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1.
植物代谢速率与个体生物量关系研究进展   总被引:3,自引:0,他引:3  
植物的各项生理生态功能(例如,呼吸、生长和繁殖)都与个体生物量成异速生长关系。West, Brown及Enquist基于分形网络结构理论所提出的WBE模型认为:植物的代谢(呼吸)速率正比于个体生物量的3/4次幂。然而,恒定的“3/4异速生长指数”与实测数据、植物生理生态学等研究之间存在矛盾,引发激烈的争论。论文分析了不同回归方法对代谢指数的影响,重点对植物代谢速率与个体生物量异速生长关系研究进展进行了综述,分析并得出了植物代谢指数在小个体时接近1.0,并随着生物量的增加而系统减小,且其密切依赖于氮含量的调控的结论。据此,提出了进一步深入研究植物代谢速率个体生物量关系需要解决的一些科学问题。  相似文献   

2.
运用经典试管反应法结合纸色谱法对大金发藓的化学成分进行初步测定,其中含有挥发油、油脂、糖类、皂苷、生物碱、黄酮、香豆素及其萜类化合物。采用MTT法对大金发藓醇提物进行体外细胞毒活性检测,其对多种肿瘤细胞的生长均产生一定影响,并可显著抑制L1210白血病细胞的增殖(IC5077.22μg/m L)。以三种不同类型的白血病细胞(L1210小鼠淋巴白血病细胞,K562人慢性髓系白血病细胞和U937人急性单核白血病细胞)为实验模型,比较了大金发藓孢子体和配子体细胞毒活性的差异。在相同条件下,孢子体对白血病细胞的杀伤能力远优于配子体。本文首次比较研究了大金发藓孢子体和配子体的抗癌活性,该结果不仅为大金发藓的传统用药提供了科学依据,同时也为大金发藓抗肿瘤新药研发方向提供了新思路。  相似文献   

3.
龚莉  翟伟  吕丹  张世航  戈玉莹  洪志  陶冶 《植物研究》2022,42(4):544-555
提高繁殖输出是入侵植物成功入侵的重要机制,但不同生境间繁殖器官性状变异特征尤其是性状权衡关系可能会存在差异。以入侵植物北美车前(Plantago virginica)为研究对象,采集草坪、荒地和林下3个生境的植物花序,探究花穗及花序柄的形态、生物量及其异速生长关系在不同生境间的差异性。结果表明:不同生境北美车前大部分花序形态与生物量指标存在显著差异,草坪和荒地生境花序属细长型,而林下生境则为矮壮型。北美车前繁殖器官不同性状间的异速生长关系既有保守型也有易变型,体现出不同的环境敏感性。不同生境间北美车前繁殖器官资源分配的个体大小依赖关系也存在不一致性。可见,北美车前花序性状及资源分配在不同生境间既存在一定的可塑性也具有相对保守性,这可能是其高入侵能力的重要原因。  相似文献   

4.
生物量分配模式影响着植物个体生长和繁殖到整个群落的质量和能量流动等所有层次的功能, 揭示高寒灌丛的生物量分配模式不仅可以掌握植物的生活史策略, 而且对理解灌丛碳汇不确定性具有重要意义。该研究以甘肃南部高山-亚高山区的常绿灌丛——杜鹃(Rhododendron spp.)灌丛的7个典型种为对象, 采用全株收获法研究了不同物种个体水平上各器官生物量的分配比例和异速生长关系。结果表明: 7种高寒杜鹃根、茎、叶生物量的分配平均比例为35.57%、45.61%和18.83%, 各器官生物量分配比例的物种差异显著; 7种高寒杜鹃的叶与茎、叶与根、茎与根以及地上生物量与地下生物量之间既有异速生长关系, 也有等速生长关系, 异速生长指数不完全支持生态代谢理论和小个体等速生长理论的参考值; 各器官异速生长关系的物种差异显著。结合最优分配理论和异速生长理论能更好地解释陇南山地7种高寒杜鹃生物量的变异及适应机制。  相似文献   

5.
气候变暖正持续影响着陆地生态系统的结构和功能, 一直是备受关注的热点问题。异速生长关系被认为是生物界中的一种普遍规律, 但我们对于气候变暖如何影响植物异速生长特征所知甚少。该文采用开顶式增温小室对野外自然生境进行模拟增温的方法, 研究了气候变暖对江西武功山亚高山草甸植物群落优势种野古草(Arundinella anomala)和芒(Miscanthus sinensis)异速生长特征的影响。结果表明: 野古草和芒的大多数形态指标之间均具有显著或极显著相关生长关系和异速生长关系, 气候变暖强化了两种禾本科植物大多数形态特征之间的异速生长, 或改变了其原有的生长关系。气候变暖还导致野古草和芒的基部茎粗与其高度、穗长间由原有的等速生长关系转变为异速生长关系; 野古草基部茎粗与小穗数间的异速生长随着温度升高而趋于增强。气候变暖导致野古草个体高度与其叶片长度的异速生长关系转变为等速生长关系, 而芒有相反表现。同时, 增温促进了野古草株高及叶鞘长的生长, 较强增温则改变了芒株高和叶鞘长之间的生长关系; 野古草和芒的叶片形态特征之间几乎都表现为类似的异速生长关系, 增温对其异速生长指数无显著影响。研究表明气候变暖对不同植物和植物构件具有差异性影响, 这种差异性往往与植物的适应性有关。  相似文献   

6.
四种一年生荒漠植物构件形态与生物量间的异速生长关系   总被引:4,自引:0,他引:4  
谢然  陶冶  常顺利 《生态学杂志》2015,34(3):648-655
1年生草本植物是古尔班通古特沙漠夏秋季节草本层片的主要组成部分。选择4种藜科1年生草本植物(刺沙蓬、沙蓬、角果藜和对节刺)作为研究对象,对比分析了各物种构件形态特征、生物量分配以及它们之间的异速生长关系。结果表明:沙蓬个体最大,其次为刺沙蓬,角果藜和对节刺个体最小;对节刺具有最大的根冠比(R/S),其次是刺沙蓬,沙蓬和角果藜R/S最小。4种植物构件形态与生物量间均呈显著正相关,表现出强烈的协同变化趋势。R/S与绝大部分指标间呈显著负相关,表明随个体增大地下生物量分配比例逐渐减小。4种植物各构件形态、地上及地下生物量间大部分呈指数1.0的异速生长关系,但各物种间的异速生长指数绝大部分无显著差异且具有共同的异速生长指数。研究表明:尽管物种不同、个体大小迥异,但4种1年生植物构件特征间多具有相同的生长速率和协同变化特征,体现了1年生植物这一生活型内的不同物种对干旱荒漠环境的趋同适应。  相似文献   

7.
杨力  王满堂  陈晓萍  孙俊  钟全林  程栋梁 《生态学报》2020,40(21):7745-7754
叶面积与叶生物量的关系对于理解植物叶片的碳收益和投资权衡策略具有重要意义。收益递减假说认为植物的叶面积与叶生物量成显著异速生长关系,其异速生长指数<1.0,但该假说是否适用于不同生活型(常绿与落叶)亚热带木本植物不同冠层高度(上下冠层)当年生小枝的叶片仍不清楚。以江西亚热带常绿阔叶林的69种常绿与落叶木本植物当年生小枝上的叶为研究对象,采用标准化主轴回归估计(standardized major axis estimation,SMA)方法检验不同冠层高度和生活型叶面积与叶生物量的异速生长关系。结果显示:(1)当年生小枝叶生物量在不同冠层高度和生活型的植物中无显著差异(P>0.05),叶面积在常绿和落叶植物中有显著差异(P<0.05),常绿和落叶植物的比叶重存在显著差异(P<0.05),而落叶植物的比叶重在不同冠层高度存在显著差异(P<0.05),同一冠层,常绿植物比叶重显著高于落叶植物(P<0.05);(2)69种植物的叶面积与叶生物量异速生长指数具有物种特异性,60.9%的物种叶面积与叶生物量呈等速生长关系;(3)不同冠层和生活型植物的叶面积与叶生物量呈等速生长关系,但其异速生长常数在不同冠层高度与生活型间存在差异。这些结果表明冠层高度和生活型未改变叶面积-生物量之间的等速生长关系,不支持"收益递减"假说。  相似文献   

8.
尖叶拟船叶藓种群能量生殖配置的研究   总被引:1,自引:0,他引:1  
首次报道了苔藓类植物的能量生殖配置情况.在尖叶拟船藓(Dolichomitriopsis diversiformis)种群整个生长周期中,各器官热值由大到小顺序为:雌器苞(9305.1 J/g)>成熟孢子体(9196.1 J/g)>配子体(4075.6 ~ 6558.6 J/g).能量配置比例的顺序为:配子体>孢子体>雌器苞.配子体生长所分配的能量占绝对优势,成熟孢子体的能量配置仅为3.2 %.实验结果表明:尖叶拟船叶藓生殖器官(雌器苞和孢子体)的能量配置较低,但具有较高的热值,生殖期需要消耗较多的能量.  相似文献   

9.
在长白山哈尼泥炭沼泽,应用“固有年际标记”,对有孢子体和无孢子体生产的桧叶金发藓种群进行了年龄结构与生长分析.结果表明,在两种群中,分株均由6个龄级组成,分株数量和生物量年龄结构均呈衰退型,有孢子体生产的种群尤为明显.总体分株生物量无显著差异(P>0.05),各龄分株干物质积累量均随龄级增加呈相似线性增长规律.总体分株平均高度相差6.17%(P<0.05),孢子体生产限制了分株高度的生长.各龄分株的平均高度均随龄级增加而呈相似线性增长规律.无孢子体生产的种群内,分株高度的变异程度仅为2.44%,体现了高度一致性对营养株存活的意义.有孢子体生产的种群内,分株高度变异系数为25.07%,分株生物量变异系数仅为8.25%,反映干物质积累量的一致性对种群实现有性繁殖的意义.两种群分株生物量与高度间呈极显著线性正相关(P<0.001),未表现出异速生长规律.  相似文献   

10.
吴金  张朝晖  王智慧 《植物研究》2020,40(4):481-489
喀斯特天坑微环境对植物结构特征有显著的影响。采用扫描电子显微镜,探究孔雀藓属蒴齿在喀斯特天坑内的亚显微结构,旨在为微环境下藓类植物蒴齿结构特征研究提供参考。研究结果表明:①基于蒴齿的亚显微形态研究,孔雀藓属两个种,即黄边孔雀藓(Hypopterygium flavo-limbatum C.Muell)、东亚孔雀藓(Hypopterygium japonicum Mitt)蒴齿双齿层,内外齿层数均为16枚,外齿层背面均具"Z"字形的中脊,齿片形态、曲向、外齿层背侧脊纹、齿条腹侧横纹以及是否具节瘤具有明显的差异,属于稳定性特征,可作为系统分类的依据;而齿片长度、宽度、节片数、横脊数、中脊数,属于可变性特征,受环境因子的影响,在运用藓类植物蒴齿作为系统分类依据时应作性状的筛选。②光照度、空气温度、空气湿度以及海拔是影响天坑内黄边孔雀藓(H.flavo-limbatum)蒴齿形态结构发育生长的主要环境因子,空气湿度、光照度以及人为干扰度是影响天坑内东亚孔雀藓(H.japonicum)蒴齿形态结构发育生长的主要环境因子。两种孔雀藓属植物蒴齿结构受湿度的影响最大,其生境多为湿度大、土壤含水量丰富的环境。  相似文献   

11.
Morphological characters from the gametophyte and sporophyte generations have been used in land plants to infer relationships and construct classifications, but sporophytes provide the vast majority of data for the systematics of vascular plants. In bryophytes both generations are well developed and characters from both are commonly used to classify these organisms. However, because morphological traits of gametophytes and sporophytes can have different genetic bases and experience different selective pressures, taxonomic emphasis on one generation or the other may yield incongruent classifications. The moss order Hookeriales has a controversial taxonomic history because previous classifications have focused almost exclusively on either gametophytes or sporophytes. The Hookeriales provide a model for comparing morphological evolution in gametophytes and sporophytes, and its impact on alternative classification systems. In this study we reconstruct relationships among mosses that are or have been included in the Hookeriales based on sequences from five gene regions, and reconstruct morphological evolution of six sporophyte and gametophyte traits that have been used to differentiate families and genera. We found that the Hookeriales, as currently circumscribed, are monophyletic and that both sporophyte and gametophyte characters are labile. We documented parallel changes and reversals in traits from both generations. This study addresses the general issue of morphological reversals to ancestral states, and resolves novel relationships in the Hookeriales.  相似文献   

12.
At an early stage of growth gametophytes support the sporophytes of ferns. Young sporophytes become independent of gametophytes when the first leaves develop. Although large fern gametophytes produce multiple archegonia simultaneously, only one sporophyte is typically established on one gametophyte. The number of sporophytes is believed to be controlled in two possible directions, from gametophyte to sporophyte or from preceding sporophyte to another sporophyte. To investigate the effects of gametophytes on their sporophytes, we studied the relationship between organic matter production by gametophytes and the growth of young sporophytes of Thelypteris palustris. We cut gametophytes in half (CGs) to reduce the gametophytes’ production of matter. There was no significant difference between the growth of sporophytes on intact gametophytes (IGs) and that on CGs. According to our estimates, based on the rate of organic matter production, the large gametophyte was able to produce two or more sporophytes. The resources required for CGs to make similar-sized sporophytes was twice that for IGs. In polyembryony each of the multiple sporophytes was similar in size to the single sporophytes. Resource limitation does not seem to explain why fern gametophytes establish single sporophytes.  相似文献   

13.
West、Brown和Enquist提出的植物分形网络模型(简称WBE模型)认为: 植物的分支指数(1/a, 1/b)决定植物的代谢指数, 当分支指数1/a、1/b分别为理论值2.0、3.0时, 代谢速率与个体大小的3/4次幂成正比, 但是恒定的3/4代谢指数并不能全面地反映植物的代谢情况。基于分支指数的协同变化, Price、Enquist和Savage对WBE模型进行扩展, 提出植物分支参数协同变化模型(简称PES模型)。该文借助于PES模型分析了7种木本植物的分支指数和代谢指数。结果表明: 物种间叶面积与叶生物量呈异速生长关系, 基于叶面积得到的分支指数1/a和代谢指数θ在物种间无显著差异, 基于叶生物量得到的分支指数1/a、1/b和代谢指数θ在物种间均存在显著差异, 但基于叶面积和叶生物量分别拟合出的整体分支指数1/a、1/b和代谢指数θ与理论值均无显著差异, 且用叶面积作为代谢速率的替代指标比用叶生物量分析得出的代谢指数与理论值更接近。今后研究应当关注植物叶面积与叶生物量的异速生长关系对植物代谢速率及相关功能特性的影响。  相似文献   

14.
《植物生态学报》2014,38(6):599
West、Brown和Enquist提出的植物分形网络模型(简称WBE模型)认为: 植物的分支指数(1/a, 1/b)决定植物的代谢指数, 当分支指数1/a、1/b分别为理论值2.0、3.0时, 代谢速率与个体大小的3/4次幂成正比, 但是恒定的3/4代谢指数并不能全面地反映植物的代谢情况。基于分支指数的协同变化, Price、Enquist和Savage对WBE模型进行扩展, 提出植物分支参数协同变化模型(简称PES模型)。该文借助于PES模型分析了7种木本植物的分支指数和代谢指数。结果表明: 物种间叶面积与叶生物量呈异速生长关系, 基于叶面积得到的分支指数1/a和代谢指数θ在物种间无显著差异, 基于叶生物量得到的分支指数1/a、1/b和代谢指数θ在物种间均存在显著差异, 但基于叶面积和叶生物量分别拟合出的整体分支指数1/a、1/b和代谢指数θ与理论值均无显著差异, 且用叶面积作为代谢速率的替代指标比用叶生物量分析得出的代谢指数与理论值更接近。今后研究应当关注植物叶面积与叶生物量的异速生长关系对植物代谢速率及相关功能特性的影响。  相似文献   

15.
Jones VA  Dolan L 《Annals of botany》2012,110(2):205-212

Background

Almost all land plants develop tip-growing filamentous cells at the interface between the plant and substrate (the soil). Root hairs form on the surface of roots of sporophytes (the multicellular diploid phase of the life cycle) in vascular plants. Rhizoids develop on the free-living gametophytes of vascular and non-vascular plants and on both gametophytes and sporophytes of the extinct rhyniophytes. Extant lycophytes (clubmosses and quillworts) and monilophytes (ferns and horsetails) develop both free-living gametophytes and free-living sporophytes. These gametophytes and sporophytes grow in close contact with the soil and develop rhizoids and root hairs, respectively.

Scope

Here we review the development and function of rhizoids and root hairs in extant groups of land plants. Root hairs are important for the uptake of nutrients with limited mobility in the soil such as phosphate. Rhizoids have a variety of functions including water transport and adhesion to surfaces in some mosses and liverworts.

Conclusions

A similar gene regulatory network controls the development of rhizoids in moss gametophytes and root hairs on the roots of vascular plant sporophytes. It is likely that this gene regulatory network first operated in the gametophyte of the earliest land plants. We propose that later it functioned in sporophytes as the diploid phase evolved a free-living habit and developed an interface with the soil. This transference of gene function from gametophyte to sporophyte could provide a mechanism that, at least in part, explains the increase in morphological diversity of sporophytes that occurred during the radiation of land plants in the Devonian Period.  相似文献   

16.
Despite the importance of assessing the stability of epigenetic variation in non-model organisms living in real-world scenarios, no studies have been conducted on the transgenerational persistence of epigenetic structure in wild plant populations. This gap in knowledge is hindering progress in the interpretation of natural epigenetic variation. By applying the methylation-sensitive amplified fragment length polymorphism (MSAP) technique to paired plant-pollen (i.e., sporophyte-male gametophyte) DNA samples, and then comparing methylation patterns and epigenetic population differentiation in sporophytes and their descendant gametophytes, we investigated transgenerational constancy of epigenetic structure in three populations of the perennial herb Helleborus foetidus (Ranunculaceae). Single-locus and multilocus analyses revealed extensive epigenetic differentiation between sporophyte populations. Locus-by-locus comparisons of methylation status in individual sporophytes and descendant gametophytes showed that ∼75% of epigenetic markers persisted unchanged through gametogenesis. In spite of some epigenetic reorganization taking place during gametogenesis, multilocus epigenetic differentiation between sporophyte populations was preserved in the subsequent gametophyte stage. In addition to illustrating the efficacy of applying the MSAP technique to paired plant-pollen DNA samples to investigate epigenetic gametic inheritance in wild plants, this paper suggests that epigenetic differentiation between adult plant populations of H. foetidus is likely to persist across generations.  相似文献   

17.
Yamagishi T  Hishinuma T  Kataoka H 《Planta》2004,219(2):253-260
Protoplasts of the marine coenocytic macrophyte Bryopsis plumosa (Hudson) C. Agardh. [Caulerpales] can easily be obtained by cutting gametophytes or sporophytes with sharp scissors. When a protoplast isolated from a gametophyte was fused with a protoplast isolated from a sporophyte of this alga, it germinated and developed into either one of two completely different forms. One plant form, named Type G, appeared quite similar to a gametophyte, and the other, named Type S, looked similar to a sporophyte. While the Type G plant contained many small nuclei of gametophyte origin together with a single giant nucleus of sporophyte origin, the Type S plant contained many large nuclei of uniform size. These large nuclei in the Type S plant had metamorphosed from the gametophytic nuclei, and were not formed through division of the giant nucleus of sporophyte origin. Fragments of the Type S plant, each having such a large nucleus, developed into creeping filaments that look very similar to sporophytes. While cell walls of gametophytes and Type G plants were stained by Congo-red, those of the thalli of regenerated Type S plants and sporophytes were not stained by the dye. This indicated that the large nuclei of the Type S plant did not express genes for xylan synthesis, which are characteristic of gametophytes. Two-dimensional gel electrophoretic analysis revealed that most of the proteins synthesized in the Type S plant were identical to those of sporophytes. These results strongly suggest that in the Type S plant, the gametophytic nuclei are transformed into sporophyte-like nuclei by an unknown factor(s) produced by the giant nucleus of sporophyte origin and that the transformed nuclei express the set of genes characteristic of sporophytes. Despite morphological similarity, however, the regenerated Type S plant could not produce zoospores, because its large nuclei did not divide normally. The transformed large nuclei of gametophyte origin still seemed to be in the haploid state.Abbreviations DAPI 4,6-Diamidino-2-phenylindole - DIC Differential interference contrast - IEF Isoelectric focusing - PES Provasolis enriched seawater  相似文献   

18.
Total soluble proteins, peroxidase, and peroxidase isozymes were examined in polyploid series of fern gametophytes and sporophytes. A distinctive pattern of protein bands was associated with gametophytes and sporophytes and the pattern did not vary within each phenotype with increases in the genome. Peroxidase activity per cell increased in direct proportion to increases in the genome and was determined to be gene dosage related. Slight differences in the patterns of peroxidase isozyme bands were associated with increases in the chromosome complement in both series of plants, but major variations were found between gametophyte and sporophyte. Quantitative analysis of peroxidase activity in each band revealed both increases and decreases in individual isozymes as ploidy increased. These findings suggest the involvement of regulatory mechanisms controlling isozyme activity.  相似文献   

19.
Peter Convey 《Oecologia》1994,100(1-2):45-53
A comparison is made of the reproductive effort (RE), considered as the investment in sporophyte relative to gametophyte biomass, of eight species of moss occurring at sub-and maritime Antarctic sites. Six of the species showed smaller sporophytes and game-tophytes at the climatically more extreme maritime Antaretic sites and one species showed no size difference between regions. The remaining species, although showing no regional difference, showed some evidence of a reverse pattern, with higher altitude samples having greater biomass than lower altitude samples. Spore counts indicated a measure of compensation in maritime Antarctic samples, with no significant decrease in spore output in several species despite smaller sporophyte biomass. The relationship between sporophyte (S) and gametophyte (G) biomass within samples was described by an allometric curve (S=aG b ) which gave a better fit than a straight line for six species. This form of model allows comparisons of patterns of RE to be made between samples with non-or partially overlapping size distributions, even when the relationship involves size-dependence. An allometric curve was not appropriate for describing samples of one species (Andreaea regularis), and insufficient data were available to identify any relationship in Polytrichum alpinum. The exponent (b) differed between species, but there were no statistically significant differences between exponents from samples of the same species. Samples of two species could further be described by the same coefficient (a), indicating that they lie on the same curve. However, samples of three species from sub-Antarctic South Georgia gave significantly higher coefficients, indicating increased RE relative to maritime Antarctic populations.  相似文献   

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