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旱盐互作对盐地碱蓬生长及其渗透调节物质的影响 总被引:1,自引:0,他引:1
采用盆栽土培的方法,研究了不同干旱条件下盐胁迫对盐地碱蓬生长及其渗透调节物质的影响.结果表明:适量NaCl可提高干旱条件下盐地碱蓬的生物量和植株含水量,缓解其干旱胁迫.盐分改变了干旱条件下盐地碱蓬的渗透调节物质,随着盐浓度的增加,叶片中Na 、Cl-的积累增加,而叶片中的K 积累减少;干旱条件下,叶片Na 、Cl-以及K 的积累增加,增强了盐地碱蓬在干旱条件下的渗透调节能力.叶片中脯氨酸的积累随着土壤含盐量和土壤干旱程度的增加而增加. 相似文献
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盐旱交叉胁迫对各施氮水平下小麦苗期的影响 总被引:3,自引:0,他引:3
为探究不同浓度盐胁迫和水分胁迫及两者互作对小麦幼苗生理特性的影响,于2017年3月至5月布置盆栽试验,分别设置两个NaCl胁迫(S1,NaCl 1.9 g/kg;S2,NaCl 2.9 g/kg)和两个水分处理水平(W1,78%田间持水量;W2,47%田间持水量),测定了冬小麦幼苗地上部和地下部干物质量、全氮、叶绿素和可溶性糖含量。结果表明:①在本试验盐胁迫范围内,单一盐胁迫下盐分含量的上升会显著抑制小麦的生长,冬小麦各部分干重、全氮、叶绿素含量明显下降,渗透物质可溶性糖含量会上升;②低盐干旱胁迫互作改善冬小麦幼苗生长状况,叶绿素含量、各部分干物质累积、氮积累量以及可溶性糖含量最大,呈现出对盐旱复合胁迫的适应性;③高盐干旱胁迫互作会加剧对小麦幼苗的生长限制。因此,低盐胁迫下对冬小麦进行适度的干旱刺激可以促进小麦幼苗适应复合胁迫,有利于小麦幼苗生长。 相似文献
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硅对盐胁迫下玉米幼苗生长的影响 总被引:19,自引:0,他引:19
采用砂基培养的方法,研究了硅对盐胁皖下玉米幼苗生长的一些生理指标的影响。结果表明,硅增强了盐胁迫下玉米幼苗硝酸还原酶的活性,促进了蛋白质的合成,提高了盐胁迫下玉米叶片的光合速率和干物质重,改善了玉米幼苗体内的水分代谢和水分利用率。在盐胁皖下,硅降低了玉米幼苗根系质膜透性,增强了根系的活力,抑制了玉米对钠离子的吸疏,促进了对钾离子的吸收。 相似文献
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[目的]分析蒙古黄芪种子在不同浓度NaCl,Na_2SO_4和NaHCO_3处理下的种子萌发和幼苗生长情况,为蒙古黄芪在盐碱地的引种、驯化和种植提供理论依据。[方法]通过发芽盒进行种子萌发出苗试验,测定分析蒙古黄芪种子在不同浓度NaCl,Na_2SO_4和NaHCO_3处理下的萌发率、发芽势、相对盐害率及其苗根长、苗高及根茎比。[结果](1)蒙古黄芪种子在NaCl0.2%,Na_2SO_40.6%和NaHCO_30.3%的盐胁迫下能够正常发芽,萌发率和发芽势均高于对照,在大于此浓度的盐胁迫下萌发率和发芽势均开始下降。(2)蒙古黄芪种子在NaCl0.6%,Na_2SO_40.8%和NaHCO_30.3%时的相对盐害率为负值,促进种子萌发,大于此浓度时,相对盐害率为正值,抑制种子萌发。(3)蒙古黄芪幼苗的茎长、根长及根茎比随着盐浓度的增大而增大,当NaCl和Na_2SO_4浓度分别在0.4%和0.6%时,黄芪幼苗的茎长和根长达最大,NaHCO_3浓度分别在0.6%和0.3%时,黄芪幼苗的茎长和根长达最大,超过此浓度黄芪幼苗的茎长和根长开始减小;当NaCl,Na_2SO_4和NaHCO_3浓度分别为0.6%,0.8%和0.3%时根茎比达最大,分别为1.658,1.709,1.291,超过此浓度,根茎比开始下降,但均大于1。[结论]蒙古黄芪在NaCl0.6%,Na_2SO_40.8%和NaHCO_30.3%的盐胁迫下种子和幼苗能够正常萌发和生长。 相似文献
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水分胁迫下脱落酸及磷脂酶在玉米幼苗根系渗透调节物质积累中的信号作用 总被引:3,自引:2,他引:3
试验研究了水分胁迫下、脱落酸 (ABA)、PLD/PLC抑制剂新霉素硫酸盐及脱落酸合成抑制剂Ancymidol在玉米幼苗根系渗透调节物质积累中的信号作用 ,结果表明水分胁迫下脱落酸可促进脯氨酸、可溶性糖和Ca2 的积累 ,但不能促进游离氨基酸和K 的积累 ,且PLD/PLC可能对脯氨酸、可溶性糖和游离氨基酸的积累有一定促进作用 ,但对K 和Ca2 的积累不起作用 相似文献
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以“晋黍8号”黍子幼苗为材料,在大棚内采用盆栽砂培法浇灌营养液,设置重旱、轻旱、正常灌溉、轻涝和重涝5个处理,植株二叶一心时开始胁迫处理,于处理后20d测定植株形态指标、生物量和含水量、叶片质膜透性、光合色素、丙二醛、抗坏血酸、脯氨酸、可溶性糖和可溶性蛋白含量等指标,研究水分胁迫对黍子幼苗生长、膜脂过氧化和渗透调节的影响。结果表明,正常灌溉下黍子幼苗生长最好,株高、茎粗、茎节数、叶片数、最大叶面积及根系、茎叶、穗的鲜质量、干质量均最大,干旱和涝害下幼苗各形态指标和生物量均明显降低,且重旱和重涝下比轻旱和轻涝下降低更明显;根系、茎叶和穗的含水量在干旱下均明显降低,涝害下表现各不相同。叶片光合色素含量在干旱下显著降低而涝害下无明显变化,质膜透性、丙二醛、抗坏血酸和脯氨酸含量在干旱和涝害下明显增加,且重旱和重涝下比轻旱和轻涝下增加更明显;可溶性糖含量在干旱下明显增加而在涝害下明显降低,可溶性蛋白含量在干旱下显著降低而在涝害下无显著变化。研究说明,干旱和涝害均对黍子幼苗造成过氧化伤害,抗氧化物质和渗透调节物质含量随之增加,但是抗氧化物质的增加并不能完全消除胁迫导致的过氧化伤害,加上光合能力降低,使黍子植株生长显著抑制。在本试验条件下,干旱胁迫对黍子幼苗的伤害比涝害严重。 相似文献
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利用盆栽试验研究了NaCl胁迫条件下AM真菌对紫花苜蓿(Medicago sativa L.)植株生长及生理特征的影响。结果显示:随土中加入NaCl浓度增高(0%,0.5%,1.0%),与未接菌紫花苜蓿相比,接种AM真菌显著(P<0.05)促进紫花苜蓿生长,并使其可溶性糖、可溶性蛋白及根系脯氨酸累积量增加。1.0%NaCl接种AM真菌处理下根系鲜重(28.1 mg)为0%NaCl未接种下的1.27倍;不同盐处理接种AM真菌植株丙二醛含量均低于对照株;1.0%NaCl浓度下接种AM菌植株叶片及根系脯氨酸含量分别为对照株的0.82,1.41倍。表明AM真菌在胁迫环境下不仅可促进植株生长发育及渗透调节物质的积累,还可维持植物体丙二醛含量较低水平,降低植株遭受盐胁迫,推测叶片与根系脯氨酸对ABA依赖程度不同而导致其脯氨酸含量不同。 相似文献
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燕麦幼苗对氯化钠和氯化钾胁迫的生理响应差异 总被引:1,自引:0,他引:1
为探讨燕麦对NaCl和KCl胁迫的生理响应差异,采用水培法,研究了不同浓度NaCl和KCl胁迫对幼苗生长,活性氧代谢和渗透调节的影响。结果表明:(1)在75和150mmol/L浓度下,NaCl胁迫对燕麦幼苗的膜脂过氧化伤害和生长抑制大于KCl胁迫。NaCl胁迫下叶片中的超氧化物岐化酶(SOD),过氧化氢酶(CAT)活性及可溶性蛋白、可溶性糖和脯氨酸含量低于KCl胁迫;当浓度增大到225mmol/L时,KCl胁迫叶片中O-2.,H2O2,丙二醛(MDA),可溶性蛋白和可溶性糖含量显著大于NaCl胁迫,而SOD,抗坏血酸过氧化物酶(APX)活性及谷胱甘肽(GSH)含量则相反。(2)225mmol/L KCl和NaCl处理的植株叶片水势分别为-0.867和-1.034 MPa,渗透势分别为-1.409和-1.252 MPa,说明KCl对燕麦的更强伤害不是渗透胁迫所致;经225mmol/L KCl胁迫后,燕麦叶片中Na+含量下降至对照的36.5%,而K+含量上升为对照的1.49倍,而补充20mmol/L NaCl显著提高了225mmol/L KCl胁迫下叶片Na+的含量及SOD,APX活性,降低了K+,H2O2,O-2.和MDA含量,说明离子毒害引起的活性氧积累可能是高浓度KCl胁迫对燕麦幼苗伤害大于NaCl胁迫的重要原因。 相似文献
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水分胁迫对春小麦陇春27号光合参数和渗透调节物质的影响 总被引:1,自引:0,他引:1
为明确水分胁迫下春小麦的抗旱机制,模拟半干旱与干旱条件下春小麦的生存机理,采用盆栽法进行了中度和重度水分胁迫下春小麦旗叶光合参数和渗透调节物质含量变化的研究.结果表明,土壤持水量从80%、60%至40%,春小麦陇春27号旗叶的叶绿素含量、光合速率、气孔导度、胞间CO2浓度、蒸腾速率逐渐降低,可溶性糖和酸性转化酶活性呈先增后减趋势,脯氨酸和丙二醛含量及过氧化物酶活性逐渐增强.60%持水量下的可溶性糖含量和酸性转化酶活性显著高于80%与40%持水量下的可溶性糖含量和酸性转化酶活性,可溶性蛋白含量显著低于40%和80%的可溶性蛋白含量,40%持水量下的脯氨酸和丙二醛含量及过氧化物酶活性显著高于60%和80%持水量下的脯氨酸和丙二醛含量及过氧化物酶活性.说明春小麦陇春27号旗叶对水分胁迫十分敏感,中度或重度水分胁迫下光合速率下降是气孔因素与非气孔因素综合作用结果,中度胁迫下光合速率降低是由叶绿素含量下降引起而非光合原料缺乏所致,而重度胁迫下光合速率降低是由叶绿素含量降低和光合原料缺乏所致,可溶性糖、脯氨酸和丙二醛含量及过氧化物酶活性升高是春小麦陇春27号抵御半干旱和干旱胁迫的主要机制. 相似文献
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ABSTRACT Global crop production systems are challenged by the increasing areas of saline soil in arid and semi-arid regions. Two naked oat (Avena sativa L.) lines (‘VAO-7’ and ‘VAO-24’) with distinct seedling tolerance to salinity were subjected to six levels of salt concentrations in a controlled greenhouse, and the response of yield and yield components to salinity stress was determined. The salt treatments 50, 100, 150, 200, and 250 mM sodium chloride (NaCl) (corresponding to EC: 3.42, 6.74, 9.66, 12.40, 15.04 dS m?1) imposed through modified Hoagland solution. Plain Hoagland was used as control. Complete nutrient elements were provided during the entire growth period. At maturity, the number of tillers with emerged heads was counted; the plant was then harvested and separated into shoots, seeds, and roots. Both plant height and days to maturity were shortened with increasing salt stress. Among the yield components, spikelet, tiller number, and grain dry weight per plant were significantly reduced by increasing salt concentration. Number of spikelets and grain weight per plant were the most salt-sensitive yield components. Thousand grain weight also varied as salinity stress increased. Harvest index remained relatively unchanged until the salinity reached 150 mM and higher. Our data indicate that grain yield reduction in oat due to salinity stress is associated with reduced number of grains per plant and mean grain weight. 相似文献
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The effects of five salinity levels and four copper levels on growth and chemical composition of ‘Ghazvini, pistachio seedlings were studied under greenhouse conditions in a completely randomized design with three replications. Leaf area, stem height, shoot and root dry weights were determined on 24th week after planting. Copper (Cu), phosphorus (P), sodium (Na), and chlorine (Cl) total uptake in shoot and root of plant were measured. The results showed that salinity decreased growth parameters. Low levels of Cu application had no significant effect on leaf area, shoot and root dry weights while decreased stem height. The highest level of Cu (7.5 mg Cu kg?1 soil) significantly increased leaf area and shoot dry weight but decreased stem height. Salinity decreased Cu and P uptake in the shoot and root, but increased total sodium and chloride uptake. Cu application increased shoot total P uptake and decreased root total Na uptake. 相似文献
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[目的]了解小叶杨的抗旱机理,为山西省北部半干旱风沙区小叶杨防护林建设提供科学依据。[方法]通过在山西省苗圃基地盆栽模拟干旱试验,以小叶杨生长过程中的苗木株高和地径,根、茎、叶生物量,叶片相对含水量和水势,净光合速率、蒸腾速率等为生长和生理指标,研究干旱胁迫对小叶杨幼苗生长的影响。[结果]干旱胁迫抑制了小叶杨幼苗的生长,包括地上部分和根系的生长;叶片相对含水量和水势随土壤相对含水量降低而下降;各干旱梯度下CK,T1,T2,T3,T4,T5的净光合速率、蒸腾速率也随干旱梯度加深而降低,但从CK(田间持水量,土壤含水量20.3%)到T3(田间持水量的40%,土壤含水量8.12%)净光合速率和蒸腾速率随干旱梯度加深降幅逐渐较小,并且干旱时也能保持较大的光合速率和蒸腾速率,表明小叶杨具有明显抗旱特性;当土壤水分进一步减少,T4(田间持水量的30%,土壤含水量为6.09%)时小叶杨开始出现干枯现象,T5(田间持水量量的20%,土壤含水量为4.06%)时小叶杨全部死亡。[结论]山西省西南部及其周边地区进行小叶杨造林时,土壤水分应尽量要保持在6.09%(T4)以上。 相似文献
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N. S. Nathawat M. S. Kuhad C. L. Goswami A. L. Patel Rakesh Kumar 《Journal of plant nutrition》2013,36(4):569-598
ABSTRACT The interactions between salinity and different nitrogen (N) sources nitrate (NO3 ?), ammonium (NH4 +), and NO3 ? + NH4 + were investigated on Indian mustard (Brassica juncea cv. RH30). Treatments were added to observe the combined effect of two salinity levels (8 and 12 ds m? 1) and three nitrogen sources (NO3 ?, NH4 +, and NO3 ? + NH4 +) on different growth parameters and mineral composition in different plant parts, i.e., leaves, stem, and root. Salinity has been known to affect the uptake and assimilation of various essential nutrients required for normal growth and development. Different growth parameters, i.e., leaf area, dry weight of different plant parts, absolute growth rate (AGR), relative growth rate (RGR), and net assimilation rate (NAR) declined markedly by salinity at pre-flowering and flowering stages. All growth indices were less sensitive to salinity (12 d s m? 1) with the nitrate form of nitrogen. It is pertinent mention that a high dose (120 kg ha? 1) of nitrogen in ammonium form NH4 +, acted synergistically with salinity in inhibiting growth. Plants fed with combined nitrogen (NO3 ? + NH4 +) had an edge over individual forms in ameliorating the adverse effects of salinity on growth and yield. Under salt stress, different nutrient elements such as N, phosphorus (P), potassium (K+), and magnesium (Mg2 +) were decreased in different plant parts (leaves, stem, and root). The maximum and minimum reduction was observed with ammoniacal and combined form of nitrogen, respectively, while the reverse was true of calcium (Ca2 +), sodium (Na+), chloride (Cl?), and sulfate (SO4 2?) at harvest. Nitrogen application (120 Kg ha? 1) in combined form had been found to maintain highest concentrations of N, P, Mg2 +, and Ca2 + along with reduced concentrations of Na+, Cl?, and SO4 2 ?. However, reverse was true with ammoniacal form of nitrogen. 相似文献
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S. Vasantha R. Gomathi C. Brindha 《Communications in Soil Science and Plant Analysis》2017,48(9):989-998
Drought and salinity individually or in combination adversely affects growth, development, and yield of sugarcane. Apart from physiological traits, nutrients status was studied in six commercial hybrids subjected to drought, salinity, and salinity + drought. Drought was simulated by withholding irrigation in the field, while salinity and salinity + drought were imposed in microplots. Physiological traits, viz, chlorophyll fluorescence, chlorophyll (SPAD) index, biomass production, and leaf area index, reduced drastically in combined stress as against individual stress treatments. Among major nutrients, phosphorus (P) reduced significantly in all the stress treatments. Similarly, iron (Fe) and Zinc (Zn) reduced due to stress and showed differential response for growth stages. Reduction in cane yield and sucrose percentage in stress conditions warrants supplementation of P, Fe, and Zn. 相似文献
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在河南省黄河滩区,通过研究基施硒肥(亚硒酸钠)对莜麦青干草和果实产量以及微量元素含量的影响,探索提高莜麦产量以及微量元素含量的新途径。结果表明: 1)基施硒肥能提高莜麦的青干草产量, 当基施量为954 g/hm2的情况下,效果最佳,扬花期青干草产量提高9.33%(P0.05),但基施硒肥对莜麦果实产量影响不显著; 2)莜麦对硒有较强的吸收和同化能力,可以从肥料中大量吸收无机硒,并大多转化为有机硒向上运输到茎叶和果实中; 3)基施硒肥能在不同程度上提高莜麦青干草中Cu、 Zn和Se的含量,而对Fe和Mn的含量影响不大,当硒肥基施量在954 g/hm2的情况下,扬花期青干草中Cu、 Zn和Se的含量分别提高 9.31%(P0.05)、 13.22% (P0.05)和281.25%(P0.05); 4)基施硒肥能显著提高莜麦果实中Fe、 Cu、 Zn和Se的含量,而对Mn的含量影响不大,当硒肥基施量在954 g/hm2的情况下,Cu、 Zn和Se的含量分别比不施硒对照提高7.92%(P0.05)、 5.75%(P0.05)和18.75%(P0.05),当硒肥基施量在765 g/hm2的情况下,莜麦果实中Fe的含量比对照提高10.19%(P0.05)。综上,莜麦对硒肥有较强的吸收和转化能力,适当地基施硒肥有利于提高扬花期青干草中Cu、 Zn和Se的含量和果实中Fe、 Cu、 Zn和Se的含量,适宜的硒基施量为765954 g/hm2。 相似文献
17.
Both drought and salinity cause nutrient disturbance, albeit for different reasons: a decrease in the diffusion rate of nutrients in the soil and the restricted transpiration rates in plants for drought and extreme soil sodium (Na)/calcium (Ca), Na/potassium (K), and chloride (Cl)/nitrate (NO3) ratios for salinity. The objective of this study was to examine short-term effects of drought and salinity on nutrient disturbance in wheat seedlings. Wheat was grown in a greenhouse in soil under drought and saline conditions for 26 days after sowing. At harvest, shoot biomass and length, and fresh weight and dry weight of the blade and sheath in expanded leaves 3 and 4 and expanding leaf 5 were determined. Mineral elements (K, Ca, magnesium (Mg), phosphorus (P), nitrogen (N), Na, sulphur (S), iron (Fe), zinc (Zn), and manganese (Mn)) in leaf blades and sheaths were also analyzed. At harvest, the reduction in plant height, shoot biomass, and accumulative evapotranspiration under drought was similar to that under salinity as compared with control plants. However, drought decreased the accumulation of all ions in the blade of the youngest leaf 5 compared with the control, whereas there was either an increase or no difference in all ion concentrations under saline conditions. The change in concentration for most ions in the blade and sheath of expanded leaves 3 and 4 varied among control, drought, and salinity plants, which indicated a different competition for nutrients between the sheath and blade of expanded leaves under drought and saline conditions. It can be concluded from this study that ion deficiency might occur in expanding leaves under drought but not saline conditions. 相似文献
18.
ABSTRACT An experiment was carried out to assess the single and combined effects of cadmium (Cd) and zinc (Zn) on growth and component wise biomass accumulation in carrot (Daucus carota L.) plants, grown under natural field conditions. Carrot plants were raised in field and treated with 10 and 100 μ g mL? 1 of Cd, 100 and 300 μ g mL? 1 of Zn singly, and in combination through soil drench. A control was also kept without any treatments of Cd and Zn. The impacts of different treatments of Cd and Zn on carrots were evaluated in terms of number of leaves, leaf area, plant length, and component wise biomass accumulation at different plant ages. Growth indices were also calculated to assess the biomass allocation patterns in carrots. The results showed that the above parameters were significantly affected in carrots treated with Cd and Zn singly and in combination as compared to the control as well as plants treated with 100 μ g mL? 1 of Zn. The results also showed that treatments of Cd and Zn have significant effects on biomass allocation pattern. This study concludes that growth and biomass accumulation in carrots were significantly influenced by the concentration ratios of Cd and Zn in soil/root/stem/ leaves. It is clear from this study that combined treatments of Cd and Zn have more negative impacts on above parameters as compared to their individual treatments. 相似文献
19.
Xiangjun Li Ping An Shinobu Inanaga A. Egrinya Eneji Kenji Tanabe 《Journal of plant nutrition》2013,36(8):1499-1508
An experiment was conducted to determine if salinity stress alters the response and tolerance of soybean to defoliation. Four soybean [Glycine max(L.) Merr.] cultivars (‘Tachiutaka,’ ‘Tousan 69,’ ‘Dare’ and ‘Enrei’) in a growth chamber were exposed to two salinity treatments (0 and 40 mM NaCl) and two defoliation treatments (with and without defoliation). The interactive effects of salinity stress and defoliation on growth rate, leaf expansion, photosynthetic gas exchange, and sodium (Na+) accumulation were determined. The decrease in growth rate resulting from defoliation was more pronounced in plants grown under salinity stress than in those grown without the stress. Without salinity stress, defoliated plants of all four cultivars had leaf-expansion similar rates to those of the undefoliated ones, but the photosynthetic rates of their remaining leaves were higher than those of undefoliated plants. However, with salinity stress, defoliated ‘Tachiutaka’ and ‘Tousa 69’ had lower leaf expansion and photosynthetic rates than undefoliated plants. For cultivars ‘Dare’ and ‘Enrei,’ the defoliated plants had leaf-expansion rates similar to undefoliated ones, but the photosynthetic rate of the remaining leaves did not increase. Except for cultivar ‘Dare,’ defoliated plants grown under salinity stress had higher Na+ accumulation in leaves than undefoliated ones, and this result may be related to slow leaf expansion and photosynthesis. Salinity stress negatively affects soybean response and tolerance of defoliation, and the effects varied according to the salt tolerance of the cultivar. 相似文献
20.
为了探讨施用保水剂对干旱胁迫下大麦幼苗生长及光合特性的影响,给保水剂在大麦抗旱栽培中的应用提供理论依据。采用盆栽法通过测定在不同干旱胁迫下大麦幼苗根长、茎长、叶片相对含水量、叶片光合参数、叶绿素含量等指标,结果表明,在同等水分条件下,施用保水剂可增加大麦幼苗根长、茎长及叶片相对含水量,显著增加大麦幼苗叶片的净光合速率、气孔导度、胞间CO2浓度、蒸腾速率,说明保水剂可以通过保持大麦叶片较高的光合特性来增强其碳同化能力,进而促进大麦幼苗的生长。且施用保水剂后大麦幼苗叶绿素含量得到显著提高,从而减小了干旱胁迫对植株带来的损害,延缓植株衰老。施用保水剂可以较好地促进干旱胁迫下大麦幼苗的生长发育。 相似文献