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1.
外来入侵植物三叶鬼针草种子萌发与贮藏特性研究   总被引:12,自引:0,他引:12  
研究了光照和温度对外来入侵植物三叶鬼针草(Bidens pilosa L.)种子萌发的影响及种子在不同温度下贮藏后的发芽力变化。结果表明,光照和变温不是三叶鬼针草种子萌发的必要条件,在15~30℃恒温条件下萌发率均达到80%以上,35℃恒温显著抑制其萌发且发芽的种子不能正常发育;零下低温(-10℃)和零上低温(4℃)贮藏6个月的三叶鬼针草种子萌发率(分别为95%和94.7%)与贮藏前的萌发率(97.7%)相比无显著差异,而在室温下贮藏6个月的种子,随着贮藏时间的增加萌发率逐渐下降,6个月后不仅萌发率急剧下降到16%、萌发时间延长至10d,而且发芽的种子亦不能正常发育。  相似文献   

2.
在不同温度、不同贮藏时间和方法下,对来源于印度尼西亚的假酸浆种子发芽特性进行研究。结果表明:不同温度对假酸浆种子萌发的影响差异极显著,在15/25℃变温条件下种子发芽率最高,为84.3%,发芽快且整齐;假酸浆种子采收后立即播种其发芽率非常低,室温下贮藏6~9个月时在25℃恒温或15/25℃变温条件下均有较高发芽率,说明假酸浆种子有休眠性,通过延长贮藏时间能打破休眠,促进种子发芽;但室温贮藏15个月后,种子活力下降非常明显。低温冷藏在一定条件下能提高假酸浆种子萌发能力,能延长种子寿命。  相似文献   

3.
青阳参种子的萌发   总被引:1,自引:0,他引:1  
青阳参(Cynanchum otophyllum)种子在11月成熟时有休眠习性。收获后将其种子种植在自然温室内,到第二年的春天种子才会萌发,且大多数种子在3月28至4月4日间萌发,这期间的日平均最高和最低温度分别为19.0℃和9.9℃。层积能有效地打破青阳参种子的休眠,休眠种子通过大约1周的层积便能萌发。种子在有光的条件下层积1周后转移到25/15℃的黑暗条件下萌发率可达到75.4%。青阳参种子不论在有光的条件下还是在黑暗环境中层积2~3周后转入30/20和25/15℃进行变温处理,其萌发率最低能达到66.4%,而转入20/10℃变温处理其萌发率最多只能达到20.1%,但若层积6周,即便在20/10℃变温处理的情况下其萌发率也可以达到65.3%以上。  相似文献   

4.
经浓硫酸处理解除种壳机械束缚力,和250ppmGA浸种及2~4℃冷湿处理打破种子生理休眠后的5种野生枸子,其有胚的种子均100%发芽,萌发整齐、迅速,3~7d内即完成;包括种子预处理时间在内,不超过4个月就可获得幼苗。解除休眠的种子,其萌发温度范围很宽,在3~25℃内均可萌发。  相似文献   

5.
以青藏高原野豌豆属窄叶野碗豆(Vicia angustifolia)种子为材料,就其休眠类型、发芽对温度与水分的响应以及休眠破除方法进行了研究。结果显示:(1)窄叶野碗豆新鲜种子具有复合休眠特性,而贮藏种子仅具有物理休眠特性。(2)与贮藏种子相比,新鲜种子的发芽温度范围变窄,高温显著抑制其种子的发芽,在25℃条件下新鲜种子的发芽率仅为4%,而贮藏种子可达90%以上。(3)新鲜种子发芽对水分的要求较高,在-0.4 MPa以及10℃、15℃、20℃条件下,新鲜种子的发芽率分别为85%、55%、8%,而贮藏种子的发芽率分别为95%、91%、89%。(4)氟啶酮(FL)和赤霉素(GA3)对贮藏种子的发芽与发芽速率均无明显作用,但可显著提高新鲜种子的发芽速率;与贮藏种子相比,新鲜种子的发芽对脱落酸(ABA)的抑制作用更为敏感;除高浓度多效唑(PA)显著抑制新鲜种子的发芽外,其他浓度的PA对新鲜种子与贮藏种子均无显著影响。研究表明,脱落酸可能是引致窄叶野豌豆种子生理休眠的主要原因;硫酸及切破种皮处理均可破除贮藏种的物理休眠,其中硫酸处理20min效果最好。  相似文献   

6.
漆树种子休眠与萌发的研究   总被引:5,自引:0,他引:5  
漆树种子既有强迫性休眠,也存在胚休眠。解除休眠,前者可用浓硫酸处理,后者需经2~5℃湿润条件20~30天。处理后,种子最适发芽温度为15~20℃。变温发芽效果更为显著。添加500ppm GA_3能获最佳发芽效果(96.7%)。冷湿处理过程中,脱氢酶活性显著增强。  相似文献   

7.
文章对竹柏( Podocarpus nagi)种子的脱水耐性和贮藏特性进行了研究,结果表明:竹柏种子成熟时初始含水量约为(35±0?7)%,种子对脱水敏感,其最低安全含水量约为(16?86±0?73)%,具有顽拗性种子的典型特征;湿藏和半干藏都可以作为短期保存竹柏种子的方法,且以4℃保存优于15℃保存,但不管种子含水量如何,零下低温保存对竹柏种子都是致命的;半干藏法保存实验中,未进行脱水处理的种子(对照)在4℃贮藏6个月,种子萌发率没有发生明显下降,但贮藏期延长到9个月时,临界含水量的种子萌发力保存最高;不管贮藏介质的含水量高低,也无论贮藏在4℃还是15℃,湿藏种子在9个月的贮藏期内萌发率均没有明显的降低,但当贮藏到12个月时,15℃湿藏种子的萌发率显著高于4℃贮藏的种子,但15℃湿藏的种子在贮藏到3个月时即发现种子在贮藏期间萌发,且随着贮藏介质含水量的升高和贮藏期的延长,萌发的种子增多;竹柏的离体胚经过2h硅胶快速脱水至含水量7%后再冷冻即可获得90%以上的融后存活率,且超低温保存1年的离体胚解冻后,与只保存1周的存活率没有明显差异,表明超低温长期保存竹柏种子是可行的。本研究可以为进一步探究顽拗性种子的短期贮藏和长期保存提供理论基础和基础资料。  相似文献   

8.
生态因子对碱茅种子萌发期耐盐性影响的数量分析   总被引:39,自引:2,他引:37       下载免费PDF全文
 以种子在盐溶液中的相对发芽率作为种子萌发期耐盐性指标,定量分析了种子生产条件与萌发期温度,盐分(类型与浓度)等生态因子对碱茅(Puccinellia tenuiflora)种子萌发期耐盐性的影响,生产条件选取了3个生产年份或贮藏时间(年)。用3个不同的种批表示,处理溶液有不同浓度(或渗透势)的NaCl,CaCl2与Na2SO4 3种盐溶液和渗透胁迫剂PEG(6000)组成,处理温度有两个变温10(16h)~25℃(8h)与15(16h)~25℃(8h)条件组成。随溶液渗透势降低,种子相对发芽率线性下降,线性回归关系式中的回归系数与回归截距分别反映溶液的渗透与离子效应的相对大小。本试验条件下、碱茅种子生产条件对种子活性(以水中的发芽率表示)有显著影响,但对耐盐(NaCl)性无显著影响。溶液类型与温度条件主要通过改变溶液的离子效应影响种子耐盐性,对渗透效应无显著影,两种变温条件下,4种溶液对碱茅种子的渗透效应是溶液渗透势每降低1.0Mpa,相对发芽率降低52.31%。10~25℃变温条件下,与PEG溶液相比,3种盐溶液的离子效应是使碱茅种子相对发芽率分别增加14.0%。15.1%与21.6%,表现为对种子萌发的促进效应;15~25℃变温条件下,NaCl溶液的离子效应比10~25℃下约低17.0%。  相似文献   

9.
假槟榔种子脱水耐性的发育变化   总被引:7,自引:2,他引:5  
对假槟榔(Archontophoenix alexandrae)种子和胚发育过程中脱水耐性的变化、不同脱水速率对脱水耐性的影响及种子的萌发和贮藏特性进行了研究。种子含水量在花后55~70d逐步降低,随后不再变化,并保持在较高水平(37%);花后90d的种子获得最大干重。花后60d后种子获得萌发能力,花后70d达到最大值。在交替光照下(14h光照,10h黑暗,12μnmol m^-2s^-1),种子在15℃~40℃下均能萌发,其萌发的适宜温度范围为30℃~35℃;但光照对种子的萌发有较大的抑制作用。种子和胚在花后55~90d,脱水耐性逐渐增强;花后90d种子和胚的脱水耐性最强,此时种子和胚的半致死含水量分别为0.18g/g和0.3g/g。脱水至相同含水量,快速脱水的种子的存活率明显高于慢速脱水。无论是否进行脱水处理,-18℃下贮藏1个月后,种子均丧失萌发能力;在4℃,10℃和15℃下,适度脱水能延长种子的贮藏寿命。假槟榔种子不耐脱水,不适合在低温、低含水量条件下长期贮藏,属顽拗性种子。  相似文献   

10.
三种外源激素和萌发温度对花楸树种子萌发影响的研究结果表明,25℃(16h光/8h暗,10d)-5℃(暗110d)变温可极显著提高种子发芽率和种子发芽势,但极显著延迟发芽初始时间。200mg·L^-16-BA溶液中吸胀2d后经历25℃·5℃变温可使种子发芽初始时间最短(33d),发芽率(62.25%)和发芽势(57.88%)最高。GA3或ABA与温度的结合处理对种子萌发的促进作用小于6-BA与温度的综合处理。  相似文献   

11.
研究了西康玉兰(Magnolia wilsonii)种胚的形态大小,温度、层积、硝酸钾、浸种处理和GA_3对种子休眠及萌发的影响.通过将种子脱水至不同含水量和在两种温度(4℃和一20℃)下贮藏100 d后测其生活力,分析各处理对西康玉兰种子活力的影响.结果表明:西康玉兰种子胚尚未分化完全,需经过低温层积完成生理后熟;低温层积和GA3可打破种子休眠.种子最适萌发温度为25/20℃.由此推测,西康玉兰种子具有形态生理休眠特性.西康玉兰种子当含水量降至5.39%,存活率为53.50%.不同含水量的种子贮藏在-20℃条件下,100 d后种子全部死亡;但在4℃下含水量为10.31%的种子存活力高达76%.因此,西康玉兰种子极可能属于中间性种子,其适宜贮藏环境为4℃下的干藏或湿藏.  相似文献   

12.
In this paper, we measured the embryo morphology and size of Magnolia wilsonii seeds. And the effects of temperature, stratification, KNO3 and soaking on seed dormancy and germination were studied. Seeds were desiccated to different moisture content, and then stored at 4℃ and -20℃ for 100 d. The effects of desiccation and storage temperature on seed viability of M. wilsonii were analyzed. The results showed that the underdeveloped embryos of Mwilsonii seeds needed cold stratification to achieve physiological afterripening. The favorable temperature for germination of Mwilsonii seeds was 25/20℃. Cold stratification and GA3 could effectively overcome dormancy of Mwilsonii seeds. Therefore, Mwilsonii seeds have morphophysiological dormancy. About 5350% of seeds could survive in the moisture content of 539%. After 100 d storage at -20℃, all seeds in different moisture contents died. However, after 100 d storage at 4℃, 76% of seeds survived. Thus, Mwilsonii seeds exhibited intermediate seed storage behavior. The optimum storage environments was dry or moist storage at 4℃.  相似文献   

13.
光照和温度对滇丁香种子萌发的影响   总被引:5,自引:0,他引:5  
研究了不同光照和温度条件对滇丁香(Luculia pinciana)种子萌发的影响。结果表明,滇丁香种子是需光种子,有明显的光休眠现象;种子在光下萌发的最适温度范围为20~25℃,8~10d开始萌发,2~3周萌发完全,萌发率可达97%,温度的升高或降低均会降低种子萌发率。在15~30℃,用250mg/L GA3处理24h能代替光照解除光休眠。  相似文献   

14.
凹叶木(Magnoliasargentiana)是中国特有的观赏树木,种群的自然更新很差,须阐明其原因。研究发现,凹叶木兰种子的胚很小,无论是否被植物生长调节剂预处理,在冷层积(4℃)和暖层积(15℃)过程中,胚在种子内逐渐生长发育成熟,并能在多个温度下萌发,以变温30℃/20℃为最适宜。由此可见,凹叶木兰种子不能萌发的直接原因是形态休眠。此外,凹叶木兰种子较耐脱水,但干燥脱水至含水量为7.1%和5.3%时,种子的存活率分别是78.3%和40%。保存6个月后,含水量为9.4%或7.1%的种子在-20℃下全部失活,而在0和4℃下的种子,存活率无显著变化,充分证实凹叶木兰种子是中间性的。  相似文献   

15.
对采自贵州毕节地区的11种植物的种子萌发特性进行了初步研究,结果表明:①盐肤木、火棘、化香、云贵金丝桃与白栎种子在4周之内能够萌发;除云贵鹅耳枥胚坏死之外(萌发实验前后对种子进行解剖),其他5种植物的种子都未萌发,处于不同的休眠状态。②盐肤木、化香、云贵金丝桃的种子光照时的萌发率远高于黑暗时的萌发率,具有显著差异,尤其是云贵金丝桃,因此3种植物种子均属于喜光性种子;而火棘与白栎种子有无光照都可以萌发,而且萌发率没显著差异,因此属于光不敏感或光中性种子。③盐肤木、云贵金丝桃的种子在30℃较高温条件下萌发最好;白栎、火棘种子在15℃、20℃低温条件下萌发更好;化香种子萌发温度既不能低于20℃也不能高于25℃。④刺异叶花椒种子吸水率高达85%,胚包埋在胚乳之中非常微小、未分化,因此可以初步判定属于形态休眠或者形态生理休眠;而平枝荀子、西域旌节花、云南旌节花种子吸水率都在20%以上,胚长/种子长都超多1/2,并且胚已发育完全,应属于生理休眠;小果蔷薇种子吸水率约27%,胚长/种子长都达2/3,并且通过对种子的解剖发现胚还未发育,应属于形态生理休眠。  相似文献   

16.

Background and Aims

Seeds of annual halophytes such as Suaeda maritima experience fluctuating salinity, hydration, hypoxia and temperature during dormancy. Germination then occurs in one flush of 2–3 weeks after about 5 months of winter dormancy during which time the seeds can remain in saline, often waterlogged soil. The aim of this study was to investigate the effect of simulated natural conditions during dormancy on germination and to compare this with germination following the usual conditions of storing seeds dry. The effects of hydration, salinity, hypoxia and temperature regimes imposed during dormancy on germination were investigated. Also looked at were the effects of seed size on germination and the interaction between salinity during dormancy and salinity at the time of germination.

Methods

Various pre-treatments were imposed on samples of seeds that had been stored dry or wet for different periods of time during the 5 months of natural dormancy. Subsequent germination tests were carried out in conditions that simulated those found in the spring when germination occurs naturally. Various salinities were imposed at germination for a test of interaction between storage salinity and salinity at germination.

Key Results

A temperature of about 15 °C was needed for germination and large seeds germinated earlier and better than small seeds. Cold seawater pre-treatment was necessary for good germination; the longer the saline pre-treatment during the natural dormancy period the better the germination. There appeared to be no effect of any specific ion of the seawater pre-treatment on germination and severe hypoxia did not prevent good germination. A short period of freezing stimulated early germination in dry-stored seed. Storage in cold saline or equivalent osmotic medium appeared to inhibit germination during the natural dormancy period and predispose the seed to germinate when the temperature rose and the salinity fell. Seeds that were stored in cold wet conditions germinated better in saline conditions than those stored dry.

Conclusions

The conditions under which seeds of S. maritima are stored affect their subsequent germination. Under natural conditions seeds remain dormant in highly saline, anoxic mud and then germinate when the temperature rises above about 15 °C and the salinity is reduced.Key words: Suaeda maritima, germination, pre-treatment, salinity, temperature  相似文献   

17.
Seeds with a water‐impermeable seed coat and a physiologically dormant embryo are classified as having combinational dormancy. Seeds of Sicyos angulatus (burcucumber) have been clearly shown to have a water‐impermeable seed coat (physical dormancy [PY]). The primary aim of the present study was to confirm (or not) that physiological dormancy (PD) is also present in seeds of S. angulatus. The highest germination of scarified fresh (38%) and 3‐month dry‐stored (36%) seeds occurred at 35/20°C. The rate (speed) of germination was faster in scarified dry‐stored seeds than in scarified fresh seeds. Removal of the seed coat, but leaving the membrane surrounding the embryo intact, increased germination of both fresh and dry‐stored seeds to > 85% at 35/20°C. Germination (80–100%) of excised embryos (both seed coat and membrane removed) occurred at 15/6, 25/15 and 35/20°C and reached 95–100% after 4 days of incubation at 25/15 and 35/20°C. Dry storage (after‐ripening) caused an increase in the germination percentage of scarified and of decoated seeds at 25/15°C and in both germination percentage and rate of excised embryos at 15/6°C. Eight weeks of cold stratification resulted in a significant increase in the germination of scarified seeds at 25/15 and 35/20°C and of decoated seeds at 15/6 and 25/15°C. Based on the results of our study and on information reported in the literature, we conclude that seeds of S. angulatus not only have PY, but also non‐deep PD, that is, combinational dormancy (PY + PD).  相似文献   

18.
Studying seed dormancy and its consequent effect can provide important information for vegetation restoration and management. The present study investigated seed dormancy, seedling emergence and seed survival in the soil seed bank of Stipa bungeana, a grass species used in restoration of degraded land on the Loess Plateau in northwest China. Dormancy of fresh seeds was determined by incubation of seeds over a range of temperatures in both light and dark. Seed germination was evaluated after mechanical removal of palea and lemma (hulls), chemical scarification and dry storage. Fresh and one-year-stored seeds were sown in the field, and seedling emergence was monitored weekly for 8 weeks. Furthermore, seeds were buried at different soil depths, and then retrieved every 1 or 2 months to determine seed dormancy and seed viability in the laboratory. Fresh seeds (caryopses enclosed by palea and lemma) had non-deep physiological dormancy. Removal of palea and lemma, chemical scarification, dry storage (afterripening), gibberellin (GA3) and potassium nitrate (KNO3) significantly improved germination. Dormancy was completely released by removal of the hulls, but seeds on which hulls were put back to their original position germinated to only 46%. Pretreatment of seeds with a 30% NaOH solution for 60 min increased germination from 25% to 82%. Speed of seedling emergence from fresh seeds was significantly lower than that of seeds stored for 1 year. However, final percentage of seedling emergence did not differ significantly for seeds sown at depths of 0 and 1 cm. Most fresh seeds of S. bungeana buried in the field in early July either had germinated or lost viability by September. All seeds buried at a depth of 5 cm had lost viability after 5 months, whereas 12% and 4% seeds of those sown on the soil surface were viable after 5 and 12 months, respectively.  相似文献   

19.
种子的萌发特性是植物在长期进化过程中形成的一种适应环境变化的固有属性。对种子萌发特性的研究有助于我们理解物种的种群更新和种子育苗。本文旨在阐明我国重要资源植物苦槠(Castanopsis sclerophylla)的种子休眠类型和萌发特性。研究结果发现:①苦槠种子在其果实中占比非常高;②苦槠的果皮限制了种子对水分的吸收;③苦槠果皮阻碍了种子的萌发,除去果皮以后种子能够在较大温度范围内萌发;④除去果皮以后,苦槠种子在低温(15/5 ℃、20/10 ℃)下萌发困难,在25/15 ℃、30/20 ℃和35/25 ℃这3个温度梯度下均能迅速萌发。结果表明,苦槠的传播体(果实)具有物理休眠的特性。因此,壳斗科(Fagaceae)是具有物理休眠和脱水敏感性的一个新纪录科。结合壳斗科的系统发育位置,本研究支持物理休眠是一种较为进化的性状这一假说。  相似文献   

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