首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到19条相似文献,搜索用时 187 毫秒
1.
该研究采用水培试验,分析了俄罗斯杨(Populus russkii)对短期硼胁迫(1、5、10mmol/L硼酸)的生长和生理响应特征,探明其对硼胁迫的耐受范围,初步揭示其耐硼的生理基础。结果显示:(1)与对照相比,1mmol/L硼酸处理俄罗斯杨水培苗的生长情况更优,叶片光合色素含量和净光合速率显著上升,SOD和APX活性及抗坏血酸含量显著上调。(2)5mmol/L硼酸处理幼苗有轻微胁迫受害症状,叶片褪绿变黄,叶绿素b含量比对照显著上升,而Chla/Chlb比值显著下降,其SOD和APX活性显著上调。(3)10mmol/L硼酸处理幼苗表现出严重毒害症状,叶片发黄、茎尖和根尖生长受抑制;叶片PSⅡ原初光能转换效率(F_v/F_m)和Chla/Chlb比值比对照显著下降;其叶片MDA含量、POD活性、抗坏血酸含量以及游离脯氨酸和可溶性糖含量均比对照显著上升。研究表明,在不同浓度硼酸短期胁迫下,俄罗斯杨水培苗能通过上调抗氧化酶活性和抗氧化物质、渗透调节物质含量来有效清除体内胁迫产生的活性氧,减轻膜脂过氧化伤害,使其在低于5mmol/L硼酸胁迫环境下正常生长,表现出较强的耐硼性。  相似文献   

2.
以4片真叶黄瑞香幼苗为材料,设置不同浓度(0、50、100、150、200mmol·L~(-1))NaCl胁迫处理,采用温室砂培实验系统考察了其幼苗叶绿素含量、叶绿素荧光参数及气体交换参数等光合生理指标的变化。结果表明:(1)在正常环境条件下(对照),黄瑞香叶片净光合速率(P_n)、气孔导度(G_s)的日变化曲线呈双峰型,蒸腾速率(T_r)日变化曲线呈单峰型;较高浓度(100mmol·L~(-1))NaCl胁迫改变了黄瑞香叶片光合特性日变化曲线,导致其P_n、T_r、G_s日变化曲线整体下降,而胞间CO_2浓度(Ci)日变化曲线整体上升。(2)低浓度(50mmol·L~(-1))NaCl胁迫对黄瑞香叶片叶绿素含量及其比值无显著影响,但较高浓度(100mmol·L~(-1))NaCl胁迫则使叶绿素含量显著下降,其比值下降则较平缓。(3)较高浓度(100mmol·L~(-1))NaCl胁迫使得黄瑞香叶片最大荧光(F_m)、PSⅡ最大光化学效率(F_v/F_m)、PSⅡ光下最大捕光效率(F_v′/F_m′)、光化学荧光猝灭系数(qP)、PSⅡ实际光化学效率(Φ_(PSⅡ))均显著下降,却使其初始荧光(F_0)和非光化学猝灭(NPQ)显著上升。研究发现,随着盐胁迫浓度的增加,引起黄瑞香光合速率下降的主要原因是非气孔因素;在轻度NaCl胁迫下黄瑞香有较强的忍耐性,而重度NaCl胁迫则显著降低了叶片的光合机构活性,加剧了光抑制程度,从而严重限制了其叶片的光合作用效率。  相似文献   

3.
盐胁迫下番茄幼苗对赤霉素处理的响应   总被引:1,自引:0,他引:1  
为了研究盐胁迫下番茄幼苗对赤霉素处理的响应,本试验对不同盐胁迫浓度(0 mmol/L,50 mmol/L,160 mmol/L)条件下长至两叶一心的番茄幼苗叶片进行不同浓度的赤霉素(0 mg/L,20 mg/L,80 mg/L,150 mg/L)喷施处理,对其叶片可溶性糖、可溶性蛋白质、叶绿素含量以及干物重进行测定并进行分析。结果表明,番茄中可溶性糖含量、可溶性蛋白含量随着盐胁迫浓度的增加而增加,施加赤霉素后,可溶性糖含量的上升的幅度明显变大;盐胁迫条件下,番茄叶片干物重下降,且盐浓度越高干物质下降幅度越大,施加赤霉素后,干物重下降幅度减缓;随着盐胁迫浓度增加,番茄叶片的叶绿素含量降低,且浓度越高叶绿素含量下降趋势越明显,赤霉素的施加同样使叶绿素含量降低。以上结果为研究盐胁迫下番茄幼苗对赤霉素处理的响应提供了实验依据。  相似文献   

4.
水杨酸对高温胁迫下黄瓜幼苗叶绿素荧光参数的影响   总被引:5,自引:0,他引:5  
以津春3号黄瓜为试材,对其喷施0.05、0.1和0.5 mmol/L的水杨酸(SA)溶液,并进行了昼(40±1)℃/夜(30±1)℃高温胁迫处理,研究了黄瓜幼苗四叶期叶片叶绿素荧光参数变化.结果表明,高温胁迫下幼苗叶绿素荧光参数Fo、NPQ等显著升高,Fv/Fm、Fv′/Fm′等明显降低,嫁接苗的变化趋势弱于自根苗;不同浓度的SA溶液可缓解高温胁迫对黄瓜幼苗叶绿素荧光参数的影响,且以0.1 mmol/L的SA处理效果最优.  相似文献   

5.
以胡杨、新疆杨和俄罗斯杨一年生幼苗为材料,采用盆栽实验探讨不同胁迫(干旱,盐和重金属)下,施加外源植物激素油菜素内酯(BRs)对三种杨树叶片的叶绿素含量、叶绿素荧光参数及动力学曲线(OJIP)的影响。结果表明:与对照相比,10μmol/L的BRs可提高三种杨树叶片的光合特性;干旱胁迫下,胡杨的叶绿素含量及叶绿素荧光动力学曲线与对照相比无显著变化,新疆杨和俄罗斯杨的叶绿素a、叶绿素b含量显著降低,荧光动力学曲线J点上升,P点下降;盐胁迫下,胡杨和新疆杨的叶绿素含量变化较小,俄罗斯杨的叶绿素含量降低明显,荧光动力学曲线变化也比较显著;铜胁迫下,三种杨树叶绿素a和b含量与对照相比都显著下降,新疆杨和俄罗斯杨的荧光动力学曲线变化较为显著,荧光参数变化幅度非常大,当施加外源BRs后,三种胁迫下的三种杨树叶绿素含量与对照组相比都有不同程度的升高,其中胡杨、新疆杨和俄罗斯杨的叶绿素a含量分别升高了14%、6.8%和18.8%,新疆杨和俄罗斯杨的荧光动力学曲线及荧光参数接近于对照水平,PSⅡ最大光化学效率(Fv/Fm)和光化学性能指数(PIABS)显著增加。表明BRs能够明显缓解逆境胁迫对杨树PSⅡ反应中心造成的伤害。  相似文献   

6.
以甘蓝型油菜(Brassica napus L.)硼高效品种‘青油10号’和硼低效品种‘Westar 10’为研究对象,采用生物信息学分析、转录组测序和实时荧光定量PCR技术,鉴定其基因组中扩展蛋白的家族成员,并对该基因家族响应缺硼胁迫的表达差异进行分析。结果显示,甘蓝型油菜基因组中包含109个扩展蛋白,可分为4个亚家族,包括:79个扩展蛋白A(BnaEXPAs)、21个扩展蛋白B(BnaEXPBs)、5个类扩展蛋白A(BnaEXLAs)和4个类扩展蛋白B(BnaEXLBs)。同一亚家族中的扩展蛋白具有相对保守的基因结构和蛋白质基序组成。这些扩展蛋白基因分布在19条染色体上,其中10个位于硼高效QTL区间内。转录组测序分析结果表明,缺硼胁迫时‘青油10号’的根、幼叶和老叶中分别有40、18和30个扩展蛋白基因显著上调或下调表达;而‘Westar10’中分别有27、24和41个扩展蛋白基因显著上调或下调表达。其中‘青油10号’根中的BnaC04.EXPA6a,幼叶中的BnaA09.EXPA5以及老叶中的BnaA09.EXPA16、BnaC04.EXPA3、BnaCnn.EXPA5b和BnaA03.EXPA8基因的表达水平均显著高于‘Westar10’。研究结果说明甘蓝型油菜基因组中扩展蛋白基因家族数量庞大,其中高、低效品种间和不同硼水平中差异表达的扩展蛋白可能在甘蓝型油菜低硼适应性中发挥重要作用。  相似文献   

7.
以番茄耐盐碱品种‘金鹏一号’和盐碱敏感品种‘中杂9号’为试验材料,采用营养液水培的方法,设置正常营养液栽培(对照CK)、100mmol/L盐碱溶液胁迫、100mmol/L盐碱溶液胁迫+0.1mmol/L亚精胺(Spd)浸种、100mmol/L盐碱溶液胁迫+0.25mmol/L Spd浸种4种处理,研究外源Spd对番茄幼苗株高和茎粗的相对生长率、叶片和根系含水量、超氧化物歧化酶(SOD)和过氧化物酶(POD)活性以及丙二醛(MDA)、脯氨酸(Pro)、叶绿素含量的影响。结果显示:(1)单独盐碱胁迫下,两品种番茄幼苗叶绿素含量、株高和茎粗的相对生长率、叶片和根系相对含水量较对照均降低,而其MDA、Pro含量、SOD和POD活性显著增加。(2)外源Spd浸种处理较盐碱胁迫下能够增加番茄幼苗的株高和茎粗的相对生长率、叶片和根系的相对含水量、Pro及叶绿素含量,进一步提高SOD和POD的活性,降低其MDA含量,能有效缓解盐碱胁迫对番茄幼苗的伤害。(3)在100mmol/L盐碱胁迫条件下,0.25mmol/L Spd浸种处理对番茄幼苗受到的盐碱胁迫伤害的缓解效果更佳,并且这种缓解作用对盐碱敏感品种‘中杂9号’幼苗的效果更加明显。研究表明,在盐碱胁迫下,番茄幼苗的生长受到一定程度的抑制,但外源Spd浸种能够通过调节渗透调节物质含量、增强抗氧化酶活性来减轻盐碱胁迫的伤害,维持植物体的正常生理代谢功能,从而提高番茄幼苗抵抗盐碱胁迫能力,有效缓解盐碱胁迫的伤害,并以0.25mmol/L Spd浸种处理缓解效果更佳,且这种缓解作用对盐碱敏感品种‘中杂9号’幼苗效果更明显。  相似文献   

8.
该研究在人工控制水分条件下,设置3个干旱胁迫处理,选用3个主栽油菜品种‘陇油10号’、‘陇油2号’、‘青杂5号’幼苗进行盆栽试验,测定干旱胁迫条件下叶片相对含水量、叶绿素含量、光合气体交换参数及叶绿素荧光参数等指标,考察各指标在干旱胁迫过程中的变化特征,并通过主成分分析(PCA)和隶属函数法评价品种的抗旱性及其主要响应因子,以揭示西北地区油菜幼苗响应干旱胁迫的光合调控机制。结果表明:(1)各品种油菜幼苗的叶片相对含水量(RWC)均随干旱胁迫程度的递增而逐渐降低,最大水分亏缺(WSD)却逐渐上升。(2)各品种油菜幼苗叶片的叶绿素a含量、叶绿素总含量随着干旱胁迫程度的递增而先增加后递减,且同一种幼苗在不同处理间差异显著。(3)各品种油菜幼苗叶片的净光合速率(Pn)、水分利用效率(WUE)、单株生物量、气孔导度(Gs)、胞间CO2浓度(Ci)均在受到干旱胁迫时迅速降低,且同一品种幼苗在不同处理间差异显著,而其叶片蒸腾速率(Tr)在干旱胁迫下无显著变化。(4)各品种油菜幼苗叶片光化学猝...  相似文献   

9.
为探究外源物质对干旱胁迫下笔筒树生长的缓解效应和生理机制,对实验室培养的笔筒树幼苗进行了自然干旱胁迫,期间分别叶面喷施1.0 mmol/L水杨酸(SA)、150μmol/L褪黑素(MT)、100 mg/L多效唑(PP_(333))、2.5 mmol/L氯化钙(CaCl_(2))以及0.3 mg/L的2,4-表油菜素内酯(EBR)溶液,测定各处理幼苗的生长和光合作用、抗氧化酶、渗透调解物质等相关生理指标。结果表明:(1)与正常生长对照(CK)相比,干旱胁迫(DCK)显著抑制笔筒树幼苗地上部分的生长,但能够显著促进地下部分的生长;干旱胁迫显著抑制笔筒树叶片抗氧化酶活性,加剧对细胞膜的损害,进而引起幼苗叶片相对电导率和丙二醛含量显著上升,显著增加渗透调节物质的积累;干旱胁迫也使叶片叶绿素含量显著降低,不能正常进行光合作用,其净光合速率、气孔导度和蒸腾速率都显著降低。(2)与DCK处理相比,叶面喷施外源物质可以显著提高笔筒树幼苗叶片抗氧化酶活性,有效清除细胞内过多的活性氧,显著降低相对电导率和丙二醛含量,使细胞膜系统代谢正常,减轻干旱胁迫对笔筒树幼苗造成的伤害,并提高净光合速率、气孔导度、蒸腾速率和叶绿素含量,有效减轻干旱胁迫对光合作用的抑制。(3)隶属函数法综合评价表明,适宜浓度的水杨酸(SA)和褪黑素(MT)处理对笔筒树幼苗干旱胁迫的缓解效应最好。  相似文献   

10.
200 mmol/L NaCl胁迫对杂交酸模(Rumex K-1)幼苗叶片光系统Ⅱ最大光化学效率(Fy/Fm)没有影响,但是显著降低了光合速率和气孔导度,导致细胞间隙CO2浓度和叶绿素含量增加.同时,盐胁迫引起活性氧清除关键酶超氧化物歧化酶(SOD)和抗坏血酸过氧化物酶(APX)活性上升.在光合作用诱导过程中,无论是对照叶片还是盐胁迫叶片,米勒过氧化反应均维持一部分光合电子流.光合作用达到稳定状态后,盐胁迫叶片仍能够通过米勒过氧化反应维持部分光合电子流.强光下,低氧(2%)抑制米勒过氧化反应对对照叶片光抑制程度没有明显影响,而显著增加盐胁迫叶片的光抑制程度.据上述结果推测:盐胁迫下米勒过氧化反应的增强有助于消耗过剩的激发电子,从而降低强光下杂交酸模幼苗叶片的光抑制程度.  相似文献   

11.
植物对硼元素的吸收转运机制   总被引:5,自引:0,他引:5  
硼是植物生长发育所必需的微量元素,但是在世界范围内,土壤中硼含量过高或者过低都会对植物生长产生影响,是农业生产上的主要问题.近来人们对硼的吸收转运机制的研究取得了突破性进展,鉴定了一些硼的转运通道和转运蛋白,例如:NIP5;1、NIP6;1、BOR1和BOR4,并对它们的转运机制有了一些了解.植物在硼缺少的情况下首先通过转运通道NIP5;1把硼吸收到共质体,然后通过转运蛋白BOR1运入中柱;在高硼毒害时,通过转运蛋白BOR4把过多的硼转出植物体,同时在植物中增加糖醇的含量,过表达BOR1或BOR4都能改变植物对硼含量变化的耐受性.因此,对植物中硼吸收转运机制的研究将有利于人们通过生物学手段提高作物对土壤中硼过高或过低的抗性.  相似文献   

12.
Distribution and partitioning of newly acquired boron (B) in a mature sunflower (Helianthus annuus L., cv. 3101) plant was investigated. In leaf blades of sunflower plants grown under 0.93, 2.8, and 9.3 mmol B m−3, the level of cell-wall-bound B was rather uniform, irrespective of leaf position and B concentration. Boron concentration gradients among leaf positions were produced mainly by different levels of water-soluble B. To determine the distribution of newly taken-up B in plant parts, 10B-labeled boric acid at a concentration of 2.8 mmol B m−3 was applied. The majority of newly acquired B was delivered to the younger leaves, however, approximately one-fourth of the B in the top and second leaves was the older B which was taken up before the 6 d treatment period. In the root tissues, two-fifth of the water-soluble B was new B taken up in the last 6 d, however, within 6 h of the application new B contributed to approximately 80% of the xylem sap B, suggesting that newly taken-up B is preferentially transported to the shoots. When B was withdrawn from the culture solution, the B concentration per leaf area of the lower leaves decreased slightly over 9 d. However, there was an abrupt decrease in the younger leaves, even when taking into account the rapid expansion of the leaf blade, suggesting that B moves more rapidly from the younger leaves than from the older leaves  相似文献   

13.
为了研究CaCl2对NaCl胁迫下酸枣幼苗根、茎、叶的氮代谢影响,探索钙缓解幼苗NaCl胁迫的作用途径。该研究以酸枣幼苗为试验材料,检测不同浓度CaCl2(0、5、10、20 mmol/L)对NaCl(150 mmol/L)胁迫下幼苗叶片H2O2、O-·2含量,根、茎、叶中硝酸还原酶(NR)、谷氨酰胺合成酶(GS)、谷氨酸合酶(GOGAT)活性及游离氨基酸、可溶性蛋白、硝态氮含量的影响,并采用主成分分析法筛选出评价CaCl2缓解NaCl胁迫效应的生理指标。结果表明:与NaCl胁迫相比,盐胁迫幼苗叶片的H2O2、O-·2积累量在5、10 mmol/L CaCl2处理下显著减少;GOGAT活性在5、10 mmol/L CaCl2处理下的植株根和茎内以及各浓度 CaCl2处理的叶内均显著升高, GS、NR活性在10、20 mmol/L CaCl2处理的根内和10 mmol/L CaCl2处理的茎内以及5、10、20 mmol/L CaCl2处理的叶内均显著升高;可溶性蛋白含量在5、10、20 mmol/L CaCl2处理的根、茎、叶内均显著升高,游离氨基酸含量在10、20 mmol/L CaCl2处理的根和茎内以及10 mmol/L CaCl2处理的叶内均显著升高,硝态氮含量在10 mmol/L CaCl2处理的根和茎内以及5、10、20 mmol/L CaCl2处理的叶内均显著升高。研究发现,150 mmol/L NaCl胁迫对酸枣幼苗造成明显过氧化伤害,抑制了体内氮代谢;外源CaCl2可通过促进幼苗根和茎内GS/GOGAT循环对NH4+的同化作用,提高叶片NR活性,加快硝态氮的转化速率,从而增强幼苗对NaCl胁迫的适应性,并以10 mmol/L CaCl2处理缓解效果最佳;游离氨基酸、GOGAT、NR可以作为CaCl2缓解幼苗NaCl胁迫伤害的评价指标。  相似文献   

14.
Influence of boron on somatic embryogenesis in papaya (Carica papaya L.) cv. Honey Dew was investigated. Immature zygotic embryos were grown in the induction medium containing Murashige and Skoog basal salts, with B5 vitamins, picloram (1 mg dm−3) or 2,4-dichlorophenoxy acetic acid (2 mg dm−3) and different concentrations of boric acid (30 to 500 mg dm−3). Maximum somatic embryo initiation was observed at 62 mg dm−3 boric acid irrespective of the growth regulator used. The cotyledonary stage somatic embryos were germinated on MS basal medium devoid of growth regulators. The regenerated plantlets were hardened under greenhouse conditions and transferred to field. This revised version was published online in July 2006 with corrections to the Cover Date.  相似文献   

15.

In this study, the effects of boron stress and the application of silicon were investigated on the expression levels of barley homologues of three transporter genes, namely BOR2, PIP1, and PIP1;1, which have potential in transferring boron and silicon into or out of tissues. Boron toxicity in shoot tissues was observed as early as 1-day-long exposure by means of several stress indicators including ion leakage, malondialdehyde (MDA) and H2O2 levels. Elemental analysis showed that presence of Si under B stress reduces tissue B levels, whereas B presence increased Si levels in tissues. Presence of silicon induced BOR2 gene expression in shoots during early stress. Presence of both elements simultaneously increased BOR2 expression in both shoot and root tissues, which might be attributed to element similarity. Expression levels of both aquaporin genes PIP1 and PIP1;1 increased in shoots under short term B and Si applications, and levels were more responsive to B when compared to Si. Similar to BOR2 expression, silicon increased both aquaporin gene expressions in shoot tissues under short term boron stress. Investigation of the response of BOR2 and aquaporin genes under boron stress and in the presence of silicon revealed their sensitivity to silicon and their potential function in transporting silicon into tissues. Based on the present work, stress mitigating effects of silicon can be attributed to the competitive role of silicon for the transport via boron transporters under toxic boron levels.

  相似文献   

16.
17.
Elevated levels of boron occurring naturally in soil or irrigation waters are detrimental to many crops grown in agricultural regions of the world. If such levels of boron are accompanied by conditions of excessive salinity, as occurs in the Lluta valley in Northern Chile, the consequences can be drastic for crops. A variety of sweet corn from this valley (Zea mays L. amylacea) has arisen as a consequence of practiced seed selection, suggesting that it is extremely tolerant to high salt and boron levels. In the present study, seeds ofZea mays L. amylacea were collected in order to study their physiological mechanisms of tolerance to high levels of NaCl and boron. Concentrations of 100 and 430 mM NaCl and 20 and 40 mg kg−1 boron were imposed as treatments. The plants did not exhibit symptoms of toxicity to either NaCl and boron during the 20 days of treatment. Na+ accumulation was substantial in roots, while boron was translocated to leaves. Boron alleviated the negative effect of salinity on tissue K+ and maintained membrane integrity. The higher values of water potential seem to be related to the capacity of this ecotype to maintain a better relative water content in leaves. Despite the fact that boron enhanced slightly the effect of salinity on CO2 assimilation, no effect on photochemical parameters was observed in this ecotype. Osmotic adjustment allows this ecotype to survive in high saline soils; however the presence of boron makes this strategy unnecessary since boron contributed to the maintenance of cell wall elasticity.  相似文献   

18.
Lehto T  Lavola A  Kallio E  Aphalo PJ 《Mycorrhiza》2004,14(3):209-212
Boron (B) is an essential micronutrient for plants but it is thought not to be essential for fungi. We studied whether the extraradical mycelia of Paxillus involutus in symbiosis with silver birch (Betula pendula) take up B and transport it to the host plant. We grew mycorrhizal plants in flat microcosms with a partitioning wall, below which there was only extraradical mycelium. A boric acid solution enriched in 10B was applied to these mycelia. Increased 10B/11B isotope ratios were subsequently measured in birch leaves, stems, and roots plus mycorrhizas in the upper compartment. Boron was therefore taken up by the mycorrhizal mycelia and transported to the host plant in this species combination.  相似文献   

19.
F. Martini  M. Thellier 《Planta》1980,150(3):197-205
The growth of white clover (Trifolium repens L.) is severely inhibited by boron starvation, but a foliar treatment with boric acid can transitorily alleviate the deficiency symptoms. The 10B(n ,)7 Li nuclear reaction has been used to study boron transport in the plant after foliar application. More than 98% of the boron supplied remained at the point where it was applied to the leaves, and less than 2% was useful to the growth of the treated plant. This small efficient portion of boron was quite mobile. It was distributed to the different parts of the plant, then was transferred from the oldest parts to the newly formed leaves. Physiological and agronomical implications of these data are discussed.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号