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1.
李宽意  张雷燕  刘正文 《生态学报》2009,29(12):6414-6418
动物牧食可以调节植物种间的相对竞争能力,从而改变物种在群落中的竞争地位.外来植物伊乐藻生长迅速、具有较强的光竞争能力,土著种苦草根系发达、具有较强的地下资源竞争能力.选择这两种各具竞争特色的沉水植物为模式生物,通过室外受控实验研究了螺类牧食对两种沉水植物种间关系的影响.结果表明:不管有无螺类牧食,伊乐藻的相对生长率为苦草的2~5倍,伊乐藻具有明显的竞争优势.苦草低密度种植时,螺类牧食与种间竞争对其生长没有显著影响;高密度种植时,螺类牧食活动促进了苦草的生长,种间竞争则使苦草的生长率明显降低.无论伊乐藻种植密度如何,螺类牧食均使其生长率明显降低,混栽高密度的苦草也能抑制伊乐藻生长.探讨了螺类牧食对沉水植物的种间竞争关系的作用机理.  相似文献   

2.
谈冰畅  朱小龙  宁晓雨  谷娇  安苗  李宽意 《生态学报》2015,35(10):3199-3203
在室外受控实验条件下,研究了不同密度(0,150,450个/m2)纹沼螺(Parafossarulus striatulus)对沉水植物苦草(Vallisneria spiralis)生长的影响。结果表明,螺类牧食活动促进了苦草生长,与无螺对照组相比,低密度螺处理组中苦草的相对生长率、株高均增加了20%;高密度组中苦草的相对生长率、叶片数和株高分别增加了28%、15%和27%。分析表明,纹沼螺通过牧食活动降低植物叶片上附着生物干重,从而促进了苦草生长。丰富了螺-草互利关系的研究内容,有助于加深理解水生态系统中生物之间的生态关系。  相似文献   

3.
螺类牧食与沉积物类型对苦草生长的影响   总被引:1,自引:0,他引:1  
在室外实验条件下,研究了螺类牧食与沉积物类型对苦草生长的影响。结果表明:椭圆萝卜螺的牧食对苦草生长有显著影响,牧食损害使苦草的相对生长率明显降低、块茎数量及重量下降。沉积物类型对苦草生长也有明显影响,苦草的相对生长率在营养盐相对丰富的湖泥处理组中要远高于岸泥处理组,而根须数与块茎重量在湖泥处理组中显著低于岸泥处理组。螺类牧食与沉积物类型对苦草的各项生长指标无明显交互作用。  相似文献   

4.
大型水生植物及其附着藻类是浅水湖泊中的重要初级生产者。淡水螺类作为重要的初级消费者,其密度对沉水植物及其附着藻类的影响存在争议。本研究设置4种初始螺类密度(0、40、80、240 ind·m-2),研究淡水螺类(椭圆萝卜螺Radix swinhoei H.Adams)对刺苦草(Vallisneria spinulosa Yan)及其附着藻类的直接牧食作用和螺类种群的变化。结果显示,在添加螺处理中,刺苦草和人工基质表面附着藻类的生物量显著降低,同时沉水植物的生长显著增加,在较高初始密度螺类处理中刺苦草产生更多的分株。到实验结束时,螺类的死亡率较高,但3个有螺处理间螺类鲜重无显著差异,而高初始密度螺类条件下的最终密度仍较高,同时个体重量(均重)也较小。在中富营养条件下淡水螺类可以直接牧食沉水植物叶片,但对植物生长的抑制作用不显著,有可能是因为沉水植物并不能作为唯一的食物来源维持螺类种群,同时螺类的种群结构受到水体营养水平等因素的制约。  相似文献   

5.
3种入侵和本地沉水植物形态和生理性状对螺类牧食的响应 沉水植物水盾草(Cabomba caroliniana)已成为中国太湖流域的优势入侵水生植物。与外来物种的原产地环境相比,引入地新环境中存在的专食性天敌较少。外来物种可能会逃避其原产地环境中的天敌牧食,又因为它们的适口性相对较差,从而导致在引入地外来物种通常比本地物种遭受的牧食者影响更低(天敌逃逸假说)。本研究的目的是比较水盾草与共生的本地沉水植物对本地牧食者的响应。我们进行了一个中宇宙尺度实验,研究了水盾草和两种共生的本地沉水植物黑藻(Hydrilla verticillata)和穗花狐尾藻(Myriophyllum spicatum)对两种本地广食性腹足纲螺类萝卜螺(Radix swinhoei)和环棱螺(Sinotaia quadrata)的牧食响应。记录了它们的形态性状指标(总生物量、冠根比和相对生长率)和生理性状指标(叶片总非结构性碳、木质素和纤维素)。研究结果表明,环棱螺对3种沉水植物性状指标的影响较少。随着本地广食性螺类萝卜螺数量的增加,黑藻和穗花狐尾藻大部分植物性状发生了改变,而水盾草的植物性状表现出相对稳定的趋势。水盾草对萝卜螺的牧食更具抵抗力,这与天敌逃逸假说的假设一致。这一发现说明牧食性螺类促进了水盾草的入侵,这可能会改变沉水植物群落中的物种组成。  相似文献   

6.
李宽意  刘正文  胡耀辉  王传海 《生态学报》2006,26(10):3221-3224
报道了2005年7~9月在太湖试验基地进行的椭圆萝卜螺对沉水植物牧食的实验结果.结果表明,椭圆萝卜螺对3种沉水植物的平均牧食率为7.87mg·g-1·d-1,其中对苦草的牧食率最高(13.63 mg·g-1·d-1),马来眼子菜次之(9.66mg·g-1·d-1),轮叶黑藻最低(0.31mg·g-1·d-1),且牧食率与螺规格呈显著负相关.椭圆萝卜螺对沉水植物的牧食具有选择性,喜食苦草而较少选食其他两种沉水植物.椭圆萝卜螺的食物选择性能力与其规格有关,随着生长对沉水植物的选择性加强.探讨了椭圆萝卜螺对沉水植物的选食机理.  相似文献   

7.
“螺-草”的互利关系   总被引:15,自引:2,他引:13  
水生态系统中存在螺-草互利现象。然而,植食性螺类与水生植物之间是否存在这种互利关系目前尚无定论。椭圆萝卜螺(肺螺亚纲)与铜锈环棱螺(前腮亚纲)是常见的淡水螺类,其中,椭圆萝卜螺能牧食多种水生植物的活体。通过室外实验,研究了这两种螺类在不同密度条件下对沉水植物(苦草)生长的影响。实验结果表明,低密度的椭圆萝卜螺促进了苦草的生长,螺、草之间存在明显的互利关系,高密度时螺类对苦草植株本身的大量牧食则显著限制了植物的生长。对铜锈环棱螺而言,不同密度的螺类均明显促进了受附生生物胁迫的苦草的生长,螺-草互利关系成立。分析认为,螺-草互利关系的存在是有其限制条件的,对植食性螺类而言,只有在较低的螺类密度条件下才存在这种互利关系。  相似文献   

8.
李宽意  刘正文  胡耀辉  王传海 《生态学报》2006,26(10):3221-3224
报道了2005年7~9月在太湖试验基地进行的椭圆萝卜螺对沉水植物牧食的实验结果。结果表明,椭圆萝卜螺对3种沉水植物的平均牧食率为7.87mg•g-1•d-1,其中对苦草的牧食率最高(13.63 mg•g-1•d-1),马来眼子菜次之(9.66mg•g-1•d-1),轮叶黑藻最低(0.31mg•g-1•d-1),且牧食率与螺规格呈显著负相关。椭圆萝卜螺对沉水植物的牧食具有选择性,喜食苦草而较少选食其他两种沉水植物。椭圆萝卜螺的食物选择性能力与其规格有关,随着生长对沉水植物的选择性加强。探讨了椭圆萝卜螺对沉水植物的选食机理。   相似文献   

9.
叶片损害强度与基质营养水平对苦草补偿性生长的影响   总被引:3,自引:0,他引:3  
通过室外双因子控制试验,研究了叶片损害强度与基质营养水平对沉水植物苦草补偿性生长的影响.结果表明:叶片损害与基质类型对苦草的累积生物量、生物量的分配(根叶比)及分株数均有显著影响.与未受损植物相比,强受损使苦草的累积生物量及无性分株数显著降低,根叶比明显升高,而弱受损与未受损处理之间没有明显差别.与营养贫瘠的岸泥相比,生长在肥力较高湖泥中的苦草的累积生物量较高,而根叶比与分株数较低;叶片损害与基质类型对苦草的相对生长率也有显著影响,受损使苦草的生长率明显提高,而两受损处理之间无显著差别.未受损与强受损时,湖泥中苦草的生长速率明显高于岸泥,弱受损时则相近.并初步探讨了水生植物受损后的补偿生长机理.  相似文献   

10.
孙旭  杨柳燕 《微生物学通报》2018,45(11):2376-2386
【背景】底栖动物是湖泊生态环境的重要组成部分,在泥水界面氮迁移转化中扮演着重要的角色,是一个潜在的N_2O释放源,其N_2O释放量与栖息环境有关。蓝藻堆积区通常是湖泊N_2O释放的热点区域,其水质环境不同于无藻区。【目的】为了解蓝藻堆积与无藻堆积时底栖动物河蚬N_2O释放情况。【方法】采用室内微宇宙实验,以河蚬为研究对象,通过气相色谱和现代分子生物学相结合的技术测定蓝藻堆积区域底栖动物N_2O释放特征及其内在微生物学机制。【结果】蓝藻堆积区河蚬N_2O释放通量为447.2pmol/(ind·h),相比无藻区河蚬减少63%左右。河蚬肠道内总细菌及反硝化细菌对蓝藻堆积有不同的响应。454测序结果显示,无藻区河蚬肠道内细菌以变形菌门(β-和δ-变形菌纲)、绿弯菌门和拟杆菌门为主,三者相对丰度为67.3%,而蓝藻堆积区河蚬肠道细菌优势类群为变形菌门(α-和β-变形菌纲),相对丰度达到85.8%。Chao1和Shannon指数表明,蓝藻堆积区河蚬肠道细菌丰富度和多样性低于无藻区河蚬。对河蚬肠道内具有反硝化功能细菌进一步分析发现,蓝藻堆积区河蚬肠道内反硝化菌相对丰度可达到22.6%,是无藻区河蚬的2.3倍,反硝化作用得到增强。【结论】蓝藻堆积导致河蚬肠道内细菌丰富度和多样性降低,反硝化功能菌丰度增加,完全反硝化作用得以强化,导致河蚬N_2O释放通量降低。研究结果有助于揭示富营养化中湖泊底栖动物的环境效应,为湖泊温室气体控制提供理论支撑,具有重要的理论和现实意义。  相似文献   

11.
The relationships between producers (e.g., macrophytes, phytoplankton and epiphytic algae) and snails play an important role in maintaining the function and stability of shallow ecosystems. Complex relationships exist among macrophytes, epiphytic algae, phytoplankton, and snails. We studied the effects of snail communities (consisting of Radix swinhoei, Hippeutis cantori, Bellamya aeruginosa, and Parafossarulus striatulus) on the biomass of phytoplankton and epiphytic algae as well as on the growth of three species of submerged macrophytes (Hydrilla verticillata, Vallisneria natans, and one exotic submerged plant, Elodea nuttallii) in a 90‐day outdoor mesocosm experiment conducted on the shore of subtropical Lake Liangzihu, China. A structural equation model showed that the snail communities affected the submerged macrophytes by grazing phytoplankton and epiphytic algae (reduction in phytoplankton Chl‐a and epiphytic algal abundance), enhancing the biomass of submerged macrophytes. Highly branched macrophytes with high surfaces and morphologies and many microhabitats supported the most snails and epiphytic algae (the biomass of the snail communities and epiphytic algae on Hverticillata was greater than that on Vnatans), and snails preferred to feed on native plants. Competition drove the snails to change their grazing preferences to achieve coexistence.  相似文献   

12.
太湖环棱螺(Bellamya sp.)及其与沉水植物的相互作用   总被引:4,自引:0,他引:4  
白秀玲  谷孝鸿  何俊 《生态学报》2009,29(2):1032-1037
选用太湖常见的环棱螺及沉水植物,研究了不同状态下环棱螺营养盐的释放特征,探讨了环棱螺对水体营养盐、透明度和浮游藻类的影响,及其与沉水植物的相互作用.结果表明:在一定温度范围内,环棱螺营养盐的释放速率随温度升高而增加,且进食状态下释放速率高于饥饿状态;环棱螺能在短时间内提高水体透明度,但其营养盐释放又引起局部水体溶解态氮磷含量的增加;适宜的条件下,水体中藻类的再生能力超过环棱螺对其的抑制力;水体营养盐含量增加,促进与环棱螺共存的伊乐藻和轮叶黑藻的生长.在太湖的不同湖区,草型湖区螺类的生物量远高于藻型湖区,这表明沉水植物可能是影响螺类分布的重要生态因子之一.  相似文献   

13.
太湖蓝藻死亡腐烂产物对狐尾藻和水质的影响   总被引:8,自引:0,他引:8  
为揭示富营养化造成淡水生态系统中沉水植物消亡的机制,本文就太湖蓝藻大规模死亡腐烂后的产物对水体水质以及沉水植物造成的影响进行了研究。本文以沉水植物穗花狐尾藻为研究对象,测定了水质参数(pH值,浊度(NTU),温度,溶解氧(DO),电导率(Ec),盐度,磷酸根(PO43-))以及狐尾藻Fv/Fm指标。将采自太湖梅梁湾的蓝藻水华,降解一个星期左右。随后在处理组中加入该蓝藻降解物,对照组中不加入。结果表明,加入蓝藻死亡腐解液后,水体的溶解氧、pH值均比对照组显著降低,浊度则显著升高。对照组中穗花狐尾藻生长良好,其Fv/Fm约为0.8,而经蓝藻腐烂液处理的实验组,穗花狐尾藻在两天之内便接近死亡状态,其Fv/Fm值降至0.3左右。以上结果表明蓝藻死亡腐烂后形成的腐解液确实能在很短时间内给沉水植被带来灭顶之灾。而在短时间内并不能形成大量附着生物,故本实验可排除其对水生植物的影响。本文证实了蓝藻死亡腐烂后的降解液极有可能是导致沉水植物消亡的主要原因。至于是由于蓝藻腐解液引起的哪种因素起主导作用,还有待进一步研究。  相似文献   

14.
西太湖水生植物时空变化   总被引:37,自引:3,他引:37  
水生植物在浅水湖泊生态系统中具有十分重要的作用。根据中国科学院太湖湖泊生态系统研究站1989年以来的常规监测资料,将西太湖(除东太湖以外的湖区)划分为9个区,采用点截法(point intercept method),于2002~2005年对各区水生植物的种类、生物量和空间分布情况进行了6次调查。结果表明:西太湖现有水生植物16种,分属于11科12属;水生植物总面积约10220hm^2,其中沉水植物分布面积约占64.58%;挺水植物约占0.29%;漂浮植物约占38.16%。各个种之间生物量差异显著,马来眼子菜、荇菜、芦苇的生物量在所有水生植物中居前3位。多样性分析表明,水生植物种类4a来未发生明显变化,但种类和生物量季节性差异较大。水生植物呈环状分布在距湖岸5km以内的水域和部分岛屿周围,东岸和南岸为水生植物的主要集中分布区域,分布区连续性好,且水草种类齐全。挺水植物种类单一,仅有芦苇(Phragmites communis)一种,分布区域多限于水深小于1.6m的湖岸;沉水植物共有8种,为水生植物的主要组成部分,马来眼子菜(Potamogeton malaianus)的分布频度最高,在西山岛周围水域逐年扩张,成为该区域的先锋种;漂浮植物3种,主要以荇菜(Nymphoides peltata)为主,在七都水域有逐渐扩张的趋势。马来眼子菜、芦苇、荇菜表现出对水环境较强的适应能力,目前为西太湖的3个优势种。20世纪50年代以来,西太湖水生植物种类减少了50种,其中水质下降是导致水生植物种类不断减少甚至消失的一个重要原因。围网养殖和不合理的捕捞方式也对局部水域的植物造成极大的破坏。水生植物生存环境日益严峻,种群单一化趋势日益明显。  相似文献   

15.
Global warming may affect snail–periphyton–macrophyte relationships in lakes with implications also for water clarity. We conducted a 40-day aquaria experiment to elucidate the response of submerged macrophytes and periphyton on real and artificial plants to elevated temperatures (3°C) under eutrophic conditions, with and without snails present. With snails, the biomass and length of Vallisneria spinulosa leaves increased more at the high temperature, and at both temperatures growth was higher than in absence of snails. The biomass of periphyton on V. spinulosa as well as on artificial plants was higher at the highest temperature in the absence but not in the presence of snails. The biomass of Potamogeton crispus (in a decaying state) declined in all treatments and was not affected by temperature or snails. While total snail biomass did not differ between temperatures, lower abundance of adults (size >1 cm) was observed at the high temperatures. We conclude that the effect of elevated temperature on the snail–periphyton–macrophyte relationship in summer differs among macrophyte species in active growth or senescent species in subtropical lakes and that snails, when abundant, improve the chances of maintaining actively growing macrophytes under eutrophic conditions, and more so in a warmer future with potentially denser growth of periphyton.  相似文献   

16.
Ecological restoration in eutrophic Lake Wuli: A large enclosure experiment   总被引:2,自引:0,他引:2  
A large-scale enclosure experiment for lake restoration was carried out in Lake Wuli, a northern bay of shallow and eutrophic Lake Taihu in China. The large enclosure with an area of 10 ha was set up in the littoral zone and was bordered by waterproof fabric which did not cover the sediments. Multiple approaches were used and included fish removal, piscivorous fish stocking, shoreline reconstruction, aquatic macrophyte planting, benthic macro-animal stocking, and silver carp cultivation in pens for reduction of cyanobacteria. The results showed that the coverage of aquatic macrophytes increased from 0% to 45.7%. Mean concentrations of TN and TP inside the enclosure from May 2004 to May 2008 were 22.2% and 26.0% of those outside, respectively. Secchi depth was 0.40 m outside the enclosures and 0.75 m inside. However, responses of phytoplankton to the restoration project lagged behind improvement of water quality and reestablishment of aquatic plants. The phytoplankton biomass gradually decreased after the third year of the restoration. Stocking piscivorous fish and planting submerged macrophytes could not increase zooplankton biomass and enhance graze pressure on phytoplankton, most likely due to high omnivorous fish density and lower nutrition inside the enclosure. Higher grazing pressure of zooplankton on phytoplankton was observed in May and October every year. Zooplankton to phytoplankton biomass ratios were significantly negatively correlated with phytoplankton biomass outside (r = −0.440, p < 0.01) and inside the enclosure (r = −0.336, p < 0.05) from February 2004 to March 2007. Therefore, phytoplankton biomass inside and outside the enclosure was lower in May and October. Higher grazing pressure of zooplankton on phytoplankton in spring may result in occurrence of the clear-water phase that facilitated growth of submerged macrophytes in the littoral in Lake Wuli, and a clear-water state and improved water quality would likely be sustained throughout the year after reestablishment of submerged macrophytes.  相似文献   

17.
Submerged macrophytes play a key role in maintaining a clear‐water phase and promoting biodiversity in shallow aquatic ecosystems. Since their abundance has declined globally due to anthropogenic activities, it is important to include them in aquatic ecosystem restoration programs. Macrophytes establishment in early spring is crucial for the subsequent growth of other warm‐adapted macrophytes. However, factors affecting this early establishment of submerged macrophytes have not been fully explored yet. Here, we conducted an outdoor experiment from winter to early spring using the submerged macrophytes Potamogeton crispus and Vallisneria spinulosa to study the effects of shading, nutrient loading, snail herbivory (Radix swinhoei), and their interactions on the early growth and stoichiometric characteristics of macrophytes. The results show that the effects strongly depend on macrophyte species. Biomass and number of shoots of P. crispus decreased, and internode length increased during low light conditions, but were not affected by nutrient loading. P. crispus shoot biomass and number showed hump‐shaped responses to increased snail biomass under full light. In contrast, the biomass of the plant linearly decreased with snail biomass under low light. This indicates an interaction of light with snail herbivory. Since snails prefer grazing on periphyton over macrophytes, a low density of snails promoted growth of P. crispus by removing periphyton competition, while herbivory on the macrophyte increased during a high density of snails. The growth of V. spinulosa was not affected by any of the factors, probably because of growth limitation by low temperature. Our study demonstrates that the interaction of light with snail herbivory may affect establishment and growth of submerged macrophytes in early spring. Macrophyte restoration projects may thus benefit from lowering water levels to increase light availability and making smart use of cold‐adapted herbivores to reduce light competition with periphyton.  相似文献   

18.
太湖水华程度及其生态环境因子的时空分布特征   总被引:2,自引:0,他引:2  
张艳会  李伟峰  陈求稳 《生态学报》2016,36(14):4337-4345
湖泊水华是全世界面临的严重生态环境问题之一,对人类和生态系统健康都有重大影响。由于湖泊水华受流域面源、点源污染、气候、水文因子以及湖泊生态系统自身特征等众多因素影响,水华是否爆发、其严重程度及时空分布特征呈现明显的复杂性。以我国太湖为研究区域,基于近年的水华及水环境的监测数据,用自组织特征映射神经网络对太湖不同监测点的水华程度进行了自动聚类分析。结果表明,太湖水华程度呈现为明显的无水华、轻度、中度和重度水华4类。不同程度水华的叶绿素a、水温、COD_(Mn)、营养盐、浮游植物生物量以及藻种(蓝藻、绿藻、硅藻)结构的时空差异显著,不同变量间的关系复杂,有助于深入认识太湖近年水华发生的时空变异特性。  相似文献   

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