87 resultados para ecosystem functioning

em Chinese Academy of Sciences Institutional Repositories Grid Portal


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生物多样性科学(BiodiversityScience)的国际规划提出生物多样性对生态系统功能的影响是整个研究计划五大核心的核心.生物多样性包括遗传、物种和生态系统三个水平,其中遗传多样性是其它两个水平多样性的基础和最终来源.该文在实验室多年研究毛乌素沙地柠条遗传多样性的基础上,分别从表型(生理生化)、蛋白质、同工酶以及遗传型(rDNA)水平探讨中间锦鸡儿根瘤菌的遗传多样性,并模拟沙地生境,建立人工共生体系,以期发现最有效的共生伙伴关系,这不仅有得提高毛乌素地区农牧业产量,更重要的是在当今沙尘暴肆虐的情况下,发挥柠条防风固沙的能力具有现实意义. 1.毛乌素沙地中间锦鸡儿根瘤菌遗传多样性(1)全细胞可溶性蛋白质谱将供试中间锦鸡儿根瘤菌菌株分为两大类群,其中硬梁覆沙地菌株GH72不同于来自沙丘顶部和底部的菌株,而且中间锦鸡儿根瘤菌独立于参比菌株。酯酶同工酶谱分析表明,中间锦鸡儿根瘤菌与参比菌株仅存在一个等位酶位点差异,其余等位点与参菌株共享,因此,酯酶同工酶反映出中间锦鸡儿根瘤菌的异质性。(2)16SrDNA部分序列与16S-23S rDNA IGS结果表明,所有供试菌株扩增产物均较前人报道的分子量偏高。经16S rDNA PCR-RFLP分析,中间锦鸡儿根瘤菌共形成12种基因型,表现出丰富的遗传多样性,其中属于基因型2的菌株占42.4%。代表菌株GH33 16S rDNA全序列结果显示,与已知的快生型根瘤菌同源性在95%以上。(3)中间锦鸡儿根瘤菌生理生化反应特性B.T.B实验证明所有中间锦鸡儿根瘤菌均产酸,符合快生型根瘤菌的特征.唯一碳源测试显示,95%中间锦鸡儿根瘤菌不利用淀粉,33%菌株不利用乳糖,对其他测试碳源不具有选择性。检洲在不同盐离子浓度、不同酸性梯度以及不同温度条件下菌株生长状况,发现毛乌素沙地中间锦鸡儿根瘤菌具极强的耐盐性.53.8%的菌株可以在9%NaCl的YMA培养基生长.75%的菌株在pH4.O和pHl0,0 环境中仍能生长,66.7%菌株在60℃处理1 0min后仍具有生活力。体现出对于干旱沙地的适应。 2.不同实验共生系统中植物和根瘤菌对生态系统功能的影响14株根瘤菌分与三个柠条种(小叶锦鸡儿,中间锦鸡儿和柠条锦鸡儿)回接,用土壤上覆沙模拟毛乌索沙地景观生态条件,以多石砾贫瘠土壤为对照,比较不同基因型柠条与根瘤菌人工共生体的长和结瘤与生境的关系,初步证明根瘤菌很可能是该生态系统的关键种。寄主植物与共生根瘤菌的遗传多样性对生态系统功能的影响与生态环境有关。实验还表明,选择适当的共生组合对于防治沙漠化有很大潜力。3.银染变性聚丙烯酰胺凝胶电泳检测RAPD遗传模式以85株小钻杨F2代为材料,用本实验室改良的银染变性聚丙烯酰胺凝胶电泳法检测RAPD遗传模式。结果表明,仅用9个引物共扩增到399个位点,其中98个位点表现为多态性,卡方测验显示,79个多态位点符合经典的孟德尔遗传(3:1),占多态位点80.6%。这种改良的检测RAPD标记的方法必将推动RAPD标汜构建连锁图谱的进程。

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植物功能生态学研究不仅提供了植物生理生态学与生态系统生态学的连接,还为植物种群生活史对策研究提供了材料。Westoby 等 (2002) 提出了利用植物功能性状变量的主导维度来确定和量化植物生活史的生态适应策略。在他们所提出四个主导维度中,叶大小-小枝大小是研究相对较少的一维;其内部各组分的关系、对环境的响应,以及与其它重要维度的关系,目前的理解非常有限。 本研究以贡嘎山不同海拔不同功能群物种为研究对象,采用种间比较和系统发生独立性比较等研究方法,系统研究了植物的功能特征及其相关性在不同生境及不同功能群间的差异,旨在分析不同功能群物种的叶大小-小枝大小的成本和收益。其研究结果将有助于我们理解植物生活史对策的进化,进而理解物种共存和维持物种多样性的机制。主要研究结果如下: 1. 叶大小-小枝大小关系 小枝茎横截面积与单叶面积和总叶面积均呈异速生长关系,即总叶面积和单叶面积的增加比茎横截面积的增加速度快。但是,总叶面积和叶片干重的增加却基本上与小枝茎干重的增加等速。系统发生独立性比较研究的结果与此相一致。表明,在某一给定的茎投入时,至少大叶大枝物种不比小叶小枝物种在支撑叶面积和叶片干重方面具有优势。同时,在某一给定的小枝茎投入时,常绿阔叶物种比落叶阔叶物种支撑更少的叶面积。在茎干重与总叶面积的关系中,落叶复叶物种比落叶单叶物种具有更高的y轴截距,表明复叶物种比单叶物种在展叶面积方面更有效。复叶物种与单叶物种相比,通常具有较大的叶大小和小枝大小。 2. 叶大小-叶数量关系 叶大小与数量间在不同的叶片习性、不同的叶片形态以及不同的生境类型的物种间均存在稳定的负的等速生长关系,且这种关系在系统发生独立性比较时依然成立。然而,在某一给定的出叶强度 (单位小枝的叶数量) 时,常绿阔叶物种比落叶物种具有更小的叶面积。而在给定体积基础上的出叶强度时,落叶复叶物种的叶面积显著大于落叶单叶物种,且复叶物种比单叶物种具有更大的叶大小和更小的出叶强度。但是,叶大小与数量间的关系在不同的海拔间并没有显著的差异。 3. 小枝大小-总叶面积关系 在不同的生活型或不同的生境下,小枝上总叶面积与茎干重和小枝干重均呈正的异速生长关系,且斜率显著小于1.0,表明小枝上总叶面积的增加都不能赶上小枝及茎大小的增加。这种“收益递减”表明随着小枝干重的增加,光截取的收益递减。此外,叶面积比 (总叶面积与小枝干重的比值) 与单叶干重呈显著负相关关系,系统发生独立性比较的结果与此相一致。根据以上结果,可以推测,大叶的物种在质量较好的生境中出现,而群落内部小枝茎的寿命较长的物种可以拥有较大的叶片。 4. 叶片色素浓度-LMA关系 随着海拔的升高,阔叶木本植物和草本植物的叶片色素浓度减少,叶绿素a/b和类胡萝卜素/叶绿素比值以及比叶重 (LMA) 增加。然而,在草本植物中的色素浓度、色素比值和LMA的变化比阔叶木本植物的更明显。同时,LMA与叶片色素浓度呈负相关关系,但是在落叶物种中的LMA对色素浓度的影响比常绿阔叶物种更强烈。总之,草本植物的叶片特征对海拔梯度的变化似乎比木本植物更敏感,LMA对叶片色素的保护作用在落叶物种中比在常绿阔叶物种显得更重要。这些结果表明不同生活型物种可能采取不同的保护机制来降低叶绿体器官的损伤和增加他们的碳获取能力。 Studies on plant functional ecology not only bridge plant eco-physiology and ecosystem functioning, but also enrich plant population biology. As pointed out by Westoby et al (2002), plant life history strategies can be identified and quantified by four leading dimensions of variations in plant functional traits, i.e., seed size/output, leaf mass per area and leaf life span, plant height, and leaf size-twig size. Compared to the other dimensions, the cost/benefit of the leaf size-twig size spectrum has scarcely been analyzed in relation to environmental gradients and life form types, and the adaptive significance of this spectrum is not fully understood. In the present study, the relationships between functional traits of plant twigs are determined for the species with different life forms along an altitudinal gradient of Gongga Mountain with both cross-species analysis and evolutionary divergence analysis. The primary objective of this study is to examine the cost/benefit of leaf size-twig size in plants. The study results are supposed to provide insights into the understanding of the mechanism of species coexistences. The results are shown in the following. 1. The relationship between leaf size and twig size Twig cross-sectional area allometrically scaled with both individual leaf area and total leaf area supported by the twigs. However, the increase in total lamina mass/area was generally proportional to the increase in stem mass. These correlations between trait variations were significant in both interspecies analysis and phylogenetically independent comparison (PIC) analysis, which indicated that thick-twigged/large-leaved species, at least, do not have an advantage in supporting leaf/lamina area and lamina mass for the same twig stem investment than thin-twigged/ small-leaved species. Meanwhile, the evergreen broad-leaved species supported a smaller leaf area for the same twig stem investment in terms of both cross-sectional area and stem mass than the deciduous species. The deciduous compound-leaved species have a higher y-intercept in the scaling relationship of twig stem mass versus total leaf area than the deciduous simple-leaved species, indicating that compound-leaved species were more efficient in displaying leaf area. The compound-leaved species were larger in both leaf size and twig size than their counterpart in the present study. 2. The relationship between leaf size and leaf number Significantly negative and isometric scaling relationships between leaf size and leafing intensity (leaf number per twig mass or volume) were found to be consistently conserved across species independent of leaf habit, leaf form and habitat type. The negative correlations between leaf size and leafing intensity were also observed across correlated evolutionary divergences. However, leaf area was smaller in the evergreen broad-leaved species at a given leafing intensity than in the deciduous species. The deciduous compound-leaved deciduous species were higher in leaf area than deciduous simple-laved species at a given volume-based leafing intensity. Moreover, the compound-leaved deciduous species were larger in leaf size but smaller in leafing intensity than their simple counterparts. No significant difference was found in the scaling relationships between altitudes. 3. The relationship between twig size and total leaf area Leaf area was found to scale positively and allometrically with both stem and twig mass (stem mass plus leaf mass) with slopes significantly smaller than 1.0, independent of life form and habitat type, indicating that the increase in total leaf area fails to keep pace with increasing twig size and stem size. This ‘diminishing returns’ suggests that the benefit of light intercept decreased with increasing twig mass. Moreover, the leaf area ratio (the ratio of total leaf area to stem or twig mass) correlated negatively with individual leaf mass. The results of PIC were consistent with the correlations. According to the results, it is speculated that large-leaved species may be favored when habitat is good and when stem longevity are long within community. 4. The relationship between leaf pigment concentrations and leaf mass per area With increasing altitude, the concentrations of pigments decreased, but the ratios of chlorophyll a/b and carotenoid/chlorophyll, and LMA increased, in both the broad-leaved woody species and herbaceous species groups. However, the changes in the pigment concentrations, ratios and LMA were more profound in the herbaceous species than in the woody species. In addition, pigment concentrations were negatively correlated with LMA in each life form type and in the pooled dataset. However, the LMA effect on leaf pigment concentrations was more profound in the deciduous species than in the evergreen braode-leaved species. In general, herbaceous species seemed more sensitive to the increasing altitude compared to woody species, and LMA seemed to be a more important mechanism for protecting leaf pigments in deciduous species than in evergreen broad-leaved species. These results suggested that the species with different life forms may employ different protective mechanisms to decrease the chloroplast apparatus damage and increase their carbon gain.