and radial reflection coefficients of the root compartment of the three glycophytes apparently resulted from (flow-dependent) concentration-polarization and sweep-away effects in the roots of intact plants. The data could be explained straightforwardly terms of theoretical considerations outlined previously by Dainty (1985, Acta Horticulturae 171, 21–31). The far-reaching consequences of this finding for root pressure probe measurements on excised roots, for the occurrence of pressure gradients under transpiring conditions, and for the non-linear flow-force relationships in roots found by other investigators are discussed. 相似文献