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1.
通过多次到中国学术访问, 得知许多中国学者围绕植物种子在基础研究和应用领域开展了多学科的研究。此次《植物生态学报》种子生态学专辑将向读者集中介绍中国学者在种子生态学这一有趣专题的研究进展。该专辑刊登了23篇论文, 包括19篇研究论文和4篇综述论文, 涉及种子传播、种子性状、种子休眠和萌发、土壤种子库以及幼苗生长对变化环境的响应等多方面的研究内容, 我们对这些论文进行了简单的评述。由于篇幅的限制, 该专辑所刊登出的论文只是当前中国学者对植物种子多方面研究的一小部分内容。该专辑的刊出将为国内外学者对种子研究的合作交流提供便利, 也将向参加中国2013年第四届国际种子生态学学术研讨会的国内外专家介绍中国学者在种子生态学等领域的研究现状。 相似文献
2.
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
3.
毛红椿天然林种子雨、种子库与天然更新 总被引:3,自引:0,他引:3
2008-2011年,调查江西九连山国家级自然保护区毛红椿天然林的种子雨、种子库及林下幼苗数量.结果表明:在毛红椿天然林,种子雨散布时间为10月下旬至12月下旬.2010年不同样地的种子雨强度为虾公塘气象观测站(320.3±23.5粒·m-2)>虾公塘保护站(284.7±24.2粒·m-2)>大丘田保护站(251.6±24.7粒·m-2),分别以222.0、34.3和22.6粒·m-2完好种子供土壤萌发更新;毛红椿种子储量取决于结实量、鸟类取食和种子活力等因素,鸟类取食是其种子储量大幅下降的首要因素;由于种子不耐储藏以及大量腐烂,种子有效贮藏期不足1个月.12月天然林种子库平均萌发数≤2株·m-2,次年1月土壤种子库种子量最少,为6.7~11.8粒·m-2,平均仅萌发0.4~0.6株·m-2,与林下实生幼苗分布极少相吻合.毛红椿种子雨储备、种子库种子活力保存及幼苗建成等因素影响其天然更新. 相似文献
4.
濒危树种闽楠种子和幼苗生态学研究 总被引:28,自引:6,他引:28
从1995至1998年,通过种子收集器布设、不同程度圈围的样方处理、实验室和野外发芽实验、相邻格子样方调查和土壤中种子的筛选等一系列方法,对福建罗卜岩闽楠种子质资源保护区内闽楠为优势的常绿阔叶林群落中闽楠种群的果实、种子库、种子散布、果实/种子捕良、种子萌发和幼苗存活等进行了研究。结果表明:1995至1996年果实量为116个/m^2,成熟高峰期在1996年1月中旬。1997年至1998年为103个/m^2,成熟高峰期在1997年12月中旬。1997年至1998年,绝大部分(90.1%)的果实直接从母树上掉落,低于9.5%的果实由鸟类传播。实验室的种子发芽率为93%,而在野外仅为12%。野外发芽率低多由种子霉烂引起。闽楠的种子寿命较短,其种子在次年4月初开始萌发,7月之后地面种子即丧夫活力。动物捕食不仅影响种子的存活,同时也影响幼苗的死亡率,未经圈围与样地中被取食的果实和幼苗数量有显著差异。在新形成的林窗中或远离母树均降低了果实的迁移和幼苗的死亡率。但各因素交互作用有所不同。密度相关效应发生在2-3个月的幼苗阶段,之后,密度高低对果实被取食和幼苗死亡没有显著的影响。这些结果表明,闽楠种子和幼苗经历较大的环境压力,即在高湿度生境中母树树冠下的种子不仅易受到土壤病原菌的感染,同样容易遭受动物所捕食,从而导致较低的野外种子发芽率和幼苗存活率。这是闽楠致濒的重要原因之一。 相似文献
5.
为了解陆均松(Dacrydium pierrei)的自然更新能力,对海南霸王岭陆均松进行为期3年的种子雨、种子库及幼苗幼树观测,并分析其与环境因子的关系。结果表明,陆均松种子雨和种子库有效种子数量太少并存在季节性差异;其结实存在大小年现象;种子雨的扩散密度随着距母树距离的增加而逐渐减少;土壤种子库种子数量在枯枝落叶层所占比例最大,但有活力种子数量极少。幼苗幼树适宜生存的海拔范围为800~1 400 m,经度、纬度、坡度与幼苗幼树分布有明显相关性。因此,选择适宜季节采摘种子,提高种源数量和质量,清除林下枯枝落叶,增加种子萌发能力等以减少陆均松更新的限制条件的人工抚育措施应适当考虑。 相似文献
6.
梵净山栲树 (Castanopsis fargesii)群落种子雨丰富 ,对群落更新发展有用的成熟有效种子 2 6 8.9粒·m- 2 。优势种及其它主要种类均有种子产生 ,为维持现存群落的稳定提供了重要基础。种子库中活力种子丰富 ,其数量达 375 4.3粒· m- 2 ,分属 30种植物 ,其中木本植物种子 18种 ,草本植物种子 12种。种子库中有现存植物种子 13种 ,群落演替前期各阶段产生的种子 17种。在种子库中 ,现存群落的优势种和其它主要树种均有活力种子存在 ,群落更新潜力好。在种子库中 ,现存植物产生的种子绝大多数分布于枯枝落叶层 ,只有少部分 (3种 )可分布到土壤层 ,演替前期各阶段产生的种子全部分布在土壤层中。随土壤深度增加 ,种子的种类和物种多样性指数均逐渐减小。从枯枝落叶层向下 ,种子库与现存群落的相似性逐渐减小。在天然情况下 ,种子库中优势种及其它主要种类的种子大量萌发出苗 ,现存群落更新良好 ,稳定性强。 相似文献
7.
不同年龄香果树种子雨和种子库及其更新特征 总被引:2,自引:0,他引:2
对宝天曼自然保护区香果树种子雨、土壤种子库进行了观测,并进行不同微生境播种实验,研究其种子萌发及幼苗生长动态。结果表明:(1)不同龄级香果树种子雨持续时间及其高峰期有所不同,种子雨强度存在极显著差异。(2)20~50龄级香果树的种子饱满率、土壤种子库中种子密度均显著低于其他龄级,但其不同类型种子的水平和垂直分布规律一致;大约80%的香果树种子在其萌发前消失,剩余种子中以霉烂种子密度最高(9.81粒·m-2),饱满种子密度最低(1.94粒·m-2)。(3)野外育苗实验表明,不同龄级香果树所产饱满种子的萌发率及幼苗存活率差异不显著,其种子萌发率约为16.93%,但仅有3.86%的幼苗寿命超过5个月;不同微生境对香果树幼苗存活率产生显著影响,林窗是其最适宜微生境。研究认为,人工采集香果树种子,于次年4月份在原生境下播种;清理母树冠下和冠缘的地被物,增加林缘空地地被物覆盖度,以减少香果树种子的损失,改善香果树种子萌发和幼苗生长的光照条件,以利于幼苗根系的生长,促进香果树的自然更新。 相似文献
8.
为明确黄土丘陵沟壑区植物种子库如何调控种子萌发来提高个体适合度,选择研究区7种具有种子库的主要物种为研究对象,以刚成熟和室内储存种子为对照,比较植冠宿存(5个宿存期)和土壤埋藏(5a埋藏期)对植物种子萌发特性的影响,探讨植冠种子库与土壤种子库储存下的种子萌发策略。结果表明:7种植物种子经过不同种子库储存后萌发特性表现出明显的种间差异,黄刺玫(Rosa xanthina)和水栒子(Cotoneaster multiflorus)种子萌发力表现为植冠宿存不变型、土壤储存增强型,土壤储存明显提高水栒子种子萌发速率;达乌里胡枝子(Lespedeza davurica)和狼牙刺(Sophora davidii)种子萌发力表现为植冠宿存增强型、土壤储存减弱型,种子萌发历时表现为植冠宿存延长型,土壤种子库储存还可加快达乌里胡枝子萌发速率、缩短萌发历时;茭蒿(Artemisia giralaii)和铁杆蒿(Artemisia gmelinii),种子萌发率随植冠宿存时间先升高后降低,随土壤储存时间先降低后升高,土壤储存可推迟其萌发,铁杆蒿种子萌发速率在植冠与土壤储存后均加快;紫丁香(Syringa oblata)种子萌发率随植冠宿存先升高后降低,土壤储存明显加快其种子启动萌发与速率。在黄土丘陵沟壑区,植物种子经过植冠或土壤种子库储存,或增加、加快、提早萌发充分利用有利条件提高占据性,或减少、减缓、推迟萌发分摊不利条件的风险;而且该区植物植冠与土壤储存后种子萌发特性间的关系,体现各自适应环境与应对干扰的分工与协作策略,主要表现为:单一主导型和相辅相成型。 相似文献
9.
濒危植物南方红豆杉种子雨和土壤种子库特征 总被引:3,自引:0,他引:3
对福建南平大坪村样地和福州旗山样地濒危植物南方红豆杉种子雨动态进行了2a的观测,并在种子雨结束后不久的3月份和种子雨开始降落之前的9月份进行土壤种子库取样。南方红豆杉种子雨持续3个多月,高峰期从11月中旬开始到12月下旬结束,约40d,种子雨绝大部分降落在树冠范围内,种子雨中成熟种子占85%以上,2007年和2008年种子雨强度差异不显著(P0.05)。南方红豆杉土壤种子库主要集中在树冠范围内,在种子雨刚结束的3月份,土壤种子库主要分布在枯枝落叶层,且密度显著大于其它两层(P0.05),9月份第2次取样,枯枝落叶层种子库密度明显减少,当年种子雨仅有3%可补充到土壤种子库中,南方红豆杉种子雨中绝大多数种子受到动物取食、人为因素和环境因素的影响而损失掉无法进入土壤种子库。 相似文献
10.
紫茎泽兰种子种群动态及萌发特性 总被引:11,自引:0,他引:11
在紫茎泽兰的入侵地四川省德昌县, 选择撂荒地、农田和马尾松林3个不同的生境, 从种子雨、种子库角度研究了紫茎泽兰种子种群动态规律,及其种子在不同光照和土壤基质条件下的萌发特性. 结果表明,3个生境下紫茎泽兰种子种群仅存在于当年3~6月,于4月底达到年高峰值. 其年降种子雨量在撂荒地中高达2.4×105粒·m-2,并均分布于2 cm土层以上, 且在撂荒地生境下紫茎泽兰种子的千粒重和活力均显著高于另外两个生境. 到7月上旬, 3个生境下土壤中均未发现有活力的种子. 在实验的光照条件下, 全光照对紫茎泽兰的种子萌发有抑制作用,而在28%光照条件下萌发率最高;砂壤土较适宜紫茎泽兰种子的萌发,生红土中其萌发速度及萌发率均最低. 相似文献
11.
Seed ecology of dust seeds in situ: a new study technique and its application in terrestrial orchids
A method is described by which seeds of terrestrial orchids are sown and retrieved in the field under almost natural conditions. For the first time it is possible to conduct a quantitative study of orchid germination in situ and observe seasonal growth and mortality of seedlings. The technique has also enabled us to investigate the relation between the site where the seeds are sown, the availability of an appropriate fungus to infect the seeds, and seedling establishment in the soil. Five local species were studied. Corallorhiza odontorhiza, Goodyera pubescens, and Galearis spectabilis all began to germinate in May–June, after 23-30 weeks in the soil. These species differed in their dependency on infection at germination time, but none of the seedlings developed beyond the point of rupturing the testa except when infected. Seeds of Liparis lilifolia and Tipularia discolor did not germinate within the first 12 months of the experiment. The implications and potential uses of this field sowing technique for further studies and for other kinds of minute seeds are discussed. 相似文献
12.
Andy Dobson 《Current biology : CB》2021,31(6):R287-R289
13.
Irwin A. Ungar 《The Botanical review》1987,53(3):301-334
Some aspects of the population biology of halophytes are considered in this review. Persistent seed banks have been reported for a number of inland- and coastal-salt marsh plant communities. Seeds of perennial grasses are often under-represented, while annuals and some perennial forbs may be over-represented in the seed bank. The persistent seed bank of annual halophytes appears adaptive, and provides multiple seed germination opportunities which may prevent local extinction when environmental stress increases. Somatic seed polymorphism provides a mechanism by which parent plants can respond to changing environments by partitioning their resources into reproductive units which have distinct germination responses. Parental effects may influence either seed morphology and/or physiological requirements of seeds when they are exposed to environmental stress. A prolonged germination period can provide plant populations with numerous opportunities to establish seedling cohorts. Early cohorts will have a selective advantage under moderate conditions because mortality will be low and plants will survive until maturity. However, fluctuations in salinity levels and tidal activity can cause high mortality in early cohorts in salt marsh habitats, providing later cohorts with an opportunity for establishment. Resource allocation to reproductive structures is related to plant size, which itself can be affected by both abiotic and biotic factors. Larger plants were found to produce more seeds than smaller plants in a population, but the mean seed weight was greater in small plants. 相似文献
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Roger Tippett 《Hydrobiologia》1994,290(1-3):153-166
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Germination responses of species from the native plant communities of southwestern Western Australia can be related to syndromes of life history, fire response, and seed storage, and also to factors related to environmental stress. The Mediterranean-type climate of the region with periodic drought and recurrent fires affects the production of viable seeds in plants of limited stature and rooting depth. Fire response ephemerals and species cued to flower by fire tend to produce viable, readily germinable seeds, but there are instances where seed production is aborted in these predominantly herbaceous life forms. Clonal, rhizomatous species often produce mainly inviable seeds. Production of viable seeds in woody species of these highly diverse communities may also be restricted by limitations to cross pollination. Obligate post-fire seeding species tend to produce a greater proportion of viable seeds than species which are capable of resprouting following fire. Serotinous species, whether post-fire re-seeders or post-fire resprouting species, produce mainly viable seeds, which germinate readily once freed from protective fruits. Species of the legume families and a few others of the soil seed bank produce innately dormant seeds which can be germinated following heat shock treatments which simulate the effects of fire. Heat shock in these species appears mainly as a mechanism to crack the hard seed coats, but the effect of heat to denature seed coat inhibitors has not been eliminated. Western Australian species do not seem to break dormancy when exposed to leachates from burned wood as has been observed in comparable habitats in California and South Africa, but further research is advised. Germination in many native southwestern Australian species is cued by temperatures that correspond to the winter rainfall period. There are also indications that an after-ripening period of warm, dry storage increases percentage of germinable seeds. Stimulation of germination by hormones is almost unresearched in Western Australia, but germination percentages have been increased in a small number of species of horticultural potential. Stimulation of germination by soil nutrient concentrations is almost unresearched in Western Australia, except for the inhibitory effect of excess sodium chloride levels inEucalyptus andMelaleuca. These species only germinate when osmotic effects are reduced to lower levels as would occur when winter rains dilute soil salts. Application of research on seed germination has already enhanced the establishment of seedlings in the restoration of mine sites and is becoming important in aspects of the breeding and selection of native plants for the cut flower, bedding plant and essential oil industries. 相似文献
20.
Molecular ecology of hydrothermal vent microbial communities 总被引:6,自引:0,他引:6
Jeanthon C 《Antonie van Leeuwenhoek》2000,77(2):117-133