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1.
离体发育和萌发中花生种子不同部份内源ABA含量的变化   总被引:2,自引:0,他引:2  
离体发育和萌发中花生种子不同部份的内源ABA含量变化存在明显的差异.种皮和子叶内存在ABA的C(40)生物合成途径,胚轴内恻为C(15)生物合成途径.种子内源ABA含量变化和种子活力有密切关系.  相似文献   

2.
在荔枝和龙眼种子发育过程中,内源ABA水平先是上升,至大约78~80DPA时出现高峰,之后两者ABA含量均不断下降。果实成熟时采收的种子,ABA含量比高峰时分别下降近6倍。另外,随着种子的发育,种子及其胚轴对外源ABA的敏感性(SABA)亦持续下降。10-4mol/LABA可以完全抑制90DPA前的荔枝和龙眼种子的萌发,但对成熟种子10-2mol/LABA亦不能抑制其萌发。龙眼种子离体胚轴的SABA高于荔枝。ABA含量与敏感性的这种变化可能是两种顽拗性种子成熟时萌动,进而不耐脱水贮藏的重要原因之一。  相似文献   

3.
在荔枝和龙眼种子发育过程中,内源ABA水平先是上升,至大约78-80DPA时出现高峰,之后两者ABA含量均不断下降。果实成熟时采收的种子,ABA含量比高峰时分别下降近6倍。另外,随着种子的发育,种子及其胚轴对外源ABA的敏感性亦持续下降,10^-4mol/LABA可以完全抑制90DPA前的荔枝和龙眼种子的萌发,但对成熟种子10^-2mol/LABA亦不能抑制萌发。龙眼种子离体胚轴的SABA高于荔枝  相似文献   

4.
用微注射法将IAA、GA3、KT引入开花后30d的大豆(GlycinemaxL.)完整植株种子的两片子叶之间,7d后取样,分别测定了种皮和子叶中的ABA含量、酸性转化酶和ATP酶活性,同时分析了子叶中的糖和蛋白质含量的变化。结果表明:10-6mol/LIAA和10-6mol/L的KT处理使种皮中的ABA水平升高,酸性转化酶活性提高,而ATP酶活性降低;相反,对照子叶中的ABA水平下降,酸性转化酶活性也下降,而ATP酶活性显著提高;10-6mol/LGA3的作用正相反,使种皮和子叶中的ABA水平均下降,酸性转化酶活性及子叶中的ATP酶活性也相应下降,但种皮中的ATP酶活性却上升;子叶中的糖和蛋白质含量的变化没有明确的规律。内源ABA含量的变化与转化酶和ATP酶活性变化呈现一定的相关关系,表明ABA参与了调节大豆种子中的同化物积累。对外源激素对大豆种子内源ABA水平的影响及其和同化物积累的关系进行了讨论。  相似文献   

5.
脱水敏感的黄皮种子在发育中的可溶性蛋白变化   总被引:3,自引:0,他引:3  
黄皮种子的子叶与胚轴,在发育前期蛋白质合成速率均高于后期。在发育过程中子叶的可溶性蛋白含量无明显变化,但在后期能新合成少数低分子量的热不稳定蛋白,可能是引起民种子萌发的水解酶类。胚轴中可溶性蛋白单位干重含量高于子叶,而其成分不随发育而变化。ABA可促进发育后期黄皮种了胚轴中20kD蛋白的合成,但不能改变种子的脱水敏感性。  相似文献   

6.
香椿的组织培养和玻璃苗的防止   总被引:2,自引:0,他引:2  
1植物名称香椿(Toonasinensis)。2材料类别(1)种子发芽3~5d后的下胚轴及带少许下胚轴的子叶;(2)当年生半木质化的腋芽茎段。3培养条件芽诱导及增殖培养,以MS为基本培养基,蔗糖30g·L~(-1),琼脂0.5%,附加激素(单位mg·L~(-1)):(1)6-BA0.2;(2)6-BA0.2、GA_32.0;(3)IAA0.1、6BA0.2;(4)ZT0.2、GA_32.0。诱导生根培养基为1/ZMS或仅含MS有机质(铁盐减半),附加1.0mg·L~(-1)IBA、15g·L~(-1)…  相似文献   

7.
研究花生(Arachishypogaea)种子萌发过程中胚轴多胺氧化酶(PAO)的活性变化及其与种子萌发的关系表明:胚轴中的PAO活性是在种子萌发过程中逐渐形成的,而黑暗条件更有利于该酶的活性形成;放线菌素D(10mg/L)、环己酰亚胺(10mg/L)处理对种子萌发的抑制率分别为26.3%和87.3%,对胚轴PAO活性的抑制率分别为41.1%和94.0%,显示胚轴中的PAO很可能参与花生种子的萌发过程,且其mRNA在种子发育过程中已合成并贮存于种子中,萌发时PAO活性的出现主要是由于这些mRNA转译合成了PAO。  相似文献   

8.
莲种子的极端高温耐性与抗氧化酶活性的变化   总被引:2,自引:0,他引:2  
莲(Nelumbo nucifera Gaertn.)种子是一种长寿命和耐极端高温的种子.莲和玉米(Zeamays L.)种子的含水量分别为0.103和0.129gH20/g干重,随着在100℃处理时间的延长,种子的含水量、萌发率和由存活种子产生的幼苗鲜重逐渐降低.100℃处理15min时,玉米种子的萌发率为零;但莲种子被处理24h时,其萌发率仍然为13.5%.50%的玉米和莲种子被100℃处理致死的时间(T50)分别为6min和14.5h.随着100℃处理时间的延长,莲胚轴的相对电解质渗漏明显增加,总叶绿素含量显著下降,当在100℃处理时间短于12h时,莲下胚轴的亚细胞结构保持完整;当处理时间长于12h时,细胞逐渐发生质壁分离、内质网变得不清晰、核和核仁降解、大多数线粒体膨胀、脂质颗粒在细胞边界积累,最后细胞器和质膜降解.此外,莲胚轴和子叶的丙二醛(MDA)含量在100℃处理的0~12h内下降,然后增加:玉米胚和胚乳的MDA含量在100℃处理的5~10min内增加,然后有所下降.莲胚轴和子叶的超氧物歧化酶(SOD)、谷胱甘肽还原酶(GR)和胚轴的过氧化氢酶(CAT)活性在100℃处理初期增加,然后下降;而莲胚轴和子叶的抗坏血酸过氧化物酶(APX)、脱氢抗坏血酸还原酶(DHAR)和子叶的CAT活性随100℃处理时间的延长而逐渐下降.玉米胚和胚乳中的SOD,DHAR以及胚的GR活性在100℃处理初期增加,然后下降;玉米胚和胚乳中的APX,CAT和胚乳的GR活性随100℃处理时间的延长迅速下降,与种子萌发率下降的趋势相同,莲胚轴和子叶的SOD,APX,CAT,GR和DHAR活性下降缓慢,而在玉米胚和胚乳中这些酶的活性则迅速降低。  相似文献   

9.
脱落酸(Abscisicacid,ABA)抑制花生种子萌发的作用与核酸和蛋白质合成抑制剂的作用不同.ABA(100μmol/L)在萌发零时施用,明显抑制肽链内切酶活性和同工酶表现以及花生球蛋白降解,萌发48h施用ABA(100μmol/L)只降低肽链内切酶活性.ABA的抑制作用不依赖于核酸和蛋白质合成.核酸合成抑制剂(3'-脱氧腺苷,放线菌素D,5-氟尿嘧啶)和蛋白质合成抑制剂(亚胺环己酮)只能部分降低肽链内切酶活性,对肽链内切酶同工酶表现和花生球蛋白降解无明显影响.实验结果表明花生子叶肽链内酶不是在种子萌发过程中重新(denovo)合成,文中讨论了肽链内切酶活性调节和花生贮藏蛋白降解的起始模式.  相似文献   

10.
花生胚发育过程中,子叶和胚轴中都出现BAPAase活性,花生种子明发时,子叶和胚轴中的BAPAase活性迅速上升,子叶中无新的BAPAase合成,胚轴中能重新合成BAPAase。ABA抑制子叶和胚轴中BAPAase的活性,抑制胚轴中BAPAase活性所需的外源ABA浓度更高,Act=D和CHM不能逆ABA对BAPAase活性的抑制作用。  相似文献   

11.
During the development of peanut (Arachis hypogaea L. ) seed, the endogenous ABA content increased steadily'in hypocotyl, increased to a peak at 40 d after pegging with a drastic decline afterwards in testa; and in cotyledon, increased to a peak at 60 d after pegging but with a slight fall afterwards. There seemed to be a close relationship between the increose of vigor index and net loss of endogenous ABA content in the peanut seed germinating in vitro. Osmoticum (mannitol) promoted the endogenous ABA in the cotyledon and hypocotyl. and Fluridone inhibited that in the cotyledon. There were two different paths of the endogenous ABA synthesis in peanut seed, C40 in the cotyledon and C15 in the hypocotyl. When peanut seeds were put in the conditions of precocious maturation or germination tine endogenous ABA content fell down. Result from this experiment concluded that the hypocotyls played an important role in the transition from development to germination of. peanut seed.  相似文献   

12.
花生胚发育过程中,子叶和胚轴中都出现BAPAase活性。花生种子萌发时,子叶和胚轴中的BAPAase活性迅速上升,子叶中无新的BAPAase合成,胚轴中能重新合成BAPAase。ABA抑制了子叶和胚轴中BAPAase的活性,抑制胚轴中BAPAase活性所需的外源ABA浓度更高,Act-D和CHM不能逆转ABA对BAPAase活性的抑制作用。  相似文献   

13.
在无外源激素培养基上花生胚能继续发育.渗调物质如甘露醇可抑制胚早萌,维持胚性发育,促进贮藏蛋白质合成和累积.渗调物质对胚离体发育的调控与其提高胚内源ABA含量有关.  相似文献   

14.
Berry T  Bewley JD 《Plant physiology》1992,100(2):951-957
During tomato seed development the endogenous abscisic acid (ABA) concentration peaks at about 50 d after pollination (DAP) and then declines at later stages (60-70 DAP) of maturation. The ABA concentration in the sheath tissue immediately surrounding the seed increases with time of development, whereas that of the locule declines. The water contents of the seed and fruit tissues are similar during early development (20-30 DAP), but decline in the seed tissues between 30 and 40 DAP. The water potential and the osmotic potential of the embryo are lower than that of the locular tissue after 35 DAP also. Seeds removed from the fruit at 30, 35, and 60 DAP and placed ex situ on 35 and 60 DAP sheath and locular tissue are prevented from germinating. Development of 30 DAP seeds is maintained or promoted by the ex situ fruit tissue with which they are in contact. Their germination is inhibited until subsequent transfer to water, and germination is normal, i.e. by radicle protrusion, and viable seedlings are produced, compared with 30 DAP seeds transferred directly to water; more of these seeds germinate, but by hypocotyl extension, and seedling viability is very poor. Isolated seeds at 35 and 60 DAP re-placed in contact with fruit tissues only germinate when transferred to water after 7 d. At 30 DAP, isolated seeds are insensitive to ABA at physiological concentrations in that they germinate as if on water, albeit by hypocotyl extension. At higher concentrations germination occurs by radicle protrusion. Osmoticum prevents germination, but there is some recovery upon subsequent transfer to water. Seeds at 35 DAP are very sensitive to ABA and exhibit little or no germination, even upon transfer to water. The response of the isolated seeds to osmoticum more closely approximates that to incubation on the ex situ fruit tissues than does their response to ABA. This is also the case for isolated 60 DAP seeds, whose germination is not prevented by ABA, but only by the osmoticum; these seeds are inhibited when in contact with ex situ fruit tissues also. It is proposed that the osmotic environment within the tissues of the tomato fruit plays a greater role than endogenous ABA in preventing precocious germination of the developing seeds.  相似文献   

15.
离休花生胚发育过程中,渗透调节(简称渗调)物质提高了胚内源ABA含量,促进了贮藏蛋白质花生球蛋白和伴花生球蛋白Ⅱ两个组分的合成,诱导和促进LEA蛋白的合成,内源ABA合成抑制剂fluridone抑制了渗调物质的作用。  相似文献   

16.
赤霉素与脱落酸对番茄种子萌发中细胞周期的调控   总被引:11,自引:0,他引:11  
利用细胞流检仪检测番茄(Lycopersicon esculentum Mill.) GA-缺陷型、ABA-缺陷型和相应的正常品种(野生型)成熟种子胚根尖细胞倍性水平时发现:GA-缺陷型和野生型种子绝大多数细胞DNA 水平为2C,而ABA-缺陷型种子则含有较多的4C细胞。在标准发芽条件下,ABA-缺陷型和野生型种子浸种1 d 后胚根尖细胞DNA 开始复制,随后胚根突破种皮而发芽。然而GA-缺陷型种子除非加入外源GA,否则既不发生细胞DNA 复制,也不发芽。这说明内源GA 是启动番茄种子胚根尖细胞DNA 复制的关键因素,同时也说明番茄根尖细胞DNA 复制是种子发芽的必要条件。实验证明:ABA 不抑制细胞DNA 合成,但阻止G2 细胞进入到M 期。外源ABA处理野生型种子与渗控处理结果相似,可以大幅度提高胚根尖4C/2C细胞的比例,但抑制种子的最终发芽  相似文献   

17.
Measured by GC—MS2—SIR3, endogenous ABA4 in embryonicaxes of seeds of Malus pumila L. cv. Golden Delicious decreased8-fold and cotyledon ABA by only 60%, during 10–50 d ofstratification at 5 ?C, after ABA leaching during an initial24 h soaking. During stratification, the percentage germinationof embryos transferred to 17?C showed a significant linear dependenceon loge of ABA levels in the axes at transfer. Between 50 and70 d, ABA levels increased markedly in axes and testa both ofstratified seeds and seeds allowed to re-dry at 17 ?C afterinitial soaking. The ability of fully stratified axes with elevatedendogenous ABA to germinate indicated that stratification haddecreased their ABA sensitivity. Changes in cotyledon ABA couldnot account for the promotory effect of cotyledons on germinationduring the first 30 d of stratification. Loss of testa inhibitionof germination during stratification was not linked with changesin testa ABA. Stratification markedly increased the sequestrationin the axes of exogenous ABA supplied via the cotyledons. Changesboth in axis ABA levels and sensitivity were thus correlatedwith dormancy release, but subject to modifying control by thecotyledons and testa not involving ABA. Rehydration of driedseeds affected axis ABA later during storage via mechanismsunconnected with dormancy. Key words: ABA, seed dormancy, stratification  相似文献   

18.
ABA对红锥、苦槠种子发育和萌发的效应研究   总被引:4,自引:1,他引:3  
研究采用酶联免疫分析法(ELISA)提取和测定红锥和苦槠发育过程中果实内ABA含量,并用不同浓度ABA喂养,测定果实不同发育期对外源ABA的敏感性。用放射性同位素法测定ABA对贮藏蛋白质的积累作用,结果表明:随着红锥和苦槠种子发育过程内源ABA含量逐渐上升,达到高峰的时间分别为11月5日和10月5日,随后ABA含量均逐渐下降。成熟采收时果实内ABA含量比高时峰小8-9倍,随着果实的发育种子对外加ABA的敏感性逐渐变小,外源ABA浓度10^-4mol/L可以完全抑制11月25日(红锥)笔10月15日(苦槠)前种子发芽,但对成熟的种子10^-2mol/L ABA亦不能抑制发芽。ABA对成熟前期胚贮藏蛋白质合成无影响,但能促进成熟后中后期胚的贮藏蛋白质的积累作用,ABA维持红锥和苦槠贮藏蛋白质全盛和积累作用表现在转录水平上。  相似文献   

19.
细叶楠(Phoebe hui Cheng ex Yang)是我国特有的珍贵树种,种子具有生理休眠特性。本文以细叶楠种子为实验材料,研究不同低温层积处理时间(0、20、40、60 d)对细叶楠种子发芽率、营养物质(淀粉、可溶性糖、可溶性蛋白)、过氧化物酶(POD)以及内源激素脱落酸(ABA)、赤霉素(GA3)、生长素(IAA)、玉米素核苷(ZR)的影响,分析细叶楠种子萌发与其生理指标的相关性。结果显示:(1)低温层积可以有效打破细叶楠种子的休眠,且处理60 d效果最佳。(2)在低温层积过程,细叶楠种子萌发时间缩短,发芽率提高;种子内淀粉含量降低,可溶性糖和可溶性蛋白含量升高;POD活性上升;ABA含量下降,GA3、IAA含量增加,而ZR含量先上升后下降。(3)细叶楠种子休眠的解除与萌发与其体内营养物质含量、POD活性以及内源激素含量的变化密切相关。  相似文献   

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