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1.
黄枝油杉为中亚热带喀斯特地区珍贵树种,该物种分布范围狭窄,野生种群幼苗数量少,严重限制了其自然更新。为探求该物种濒危的原因,同时为其保护和利用提供参考,该文对黄枝油杉的种实性状进行了测定,并研究了温度、光照、土壤含水量、基质、贮藏温度和时间、不同地理种源等因素对种子萌发的影响。结果表明:(1)黄枝油杉球果平均结种率为7.45%±6.54%,种子有较长种翅[(2.27±0.32)cm],种子平均长度为(1.55±0.15)cm(不含种翅),平均宽度为(0.62±0.05)cm,平均厚度为(0.46±0.04)cm,平均千粒重为(214.81±14.76)g,风干种子平均含水量为15.28%±1.66%。(2)黄枝油杉种子萌发的适宜温度为25 ℃,在20 ℃和30 ℃下萌发率显著降低(P<0.05); 种子萌发不需要光照,但周期性光照条件下的萌发率显著高于持续光照和持续黑暗条件(P<0.05); 种子在土壤含水量为10%~30%条件下均能萌发,且能耐一定程度的干旱; 适宜萌发基质为质地疏松、透气性好的泥炭土和珍珠岩; 种子不耐贮藏,采集后应及时播种; 3个不同地理种源中以桂林恭城县三江乡种群种子萌发率最高。黄枝油杉球果结种率较低,种子萌发对温度要求严格,且种子易失去活力,这可能与其濒危有很大关系。  相似文献   

2.
连香树(Cercidiphyllum japonicum)是第三纪孑遗植物, 存在严重的幼苗更新限制。为验证生活史早期(种子萌发)限制中国分布区北缘连香树种群幼苗更新, 并探讨其主要成因, 本研究在秦岭和太行山脉采集不同种源地的种子, 测定其形态性状、营养元素含量和质量、不同贮存时间的活力及不同温度条件下的萌发性状, 通过方差分析、相关分析等方法对不同种源地的种子性状进行分析。结果表明: 在中国分布区北缘, 其种子长度(P < 0.001)、萌发率(P < 0.001)、平均萌发时间(P < 0.001)、氮(P < 0.05)和磷含量(P < 0.001)在不同种源间存在显著差异; 而在区域尺度上(秦岭与太行山), 仅种子碳含量存在显著差异(P < 0.01)。天水种群的种子萌发率最高(21.77%), 平均萌发时间最长(11.12 d); 栾川的萌发率最低(1.38%), 平均萌发时间最短(3.47 d)。在25℃条件下, 济源种群的种子萌发率显著高于10℃、15℃和20℃条件下(P < 0.05), 而其他种源地的萌发率在不同温度条件下无显著差异。在4个温度条件下, 栾川种群种子的初始萌发时间无显著差异, 而其他4个种源地的初始萌发时间都随温度升高而缩短。相关分析结果表明, 种子萌发率与种子活力密切相关, 而种子活力与种子质量、种子的氮和磷含量显著相关。在中国分布区北缘, 连香树种子的自身属性(质量、氮和磷含量)通过影响种子活力间接影响萌发率; 且种子萌发对温度的响应主要表现在萌发时间上。本研究证实种子萌发是限制连香树种群幼苗更新的关键阶段, 主要原因如下: (1)连香树种子在9月成熟后, 10月的温度仍适宜种子萌发, 但较短生长期的幼苗在冬季低温下不能存活; (2)连香树种子萌发率低(14.4%); (3)第二年春天种子活力骤降。  相似文献   

3.
俄罗斯大果沙棘(Hippophae rhamnoides L.)种子萌发特性   总被引:1,自引:0,他引:1  
杨立学 《生态学报》2007,27(6):2215-2222
俄罗斯丘依斯克大果沙棘(Hippophae rhamnoides L.)为优良的沙棘引进种。经测定,俄罗斯大果沙棘丘依斯克种子的千粒重为17.75g,与其它沙棘属的种子相比,其千粒重较大,为其2倍左右。四唑(TTC,1.0%)染色测种子的生活力的结果表明:有生活力的种子占97.75%,说明俄罗斯大果沙棘种子饱满度好;染色结果与对比发芽实验的结果很接近,说明用四唑染色来测定俄罗斯大果沙棘种子的发芽能力是较准确的方法。在水、气适宜的条件下,分别研究了温度分别为15、20、25、30℃,光照强度分别为25%、50%、75%、100%的不同处理对丘依斯克种子萌发的影响,并采用胚根生长量和全株生物量对沙棘种子发芽效果进行了评价,提出了沙棘种子发芽的最适温度和光强。结果表明,在25℃条件下,种子萌发最早,发芽势高达33.0%±4.76%,发芽率高达95.5%±1.5%,且主根生长量和生物量最大,分别为(4.5±0.09)cm和(0.137±0.002)g;75%光强最适合沙棘种子萌发,种子萌发最早,发芽势高达61.5%±1.7%,发芽率高达86.0%±1.1%,且主根生长量和生物量最大,分别为(3.7±0.2)cm和(0.108±0.004)g。因此,在直播营造大果沙棘林时,应首选25℃的温度条件,同时,建议进行适度遮荫处理。  相似文献   

4.
濒危植物合柱金莲木种子萌发特性   总被引:4,自引:0,他引:4  
研究了合柱金莲木种子萌发的生物学特性,以了解该物种种群自然更新困难的原因和机制。结果表明:合柱金莲木种子萌发的适宜温度为25℃,萌发率为56.67%,在20℃和30℃条件下,萌发速度和萌发率均较低,且在30℃条件下,幼苗不能正常生长,萌发在15℃受到抑制。土壤含水量在20%~30%,种子正常萌发,随着土壤含水量的升高,萌发开始时间缩短,萌发速度加快。种子萌发需要光照,为需光种子。种子在河沙、粘质壤土、沙土3种不同的基质中萌发率并无显著差异,但在粘质壤土和沙土中生长的幼苗长势较好。不同地理种源的种子,其种子质量存在差异,融水种群种子萌发率高,幼苗长势好。合柱金莲木种子萌发速度慢,萌发不整齐,幼苗生长缓慢,使得其在种间竞争中处于不利地位,且种子萌发对温度的适应范围狭窄,再加上林下光照不足限制种子萌发,这些因素是导致该物种自然更新困难的重要原因。  相似文献   

5.
香果树为我国Ⅱ级野生保护植物,由于原生境中香果树种群的数量迅速减少,目前已濒临灭绝,种群亟待恢复。研究了武夷山不同海拔的香果树种群种子雨、种子库及其幼苗存活现状,目的是阐明不同海拔地区的香果树种群自然更新的动态过程,寻找其更新脆弱的环节及其影响因素,为香果树自然种群的恢复提供理论依据。以分布于不同海拔高度(819、980、1 140及1 301 m)的香果树母树为中心,在其周围(东、南、西、北四个方位)布设种子雨收集框和土壤种子库样方,连续观测种子雨和种子库的动态,并对不同地表覆盖物中种子萌发及幼苗数量进行观测和记录。结果表明,武夷山香果树种群种子雨持续时间近2个月,尤其是11月底至12月中旬为种子雨高峰期;随着海拔的上升,香果树种子总密度以及虫蛀种子密度均显著降低,但千粒重以及饱满种子密度则有所增加;香果树土壤种子库为瞬时种子库,其水平分布以母树南侧和西侧种子密度较大,母树北侧种子密度最小。香果树种子的垂直分布主要集中于枯落物和苔藓层;3月时香果树土壤种子库中存留的饱满种子仅占种子散布后1.80%,而1年实生苗存活率为6.18%,土壤种子库的损耗是其种群自然更新困难的主要原因;不同地表覆盖物对香果树幼苗的存活产生显著影响,枯落物及苔藓层的幼苗死亡率显著高于土壤表面。建议清理林内枯落物及苔藓,增加林内裸露土壤的面积,减小地上草本的盖度,以减少种子霉烂、虫蛀的几率,增加香果树实生苗胚根与土壤接触的几率以及改善光照条件,促进香果树自然更新。  相似文献   

6.
孑遗植物水杉种子萌发的生理生态特性研究   总被引:15,自引:0,他引:15  
从种子活力和抗氧化酶活性两个方面研究了温度和光照对孑遗植物水杉 (Metasequoiaglyptostroboides)种子萌发的生理生态特性的影响。实验结果表明 ,萌发温度对水杉种子的活力和抗氧化酶活性有较大影响 ,在 19-2 8℃范围内 ,种子的发芽率、发芽速率、活力指数、脱氢酶及超氧化物歧化酶 (SOD)、过氧化物酶 (POD)和过氧化氢酶 (CAT)等抗氧化酶活性均较高 ,其中在 2 4℃条件下最高 ;当温度低于 15℃或者高于 32℃时 ,种子活力很低 ;10℃条件下种子几乎不萌发。可以认为 ,水杉种子萌发的适宜温度范围为 19- 2 8℃ ,最适温度为 2 4℃。光照萌发试验表明 ,6 5 μmol·m-2 ·s-1(12h/d)光照对水杉种子的萌发有较大的抑制作用 ,黑暗条件更适于水杉种子的萌发。自然状态下水杉种子质量很差 ,空瘪率超过 90 % ,加之产地春季温度不适于水杉种子的萌发 ,这两者可能是限制水杉种群更新的重要因素。这也许是水杉种群中缺乏幼苗和幼树的原因之一。  相似文献   

7.
光照和温度对望天树种子萌发的影响   总被引:15,自引:0,他引:15  
闫兴富  曹敏 《植物学通报》2006,23(6):642-650
在实验室内人工气候箱控制的条件下,研究了我国重要珍稀濒危植物望天树(Shorea wantianshuea,龙脑香科(Dipterocarpaceae))种子萌发对持续光照、14小时光照/10小时黑暗周期性光照的反应;同时研究了望天树种子的萌发对不同温度的反应和低温贮藏对种子活力的影响。结果表明,不论是持续光照还是周期性光照都不能提高望天树种子的萌发率,相反,持续光照和周期性光照都不同程度降低了种子萌发率。光照能通过加速或延迟种子萌发的进程、或改变幼苗活力指数和萌发指数而影响种子萌发的质量;持续光照延迟种子萌发的进程,而周期性光照加快种子萌发的进程。30℃是种子的最适萌发温度,虽然15℃和5℃的相对低温对幼苗活力指数影响不大,但大大延迟了种子萌发进程,并提高萌发率。望天树种子不能耐受5℃低温贮藏,但具有在15℃下短期贮藏的潜力和一定程度的生理性休眠。  相似文献   

8.
何彦龙  王满堂  杜国桢 《生态学报》2007,27(8):3091-3098
以高寒草甸克隆植物黄帚橐吾为实验材料,通过遮荫网模拟植被遮荫,研究种子大小与萌发及幼苗生长能力的关系和幼苗对光照条件的反应。结果表明:(1)在自然光照下,黄帚橐吾种子大小对种子萌发的影响显著,大种子的萌发率高于小种子。遮荫生境下,大、小种子萌发率有所降低,但遮荫对小种子萌发的影响比大种子显著。小种子的萌发率下降了近1/8,而大种子的萌发率仅下降了1/11。(2)黄帚橐吾种子大小对幼苗生物量积累影响显著,大种子幼苗总生物量(TB)大于小种子幼苗的。但生物量的分配与播种时间相关,播种后60 d,在自然光照条件下,大种子幼苗对根生物量的分配大于小种子幼苗,而对叶生物量的分配则正好相反。在遮荫环境中,大、小种子幼苗普遍对根的生物量分配增加,大种子幼苗根冠比(R/S)大于小种子幼苗。(3)黄帚橐吾种子大小对幼苗的生长也有明显影响。在自然光照下,小种子幼苗的相对生长速率(RGR)较大于大种子幼苗,但叶面积比率(LAR)、叶面积干质量比(SLA)、叶干质量(LWR)差别不明显。在遮荫条件下,幼苗的LAR、SLA、LWR显著增加,但大、小种子幼苗间差异不显著,幼苗的RGR减小,小种子幼苗的减小趋势大于大种子幼苗。  相似文献   

9.
通过控制试验和荧光观测等手段对新牧I号杂花苜蓿Medicago varia Martyn‘XinmuNo.1'柱头可授期与最佳授粉时间、自花粉的堵塞效应、花粉萌发与花粉管生长状况等进行研究,结果显示:(1)苜蓿柱头可授期与单花寿命具高度的同步性,在单花开放的第1天授粉,传粉效率最高,结荚率达65.17%&#177;2.01%(P〈0.01),为柱头的最佳授粉时期;在单花开放后第4天授粉,其结荚率仍达34.25%&#177;6.73%。(2)自花授粉比异花授粉有着较低的花粉萌发率和花粉管生长速度;清除柱头自花粉后再授异花粉,其结荚率/花序和荚内种子粒数由原来的51.76%&#177;5.37%和2.11&#177;0.18粒,提高到72.31%&#177;6.24%(P〈0.01)和3.46&#177;0.25粒(P〈0.01),自花粉对柱头的堵塞效应非常明显。(3)在繁育系统中,苜蓿采取了雌雄异熟和自交不亲和两套机制来避免自交,但是由于其独特的花结构,即使雄蕊先熟,在保证苜蓿异交机制中也没有起到有效的作用,而其典型的自交不亲和系统,虽然保证了苜蓿较低的自交率,却无法避免自花粉的生殖干扰。  相似文献   

10.
碟果虫实种子萌发对策及生态适应性   总被引:3,自引:0,他引:3  
以荒漠地区1年生植物碟果虫实为材料,通过温度、光照、GA3和沙埋对其种子萌发和幼苗出土影响的研究,旨在探索其种子萌发对策及生态适应性。结果表明:(1)碟果虫实种子在0h光照的条件下,萌发的最佳恒温是20℃,萌发率为(18.00±141)%,最佳的变温是15℃/25℃,萌发率为(28.00±2.31)%。(2)除了5℃/25℃,碟果虫实在变温条件下的萌发率极显著高于恒温下的萌发率(P<0.01)。(3)碟果虫实种子萌发时属于需暗型,而且存在休眠现象。(4)在野外沙埋的条件下,碟果虫实的出苗率随着沙埋深度的增加极显著下降(P<0.05),适宜的出苗深度为0.00—2.00cm,最佳的出苗深度是0.50cm,出苗率为(16.80±2.85)%。(5)碟果虫实种子萌发具有迅速萌发和推迟萌发两种对策;根据种子萌发率和种子活力可以推断,碟果虫实具有持久性土壤种子库的特点。结合碟果虫实萌发时的自然生存环境和本研究的结果,显示出其种子萌发对策与栖息地的生境具有高度的生态适应性。  相似文献   

11.
含水量对种子贮藏寿命的影响   总被引:17,自引:0,他引:17  
建立以收集种子为主体的基因库乃是当今保护植物种质资源最为普遍且可靠易行的方式,在世界库存约 61 0 0 0 0 0份种质资源中,近 90 %是以种子形式保存于约 1 30 0个基因库中。低温贮藏仍是目前基因库中种子种质保存的主要方法。种子含水量和贮藏温度是影响种子在贮藏期间生活力和活力保持的关键因素。传统的经验认为控制温度比控制水分来得安全有效,因而趋向于向低温或超低温的贮藏方向发展。国际植物遗传资源研究所(IPGRI)曾推荐 5%~ 6%的含水量和 - 1 8~- 2 0℃低温作为各国长期保存种子的理想条件。目前,世界各国都把更多的…  相似文献   

12.
Seed survival in soil could be strongly influenced by habitat characteristics, but little is known about the behaviour of seeds sensitive to desiccation in seed banks installed in natural or disturbed habitats. Cryptocarya aschersoniana seeds disperse at the end of the rainy season but do not germinate immediately; thus, they may form seed banks in soil. This study evaluated the behaviour of C. aschersoniana seed banks induced in the natural environment of the species and in a disturbed area. Recently harvested C. aschersoniana germination units were characterized according to their water content, germination and viability. In 2011 and 2012, seed banks were established by burying samples of seeds in the understory of a semi‐deciduous forest. In 2012, samples were also buried in a disturbed area. The seed banks were sampled at certain time intervals, and the samples were characterized as described above. Precipitation and air temperature data were collected. As a result, seeds in the seed bank established in the natural environment form a transient seed bank and showed the same behaviour in both years studied. A germination peak was observed starting 210 days after burial (coinciding with the onset of the rainy season) and reached germination percentages higher than 80% at the end of the experiment for both years. Seed mortality did not exceeded 28% in the natural environment. However, in the disturbed environment, the seeds lost their viability more rapidly, with 90% of the seeds becoming unviable 240 days after burial. Germinated seeds in the disturbed environment (maximum 21%) were not able to establish seedlings. These results underscore the importance of maintaining a natural, undisturbed forest for the conservation of this species.  相似文献   

13.
不同种子预处理对10种沙拐枣植物萌发的影响   总被引:5,自引:0,他引:5  
陶玲  任珺 《西北植物学报》2004,24(4):601-609
为了确定沙拐枣植物种子的萌发特性及最优播前预处理方法,在实验室条件下,对10种沙拐枣植物的种子进行了磨砺、硫酸和热水浸泡、冷藏、种子浸出液处理,然后进行发芽实验研究。萌发实验的结果表明,10种沙拐枣植物对于不同的种子预处理,均表现出相似的萌发反应。磨砺、硫酸浸泡和冷藏处理对种子萌发有明显地促进作用。与对照相比,种子浸出液处理对种子的发芽率、发芽速度均具有明显地抑制作用,并能增强种子的休眠。冷藏处理具有打破有活力的种子休眠、促进种子萌发的作用,但它与热水浸泡处理一样,对有活力种子表现出一定的致死作用。沙拐枣植物的萌发模式在不同种子预处理问均表现出明显的差异性。机械磨擦和硫酸处理能够促进种子的萌发率及发芽势。泡果沙拐枣(Callingonum junceum)在本项实验中表现出很强的萌发能力。  相似文献   

14.
Seed persistence is the survival of seeds in the environment once they have reached maturity. Seed persistence allows a species, population or genotype to survive long after the death of parent plants, thus distributing genetic diversity through time. The ability to predict seed persistence accurately is critical to inform long‐term weed management and flora rehabilitation programs, as well as to allow a greater understanding of plant community dynamics. Indeed, each of the 420000 seed‐bearing plant species has a unique set of seed characteristics that determine its propensity to develop a persistent soil seed bank. The duration of seed persistence varies among species and populations, and depends on the physical and physiological characteristics of seeds and how they are affected by the biotic and abiotic environment. An integrated understanding of the ecophysiological mechanisms of seed persistence is essential if we are to improve our ability to predict how long seeds can survive in soils, both now and under future climatic conditions. In this review we present an holistic overview of the seed, species, climate, soil, and other site factors that contribute mechanistically to seed persistence, incorporating physiological, biochemical and ecological perspectives. We focus on current knowledge of the seed and species traits that influence seed longevity under ex situ controlled storage conditions, and explore how this inherent longevity is moderated by changeable biotic and abiotic conditions in situ, both before and after seeds are dispersed. We argue that the persistence of a given seed population in any environment depends on its resistance to exiting the seed bank via germination or death, and on its exposure to environmental conditions that are conducive to those fates. By synthesising knowledge of how the environment affects seeds to determine when and how they leave the soil seed bank into a resistance–exposure model, we provide a new framework for developing experimental and modelling approaches to predict how long seeds will persist in a range of environments.  相似文献   

15.
16.
We argue that the need for a quality seed supply chain is a major bottleneck for the restoration of Chile's native ecosystems, thus supplementing the list of bottlenecks proposed by Bannister et al. in 2018. Specifically, there is a need for defining seed transfer zones, developing standards and capacities for properly collecting and storing seeds, reducing information gaps on seed physiology and longevity, and implementing an efficient seed supply chain with certification of seed origin and quality. Without such capacities, countries are unlikely to meet their restoration commitments. Although we focus on bottlenecks in Chile, the issues we raise are relevant to other countries and thus the global agenda for ecological restoration.  相似文献   

17.
壳斗科三种植物种子大小对昆虫寄生及种子存活率的影响   总被引:1,自引:0,他引:1  
种子内的寄生昆虫可以严重影响种子的发育、损害种子活力。种子足余策略理论认为大种子有利于抵御和适应昆虫寄生取食,但动物最优觅食理论推测,大种子更易遭受昆虫寄生。为对这两种对立观点进行验证,本实验以青冈、苦槠和麻栎各2个种群的种子为材料,对昆虫寄生与完好种子间的体积和萌发率进行比较,并对寄生种子萌发率与种子体积的关系进行了分析。结果显示:(1)在6个种群的种子中,只有松阳麻栎和青冈种群的寄生种子体积大于完好种子,其余4个种群的寄生种子体积小于完好种子,但这种差异不显著;(2)所有寄生种子的整体萌发率(18%)显著低于完好种子(45.66%)(P<0.001),在不同种群内,寄生种子的萌发率也分别显著低于完好种子。(3)比较同种植物体积差异显著的寄生种子的萌发率发现,大种子总比小种子具有更高的萌发率,但差异不显著;在不同植物的寄生种子间比较时,体积最大的麻栎种子萌发率显著高于体积较小的青冈和苦槠种子。研究结果表明,象虫在种子上产卵时对大种子没有选择偏好,在昆虫寄生取食严重损害种子活力的压力下,大种子比小种子具有更强的耐受力。  相似文献   

18.
Because seed yield is the major factor determining the commercial success of grain crop cultivars, there is a large interest to obtain more understanding of the genetic factors underlying this trait. Despite many studies, mainly in the model plant Arabidopsis thaliana, have reported transgenes and mutants with effects on seed number and/or seed size, knowledge about seed yield parameters remains fragmented. This study investigated the effect of 46 genes, either in gain- and/or loss-of-function situations, with a total of 64 Arabidopsis lines being examined for seed phenotypes such as seed size, seed number per silique, number of inflorescences, number of branches on the main inflorescence and number of siliques. Sixteen of the 46 genes, examined in 14 Arabidopsis lines, were reported earlier to directly affect in seed size and/or seed number or to indirectly affect seed yield by their involvement in biomass production. Other genes involved in vegetative growth, flower or inflorescence development or cell division were hypothesized to potentially affect the final seed size and seed number. Analysis of this comprehensive data set shows that of the 14 lines previously described to be affected in seed size or seed number, only nine showed a comparable effect. Overall, this study provides the community with a useful resource for identifying genes with effects on seed yield and candidate genes underlying seed QTL. In addition, this study highlights the need for more thorough analysis of genes affecting seed yield.  相似文献   

19.

Background and Aims

Despite differences in physiology between dry and relative moist seeds, seed ageing tests most often use a temperature and seed moisture level that are higher than during dry storage used in commercial practice and gene banks. This study aimed to test whether seed ageing under dry conditions can be accelerated by storing under high-pressure oxygen.

Methods

Dry barley (Hordeum vulgare), cabbage (Brassica oleracea), lettuce (Lactuca sativa) and soybean (Glycine max) seeds were stored between 2 and 7 weeks in steel tanks under 18 MPa partial pressure of oxygen. Storage under high-pressure nitrogen gas or under ambient air pressure served as controls. The method was compared with storage at 45 °C after equilibration at 85 % relative humidity and long-term storage at the laboratory bench. Germination behaviour, seedling morphology and tocopherol levels were assessed.

Key Results

The ageing of the dry seeds was indeed accelerated by storing under high-pressure oxygen. The morphological ageing symptoms of the stored seeds resembled those observed after ageing under long-term dry storage conditions. Barley appeared more tolerant of this storage treatment compared with lettuce and soybean. Less-mature harvested cabbage seeds were more sensitive, as was the case for primed compared with non-primed lettuce seeds. Under high-pressure oxygen storage the tocopherol levels of dry seeds decreased, in a linear way with the decline in seed germination, but remained unchanged in seeds deteriorated during storage at 45 °C after equilibration at 85 % RH.

Conclusions

Seed storage under high-pressure oxygen offers a novel and relatively fast method to study the physiology and biochemistry of seed ageing at different seed moisture levels and temperatures, including those that are representative of the dry storage conditions as used in gene banks and commercial practice.  相似文献   

20.
江西三清山濒危植物天女花种子特性研究   总被引:2,自引:0,他引:2  
研究了江西三清山天女花种子的特性,结果表明:(1)三清山天女花种群种子雨自10月初开始,10月末结束,10月中旬强度达高峰,玉京峰地段天女花种子雨持续时间较短;(2)产种率受母树冠层影响,即上层>中层>下层;种子败育率高(49.4%~100.0%);(3)主成分分析表明,乔木层盖度、大气湿度、光照因子以及土壤含水量对天女花种子发育产生显著影响。  相似文献   

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