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1.
牡丹冬季室内催花过程中内源激素含量的变化   总被引:11,自引:0,他引:11  
牡丹品种朱砂垒(PaeoniasuffruticosaAndr.cv.Zhushalei)在冬季室内催花过程中7种内源激素含量变化不同。玉米素核苷(Z ZR)、生长素(IAA)和赤霉素(GA3)的含量在花生长发育过程中处于较高水平;而脱落酸(ABA)、异戊烯基腺苷(IP IPA)、二氢玉米素核苷(DHZ DHZR)、赤霉素(GA4)的含量低于上述3种内源激素。激素平衡方面,GAs/ABA、CTKs/ABA、IAA/ABA处于较高水平,变化幅度较大。在催花过程中,内源激素以及其平衡影响牡丹花的生长发育。本研究结果对牡丹花期调控提供理论依据。  相似文献   

2.
多效唑(PP333)对山葵根茎膨大和内源激素含量的影响   总被引:4,自引:0,他引:4  
山葵植株经100 mg*L-1 PP333处理后,山葵根茎重显著增加,根茎中内源吲哚乙酸(IAA)和赤霉素(GAs)含量降低,玉米素核苷(ZR)和脱落酸(ABA)含量增加,ZR/IAA、ZR/GAs、ABA/IAA和ABA/GAs比值提高.  相似文献   

3.
以生根能力差异较大的4个日本落叶松无性系为材料,对插穗生根过程中插穗内源激素含量和比值,以及总酚酸和营养物质含量的变化进行分析,以明确插穗不定根形成的主要内源性影响因素,为日本落叶松扦插繁殖技术提供理论依据.结果表明:(1)4个日本落叶松无性系扦插生根能力存在显著差异,‘日宽17-3-1'和‘日抚273 1,较易生根,其生根率达90%,而‘日草103-3-1’和‘日草82 4-3’难生根,其生根率低于20%.(2)在扦插生根过程中,插穗内源脱落酸(ABA)含量随扦插时间的延长而不断升高,并且较易生根和难生根无性系差异明显,与插穗的生根能力有较强的相关性;玉米素(Z)和总酚酸含量随扦插时间的延长而不断降低,并且对插穗生根具有明显的抑制作用;总氮含量表现出不断降低至逐渐稳定的趋势,但与插穗生根能力大小并无较强的相关性.(3)(IAA+Z)/ABA随扦插时间的延长而不断降低,且较易生根型小于难生根型.因此,在生产中以(IAA+ Z)/ABA的比值和总酚酸含量大小可判断日本落叶松插穗的生根能力.  相似文献   

4.
赵天宏  刘波  王岩  刘轶鸥  赵超然  杨兴  曹莹 《生态学报》2015,35(8):2695-2702
揭示大豆叶片内源激素对UV-B和臭氧胁迫的代谢机制和响应方式,为从分子水平研究植物内源激素对UV-B(Ultraviolet-B)和O3(Ozone)胁迫的适应机制奠定基础。以大豆(Glycine max.)为试验材料,利用开顶式气室研究UV-B(0.32W/m2)和O3((110±10)nmol/mol)复合胁迫对大豆叶片内源激素含量及活性氧代谢系统的影响。结果表明:在大豆整个生育期内,与对照相比,UV-B胁迫使大豆叶片ABA(Abscisic acid)含量、ZR(Zeatin riboside)含量和IAA(Indoleacetic acid)含量显著降低,IAA/ABA、ZR/ABA、(IAA+ZR)/ABA比值升高,O·-2(Superoxide anion free radical,O·-2)产生速率和MDA(Malonaldehyde)含量升高,SOD(Superoxide dismutase)、CAT(Catalase)和POD(Peroxidase)活性显著降低;高浓度O3胁迫下,大豆叶片ABA和IAA含量显著下降、ZR含量显著增加,IAA/ABA、ZR/ABA、(IAA+ZR)/ABA值显著升高,O·-2产生速率和MDA含量增加,SOD、CAT和POD活性显著降低;UV-B和O3复合胁迫下,大豆叶片ABA含量、ZR含量和IAA含量降低,ZR/ABA、(IAA+ZR)/ABA值下降,而IAA/ABA值升高,O·-2产生速率和MDA含量显著增加,SOD、CAT和POD活性显著降低。UV-B辐射增强和O3浓度升高单一及复合作用使大豆叶片内源激素间平衡改变,进而影响大豆叶片的代谢水平。持续胁迫下,植株抗氧化能力下降,对大豆表现为伤害效应。UV-B和O3复合胁迫比单独胁迫时的影响有所加深,但是小于两者单独作用时影响的简单累加。  相似文献   

5.
该研究运用酶联免疫法(ELISA)对不同成花量(花多、花少、无花)金花茶花果期果枝叶内源激素吲哚乙酸(IAA)、赤霉素(GA_3)、玉米素核苷(ZR)、脱落酸(ABA)含量进行了测定。结果表明:始花期金花茶果枝叶内源IAA先升高后降低,花多株含量低于花少株;有花株ZR含量高于无花株;GA_3含量呈现整体上升趋势,有花株高于无花株;ABA含量先降低后升高,无花株高于花多株。盛花期IAA、GA_3、ABA含量整体下降,ZR含量先降低后升高,花多株叶内源IAA、ZR、GA_3含量高于花少株或无花株,ABA含量低于花少株或无花株。花期内,有花株果枝叶IAA/ZR、IAA/ABA、ZR/ABA、GA_3/ABA比值均高于无花株,而(IAA+GA_3)/ZR比值低于无花株,说明金花茶花果的发育不仅和单个激素的含量有关,还和激素平衡有关。秋梢期营养生长旺盛时无花株IAA/ZR比值较大,花果期生殖生长强烈时比值较小,(IAA+GA_3)/ZR与之相反。这说明花蕾期高水平的内源IAA、ZR和ABA及低水平的内源GA_3有利于金花茶开花;末花期高含量的IAA、ZR和低含量的GA_3、ABA可减少落花落果,提高坐果率,有利于果实快速生长;果实生长后期高含量的ABA有利于果实成熟。该研究结果为生产上应用生长调节剂调控金花茶成花、坐果提供了理论依据。  相似文献   

6.
以红橘、朱橘、土橘、枳、枳橙、实生酸柚、实生甜橙、黄柑为材料,进行不同降水量的长期干旱胁迫后,测定生物量、抗旱系数及叶片中赤霉素(GA1+3)、玉米素核苷(ZR)、生长素(IAA)、脱落酸(ABA)含量,分析GA1+3、ZR、IAA、ABA的相对含量变化及ABA/GA1+3、ABA/ZR、ABA/IAA与8个种类柑橘抗旱性的关系.结果表明:在降水量低于1200 mm(对照)条件下,随降水量的减少不同种类柑橘的生物量明显降低,其抗旱系数及抗旱力大小顺序为朱橘红橘枳土橘枳橙实生酸柚实生甜橙黄柑.不同种类柑橘叶片中ABA含量随降水量的减少而增加,GA1+3、ZR和IAA含量随降水量的减少而降低.在抗旱性强的柑橘种类中,ABA/GA1+3和ABA/ZR的增加幅度大,ABA/IAA变化与种间抗旱力的关联度不大.ABA和GA1+3的相对含量与柑橘抗旱系数分别呈极显著正相关和极显著负相关,ZR的相对含量与抗旱性系数呈极显著或显著负相关,IAA的相对含量与抗旱性系数相关性不明显.对柑橘抗旱性的促进效果,以ABA最大,其次为GA1+3和ZR,IAA最小.  相似文献   

7.
通过二次成功的细胞融合,共获得三株分泌抗玉米素核苷(ZR)单克隆抗体的稳定杂交瘤系F_2E_6、F_3G_6和F_1B_9。其中F_2E_6分泌的单抗属IgG_1、F_3G_6、F_1B_9分泌的单抗均属IgM。以F_2E_6、F_3G_6单抗为基础的ELISA对ZR的检测灵敏度为0.05pmol(—18pg),线性检测范围为0.05—50pmol。除玉米素(Z)外,F_2E_6、F_3G_6单抗与IPA、6-BA、KT和腺苷几种ZR类似物的交叉反应值都小于0.18%。用ELISA测定F_2E_6单抗与ZR反应的亲和常数为2.36±0.99×10~(-8)M。本文还报道了包埋抗原的ELISA在植物内源细胞分裂素测定中的应用,并用此方法测定了黄化玉米(Zea mays L.)幼苗中ZR的含量。  相似文献   

8.
为了探索杜梨组培复幼变化规律,对10年生杜梨进行连续继代培养,统计不同继代次数杜梨丛生芽繁殖系数和生根率,观察记录叶片形态变化并测定内源激素含量。结果表明:(1)通过连续继代培养,杜梨丛生芽生根率由0提升到66.70%,繁殖系数由第1代的2.13提升到第10代的4.20。(2)叶片在继代第3次时出现裂刻且随后裂刻程度逐代加深;在继代过程中,丛生芽叶面积和叶脉数显著降低,叶周长和叶形指数呈先下降后上升的变化趋势。(3)丛生芽叶片内源IAA含量在继代第6次时达到46.39 ng·g-1,且显著高于初代丛生芽;随着继代次数的增加,叶片内源ZR呈先上升后下降的变化趋势,内源GA3含量没有发生显著性变化,而内源ABA含量逐渐降低;叶片IAA/ABA和IAA/ZR的值随着继代次数的增加而增加。(4)丛生芽叶片ABA含量和IAA/ZR与其生根率分别呈显著负相关和显著正相关关系,叶片裂刻数和IAA/ABA与生根率均呈现极显著正相关关系,而叶脉数与生根率则呈现极显著负相关关系。研究认为,连续继代培养可显著提高杜梨丛生芽的生根能力,并且与丛生芽叶形和激素含量及其比值有密切的关系,该研究结果为难生根植物无性繁殖以及树木复幼提供了重要技术借鉴。  相似文献   

9.
为探究壳聚糖对增强玉米幼苗抗镉胁迫能力的生理生化机制,以玉米(Zea mays L.)杂交种‘郑单958’为试验材料,采用室内Hoagland水培法,探讨外施100mg·L~(-1)壳聚糖对镉胁迫(80mg·L~(-1))不同时间(0h、24h、48h、72h和96h)下玉米幼苗根系抗氧化酶活性和内源激素水平的影响。结果显示:(1)镉胁迫显著抑制玉米幼苗根系生长,并诱导根系活性氧产生、抗氧化酶活性增加、内源激素的平衡受到破坏。(2)镉胁迫下,外施壳聚糖处理96h后根系干重提高16.1%,根系的O-·2产生速率和H2O2含量分别降低9.1%和19.2%,SOD、POD和CAT活性分别提高32.5%、20.4%和21.3%,IAA、ZR和GA含量分别增加34.4%、40.4%和42.5%,ABA含量减少19.1%,IAA/ABA、ZR/ABA和GA/ABA分别提升66.1%、73.5%和76.0%。研究表明,壳聚糖能够调控镉胁迫下玉米幼苗根系内源激素的含量及平衡,减轻胁迫对抗氧化酶系统的破坏,增强其清除活性氧的能力,从而降低镉胁迫对根系的毒害,提高玉米幼苗对镉胁迫的抵抗能力,为玉米抗逆栽培提供了理论及试验依据。  相似文献   

10.
为探索黄花倒水莲春梢生理生化特性的差异以及不同内源激素的变化规律,该文对黄花倒水莲春梢的生长动态进行监测,采用间接酶联免疫吸附法(ELISA)测定脱落酸(ABA)、生长素(IAA)、赤霉素(GA)、乙烯(ETH)和玉米素核苷(ZR)五种内源激素含量的动态变化,并对两者间的相关性进行分析。结果表明:(1)黄花倒水莲春梢生长发育过程可分为快速增长期(0~12 d)、生长转折期(16~20 d)和缓慢增长期(24~32 d)三个阶段。(2)内源激素ABA、GA、ETH和ZR含量在缓慢增长期显著高于快速增长期和生长转折期,IAA含量各时期差异较小。(3)春梢长、底部叶长和叶宽在快速增长期与ABA、GA、ETH和ZR含量呈负相关,且与ZR含量具有一定显著性,与IAA含量呈正相关;生长转折期,各指标与GA、ETH和ZR含量呈正相关,与GA含量具有一定显著性,与ABA含量呈负相关;缓慢增长期,各指标与五种内源激素含量均呈正相关,与IAA和ZR含量具有一定显著性。该研究结果为生产上利用外源激素调控黄花倒水莲春梢抽出以及生长提供了理论基础。  相似文献   

11.
小麦(Triticum aestivum L.)与玉米(Zea m aysL.)及鸭茅状摩擦禾(Tripsacum dactyloides L.)杂交后,由于胚乳组织不能正常形成,从而导致胚很难在母本小麦植株上发育至成熟。通过对杂交后的胚不同发育时期的子房内源IAA、玉米素(Z)及玉米素核苷(ZR)和ABA 的ELISA 分析,发现远缘杂交后的胚发育过程中子房内源IAA 的浓度明显低于正常发育的子房;而且Z+ ZR 和ABA 的含量的动态变化也和正常自交发育的子房不同,然而IAA/(Z+ ZR)和IAA/ABA 的比率变化在远缘杂交与正常自交的子房之间有某些相似趋势。IAA、Z+ ZR和ABA 与这3 种激素之和的比率变化在上述两类子房中也有相似之处。可以推断,植物胚胎的正常发育需要多种激素的动态平衡及某一时期某一激素的主导性作用。远缘杂交后的胚之所以不能够顺利发育至成熟,除了缺乏胚乳组织的营养保护之外,或许也和其内源激素的水平及多激素平衡体系偏离常规动态变化有关联  相似文献   

12.
The embryos derived from intergeneric crosses between Triticum aestivum L. (2n = 6x= 42) and Zea mays L. (2n= 20), Tripsacum dactyloides L. (2n= 4x= 72), as results of the elimination of paternal chromosome and having no endosperm as normal, are difficult to develop completely in vivo. Hormonal analyses in such intergeneric hybridized ovaries have been carried out including indole-3-acetic acid (IAA), zeatin (Z) and zeatin riboside (ZR), and abscisic acid (ABA) during different developmental stages of embryo. The results indicated that IAA level in hybridized ovaries was much lower than that in self-pollinated ovaries. Moreover, the active changes of Z+ZR and ABA contents were also different between the above two types of ovary. Nevertheless, the ratio changes of IAA/(Z+ZR) and IAA/ABA were similar between the two types of ovary, the same was true in the ratio changs of IAA, Z+ZR, and ABA to the sum of these three types of endogenous hormones. But the three types of ratios in hybridized ovaries were varied far more greater than those in self-pollinated ones. It suggested the importance to maintain dynamic equilibrium of multiple hormones and sequential regulation during the embryo development. That the distantly hybridized embryos failed to mature successfully was probably associated with a deviation from the normal changes of endogenous hormones levels and balance system of multiple hormones in addition to the lack of endosperm nourishment.  相似文献   

13.
ABSTRACT

Pinus massoniana is a recalcitrant tree species for rooting in vitro. We rejuvenated 26-year-old P. massoniana trees by successive grafting. Rooting rates of rejuvenated shoots were > 83.1% after rooting induction. We compared endogenous levels of indole-3-acetic acid (IAA), abscisic acid (ABA), gibberellins (GAs) and zeatin-riboside (ZR), and the rhizogenesis ability of axillary shoots of mature and rejuvenated materials in vitro, i.e., somaplants and grafts. Enhancement of the rooting ability of mature materials in vitro following somatic embryogenesis or repeated grafting onto juvenile rootstocks was accompanied by increased IAA and GAs levels, and by decreased ABA levels in scions used as starting material for micropropagation in vitro. Successive subcultures did not influence the rooting ability of shoots from untreated mature material. Rooting ability of shoots in vitro, however, gradually increased with subculture frequency during repeated subculturing in grafting materials. The IAA:ABA ratio in shoots in vitro after grafting five times, and consequently capable of root organogenesis, was higher than in shoots of untreated mature material incapable of root organogenesis in vitro. A high IAA:ABA ratio was detected in scions of somaplants that were capable of rooting in vitro despite subculture times. We found that the endogenous IAA:ABA ratio is a reliable marker for the recovery of root organogenesis in vitro after rejuvenating treatments for mature P. massoniana trees.  相似文献   

14.
Indole acetic acid (IAA). abscisic acid (ABA), and zeatin plus zeatin riboside (Z + ZR) were determined daily in cuttings of Lycopersicon esculentum Mill. cv. Craigella (C) and the Craigella Lateral Suppressor (CLS) mutant during the first 5 days of the root-forming process. A solid-phase enzyme immunoassay using specific anti-hormone antibodies was used following a one-step HPLC purification procedure. The hormone measurements were made in cuttings divided into 4 parts. The main variations occurred in the terminal bud and in the basal part of the hypocotyl of the two tomato varieties, i.e. significant IAA and ABA increases during the first 2 days followed by a more or less fast return to the initial values at day 4 or 5. This is probably due to the ablation of the root system. Z + ZR levels dramatically decreased in the basal part of the Craigella hypocotyl 1 day after cutting. Contrary to CLS, C hypocotyls recovered the initial high levels when roots regenerated (day 5). This is probably linked to the greater ability of roots to produce cytokinins in C plants than in CLS ones. The first step of root formation (reactivation of the pericyclic cells and formation of root primordia) corresponded to a high IAA/Z + ZR ratio in the root-forming tissue, whereas the second step (elongation of young roots) was characterized by a low ratio with low levels of hormones.  相似文献   

15.
Based on the morphological results of the flower bud differentiation in Ficus carica L.‘Brunswick', we quantified certain plant hormones, including ZR, ABA, GA1+3 and IAA, in the developing flower bud at the differentiation stageon the seventh or the eighth node of the new shoots, and found that at the stage of floral receptacle and floscule formation, the buds contained high level of ZR and ABA, and low level of GA1+3 and IAA, leading to a high ratio of ABA to IAA, ABA to GA1+3 ZR to GA1+3 , and ZR to IAA, respectively.  相似文献   

16.
用云南山楂(Crataegus scabrifolia(Franch.)Rehd.)成年树茎尖和实生芽两种不同发育阶段的材料为外殖体,诱导它们休眠芽萌动,丛生芽条并诱导芽条生根。实验结果如下:1.以成年态的云南山楂侧芽为外植体,培养在附加IAA 0.1—0.5mg/l+6-BA 1-2mg/l的MS培养基上可诱导芽的萌发;将芽继代培养在附加0.5—1mg/l 6-BA的SH或MS培养基上,40天后芽数增殖4—6倍;将芽条截下置于1/2MS培养基上,附加不同浓度的IAA或IBA,可得到50—80%的生根率。2.以实生芽为外殖体,在相同条件下,则20天后芽数增殖便可获4—6倍;98%以上生根。结果表明:云南山楂的幼年态要比成年态易脱分化和再分化。  相似文献   

17.
分析了荷兰芹胚性愈伤组织发生的条件, 对Co2+作用下胚状体形成与培养物内源IAA和ABA 的关系做了研究。结果表明, 荷兰芹下胚轴胚性发生能力随其相对位置而异, 自下而上逐渐提高。提高2, 4-D 浓度有利于胚性愈伤组织的诱导, 水解酪蛋白对胚性能力的表达没有显著影响。在胚状体发生过程中, 添加Co2+显著降低培养物内源IAA 和ABA 水平, 并提高胚状体诱导率。其中对照组IAA 有一个峰值, ABA 有两个峰值;实验组ABA 变化趋势与对照组相似, 而IAA 则始终没有峰值出现。Co2+对IAA 和ABA 的抑制机制可能有所不同。  相似文献   

18.
在水培条件下研究了生长素和细胞分裂素对两种基因型豌豆根系铁还原力的影响。结果表明,去顶,顶端涂抹NAA和茎基部涂抹CME都不影响豌豆根系铁还原力。茎尖,茎基部和根系的IAA、Z/ZR含量与根系铁还原力之间没有明显的相关性。  相似文献   

19.
 研究强旱生小灌木绵刺(Potaninia mongolica)劈裂生长过程中内源激素含量的变化。结果表明:1)4种生长状态中,完全劈裂的植株的叶片及劈裂发生部位ABA的含量比其它3种状态的都低,而其根中ABA的含量最大。同其它几种激素相比,ABA在绵刺体内的含量最大;2)劈裂生长发生之前,在劈裂发生部位IAA积累量大,尤其是在即将劈裂的过渡植株的劈裂发生部位IAA含量最大;3)劈裂生长发生过程中GA3含量的变化与IAA的变化有同步性;4)ZR的含量也是在劈裂生长发生前的绵刺的劈裂发生部位中较大,随着劈裂生长的发生,植物从根部向叶片及劈裂发生部位运输的ZR有逐渐降低的趋势,而在劈裂生长发生的过渡阶段,ZR从根部向劈裂发生部位运输的比例较大,分别为19.44%和20%;5)IAA、GA3、ZR 三者协调促进劈裂发生部位细胞的生长和分裂,而ABA的积累对绵刺适应干旱的环境条件起到了一定的调节作用。  相似文献   

20.
The effects of the antioxidant Ambiol and 2-chlorethylphosphonic acid (2-CEPA) on individual concentrations and concentration ratios of phytohormones, photosynthesis and photophosphorylation rates, sucrose and starch content in tubers, and plant productivity were studied in potato (Solanum tuberosum L). Ambiol increased the ratio of indoleacetic acid (IAA) to abscisic acid (ABA), IAA/ABA, and that of zeatin (Z) and zeatin riboside (ZR) to ABA, (Z + ZR)/ABA. These effects were underlain by an increase in the content of auxins and cytokinins and a decrease in ABA. Unlike Ambiol, 2-CEPA increased the level of ABA, the effect being the most pronounced in the tubers. Ambiol increased the rates of photosynthesis and noncyclic photophosphorylation in chloroplasts isolated from potato leaves. The relation of this phenomenon to auxin and cytokinin accumulation, Ambiol- and 2-CEPA-induced changes in the hormonal balance of potato tubers, carbon metabolism, and plant productivity is discussed.  相似文献   

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