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1.
胡冬  吕光辉  王恒方  杨启  蔡艳 《生态学报》2021,41(17):6738-6748
荒漠生态系统多样性的研究对维持荒漠区群落稳定性有着重要意义。以艾比湖流域荒漠植物群落为研究对象,基于野外样方调查数据及实验分析,探讨不同水分梯度下植物多样性与稳定性的变化规律及土壤因子对二者的影响。结果表明:(1)随土壤水分含量下降,Shannon-Wiener多样性指数(H)、Simpson多样性指数(D)、Pielou均匀度指数(J)、Margalef丰富度指数(R)和种群密度稳定性(ICV)指数均呈下降趋势,且当土壤含水量低于4.65%时,荒漠植物多样性与群落稳定性总体显著降低(P<0.05);(2)不同水分梯度下影响艾比湖流域植物多样性的土壤因子具有差异性,高水梯度为硝态氮与有机质,中水梯度下影响植物多样性的因子为pH,低水梯度为全氮和有机质;(3)仅在环境适宜的情况下,土壤因子(土壤含盐量与有机质)才能对群落稳定性产生显著影响(P<0.01);(4)三种梯度下,物种多样性均对群落稳定性有显著性影响(P<0.001),植物多样性与群落稳定性存在正相关关系。  相似文献   

2.
赵敏  赵锐锋  张丽华  赵海莉  周远刚 《生态学报》2019,39(11):4116-4126
湿地植物多样性的研究对维持湿地生态系统完整性和稳定性有着重要意义。以黑河中游湿地为研究对象,基于野外采样数据和不同盐分梯度植物群落多样性指数,重点分析不同盐分梯度植物多样性变化及其与土壤因子关系。结果表明:黑河中游湿地植物组成比较丰富,共出现植物30科71属102种;随土壤盐分梯度增加,植物群落组成发生显著变化,Margalef丰富度指数(R)和Shannon-Weiner多样性指数(H)均减小,说明研究区植物多样性随盐分增加而减少;不同盐分梯度影响植物多样性的土壤因子存在差异,低盐梯度是pH、速效钾和全氮,中盐梯度是pH、速效磷和速效钾,高盐梯度是有机质、全磷、速效钾和速效氮。该研究结果对于认识不同盐分梯度下影响植物多样性的主要土壤因子具有重要意义,同时对黑河中游湿地植物多样性的有效管理和维持具有一定的参考价值。  相似文献   

3.
盐生植物种类及其所具有的不同耐盐调节方式影响着根际微生物群落的结构与组成。为明确不同类型盐生植物根际与非根际土壤中真菌群落结构与组成的差异及其与土壤环境间的相互关系,该研究采集了黄河三角洲地区芦苇、盐地碱蓬、獐毛3种不同类型盐生植物0~20 cm土层的根际和非根际土壤,通过高通量测序对其真菌群落多样性和结构进行了分析,以探究真菌群落特征与土壤理化因子间的关系。结果表明:(1)3种不同类型盐生植物根际土壤真菌群落丰富度显著大于各自非根际土,且獐毛根际土壤真菌群落丰富度显著大于芦苇和盐地碱蓬的根际土。(2)距离热图分析表明,芦苇和盐地碱蓬非根际土壤真菌群落间的相似性最大。(3)土壤真菌多样性和丰富度与土壤总碳、总氮、有效磷、pH呈正相关关系,与土壤盐分含量呈负相关关系。(4)3种不同类型盐生植物的根际与非根际土壤中,球囊菌门(Glomeromycota)均为绝对优势门,盾巨孢囊霉属(Scutellospora)为优势属。(5)RDA分析表明,土壤盐分含量是影响土壤真菌群落结构的重要因子,球囊菌门丰度与土壤总氮、总碳、有效磷、有机碳、pH呈正相关关系,与盐分呈负相关关系。(6)植物土壤真菌群落特征随盐生植物类型的变化以及样本土壤距宿主植物根系远近存在差异。  相似文献   

4.
生态化学计量学是研究生态过程和生态作用中化学元素平衡的科学。极端环境中进行植物叶片与土壤中营养元素含量及变化研究,对于揭示植物对营养元素的需要和当地土壤的养分供给能力,以及植物对环境的适应与反馈能力具有十分重要的意义。以塔克拉玛干沙漠腹地塔中植物园生长良好的25种人工植被及其生境为研究对象,运用方差分析、相关分析综合研究植物叶片及土壤的化学计量特征及其相互关系。结果显示:塔克拉玛干沙漠腹地25种人工植被叶片C、N、P的平均含量分别为(386.7±46.6)、(24.7±8.1)和(1.8±0.78) mg/g;叶片C:N、C:P及 N:P分别为(17.5±6.7)、(249.2±102.8)、(15.0±5.6)。其中豆科植物N含量极显著高于非豆科植物(P<0.001)。不同生活型植物的C、N、P含量均存在显著差异,C、N、P含量在3种生活型的大小顺序为草本>灌木>乔木。C:N和N:P在不同生活型植物间不存在显著差异(P>0.05),而乔木和灌木的C:P显著高于草本植物(P< 0.05)。相关分析表明植物的叶片C:N、C:P都与相应的N、P含量呈现极显著负相关性(P<0.001),而叶片N含量与P含量的变化并不相关(P> 0.05)。土壤C、N、P养分元素含量远低于全国的平均水平,尤其是N含量(<0.2 mg/g);土壤C与N存在着极显著的正相关关系(P<0.01),而C与P、N与P间的相关性并不显著(P>0.05)。以上研究结果表明,受极端环境的限制,塔克拉玛干沙漠人工植被植物对养分元素的利用效率显著低于全国陆地植物的平均水平,不同科和不同生活型功能群植物对环境的适应能力显著不同,表现出显著的养分适应策略差异性。  相似文献   

5.
叶片是植物获取资源的重要器官,研究荒漠植物抗逆性化学性状的种间、种内变异对环境变化的响应有助于揭示植物对极端环境的适应机制。以艾比湖自然荒漠植物群落为研究对象,通过野外调查与实验分析,解析不同土壤水盐环境下群落水平抗逆性化学性状(钾K;钙Ca;钠Na;镁Mg)的差异及其种间、种内变异特征,利用冗余分析、相关性分析,明析群落水平性状种间、种内变异与土壤环境因子间关系及其在不同水盐环境间的变化规律。结果表明:(1)高水盐环境下土壤pH及Ca、Na含量均显著高于低水盐环境;低水盐环境下群落水平K、Na、Mg含量显著高于高水盐环境。(2)高水盐环境下群落抗逆性化学性状的种间变异(Ca除外,P<0.05)、种内变异均低于低水盐环境。(3)高水盐环境土壤因子与群落种间、种内变异相关性较高(|r|>0.3),其中与叶片Ca、Na种间变异普遍为负相关,与Na种内变异多为较强的正相关;低水盐环境种间、种内变异与土壤因子相关性总体较低,其中土壤盐分、水分与叶片Mg的种间变异呈负相关,与Na种内变异呈正相关。综上所述,水盐环境对荒漠植物群落水平的抗逆性化学性状有显著影响,各性状的种间、种内变异与土壤因子间关系在高水盐环境中更为密切,本研究为掌握胁迫环境下植物的适应策略提供依据。  相似文献   

6.
田中平  庄丽  李建贵 《生态学报》2012,32(4):1151-1162
针对伊犁河谷北坡山地的植物多样性和土壤因子沿海拔的分布方式进行研究。对研究地海拔1000-2200m植物和环境特征进行调查,选取群落样地总数为44个,共调查到植物种155种,其中乔木7种、灌木18种、草本130种,调查到的群落类型完全涵盖了研究区所有沿海拔上升的群落类型。通过NLFS高级模拟显示总的物种丰富度、Simpson指数、Shannon-Wiener多样性指数、Pielou均匀度指数都与海拔呈现先升高后降低,再升高的一个特殊分布格局。出现了两个较高的物种丰富度地带,其中一个是低山荒漠到落叶阔叶林,另一个是山地草原到针叶林带。土壤养分和盐分也表现出了类似多样性的分布格局。通过PCA和相关分析表明,环境因子控制着物种丰富度和它的分布方式。水分在低海拔比较重要,在高海拔温度比较重要,而由于逆温层的作用,在较高海拔的针叶林带物种多样性出现了上升。物种丰富度与土壤总盐呈现显著负相关关系(r=-0.343),与土壤全盐也呈现显著负相关关系(r=-0.341)。Simpson指数与土壤pH值呈现显著负相关关系(r=-0.465)。Shannon-Wiener指数与土壤电导率呈现显著负相关关系(r=-0.367)。Pielou均匀度指数与土壤电导率呈现极显著负相关关系(r=-0.477),总之,多样性指数和土样盐分表现出了强相关性。这个研究为伊犁河谷植被与植物资源的保护和利用提供重要的科学依据,为河谷区山地植被与环境关系提供基础科学理论,为山地退化植被的修复提供参考案例和可借鉴的基础性数据。  相似文献   

7.
张宇亭  朱敏  线岩相洼  申鸿  赵建  郭涛 《生态学报》2012,32(22):7091-7101
在温室盆栽条件下,分别模拟单作、间作和尼龙网分隔种植,比较接种丛枝菌根(arbuscular mycorrhizal, AM)真菌Glomus intraradicesGlomus mosseae对菌根植物玉米和非菌根植物油菜生长和磷吸收状况的影响,并分析土壤中各无机磷组分的变化。结果发现,接种AM真菌可以促进土壤中难溶性磷(Ca10-P和O-P)向有效态磷转化,并显著降低总无机磷含量 (P<0.05),显著提高菌根植物玉米的生物量和磷吸收量(P<0.05),特别是在间作体系中使玉米的磷营养竞争比率显著提高了45.0%-104.1% (P<0.05),显著降低了油菜的生物量和磷吸收量(P<0.05),从而增强了了菌根植物的竞争优势,降低了非菌根植物与菌根植物的共存能力。揭示了石灰性土壤中AM真菌对植物物种多样性的影响,有助于更加全面地理解AM真菌在农业生态系统中的作用。  相似文献   

8.
干旱、半干旱地区湖泊周围是盐渍化土壤的主要分布区,盐渍化是荒漠化的主要类型之一。目前,关于盐生植被的分布格局及群落多样性随着盐渍化程度加深的动态变化的研究仍很缺乏,为阐释这种关系,作者在内蒙古干旱、半干旱地区选择吉兰泰(盐池)、乌梁素海、查干诺尔(碱矿)以及额吉诺尔(盐池)等4个湖泊,研究了其周围盐生植物群落的物种组成、分布特征以及群落结构的差异,讨论了群落多样性沿盐分梯度的变化特点,并在此基础上探讨了盐生植物群落对土壤盐分环境的指示意义。为建立群落耐盐值与群落多样性的关系,我们计算了群落耐盐值。结果表明,盐生植物群落沿盐湖呈明显的环带状分布;随着土壤盐渍化程度的增加,按照芨芨草群落(Comm.Achnatherum splendens)、盐爪爪群落(Comm.Kalidiumfoliatum)、盐角草群落(Comm.Salicorniaeuropaea)和碱蓬群落(Comm.Suaedaglauca)的顺序演替,而且物种种类趋向单一化,群落结构趋向简单化。群落的物种多样性和群落间物种的替代速率都随土壤盐分的增加而减小,而群落间物种的相似性则增加。区域性气候特点对盐生植物群落的特征也会产生一定的影响,特别是在低盐渍化的条件下,这种影响比较显著,使得盐生植物群落体现出地带性的特点,而随着土壤盐渍化程度的提高,盐生植物群落的隐域性特征更为突出。因此,这一地区的盐生植被又呈现出非常明显的地带性植被向非地带性植被过渡的特点。  相似文献   

9.
大果圆柏(Juniperus tibetica)群落是三江源地区主要森林群落之一,在保障中国水生态安全、保育生物多样性和延缓气候变化等方面发挥着重要作用。该研究以青海省果洛州班玛县大果圆柏天然群落为对象,通过野外调查和室内分析,以明确群落的物种组成,以及物种多样性与土壤因子的关系,为大果圆柏群落物种多样性保护和资源植物开发利用提供参考。结果表明:(1)大果圆柏群落内共有植物169种,隶属36科101属,其中菊科(Compositae)、蔷薇科(Rosaceae)和毛茛科(Ranunculaceae)植物物种最多,分别占总物种的14.20%、13.61%和9.47%。(2)大果圆柏群落的灌、草层物种多样性特征差异显著,草本层的丰富度(2.90)、多样性(2.35)和优势度指数(0.80)均高于灌木层丰富度(1.03)、多样性(1.45)和优势度指数(0.70),而均匀度指数(0.79)低于灌木层(0.89)。(3)0~60 cm土层林地土壤有机质、全氮、全磷含量及pH均值分别为(87.54±20.32) g·kg-1、(4.68±1.36) g·kg-1、(0.83±0.18) g·kg-1和6.73±0.51。(4)灌木层Margalef指数、Shannon Wiener指数与土壤有机质含量呈极显著正相关关系(P<0.01);草本层Margalef指数、Shannon Wiener指数与土壤全钾含量呈显著负相关关系(P<0.05),与土壤pH呈显著正相关关系(P<0.05)。研究认为,青海省大果圆柏林地土壤有机质、全钾含量和pH是影响群落物种多样性的主导因子。  相似文献   

10.
藏北高寒草原针茅属植物AM真菌的物种多样性   总被引:4,自引:0,他引:4       下载免费PDF全文
蔡晓布  彭岳林  杨敏娜  盖京苹 《生态学报》2011,31(20):6029-6037
基于AMF孢子形态学鉴定,对藏北高寒草原4种针茅菌根际土壤进行了研究,结果表明:(1)高原寒、旱环境下,Glomus属真菌在不同针茅菌根际AM真菌种群构成中的地位和作用非常突出,其孢子密度、种数、相对多度和重要值均显著(P≤0.05)大于AcaulosporaScutellospora属。(2)针茅属植物种类对AM真菌物种多样性具有重要影响,广布种沙生针茅Shannon-Weiner指数、物种均匀度指数相对最高(分别为1.79和0.72),其次分别为羽柱针茅、紫花针茅和昆仑针茅;青藏高原特有针茅属植物菌根际AMF的繁殖能力相对较强,羽柱针茅、紫花针茅、昆仑针茅孢子密度分别较沙生针茅提高57.8%、48.7%\,62.4%。(3)不同针茅菌根际土壤中,同种AM真菌(共有种)和优势种(F>50%)较多、优势种种类差异很大的种群分布特征,体现了AM真菌种群构成的复杂性,以及AMF对高原寒旱环境的高度适应性、协同性。(4)不同针茅菌根际AMF优势种相对多度高达78.2%-92.4%(平均为85.7%),对AM真菌的群落构成具有重要作用。其中,G. claroideum孢子密度即占4类针茅AM真菌优势种的50.2%-71.9%。  相似文献   

11.
The objective of this study was to investigate the genetic diversity of barley accessions.Additionally,association trait analysis was conducted for grain yield under salinity,heading date and plant height.For this purpose,48 barley genotypes were analyzed with 22 microsatellite simple sequence repeat (SSR) markers.Four of the 22 markers (Bmac316,scssr03907,HVM67 and Bmag770) were able to differentiate all barley genotypes.Cluster and principal coordinate analysis allowed a clear grouping between countries from the same region.The genotypes used in this study have been evaluated for agronomic performance in different environments.Conducting association analysis for grain yield under salinity conditions using TASSEL software revealed a close association of the marker Bmag749 (2H,bin 13) in two different environments with common significant alleles (175,177),whereas the HVHOTR1 marker (2H,bin 3) was only significant in Sakhar_Egypt with alleles size being 158 and 161.Heading date also showed an association with scssr03907 through the common significant specific allele 111 and EBmacO415 markers in three different agro climatic locations,whereas HVCMA,scssr00103 and HVM67 were linked to heading date in the Egyptian environment only.The plant height association analysis revealed significant markers Bmag770 via the significant allele 152 and scssr09398.  相似文献   

12.
实地调查了甘肃敦煌西湖国家级自然保护区的湿地植物群落和环境因子,综合比较了各种多样性指数及环境因子,并应用SPSS统计软件的多元方差分析功能筛选出自变量x(含盐量)和因变量y(平均盖度).应用了曲线参数估计法对24个湿地植物群落样方的平均盖度和土壤含盐量进行多次回归模型拟合,最终提出了最优的拟合模型为Logarithmic对数曲线模型,曲线方程:y=1.076-0.391lnx,P(Sig.=0.009)<0.01,并提出模型存在的不足及改进之处,旨在为我国西北干旱地区的湿地植物多样性保护提供科学依据.  相似文献   

13.
Negative species co‐occurrence patterns have long intrigued ecologists because of their potential link to competition. Although manipulative field experiments have consistently revealed evidence of competition in natural communities, there is little evidence that this competition produces negative co‐occurrence patterns. Evidence does suggest that abiotic variation, dispersal limitation and herbivory can contribute to patterns of negative co‐occurrence among species; it is possible these influences have obscured a link with competition. Here, we test for a connection between negative co‐occurrence and competition by examining a small‐scale, relatively homogeneous old‐field plant community where the influence of abiotic variation was likely to be minimal and we accounted for the impact of herbivory with an herbivore exclosure treatment. Using three years of data (two biennial periods), we tested whether negatively co‐occurring pairs of species, when occasionally found together, experienced asymmetric abundance decline more frequently than positively co‐occurring pairs, for which there is no such expectation. We found no evidence that negatively co‐occurring pairs consistently suffered asymmetric abundance decline more frequently than positively co‐occurring pairs, providing no evidence that competition is a primary driver of negative co‐occurrence patterns in this community. Our results were consistent across control and herbivore exclosure treatments, suggesting that herbivores are not driving patterns of negative species co‐occurrence in this community. Any influence of competition or herbivory on co‐occurrence patterns is small enough that it is obscured by other factors such as substrate heterogeneity, dispersal and differential species responses to climatic variation through time. We interpret our results as providing evidence that competition is not responsible for producing negative co‐occurrence patterns in our study community and suggest that this may be the case more broadly.  相似文献   

14.
The bacteria of PDMCd0501, PDMCd2007, and PDMZnCd2003 were isolated from a Zn/Cd contaminated soil. They were classified as salt-tolerant bacteria in this experiment. The bacteria had indole-3-acetic acids (IAA) production, nitrogen fixation, and phosphate solubilization, under 8% (w/v) NaCl condition. Biochemical test (API 20E) and 16S rDNA sequencing identified PDMCd2007 and PDMCd0501 as Serratia sp. and PDMZnCd2003 was Pseudomonas sp. The effect of Pseudomonas sp. PDMZnCd2003 on the germination and seedlings of Oryza sativa L.cv. RD6 was determined under a salinity of 0–16 dS/m. The salinity levels of 4–16 dS/m affected to decrease germination and seedlings of rice. Comparison between uninoculated and inoculated system, however, Pseudomonas sp. PDMZnCd2003 had a negative impact on the rice growth. This unexpected effect was a case that should be concerned and studied further before application as a plant growth-promoting bacteria (PGPB).  相似文献   

15.
Abstract Dryland salinity presents an overwhelming threat to terrestrial and aquatic habitats in Australia, and yet there remains very little empirical evidence of the impacts of secondary salinization on the biodiversity of riparian communities. Here we describe the response of a riparian plant community to stream and soil salinization, 25 years after the experimental clearing of a catchment in south‐western Australia. Riparian plant species diversity was inversely related to soil salinity, and plant species composition was significantly altered by increased soil salinity. Despite the evidence for an impact of salinization on the taxonomic diversity and composition of the riparian plant community, there was little evidence for any effect of salinization on functional group diversity, or on ecological functioning, as measured by the percentage of above‐ground plant cover.  相似文献   

16.
赵丽娅  钟韩珊  齐开  梅新 《生态学报》2021,41(9):3724-3733
为明确围封和放牧对科尔沁沙地植物群落种间关联的影响,在对植物群落进行样方调查的基础上,采用方差比率法(VR)、χ2检验、Ochiai指数、Spearman秩相关分析对种间关联性及相关性进行研究,得出如下结论:(1)围封和放牧改变了群落物种组成,围封群落出现30个物种,主要物种16个;放牧群落出现物种21个,主要物种13个。(2)VR值显示围封和放牧群落总体均呈正关联性,χ2检验表明围封群落正联结显著率大于负联结显著率,主要物种间显著联结率为27.5%,放牧群落仅有显著正联结种对4个,占6.06%,OI值与χ2检验结果基本一致。(3) Spearman秩相关分析表明,围封群落显著正相关对数略高于显著负相关对数,放牧群落则相反,且围封群落显著相关水平种对占比(44.17%)高于放牧群落(12.82%),故围封群落处于稳定发展阶段,而放牧群落处于退化阶段。  相似文献   

17.
Experimentation with woody perennials may be difficult due to slow plant growth and a lack of sufficient amounts of uniform plant material. In this study, we sought to determine whether rooted leaves could be used as a substitute for whole plants in ion accumulation studies. Grapevine leaves are particularly amenable for rooting since their petioles are of sufficient length for dipping in rooting hormone and for holding the leaf above the soil surface. To determine whether rooted leaves would be useful for salinity experiments, we investigated the ion uptake characteristics of rooted leaves derived from a backcross population that differed in Cl accumulation. Long-term ion accumulation studies conducted over several weeks and short-term radioactive uptake studies conducted over several hours were performed. The data showed that the Cl content of rooted grapevine leaves from different genotypes grown at 25 and 50 mM NaCl was similar to data reported by others. Short-term radioactive uptake assays did not always reveal differences in uptake between the genotypes. Therefore, we suggest that rooted leaves under certain conditions may provide a space-efficient method for generating sufficient amounts of plant material. This material could be used for studying whole plant, molecular and electrophysiological aspects of ion transport and for conducting experiments where root material from specific genotypes is required.  相似文献   

18.
植物抗盐分子机制及作物遗传改良耐盐性的研究进展   总被引:2,自引:0,他引:2  
盐胁迫是全球农业生产上的一个主要逆境因子。解析耐盐分子机制有助于培育耐盐能力提高的作物新品种。我们综述了植物对盐胁迫的感应及信号传导、主要Na^+运输体、盐胁迫下的解毒途径以及耐盐途径中涉及到的表观遗传研究。此外,我们还讨论了利用遗传改良手段提高作物耐盐性的研究进展。  相似文献   

19.
Drought and Salt Tolerance in Plants   总被引:8,自引:0,他引:8  
Agricultural productivity worldwide is subject to increasing environmental constraints, particularly to drought and salinity due to their high magnitude of impact and wide distribution. Traditional breeding programs trying to improve abiotic stress tolerance have had some success, but are limited by the multigenic nature of the trait. Tolerant plants such as Craterostigma plantagenium, Mesembryanthemum crystallinum, Thellungiella halophila and other hardy plants could be valuable tools to dissect the extreme tolerance nature. In the last decade, Arabidopsis thaliana, a genetic model plant, has been extensively used for unravelling the molecular basis of stress tolerance. Arabidopsis also proved to be extremely important for assessing functions for individual stress-associated genes due to the availability of knock-out mutants and its amenability for genetic transformation. In this review, the responses of plants to salt and water stress are described, the regulatory circuits which allow plants to cope with stress are presented, and how the present knowledge can be applied to obtain tolerant plants is discussed.  相似文献   

20.
Soil health is essential and irreplaceable for plant growth and global food production, which has been threatened by climate change and soil degradation. Degraded coastal soils are urgently required to reclaim using new sustainable technologies. Interest in applying biochar to improve soil health and promote crop yield has rapidly increased because of its multiple benefits. However, effects of biochar addition on the saline–sodic coastal soil health and halophyte growth were poorly understood. Response of two halophytes, Sesbania (Sesbania cannabina) and Seashore mallow (Kosteletzkya virginica), to the individual or co‐application of biochar and inorganic fertilizer into a coastal soil was investigated using a 52 d pot experiment. The biochar alone or co‐application stimulated the plant growth (germination, root development, and biomass), primarily attributed to the enhanced nutrient availability from the biochar‐improved soil health. Additionally, the promoted microbial activities and bacterial community shift towards the beneficial taxa (e.g. Pseudomonas and Bacillus) in the rhizosphere also contributed to the enhanced plant growth and biomass. Our findings showed the promising significance because biochar added at an optimal level (≤5%) could be a feasible option to reclaim the degraded coastal soil, enhance plant growth and production, and increase soil health and food security.  相似文献   

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