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71.

Background and Aims

Zinc uptake in roots is believed to be mediated by ZIP (ZRT-, IRT-like proteins) transporters. Once inside the symplast, zinc is transported to the pericycle, where it exits by means of HMA (heavy metal ATPase) transporters. The combination of symplastic transport and spatial separation of influx and efflux produces a pattern in which zinc accumulates in the pericycle. Here, mathematical modelling was employed to study the importance of ZIP regulation, HMA abundance and symplastic transport in creation of the radial pattern of zinc in primary roots of Arabidopsis thaliana.

Methods

A comprehensive one-dimensional dynamic model of radial zinc transport in roots was developed and used to conduct simulations. The model accounts for the structure of the root consisting of symplast and apoplast and includes effects of water flow, diffusion and cross-membrane transport via transporters. It also incorporates the radial geometry and varying porosity of root tissues, as well as regulation of ZIP transporters.

Key Results

Steady-state patterns were calculated for various zinc concentrations in the medium, water influx and HMA abundance. The experimentally observed zinc gradient was reproduced very well. An increase of HMA or decrease in water influx led to loss of the gradient. The dynamic behaviour for a change in medium concentration and water influx was also simulated showing short adaptation times in the range of seconds to minutes. Slowing down regulation led to oscillations in expression levels, suggesting the need for rapid regulation and existence of buffering agents.

Conclusions

The model captures the experimental findings very well and confirms the hypothesis that low abundance of HMA4 produces a radial gradient in zinc concentration. Surprisingly, transpiration was found also to be a key parameter. The model suggests that ZIP regulation takes place on a comparable timescale as symplastic transport.  相似文献   
72.

Background and Aims

Globally, conifer dominance is restricted to nutient-poor habitats in colder, drier or waterlogged environments, probably due to competition with angiosperms. Analysis of canopy structure is important for understanding the mechanism of plant coexistence in relation to competition for light. Most conifers are shade intolerant, and often have narrow, deep, conical crowns. In this study it is predicted that conifer-admixed forests have less distinct upper canopies and more undulating canopy surfaces than angiosperm-dominated forests.

Methods

By using a ground-based, portable light detection and ranging (LIDAR) system, canopy structure was quantified for old-growth evergreen rainforests with varying dominance of conifers along altitudinal gradients (200–3100 m a.s.l.) on tropical and sub-tropical mountains (Mount Kinabalu, Malaysian Borneo and Yakushima Island, Japan) that have different conifer floras.

Key Results

Conifers dominated at higher elevations on both mountains (Podocarpaceae and Araucariaceae on Kinabalu and Cupressaceae and Pinaceae on Yakushima), but conifer dominance also varied with soil/substrate conditions on Kinabalu. Conifer dominance was associated with the existence of large-diameter conifers. Forests with higher conifer dominance showed a canopy height profile (CHP) more skewed towards the understorey on both Kinabalu and Yakushima. In contrast, angiosperm-dominated forests had a CHP skewed towards upper canopy, except for lowland dipterocarp forests and a sub-alpine scrub dominated by small-leaved Leptospermum recurvum (Myrtaceae) on Kinabalu. Forests with a less dense upper canopy had more undulating outer canopy surfaces. Mixed conifer–angiosperm forests on Yakushima and dipterocarp forests on Kinabalu showed similar canopy structures.

Conclusions

The results generally supported the prediction, suggesting that lower growth of angiosperm trees (except L. recurvum on Kinabalu) in cold and nutrient-poor environments results in a sparser upper canopy, which allows shade-intolerant conifers to co-occur with angiosperm trees either as emergents or as codominants in the open canopy.  相似文献   
73.
74.
【目的】研究水稻土淹水培养过程中Fe-氢酶微生物的多样性,对于揭示Fe-氢酶微生物的群落演替规律和产氢微生物的生化代谢机理具有重要的意义。【方法】采用PCR-变性梯度凝胶电泳和实时定量PCR技术进行基于梭菌属Fe-氢酶基因的多样性和丰度的分析。【结果】水稻土淹水培养过程中Fe-氢酶基因的变性梯度凝胶电泳图谱显示,培养1-5 d时Fe-氢酶基因条带数增加,10 d时Fe-氢酶基因条带数减少,20-40 d时Fe-氢酶基因条带数再次增加并保持稳定,对应的含Fe-氢酶微生物的群落结构随着培养过程的进行发生了显著变化。主成分分析表明,1 d与20 d、5 d与10 d、30 d与40 d的含Fe-氢酶微生物群落结构相似性较高,随着培养时间的增长含Fe-氢酶微生物群落结构趋于稳定。α多样性指数分析显示,1 d和10 d的丰富度指数(R)、Shannon-Weaver指数(H’)、Simpson指数(DS)与其他时间点相比较小,说明这2个时间点的Fe-氢酶多样性低,对应的含Fe-氢酶微生物群落结构较为简单,表明淹水培养过程中微生物的群落结构发生了演替变化。变性梯度凝胶电泳指纹图谱15个Fe-氢酶的优势条带测序后构建的系统发育树表明,培养前期的优势条带与梭菌属的Fe-氢酶关系较近,培养后期出现了非梭菌属的Fe-氢酶。淹水培养过程中Fe-氢酶基因的拷贝数在106/g干土的水平,占细菌的相对比例为1‰–2‰。【结论】水稻土淹水培养过程中发现了4种梭菌属Fe-氢酶和3种非梭菌属Fe-氢酶基因,对应的含Fe-氢酶微生物在培养前期群落结构发生显著演替变化,培养后期趋于稳定。  相似文献   
75.
O cervo-do-pantanal (Blastocerus dichotomus, Cervidae) é uma espécie sul americana ameaçada de extinção. Existe pouca informação sobre a biologia desta espécie, incluindo dieta e requerimentos de habitat. O objetivo deste estudo foi determinar as espécies de plantas forrageadas pelo cervo no Pantanal, Brazil, onde se localiza a maior parte de sua população. A dieta do cervo-do-pantanal foi estudada através de microhistologia de restos vegetais em amostras de fezes. Um total de 41 espécies foram identificadas como componentes da dieta, 32 delas sendo consumidas durante a estação de cheias e 31 na estação seca. A maioria das espécies de plantas detectadas na dieta do cervo-do-pantanal é composta de plantas aqu ticas e/ou que apresentam tolerância a inundaç[otilde]es sazonais ou solos encharcados. Blastocerus pode ser melhor definido como um estrategista "pastador-podador" porque grande parte de sua dieta é composta de brotos de várias espécies arbustivas e macrófitas de folha larga. The marsh deer (Blastocerus dichotomus, Cervidae) is a South American endangered species. There is little information on the biology of this species, including diet and habitat requirements. The objective of this study was to determine the plant species foraged by the marsh deer in the Pantanal wetland, Brazil, where most of its population is found. Marsh deer's diet was studied through microscopic analysis of fecal samples for remnants of plant species. A total of 41 species were identified as components of the diet, 32 of them found to be consumed during the flooding season and 31 in the dry season. Most plant species detected in the marsh deer's diet are aquatic and/or present tolerance to seasonal flooding and water-logged soils. Blastocerus could be best defined as a grazer-browser strategist because large part of its diet is composed of shoots of several species of shrub and broad-leaved aquatic macrophytes.  相似文献   
76.
植物间的相互作用对种群动态和群落结构有着重要的影响。大量的野外实验已经揭示了正相互作用(互利)在群落中的普遍存在及其重要性。为了弥补野外实验方法的不足, 模型方法被越来越多地应用于正相互作用及其生态学效应的研究中。该文基于个体模型研究, 探讨了植物间正相互作用对种群动态和群落结构的影响。介绍了植物间正相互作用的定义和发生机制、植物间相互作用与环境梯度的关系。正相互作用是指发生在相邻的植物个体之间, 至少对其中一个个体有益的相互作用。植物通过直接(生境改善或资源富集)或间接(协同防御等)作用使局部环境有利于邻体而发生正相互作用。胁迫梯度假说认为互利的强度或重要性随着环境胁迫度的增加而增加, 但是越来越多的经验研究认为胁迫梯度假说需要改进。以网格模型和影响域模型为例, 介绍了基于个体的植物间相互作用模型方法。基于个体模型, 对近年来国内外正相互作用对种群时间动态(如生物量-密度关系)、空间分布格局和群落结构(如群落生物量-物种丰富度关系)影响的研究进行了总结。指出未来的研究应集中在对正相互作用概念和机制的理解, 新的模型, 新的种群、群落, 甚至生态系统问题, 以及在全球变化背景下进行相关的研究。  相似文献   
77.
78.
Familial hypercholesterolemia (FH) results from impaired catabolism of plasma low density lipoproteins (LDL), thus leading to high cholesterol, atherosclerosis, and a high risk of premature myocardial infarction. FH is commonly caused by defects of the LDL receptor or its main ligand apoB, together mediating cellular uptake and clearance of plasma LDL. In some cases FH is inherited by mutations in the genes of PCSK9 and LDLRAP1 (ARH) in a dominant or recessive trait. The encoded proteins are required for LDL receptor stability and internalization within the LDLR pathway. To detect the underlying genetic defect in a family of Turkish descent showing unregular inheritance of severe FH, we screened the four candidate genes by denaturing gradient gel electrophoresis (DGGE) mutation analysis. We identified different combinatory mixtures of LDLR- and LDLRAP1-gene defects as the cause for severe familial hypercholesterolemia in this family. We also show for the first time that a heterozygous LDLR mutation combined with a homozygous LDLRAP1 mutation produces a more severe hypercholesterolemia phenotype in the same family than a homozygous LDLR mutation alone.  相似文献   
79.
卧龙巴郎山川滇高山栎群落植物叶特性海拔梯度特征   总被引:1,自引:1,他引:0  
刘兴良  何飞  樊华  潘红丽  李迈和  刘世荣 《生态学报》2013,33(21):7148-7156
川滇高山栎林是中国植被非常特殊的亚高山硬叶栎林类型,广泛分布在横断山地区。为了阐明植物群落植物叶型组成对海拔梯度的响应,对卧龙自然保护区巴朗山阳坡川滇高山栎群落植物叶型特征随海拔梯度(15海拔梯度,海拔2200~3600 m)的变化进行了研究。卧龙自然保护区巴朗山各个梯度川滇高山栎群落维管束植物的叶级以小型叶为主,占总种数的平均百分率为36.09%;细型叶和中型叶的维管束植物比例相当,分别为25.64%,25.22%;大型叶和巨型叶维管束植物分别占6.82%~9.94%和0.00%~0.71%;微型叶植物比例在1.28~5.59%;小型叶维管束植物的比例随海拔先降低后升高再降低,最低值出现在海拔3000 m左右。各个海拔梯度川滇高山栎林内维管束植物的叶型以单叶为主,平均占总种数的75.89%,其余为复叶植物,占总种数的24.11%;维管束单叶型植物物种比例随海拔升高变幅较小,在73.84%~78.78%之间,但在海拔2500 m有一个最低值,其比例为73.85%;复叶维管束植物在各海拔梯度群落物种数比例在21.21%~26.15%之间。各海拔川滇高山栎林内维管束植物的叶质以纸叶型为主,平均占总种数的46.03%,其次为薄叶植物(29.17%),革质(22.00%)和厚革质植物(2.79%)。川滇高山栎群落内纸质与厚革质维管束植物种类的比例随海拔升高而降低;革质与薄叶型维管束植物种类的比例随海拔升高而升高。全缘维管束和非全缘维管束植物种类分别占总数的50.50%和49.50%;全缘类维管束植物随海拔升高呈正二项式分布,而非全缘维管束植物则呈相反的分布格局。  相似文献   
80.
基于盐分梯度的荒漠植物多样性与群落、种间联接响应   总被引:2,自引:0,他引:2  
土壤盐分是影响干旱区荒漠植物群落动态的决定因素之一。基于样方调查和不同土壤盐分梯度下植物多样性指数及群落与种间关联的计算结果,分析干旱区荒漠群落植物多样性、群落联接性和种间关联对土壤盐分梯度的响应动态。结果表明,在土壤盐含量为0.03%-0.55% (S1)、0.61%-1.24% (S2)和1.41%-1.79% (S3)的盐分梯度上,(1)随土壤盐含量升高,群落生活型结构改变,草本比例减少,乔木比例增加;(2)植物多样性指数随土壤盐分增加而下降,低盐分梯度下,二者极显著正相关(P<0.01),中盐梯度下二者间呈部分显著负相关(P<0.05),高盐梯度下则转为以正相关为主(P>0.05);(3)群落联接性随土壤盐分梯度转变,在0.61%-1.24%的中度盐含量时正联接性最强(VR=1.89),高盐度含量下群落转为不显著的负联接,稳定性降低;(4)沿盐分升高梯度,种间的负相关种对数增加,正相关种对数减少,种间关联(相关)强度提高,正负相关种对比(PNR)与多样性指数呈显著正相关(P<0.05)。综上可知,干旱区荒漠植物多样性在土壤盐含量达到1.41%-1.79%水平时总体显著降低;土壤盐分水平显著影响植物群落和种间联接性,种间互利性随盐分梯度增加下降,物种趋于独立分布,并最终导致荒漠植物多样性降低。  相似文献   
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