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1.
鼬獾(Melogale moschata)是湖北后河国家级自然保护区中一种占优势的鼬科动物,取食多种无脊椎动物和植物果实。于2006年秋季在后河保护区调查了鼬獾消化时间及其对枳棋种子的选择,并初步探究了鼬獾对枳棋的种子传播作用。结果表明:鼬獾个体间的消化时间无明显差异。鼬獾对枳棋有较强的选择性,主要取食种子个体大,较为成熟的枳棋果实,这对枳楔的分布与扩散起到积极的作用。  相似文献   

2.
云南无量山黑长臂猿对植物种子的传播作用   总被引:2,自引:0,他引:2  
2005年9月至2006年4月,对无量山一群黑长臂猿进行观察,研究黑长臂猿在植物种子传播中的作用.观察记录黑长臂猿一天的排便次数并收集粪便.通过直接观察和收集长臂猿粪便确定长臂猿取食的果实种类.以森林中采集的果实种子为对照标本,对粪便中的种子进行鉴定,并记录各种种子的数量,测量其长度、宽度和重量.结果表明观察期间黑长臂猿共取食31种果实,其中有1种在被取食时尚未成熟,另有2种果实的种子在取食后遭到破坏,还有1种植物的种子不能被长臂猿吞食而得不到传播,黑长臂猿可为27种植物传播种子.黑长臂猿个体平均每天排便2次,粪便的平均湿重为22.7 g,每份粪便平均含有1种植物的种子;在不包含小种子(直径<3 mm)的情况下,平均每份粪便中含有12粒种子.总的来说,黑长臂猿是有效的种子传播者.  相似文献   

3.
阮海河  白冰  李宁  潘扬  鲁长虎 《生态学报》2013,33(1):110-119
喀斯特森林的生态环境较其他类型的森林更为脆弱.由于抗干扰和恢复能力低,喀斯特森林中种子扩散对维持植物种群的续存与更新具极其重要的作用.叶猴以叶为主要食物,果实是仅列其后的第二大食物资源.对分布于喀斯特生境的叶猴来说,它们对果实的取食具有潜在的种子传播作用.基于此,于2009年7月-2010年12月,在越南广平的风芽-格邦国家自然公园,通过实地跟踪观察结合粪便收集调查了河静黑叶猴(Trachypithecus francoisi hatinhensis)对果实的选择及其对种子的潜在扩散作用.河静黑叶猴全年共采食果实类食物38科131种,取食的果实种类和取食高峰持续期均高于其他地区黑叶猴对果实的取食.这得益于当地原始雨林中丰富的果实食物资源.河静黑叶猴对果实种类没有明显的选择偏好(-0.3<S112种果实<0.3),果实资源的可获得性亦不影响其对果实的取食频次(r=-0.13,P=0.15>0.05),在雨季的果实食物种类和取食强度上均高于旱季(z=-2.903,P=0.02<0.05).在果实性状的选择上,河静黑叶猴对处理难度较小的浆果和核果(两种类型的果实共106种,占80.9%)有明显的选择偏好,更多地选择黄色(46种)、红色(29种)和绿色(14种)(三种颜色的果实占果实种类的68.7%),重量多为5 g以上较大的果实(共104种,占果实种类的79.4%),更多地选择果实内仅有1-2颗种子的果实.河静黑叶猴多吞食直径小于3 cm的种子,在猴群的粪便中发现了85种果实的种子,尤以肉质的浆果和核果最多,如垂叶榕(Ficus benjamina)、柿叶青梅(Vatica diospyroides)、构树(Broussonetia papyrifera)等.最远传播距离可达397 m.对其他的果实,则以吐出或丢弃的方式短距离传播,多集中在6-20 m范围.河静黑叶猴是一些果实较大或果皮较硬的植物重要的潜在扩散媒介,因为此类种子不能依靠鸟类吞食传播,如水浦桃(Syzygium jambos)、红毛丹(Nephelium lappaceum)和木奶果(Baccaurea ramiflora)等.河静黑叶猴一年中在雨季的夏秋两季(8-12月)对果实的取食强度达到高峰,这期间每月在猴群粪便中发现的种子数量均超过1000.结果反映出河静黑叶猴对喀斯特森林中的果实植物种子有潜在的传播作用.  相似文献   

4.
鸟类取食中国沙棘果实的方式及其对种子的传播作用   总被引:7,自引:1,他引:7  
2003年9月~2004年3月,定期观察取食中国沙棘果实的鸟类及其取食方式。共记录取食中国沙棘果实的鸟类18种,其取食果实的方式主要有:1)直接在树冠上吞食果实,有时候在吞食后将种子呕出;2)将果实从树上衔走后,在栖息处吞食或啄食;3)将果实啄落至地面,然后取食果肉和种子,留下果皮;4)啄破果皮,吸食果肉,留下果皮及种子;5)从顶端将果皮啄破后,仅取食里面的种子。不同的取食方式决定了它们对沙棘种子的传播作用不同。收集鸟粪便中的种子与完整的干果实及人工剥离果肉和内果皮的种子做萌发对比实验,结果表明,鸟类消化道过程对种子的萌发有一定影响,但萌发率仍较高。沙棘为多种鸟类提供食物,而鸟类则为沙棘传播种子,它们之间形成一种互利关系。  相似文献   

5.
海南蒲桃(Syzygium cumini)是亚热带地区城市绿地中常见的绿化植物,其果实数量多、果期长,可为鸟类提供大量食物资源。2020年6月—8月借助Safari 10×26变焦双筒望远镜,采用焦点扫描法对访问海南蒲桃果实(种子)的鸟类行为进行观察,详细记录鸟类的种类、取食基质、访问频次、取食时间、取食数量和取食方式等信息,探讨鸟类在海南蒲桃种子传播及种群更新中的生态作用。结果表明:成熟的海南蒲桃能吸引7种食果鸟类对其种子进行取食,其中白头鹎(Pycnonotus sinensis)、红耳鹎(Pycnonotus jocosus)、白喉红臀鹎(Pycnonotus aurigaster)和黄臀鹎(Pycnonotus xanthorrhous)4种鸟类以整吞的方式取食海南蒲桃的种子,属于种子潜在传播者。不同种鸟类对海南蒲桃果实的取食频次间存在显著差异(t=4.310,df=6,P<0.01),平均访问只数、平均取食时间和平均取食量间存在极显著差异(P<0.001)。食果鸟类的形态特征(体长、体重和嘴峰大小)与取食数量间均呈正相关。鸟类主要以呕吐的方式传播海南蒲桃的种子,观...  相似文献   

6.
肉质果植物通常依赖食果鸟类等取食果实后经消化道过程传播种子, 以完成种群的更新。红楠(Machilus thunbergii)是亚热带森林的代表性种类, 其果实具有依赖鸟类等动物取食后传播的特点。2012 年、2013 年在梅花山国家级自然保护区,研究了鸟类对红楠果实的取食及种子的传播作用。结果如下: 取食红楠种实的鸟类共计18 种, 其中整吞果实的鸟类12 种,啄取果肉的鸟类5 种, 啄食种子的鸟类1 种。整吞果实鸟类中4 种鹎科和2 种鸦科鸟类访问频次和取食量较大, 是主要的种子传播者。鸟类主要以呕吐方式传播种子。取食后初停栖点与母树距离及地面种子散布地点的分析结果表明, 鸟类可以远距离扩散种子。地面种实可被啮齿动物或蚁类再次捕食或搬运。研究表明, 红楠可以借助鸟类实现种子传播和种群更新。  相似文献   

7.
鸟类对山黄麻种子的传播及其生态作用   总被引:14,自引:1,他引:13  
在云南西双版纳的勐宋和勐仑地区观察和研究了传统山黄麻种子的鸟类。在野外持网捕获摄食山黄麻果实的鸟类,称量后分别放在布袋内,让其自然排泄,然后标志释放,观察和网捕共记录到摄食山黄麻果实的鸟类36种,其中26种挂网捕获并从排泄物得到种子。用鸟类排泄物中的山黄麻种子、山黄麻树上采摘的成熟果实及人工分离山黄麻种子播种,进行萌发对比实验,实验结果表明,直接播种成熟果实,在阳光充足的空旷地、林冠下或用树叶覆盖遮光等条件下都未萌发,种子容易霉烂或被虫蚀;从山黄麻果肉中分离出来的种子具有萌发能力;而经鸟类摄食、消化后从果肉中分离的种子,具有较好的萌发活力。在不同条件下山黄麻种子萌发情况差异明显,林冠下条件对种子有抑制作用,阳光作用下种子显示出很好的萌发及成活率。鸟类排泄物种子放在林上或用树叶覆盖遮光,经过较长时间便可萌发,而人工分离种子不能萌发。鸟类摄食及消化过程对山黄麻种子的处理表现出很好的生态互惠关系,观察萌发后的山黄麻幼苗的生长情况还表明,幼苗生长也需要光照和较开阔的生境条件,鸟类取食山黄麻果实及其将种子远距离传播适宜生境,正好具有这样的生态作用。  相似文献   

8.
采用瘘管羊瘤胃瘘管尼龙袋法,对北疆地区常见的28种禾本科植物种子进行不同时间段的瘤胃消化处理,对处理前后种子的长、宽、厚、形状指数、百粒重和萌发率进行了测量,研究种子对绵羊瘤胃消化的反应,以期丰富北疆地区植物种子消化道传播的内容.结果表明: 除臭草、剪股颖、鳞茎早熟禾、猫尾草和小麦以外,其余23种植物的种子均为椭圆或扁平状种子;小麦和燕麦种子百粒重分别为3.52和1.69 g,其余种子的百粒重均为0.01~1 g,属中等或偏小类型.种子经瘤胃消化后,颜色变深,种子结构被破坏,种子的芒、稃和颖等附属结构的长度随消化时间的延长逐渐减小;种子长、宽、厚、百粒重随消化时间的延长呈逐渐减小趋势,但变化不显著;种子经绵羊瘤胃消化后,萌发率显著降低,经瘤胃消化6 h后,除鹅观草和燕麦种子萌发率降为0外,其余26种植物仍有部分种子保持活力.  相似文献   

9.
黄檗的更新特点及食果实鸟类对其种子的传播   总被引:20,自引:5,他引:15  
在帽儿山实验林场和哈尔滨实验林场 ,黄檗母树下没有幼苗分布 ,不能进行天然更新 ,需要靠食果实鸟类等将果实和种子传播至远离母树的其他林下。捕食黄檗果实的食果实鸟类有 9种。其中 6种是食果肉鸟类 ,吞入果实后 ,消化果肉 ,而种子完整地随粪便排出而得以传播。其余 3种是食种子鸟类 ,没有传播作用。果实在鸟类消化道内的滞留时间达 2 0~ 30min ,具有很长的潜在传播距离。将鸟类消化后的种子与完整果实和人为去果肉种子进行萌发对比实验 ,消化后种子的累计萌发率与其余二者之间均没有显著性差异 ,说明食果实鸟类的消化 (道 )过程对种子萌发没有明显影响 ,同时证明果肉对种子萌发率没有显著影响 ,果肉中不含萌发抑制物质。黄檗提供多种鸟类以食物 ,而鸟类也同时以多种肉质果植物为食物。因此食果实鸟类和肉质果植物 (包括黄檗 )之间形成了松散的互利共生关系  相似文献   

10.
动物对花楸树种实的取食与传播   总被引:3,自引:1,他引:3  
花楸树是我国东北林区重要的非木质资源树种,其种实既有自然散布方式,也有动物散布方式.本文通过对花楸树种实散布过程中动物活动特点的研究,探索动物取食和传播花楸树种实的规律及其对花楸树天然更新的影响.在2008和2009年花楸树果实成熟期,通过定期观察取食花楸树果实的鸟类及其取食方式,确定对花楸树果实有拜访行为的鸟类有8种,其中食果肉鸟类斑鸫、灰喜鹊和白背啄木鸟对花楸树种实有传播作用,它们对花楸树果实的拜访频率分别为54%、12%和7%,取食后第一落点集中于距离母树5~10 m之间(占68.2%),其次为距离母树5 m以内(占27.3%),距离母树10 m以外的比例很小(占4.5%).果实在鸟类消化道内的滞留时间可达20 min,表明潜在传播距离会很长.人工摆放果实和种子试验表明,在不同生境地面摆放的果实6~7 d内全部消失,果实的取食者主要是啮齿类和地面取食的鸟类,取食率均较高(50%~70%);种子的取食者为啮齿类、地面取食的鸟类和蚁类,取食率均较低(1%~5%).花楸树为多种动物提供食物,而动物为花楸树传播种子,动物的取食对花楸树的天然更新有重要影响.  相似文献   

11.
Latitude, seed predation and seed mass   总被引:12,自引:0,他引:12  
Aim We set out to test the hypothesis that rates of pre‐ and post‐dispersal seed predation would be higher towards the tropics, across a broad range of species from around the world. We also aimed to quantify the slope and predictive power of the relationship between seed mass and latitude both within and across species. Methods Seed mass, pre‐dispersal seed predation and post‐dispersal seed removal data were compiled from the literature. Wherever possible, these data were combined with information regarding the latitude at which the data were collected. Analyses were performed using both cross‐species and phylogenetic regressions. Results Contrary to expectations, we found no significant relationship between seed predation and latitude (log10 proportion of seeds surviving predispersal seed predation vs. latitude, P = 0.63; R2 = 0.02; n = 122 species: log10 proportion of seeds remaining after postdispersal seed removal vs. latitude, P = 0.54; R2 = 0.02; n = 205 species). These relationships remained non‐significant after variation because of seed mass was accounted for. We also found a very substantial (R2 = 0.21) relationship between seed mass and latitude across 2706 species, with seed mass being significantly higher towards the tropics. Within‐species seed mass decline with latitude was significant, but only about two‐sevenths, as rapid as the cross‐species decline with latitude. Results of phylogenetic analyses were very similar to cross‐species analyses. We also demonstrated a positive relationship between seed mass and development time across ten species from dry sclerophyll woodland in Sydney (P < 0.001; R2 = 0.77; Standardized Major Axis slope = 0.14). These data lend support to the hypothesis that growing period might affect the maximum attainable seed mass in a given environment. Main conclusions There was no evidence that seed predation is higher towards the tropics. The strong relationship between seed mass and latitude shown here had been observed in previous studies, but had not previously been quantified at a global scale. There was a tenfold reduction in mean seed mass for every c. 23° moved towards the poles, despite a wide range of seed mass within each latitude.  相似文献   

12.
Co-evolution of seed size and seed predation   总被引:3,自引:0,他引:3  
Using the evolutionarily stable strategy (ESS) approach in a model for the co-evolution of seed size and seed predation, I show that seed size variation within individual plants is favoured if there is a trade-off in the predator's attack rate for different seed sizes. A single seed size is not evolutionarily stable because a predator that is optimally adapted to one particular seed size cannot prevent invasion by plants with a different seed size. The model generates the following predictions. The ESS consists of a continuous range of seed sizes. Small seeds tend to be attacked more frequently than big seeds. Plants with many resources and plants with low (frequency-independent) juvenile mortality have more variable seeds than plants with few resources and a high juvenile mortality. Seed size variation is higher in fluctuating populations regulated by seed predation alone than in stable populations (partially) regulated by seedling competition. Predator searching behaviour does not directly affect the ESS seed size range, but may have an indirect effect by affecting population stability or the significance of seedling competition as a population regulating mechanism. Moreover, seed size distributions are found to be more skewed in favour of small seeds if predation is spatially non-uniform than if predation is more even. Application of the model to systems of several co-evolving plant and predator species is discussed.  相似文献   

13.
种子扩散是植物更新和扩大分布区的一种重要途径。鼠类采取不同的种子扩散和贮藏策略,以应对食物短缺,同时也促进了植物种子扩散。为应对鼠类对植物种子的过度取食,种子进化出了一系列物理、化学等防御特征。其中种壳厚度作为一种物理防御策略,是影响鼠类贮藏行为和种子命运的关键因素。本研究拟通过去除天然栓皮栎(Quercus variabilis)种子的外壳,再在种仁外包被1、2、4、6不同层数的聚乙烯薄膜,模拟种壳厚度,准确控制种壳厚度。2020年10月—2021年1月,在四川都江堰森林生境中释放人工种壳包被的种子,研究人工种壳厚度对鼠类介导的种子扩散和命运的影响。结果表明:(1)鼠类优先扩散种壳较薄(1层薄膜包被)的人工种子;随着种壳厚度的增加,扩散速率逐渐降低,种壳最厚(6层薄膜包被)的种子扩散最慢(P < 0.001);(2)鼠类喜好分散贮藏1层、2层薄膜包被的种子;当种壳厚度增加至包被4层、6层薄膜时,分散贮藏比例显著降低(P < 0.05);(3)鼠类偏好集中贮藏4层薄膜包被的种子(P < 0.05);(4)不同种壳厚度的种子扩散距离无显著差异(P > 0.05);(5)种壳较薄(1层薄膜包被)的种子分散贮藏率在3 m范围内比例较高。采用聚乙烯薄膜包被是模拟种子外壳的可行方法,并可用于评估种壳厚度对鼠类种子贮藏行为和种子命运的影响等相关研究。  相似文献   

14.
The role of seed coats in seed viability   总被引:3,自引:0,他引:3  
The seed coat is the seed’s primary defense against adverse environmental conditions. A hard seed coat protects the seed not only from mechanical stress but also from microorganism invasion and from temperature and humidity fluctuations during storage. Phenolic compounds in the seed coat contribute to seed hardness and inhibition of microorganism growth. During germination, the seed coat protects the seed from hydration stress and electrolyte leakage.  相似文献   

15.
昆虫种子捕食与蒙古栎种子产量和种子大小的关系   总被引:3,自引:1,他引:2  
为了了解昆虫种子捕食者在栎类种群更新中的作用,于2006年秋季,在黑龙江省伊春市带岭区东方红林场研究了昆虫对蒙古栎Quercus mongolica在参园和东山两个种群的种子蛀食情况及其与蒙古栎种子产量和种子大小的关系。结果表明:(1)在参园和东山两个林分内,蒙古栎种子雨动态非常相似,种子雨成分中完好种子的平均密度仅为3.2±4.1个/m2(参园)和1.7±2.8个/m2(东山),分别仅占种子产量的4.0%和3.2%,而虫蛀种子和败育种子的比例均在38%以上,以虫蛀种子的比例最高,分别为58.2%和57.7%;(2)柞栎象Curculio arakawai是蛀食蒙古栎种子的主要昆虫种类,在虫蛀种子中所占比例高达96.8%(参园)和97.1%(东山),且象甲蛀食种子中所含虫卵数与种子大小有关,即种子越大,所含象甲的虫卵数就较多。本研究的结果说明2006年蒙古栎成熟种子多遭遇虫蛀,导致完好种子的数量极低,因而可能成为限制蒙古栎种群更新的重要因素。  相似文献   

16.
Controls on seed production in Eriophorum vagina tum were studied at two Low Arctic sites, Latnjajaure in Sweden and Toolik Lake in Alaska. At Latnjajaure, seed production was monitored for 3 years (1993-1995) in control plants and in plants that were experimentally warmed using ITEX open-topped chambers (OTCs). At Toolik Lake, experimental treatments included a factorial greenhouse x NP fertilizer experiment and artificial shading; data collection occurred in 1995, after eight seasons of treatment. Temperature differences between sites, years, and treatments all had significant effects on components of Eriophorum seed production. Pre-flo ration and post-floration times were decreased in warmer treatments and years. Ovule number per inflorescence was greater in warm years and at the warmer site, Toolik Lake. Although seed set was reduced in the OTCs at Latnjajaure, probably due to low pollination rates, in the larger greenhouses at Toolik Lake seed set was increased. The most consistent responses to temperature were in seed weight, where treatment effects were greatest at lower temperatures, such that, for example, at Latnjajaure the increases in seed weight in the OTCs were greatest in the coldest year. Fertilizer treatment had no significant effect on seed number or weight at Toolik Lake, and in the fertilizer + greenhouse treatment there were no inflorescences because Eriophorum had been nearly eliminated from the treated plots. In the shade treatment at Toolik Lake, inflorescences were fertilized but only a single mature seed was collected. Overall, the results indicate that seed production by E. vagina tum is strongly responsive to environmental variation and that only a small increase in mean summer temperatures would result in a much larger and more stable seed production.  相似文献   

17.
为了深入了解啮齿动物在不同种子丰富度条件下对不同大小和单宁含量种子的觅食行为策略及其与植物种群更新的关系,在宁夏六盘山区的华北落叶松人工林,研究了不同大小和单宁含量[0%Tannin(T)、2%T、8%T和15%T]的人工种子在模拟结实小年和结实大年对啮齿动物取食和扩散行为的影响.结果表明: 啮齿动物消耗种子速度在结实小年更快,结实大年的种子消耗速度相对缓慢. 种子就地取食率(ISPR)在不同结实年份间无显著差异,扩散后取食率(PRAD)在结实小年显著高于结实大年,但前者的扩散后贮藏率(HRAD)显著低于后者;种子扩散后的取食距离(PDAD)和贮藏距离(HDAD)在结实小年均显著大于结实大年.在结实小年,大种子的PDAD和HDAD均大于小种子,前者在不同大小种子间均差异显著,而后者仅在2%T和15%T的不同大小种子间差异显著;在结实大年,除0%T外的其他单宁含量种子的PDAD和HDAD在不同大小种子间均差异显著.ISPR在中等单宁含量种子最大,高单宁含量种子最小;PRAD分别在结实小年的高单宁含量种子和结实大年的无单宁种子最大;不论在结实大年还是结实小年,HRAD均在高单宁含量种子最大,中等单宁含量种子最小.这说明结实大年可延缓啮齿动物对种子的消耗速率,提高种子的HRAD,但种子扩散距离减小;啮齿动物在结实大年和小年均表现出对大种子的扩散偏好,且大种子被扩散的距离更远;啮齿动物在不同结实年份均偏好于就地取食中等单宁含量种子,而扩散高单宁含量种子.  相似文献   

18.
19.
Many plant seeds travel on the wind and through animal ingestion or adhesion; however, an overlooked dispersal mode may lurk within those dispersal modes. Viable seeds may remain attached or embedded within materials birds gather for nest building. Our objective was to determine if birds inadvertently transport seeds when they forage for plant materials to build, insulate, and line nests. We also hypothesized that nest-mediated dispersal might be particularly useful for plants that use mating systems with self-fertilized seeds embedded in their stems. We gathered bird nests in temperate forests and fields in eastern North America and germinated the plant material. We also employed experimental nest boxes and performed nest dissections to rule out airborne and fecal contamination. We found that birds collect plant stem material and mud for nest construction and inadvertently transport the seeds contained within. Experimental nest boxes indicated that bird nests were not passive recipients of seeds (e.g., carried on wind), but arrived in the materials used to construct nests. We germinated 144 plant species from the nests of 23 bird species. A large proportion of the nest germinants were graminoids containing self-fertilized seeds inside stems—suggesting that nest dispersal may be an adaptive benefit of closed mating systems. Avian nest building appears as a dispersal pathway for hundreds of plant species, including many non-native species, at distances of at least 100–200 m. We propose a new plant dispersal guild to describe this phenomenon, caliochory (calio = Greek for nest).  相似文献   

20.
Relationships between indices of seed maturity and carrot seed quality   总被引:2,自引:0,他引:2  
Carrot seeds cvs Chantenay and Amsterdam were harvested on several occasions from crops grown in 1985 and 1986, from the time they had reached or were close to their maximum dry weight and were starting to turn brown. Maximum seed dry weight occurred approximately 40–45 days after flowering (DAF) in both cultivars. Maximum germination (International Seed Testing Association 14-day count) occurred 40 and 55 DAF in cvs Chantenay and Amsterdam, respectively, but the maximum 7-day count and the minimum coefficient of variation of embryo length did not occur until 60 DAF in cv. Chantenay and 55 to 65 DAF in cv. Amsterdam. Percentage germination was negatively and linearly related to seed moisture content, chlorophyll a + b content in the seed coat and seed distortion, measured on a modified tensile-testing machine, the relationships accounting for 77, 71 and 64% of the variance in the 7-day germination count, respectively. The corresponding values for the 14-day count were 63, 61 and 50%. A simple field test for monitoring seed maturity is proposed.  相似文献   

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