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1.
通过相关系数和通径系数分析方法,对不同海拔高度裂叶沙参(Adenophora lobophylla)气孔行为与光合、蒸腾特性的关系进行了相关性分析。气孔行为对光合、蒸腾均缺乏显的相关性,说明裂叶沙参光合、蒸腾作用的气孔控制不显;裂叶沙参叶片气孔开度直接影响光合速率和胞间CO2浓度,气孔导度对裂叶沙参蒸腾速率影响较大。  相似文献   

2.
裂叶沙参和泡沙参气孔行为与蒸腾特性的关系   总被引:4,自引:2,他引:2  
采用LI-6400便携式光合分析系统对裂叶沙参和泡沙参进行了不同遮光水平蒸腾速率的测定,并同步测定了叶片气孔大小、气孔密度、气孔开度和气孔导度等气孔行为.采用相关系数和通径系数分析方法分析了不同遮光水平裂叶沙参和泡沙参气孔行为与蒸腾特性的关系.结果表明:不同遮光水平测定的气孔行为对裂叶沙参和泡沙参蒸腾作用的直接影响大致相同,其中,两种沙参的气孔密度对蒸腾速率的直接影响较大.但泡沙参的气孔导度与蒸腾作用具有极显著的相关关系.  相似文献   

3.
遮光条件下裂叶沙参和泡沙参气孔行为的对比研究   总被引:1,自引:1,他引:0  
通过遮光实验研究了裂叶沙参(Adenophora lobophylla)和泡沙参(A.potaninii)叶片的气孔行为,比较了不同遮光处理对裂叶沙参和泡沙参气孔的生理特性以及生态适应的影响。结果表明:裂叶沙参对不同遮光处理的适应性较差,相反,泡沙参具有较强的适应性和抗逆性;在自然光照和轻度遮光条件下,中午时泡沙参叶片的孔开度逐渐减小和部分气关闭;裂叶沙参光合作用的非气孔限制占主要地位,泡沙参光合  相似文献   

4.
遮光条件下裂叶沙参和泡沙参气孔行为的对比研究   总被引:8,自引:2,他引:8  
通过遮光实验研究了裂叶沙参(Adenophora lobophylla)和泡沙参(A. potaninii)叶片的气孔行为,比较了不同遮光处理对裂叶沙参和泡沙参气孔的生理特性以及生态适应的影响。结果表明:裂叶沙参对不同遮光处理的适应性较差,相反,泡沙参具有较强的适应性和抗逆性;在自然光照和轻度遮光条件下,中午时泡沙参叶片的气孔开度逐渐减小和部分气孔关闭;裂叶沙参光合作用的非气孔限制占主要地位,泡沙参光合作用的气孔限制较明显。  相似文献   

5.
借助于光镜和扫描电镜,系统观察了濒危植物裂叶沙参(Adenophora lobo-phylla Hong.)的根、芦头、茎和叶的解剖特征及茎、叶、种子的表面形态特征,并将有关性状与广布种泡沙参(A.potaninii Korsh.)作了对比研究。结果表明,两种沙参在叶表皮细胞形状,垂周壁式样,角质层初级雕纹及次级雕纹;叶片气孔形状及外拱盖外缘纹饰及内缘形状,保卫细胞上角质层薄厚及蜡质纹饰;叶表毛状体形状及纹饰,茎中皮层占茎横切面的比例;茎中有无髓纤维等方面存在着明显差异。相对于泡沙参,裂叶沙参单株叶面积大,生物量高,表皮角质层薄,单位面积内被毛数量少,栅栏组织薄,气孔周围蜡质沉积颗粒少;茎的直径大,皮层较薄等。这些特征表明裂叶沙参对旱生生境适应能力弱,而泡沙参对旱生生境适应能力强。  相似文献   

6.
作物光合、蒸腾与水分高效利用的试验研究   总被引:54,自引:6,他引:48  
王会肖  刘昌明 《应用生态学报》2003,14(10):1632-1636
通过田间试验,对作物光合、蒸腾、气孔行为及其影响因素进行了研究。结果表明,光合与蒸腾的非线性关系可以用抛物线方程表述,其中光合速率最高时的蒸腾速率为临界值,超出该值即为奢侈蒸腾,干旱处理的临界值较低,通过合适的调控措施,抑制奢侈蒸腾并不影响光合生产,综合分析光合速率、蒸腾速率与气孔导度的关系,气孑L导度大于0.12mol·m-2·s-1,实施提高气孔阻力并抑制蒸腾的措施,既节约水分又促进光合作用,增加产量.光合速率基本上随光合有效辐射的增加而提高,并有光饱和点存在,水分条件影响叶片光合作用达到饱和的早晚,干旱处理的光饱和点远远低于湿润处理,强光需要水分充足相耦合,才能充分发挥光能利用率,蒸腾与辐射的线性关系十分显著。从光合有效辐射入手,在光合有效辐射大于1000μmol·m-2·s-1时实施措施,既可大大降低蒸腾,又可改善光合,节水增产效果不言而喻。  相似文献   

7.
小麦叶片气孔性状与产量和抗旱性的关系   总被引:1,自引:0,他引:1  
以小麦旱选10号/鲁麦14 DH群体为试材,对干旱胁迫和正常灌溉条件下花后10 d和20d旗叶中部气孔密度、气孔大小、气孔导度、光合速率、蒸腾速率与产量和抗旱系数的关系进行相关和通径分析.结果表明:在两种水分条件下,花后10 d气孔密度、气孔大小、气孔导度、光合速率、蒸腾速率与产量和抗旱系数的相关性大多不显著;但花后20 d与千粒重呈极显著正相关,与穗粒数、单株产量和抗旱系数的相关性仍大多不显著.气孔导度、光合速率和蒸腾速率是影响单株产量和抗旱系数的主要因素,不仅对单株产量和抗旱系数的直接作用较大,间接作用也较大;气孔密度与气孔大小对单株产量和抗旱系数的直接作用和间接作用均较小.在两种水分条件下,花后10 d和20 d,气孔密度与气孔长度之间,气孔长度与气孔宽度、气孔导度、光合速率和蒸腾速率之间的相关性均显著或极显著,但气孔密度、气孔长度与气孔导度、光合速率和蒸腾速率间的相关性在不同水分条件和不同生育阶段存在差异,表明水分条件、生长发育阶段对这些性状之间的相关性影响较大.通过育种手段以叶片气孔密度和气孔大小为选择目标,来改善小麦气孔导度、光合速率和蒸腾速率,进而提高产量并不总是一种有效手段.  相似文献   

8.
裂叶沙参和泡沙参种群有性生殖和无性繁殖的比较   总被引:13,自引:0,他引:13  
通过对裂叶沙参(Adenophora lobophylla Hong)和泡沙参(A.potaninii Korsh.)种群有性生殖和无性繁殖特性的对比,揭示濒危植物裂叶沙参的种群内部致濒机制。结果表明:裂叶沙参种群幼苗抢占草本层上层空间能力弱于泡沙参种群;裂叶沙参种群是以相对长的生殖期和高产籽量来适应环境;裂叶沙参种群开花结实量虽高于泡沙参种群,但其中成熟种子少,种子质量差,致使其种群由种子到一年生幼苗的转化率极低,并且幼苗生活力弱,是导致其种群濒危的重要内部原因。裂叶沙参种群除有性生殖外还兼有较弱的无性繁殖,是对其有性生殖的一个重要补充。  相似文献   

9.
指甲油涂抹撕取法制取植物叶气孔装片   总被引:8,自引:0,他引:8  
叶既是植物光合、蒸腾作用的场所,又是呼吸的器官,叶的表皮具较多的气孔,是与外界进行气体交换的门户,也是水气蒸腾的通道.不同植物的气孔数目、形态结构和分布有差异,现介绍一种简便制取植物叶气孔装片的方法--指甲油涂抹撕取法.  相似文献   

10.
在海南东寨港应用气孔计对红海榄红树群落的蒸腾速率、气孔导度和几个生态因子日变化同步进行测定。在12月19日晴天条件下,冠层叶的蒸腾作用上午10—11时达到最高值4.27—4.34μg·cm~(-2)s(-1),午间蒸腾速率下降。群落总蒸腾速率与光合有效辐射、叶内外水汽压差、气温、相对湿度、叶温和风速等因子的复相关达到极显著;对蒸腾速率影响显著的生态因子是光合有效辐射,相对湿度和叶内外水汽压差。红海榄群落日平均蒸腾速率为2502gH_2O·m~(-2)d~(-1),其中冠层叶的蒸腾占总量的63%。  相似文献   

11.
星星草光合蒸腾季节变化与气候因子的关系   总被引:10,自引:4,他引:6  
阎秀峰  孙国荣 《植物研究》1997,17(3):325-331
本项研究工作在测定天然星星草和人工种植生长一至三年星星草光合蒸腾特性季节变化的同时,测定了日照量、气温、地温、相对湿度,降雨量和蒸发量等气候因子的季节变化,并采用相关系数和通径系数分析方法分析了星星草光合蒸腾特性季节变休与气候因子的关系。  相似文献   

12.
弱光下生长的葡萄叶片蒸腾速率和气孔结构的变化   总被引:15,自引:0,他引:15       下载免费PDF全文
 植物能够对生长环境产生生态适应性,这种适应性可从气孔导度、光合速率、水分利用效率等生态指标上反映出来。为了研究葡萄蒸腾特性对弱光环境的适应性变化,本试验以‘京玉’葡萄幼苗(Vitis vinefera cv. Jingyu)为试验材料,通过遮光处理(2个处理,分别遮光65%和85%)营造弱光环境,测定了在弱光环境下生长的葡萄叶片蒸腾速率、气孔导度、水分利用效率对光照强度的响应,同时用扫描电镜技术观察了气孔的发育。结果表明,弱光环境下生长的葡萄幼苗,叶片的水势较高,但水分利用效率较低,叶片蒸腾速率和气孔导度变化对光照强度的响应缓慢,而自然光下生长的葡萄叶片则反应较迅速。通过对气孔结构的研究发现,与自然光照环境下生长的植株相比,在弱光环境下生长的葡萄幼苗,叶片下表皮的气孔横轴变宽,大小气孔之间差异减少,气孔外突,表皮细胞变大甚至扭曲,角质层变薄。说明葡萄幼苗能够对弱光环境产生适应性变化,其蒸腾特性的变化与其气孔结构的变化相关,具有一致性。  相似文献   

13.
三种相思(Acacia)的光合作用与蒸腾作用的研究   总被引:6,自引:0,他引:6  
本文主要探讨了三种相思的光合作用与蒸腾作用,并观测了不同时间内叶面气孔开启状况。 研究结果表明:三种相思中绢毛相思(A.holosericea)光合速率较高,在生长旺季高峰值可达23.16毫克CO_2·分米~(-2)·时~(-1)。此值较马占相思(A.marjian)高90%;较大叶相思(A.auriculaeformis)高22%。绢毛相思叶子生长速度较抉,叶绿素含量、比叶重也较高。在炎热的夏季,绢毛相思依靠叶片上的绒毛避免太阳光垂直照射,保持气孔开放,使光合作用保持正常。这是对环境的积极适应类型。面大叶相思则是利用增厚叶片角质层和关闭气孔的办法避免大量失水,致使光合作用速率下降。这是对环境的消极忍耐类型,这种类型可更加有效地利用水分。  相似文献   

14.
Sap flow, as a measure of transpiration, was monitored in 2-year-old lemon trees growing in pots. Eight trees were used in the experiment, four of which were placed under a rectangular shading net, while the other four were maintained in the open air. Daily averages of canopy conductance and photosynthesis were not affected by shading; however, the daily transpiration was reduced in shaded plants, which displayed an increase in water use efficiency compared with exposed trees. The decoupling coefficient was higher in the shaded trees, indicating that the transpiration of lemon trees was efficiently controlled by stomata in exposed plants, while the transpiration rate was mainly influenced by radiation in the plants growing under the net. This influence was more pronounced in the afternoon, when the whole tree transpiration was largely dominated by equilibrium transpiration in the plants under netting, and the relationship between transpiration and radiation showed a steeper slope in shaded trees. The reduction in transpiration and the maintenance of photosynthesis in shaded plants with respect to exposed trees indicated that screen structures in semi-arid and arid environments could be considered as an intermediate solution for reducing plant water stress and increasing water use efficiency.  相似文献   

15.
Field measurements were made of leaf net photosynthetic rate (Pn), apparent quantum yield (AQY), dark respiration (Rd), transpiration (Tr), water use efficiency (WUE), stomatal conductance (Gs), intercellular CO2 concentration (Ci), leaf temperature (TI), stomatal density, air temperature (Ta) and relative soil water content (SWC) for Adenophora lobophylla Hong in August, 1996. The species grows in the region from an altitude of 2 300 m to 3 400 m on the eastern boundary of the Qing-Zang Plateau in Sichuan Province, China. Leaf gas exchange, water use efficiency and plasticity of populations in field were compared among different altitudes to evaluate the possible interactions between adaptation of A. lobophylla and environmental factors in these habitats. Pn and AQY at low altitudes were lower than those at high altitudes. They strongly responded to SWC and Ta. On the other hand, Rd at low altitudes was higher than that at high altitudes because of the higher air temperature there. The growth rates at low altitudes were associated with the increases in Rd and a relevant less Pn. Stomata showed strong responses to leaf-to-air vapor pressure deficit at the leaf surface (Vpdl) and Tl in these habitats. Increasing stomatal limitations to photosynthesis appeared to be responsible for the reduction in Pn at high Tl, Vpdl and low available soil water for A. lobophylla at low ahitudes. Nonstomatal limitation to photosynthesis also happened at extreme soil water deficits and high Tl and Vpdl at an altitude of 2 300 m. Tr had a close relationship with stomatal conductance and was also affected by leaf temperature and leaf-to-air vapor pressure deficit at the leaf surface among habitats grown in different ahitudes. WUE increased with altitude. Increasing stomatal densities showed different plasticity of A. lobophylla as altitude increased. SWC and Ta appeared to be important factors to limit carbon assimilation in A. lobophylla at low altitudes, primarily through the process of stomatal closure. The overall results are in consistence with the hypothesis that strong pressure from tmfavorable environmental factors to gas exchange and wateruse of A. lobophylla may prevent their population expansion at low altitudes, which indicate that the above-mentioned restrictions might lead to the endangerment of A. lobophylla.  相似文献   

16.
The effects of soil water potential on photosynthesis and transpiration of whole Zygophyllum dumosum Boiss. shrubs were examined with a field IRGA system during a rainless summer. Daily photosynthesis and transpiration activities were not notably different on a unit phyllode area basis among shrubs at naturally differing soil water potentials. Irrigation of shrubs caused phyllodes to increase significantly in water content and new leaflets to appear. Leaflets had three times as many stomata per unit area (23000 stomata cm-2) as phyllodes (7100 stomata cm-2) but photosynthesis and transpiration rates were not measurably different between irrigated and non-irrigated shrubs on a unit area basis. This finding suggests that sufficient soil moisture will lead to increased carbon uptake of the entire shrub simply because the total area of photosynthesizing tissue increases. Gas exchange rates appear to be controlled solely by atmospheric conditions under the stresses of summer.  相似文献   

17.
裂叶沙参与泡沙参种群分布格局分形特征的分析   总被引:23,自引:0,他引:23       下载免费PDF全文
 裂叶沙参与泡沙参种群在不同海拔区域分布格局的计盒维数与其在群落中占据空间的能力成正比,并且与环境因素密切相关。在裂叶沙参与泡沙参种群较为适生的区域,海拔2700~3100m,两者在群落中占据空间的能力最强,他们的计盒维数达到最高。在低于海拔2700m或高于海拔3100m,环境条件严酷的区域,裂叶沙参种群与泡沙参种群占据空间的能力不同程度的下降。在不同的海拔区域,广布种泡沙参种群占据空间的能力均比裂叶沙参种群高,而其受环境因素影响较弱。在海拔2700m以下地区,泡沙参种群水平分布格局的计盒维数比裂叶沙参种群高4.5倍;在两种群较为适生的区域,海拔2700~3100m,泡沙参计盒维数比裂叶沙参种群高1.5倍,差异最小;在泡沙参与裂叶沙参种群分布的上限,海拔3100m以上地区,两者计盒维数差异又增加,泡沙参计盒维数比裂叶沙参种群高1.8倍。这说明裂叶沙参种群的内在适应力、竞争力比泡沙参种群相对较弱。  相似文献   

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