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1.
两种常见沉水植物与藻的相互作用   总被引:2,自引:1,他引:2  
白秀玲  谷孝鸿  张钰  何俊 《生态环境》2006,15(3):465-468
选用太湖常见的沉水植物苦草(VallisneriaspiralisL.)和轮叶黑藻(HydrillaverticillataRoyle),构建微型生态系统。通过对沉水植物作用下水体中藻类叶绿素a及试验前后沉水植物生物量变化的观测,分析沉水植物与藻类的相互作用。结果表明,(1)相同条件下,苦草和轮叶黑藻对藻类变化的影响没有显著差异。(2)在苦草生物量相同的情况下,藻类叶绿素a初始值越大,其变化速率也越快。叶绿素a初始值差别越大,其变化速率差异越显著。轮叶黑藻也有相似的结果。(3)从试验前后苦草和轮叶黑藻生物量的变化可知,苦草受藻类影响较大,轮叶黑藻几乎没有受到藻的影响。  相似文献   

2.
镉对南美蟛蜞菊光合特性的影响   总被引:10,自引:0,他引:10  
镉(Cd)积累是造成土壤重金属污染的重要因素之一,它是一种对植物生理代谢过程产生诸多影响的环境胁迫因子,光合作用的变化可以直接反映植物对Cd胁迫的适应特性.通过对外来植物南美蟛蜞菊(Wedelia trilobata (L.) Hitchc.)生长过程不同程度的Cd胁迫处理,利用光合气体交换与叶绿素荧光技术,初步观测盆栽土壤中不同质量分数的Cd对南美蟛蜞菊叶片净光合速率、蒸腾速率、水分利用效率、叶绿素质量分数与荧光特征等光合特性的影响.结果显示:①当土壤中Cd质量分数达到5 mg·kg-1时,叶片净光合速率Pn明显降低,但蒸腾速率Tr和气孔导度gs降幅较小,水分利用率WUE则没有表现出明显差异;②随着土壤中Cd的增加,叶绿素a质量分数与叶绿素a/b降低,但叶绿素b变化不明显;③ Cd质量分数达到2 mg·kg-1时,初始荧光Fo与光化效率Fv/Fm变化明显,光系统Ⅱ电子传递速率ETR和量子效率ΦPSⅡ从Cd质量分数为0.5 mg·kg-1起有明显变化.由此看出,Cd对叶绿素有一定程度的破坏作用,其中光反应中心对Cd胁迫尤为敏感,叶片光合速率和光能转化效率的下降与此密切相关.  相似文献   

3.
四环素对铜绿微囊藻光合作用和抗氧化酶活性的影响   总被引:1,自引:0,他引:1  
以铜绿微囊藻(Microcystis aeruginosa)为试验材料,研究了四环素暴露对铜绿微囊藻光合作用和抗氧化酶活性的影响。结果显示,0.80~35.00 mg.L-1四环素暴露胁迫4 d时,铜绿微囊藻的叶绿素荧光和潜在最大电子传递速率(Re,t,max)受到抑制,抑制作用随ρ(四环素)的增加而增强,最大抑制率分别为39.95%和44.08%;暴露7 d时,2者最大抑制率分别升高至59.48%和91.90%。抗氧化酶系统也受到四环素的影响,暴露4和7 d时,超氧化物歧化酶(SOD)活性分别下降30.36%~35.92%和25.03%~35.51%,不同四环素浓度组间差异不显著;过氧化物酶(POD)活性升高,在7 d内呈现诱导现象。可见,四环素暴露能够阻碍铜绿微囊藻光合作用,破坏抗氧化酶系统平衡,抑制藻类生物量的增长。  相似文献   

4.
砷胁迫下蜈蚣草光合作用的变化   总被引:2,自引:0,他引:2  
邓培雁  刘威  韩志国 《生态环境》2007,16(3):775-778
利用荧光成像技术研究了营养液培养条件下砷胁迫对蜈蚣草光合作用的影响。在0、5、10、20和40mg·L-1质量浓度的砷处理中,蜈蚣草地上部、地下部生物量无显著差异(P=0.01),变化范围分别为1.24~1.33,0.24~0.30g;地上、地下部砷质量分数变化范围分别为191~1129和160~548mg·kg-1,其质量分数的比值范围为1.20~2.35。砷胁迫下,全叶片蜈蚣草Fv/Fm变化范围为0.498~0.566,与对照(0.786)相比较下降超过30%;快速光曲线中最大潜在相对电子传递速率(Pm)、半饱和光强(Ik)随砷处理浓度的增加而下降,其变化范围分别为24.52~47.67和140.50~217.45μmol·m-2·s-1,下降比例分别为28%~49%和24%~35%;快速光曲线的初始斜率(α)随砷处理浓度的增加下降不明显,变化范围为0.17~0.22。以上结果显示尽管蜈蚣草对砷超量吸收并且有效向地上部分转移,但Fv/Fm显著下降反映蜈蚣草光合作用受到明显的砷胁迫。Pm、Ik的下降反映出蜈蚣草光耐受能力和电子传递能力在砷胁迫下逐渐减弱;α下降不明显反映蜈蚣草捕光能力在砷胁迫过程中始终维持较高水平,砷胁迫并未对蜈蚣草捕光系统造成显著伤害。  相似文献   

5.
水体营养水平对3种沉水植物生长及抗氧化酶活性的影响   总被引:6,自引:0,他引:6  
模拟研究了沉水植物狐尾藻Myriophyllum spicatum L、轮叶黑藻Hydrilla verticillata L和金鱼藻Ceratophyllum demersum L在中、富两种营养水平下的生长及生理特性.研究结果表明,在45 d的培养过程中,狐尾藻、轮叶黑藻和金鱼藻在中营养(TN1.86 mg·L-1;TP0.087 mg·L-1)和富营养(TN2.47 mg·L-1;TP0.16 mg·L-1)水平下的单株最大生物量分别是0.92、0.27、1.11、0.56、0.41和0.87 g,狐尾藻和金鱼藻在中营养水平下单株最大生物量分别较富营养水平下高出39%和22%,而黑藻在中营养水平下单株最大生物量较富营养水平下低了51%,表明狐尾藻和金鱼藻在中营养水平下的生长较黑藻好.通过对3种沉水植物可溶性蛋白和叶绿素质量分数的分析发现,黑藻在中富两种营养水平下,质量分数较低且波动平稳,金鱼藻和狐尾藻可溶性蛋白和叶绿素质量分数持续升高,表明这两种沉水植物对水体中营养盐的耐受能力较黑藻强.金鱼藻超氧歧化酶(SOD)活性、过氧化物酶(peroxidase)活性和丙二醛(MDA)含量在试验后期上升速度加快,且富营养水平下金鱼藻MDA质量分数的最大值是中营养水平下最大值的5倍,表明在中营养水平下金鱼藻已经受到明显胁迫,而在富营养水平下受到胁迫更为显著.在本试验条件下,黑藻生物量小,而金鱼藻SOD活性、POD活性和MDA质量分数变化幅度大,在试验后期急速上升,表明这两种沉水植物受到的营养盐胁迫较狐尾藻大,而狐尾藻在中营养水平下的耐营养盐胁迫能力较强.  相似文献   

6.
干旱胁迫过程中外源钙对忍冬光合生理的影响   总被引:1,自引:0,他引:1  
李强  曹建华  余龙江  栗茂腾  廖金晶  甘露 《生态环境》2010,19(10):2291-2296
以不同浓度Ca2+对干旱胁迫处理下的忍冬进行化学调控,研究外源Ca2+对干旱胁迫处理下忍冬叶片中叶绿素含量、可溶性糖含量、游离脯氨酸含量、过氧化氢酶活性以及光合速率的影响,以探讨外源Ca2+对缓解干旱胁迫下忍冬光合作用下降的作用机制。结果表明,干旱胁迫下,忍冬的正常生理代谢明显受到抑制,叶绿素质量分数、可溶性糖质量分数、游离脯氨酸质量分数、过氧化氢酶活性以及光合速率分别降低到0.4 mg·g-1、0.06~0.1 mg·g-1、0.8 mg·g-1、0.25 u.mg-1和12~14μmol·m-2.s-1;当施入钙离子后,干旱胁迫对忍冬的伤害得到不同程度的缓解,并在最大程度上稳定叶绿素含量和CAT活性;并能使脯氨酸和可溶性糖的积累显著减少。说明外源Ca2+能够在一定程度上弥补干旱胁迫导致的Ca2+亏缺,使植物维持较正常的生理活动,稳定细胞膜结构,维持体内离子吸收平衡,维持较高的光合速率并保护光合结构。  相似文献   

7.
镉胁迫对小白菜(Brassica campestris L.)抗氧化机理的影响   总被引:2,自引:0,他引:2  
采用水培的方法,研究了不同Cd2 水平(0、1、2.5、5、10、15mg·L-1)对小白菜(Brassica campestris L.)抗氧化酶(SOD、POD、CAT)活性、非酶物质(SH、GSH、PCs)含晕以及生长的影响.结果表明,小白菜叶片和根系SOD活性随Cd处理质量浓度的增加呈降低的变化趋势,POD、CAT活性以及MDA含量随Cd处理质量浓度的增加而增加.小白菜的生物量、根长、株高、叶绿素质量分数随Cd处理质量浓度的增加显著降低(P<0.05),表明Cd抑制了小白菜的生长,破坏了叶绿素的合成.小白菜地上、地下部镉质量分数均随Cd处理质量浓度的增加而显著增加(P<0.05).当Cd处理质量浓度为15 mg·L-1,小白菜地上、地下部镉质量分数分别达到637.5、1 663.0 mg·kg-1,表明小白菜对Cd有良好的富集效果.小白菜根系与叶片中SH、GSH和PCs含量均随Cd处理质量浓度增加而增加的变化趋势,表明SH、GSH和PCs在解毒小白菜Cd毒害中起着重要作用.  相似文献   

8.
以臭椿(Ailanthus altissima)、构树(Broussonetia papyrifera)、大叶黄杨(Buxus megistophylla)和紫穗槐(Amorpha fruticosa)4种抗污染木本植物苗木为材料,在盆栽条件下设置0、250、500、1000和2000 mg·kg^-1 5个锑的质量分数梯度,分析胁迫过程中苗木苗高、地径、生物量、耐性指数、相对叶绿素含量、POD活性和SOD活性等指标的变化,探讨这4种苗木对锑胁迫的生理响应,并通过测定苗木地上、地下部分锑的质量分数,明确这几种植物对锑的积累特征,以期为锑污染植物修复材料筛选提供理论基础。结果表明:在不同质量分数锑胁迫下,4种木本植物的苗高、地茎、生物量及耐性指数出现不同程度的下降,其中大叶黄杨在不同质量分数锑处理下的耐性指数均大于90%,表现出对锑较强的抗性。除大叶黄杨外,在中、中高质量分数(500、1000 mg·kg^-1)锑处理后,其他3种木本植物叶片叶绿素含量较对照均显著下降。而在高质量分数锑胁迫下,4种木本植物的叶绿素含量与对照相比均显著下降,表明锑能通过影响植物的光合作用来降低这4种木本植物的生物量合成。在中高质量分数锑胁迫下,4种植物根系的POD和SOD活性均呈现不同程度的增加;在高质量分数锑胁迫下,臭椿、构树和紫穗槐的POD及SOD活性增加幅度减少或受到抑制,表明抗氧化酶系统在植物抵抗锑胁迫过程中发挥重要作用,同时高质量分数的锑胁迫又能降低抗氧化酶系统清除活性氧的能力。在不同质量分数的锑胁迫下,4种木本植物地上、地下部分锑的质量分数存在差异,分别为构树>紫穗槐>臭椿>大叶黄杨,紫穗槐>构树>臭椿>大叶黄杨,表明大叶黄杨可能通过对锑较强的排斥能力,减少锑对叶绿素合成、POD和SOD活性的抑制作用,近而增强了其对锑胁迫的抗性。固氮植物紫穗槐根系最大锑?  相似文献   

9.
水热炭化终温对污泥生物炭产量及特性的影响   总被引:4,自引:0,他引:4  
以市政污泥为原料,采用水热炭化法制备生物炭,研究水热炭化终温对生物炭产量及特性的影响,着重分析不同水热炭化终温(150~330℃)下生物炭的产率、工业成分、元素组成、重金属质量分数及表面官能团的变化。结果表明:随着水热炭化终温的增大,生物炭的产率从75.8%下降至60.6%,水分、挥发分分别从2.64%与23.62%下降至0.68%与12.57%,灰分从69.59%上升至82.50%,固定碳在3.67%~5.05%波动;N、O、C的质量分数下降,相对污泥分别减小46.4%~64.0%、39.2%~88.0%、24.5%~51.3%,H的则先下降后上升,减小3.3%~-27.6%;OH、C―H和C=C官能团逐渐降解,原子比n((O+N)/C)和n(O/C)下降,n(H/C)上升,芳香性和极性降低,水热炭化进程趋于脱水还原降解反应。生物炭中Zn、Pb、Cu、Cr的质量分数随水热炭化终温的增大而增大,Ni、Cd、As、Hg的则呈现出不一致的变化规律;相对污泥,Zn、Pb、Cu、Cr、Cd的质量分数分别增加14.5%~49.4%、39.1%~82.6%、28.5%~73.4%、7.2%~64.5%、53.8%~88.9%,Hg的减少20.5%~83.1%,Ni和As的则增减不一。  相似文献   

10.
UV-B辐射与酸雨胁迫对生菜生理特性及品质的影响   总被引:3,自引:0,他引:3  
酸雨和紫外辐射的增强是全球环境问题之一,也是目前研究的热点。以生菜(lactuca)为实验材料,在大田条件下,研究了UV-B(280~320nm)辐射与模拟酸雨(AR)的胁迫对生菜生理特性和品质的影响。实验结果表明:UV-B辐射的增加降低了生菜植株的蒸腾速率、叶片中叶绿素a、叶绿素b、叶绿素a b的质量分数,且下降幅度随紫外辐射的增强而增大。UV-B辐射的增加提高了生菜叶片中类黄酮的含量,其增加幅度随紫外辐射的增强而增大。酸雨对生菜的蒸腾速率、叶绿素的质量分数也均有不同程度的影响,酸雨对类黄酮含量的影响不大.品质研究结果表明,随着UV-B辐射的增加,叶片中的水的质量分数持续降低,而抗坏血酸、可溶性糖、可溶性蛋白质的质量分数均先增加后减小,说明存在一个使品质发生突变的阈值范围.酸雨使得生菜中抗坏血酸的质量分数增加,并且增加幅度随pH值的减小而增大;随着酸雨酸度增强,植株中水质量分数持续降低;酸雨使生菜中可溶性糖、可溶性蛋白质的质量分数先减小后增加。在UV-B和酸雨的共同作用下,只有对类黄酮的影响具有明显的协同作用,其他指标表现不明显,但是可以看出复合作用下指标含量下降幅度明显大于单一因子的胁迫,并且下降幅度受UV-B辐射强度和酸雨pH的影响。  相似文献   

11.
Plant height, biomass production, assimilatory functions and chlorophyll accumulation of Panicum maximum and Stylosanthes hamata in intercropping systems was influenced significantly under elevated CO2 (600 +/- 50 ppm) in open top chambers (OTCs). The plant height increased by 32.0 and 49.0% over the control in P. maximum and S. hamata respectively in intercropping system under elevated CO2 over open field grown crops (Ca). P. maximum and S. hamata produced 67 and 85% higher fresh and dry biomass respectively under elevated CO2. Rates of photosynthesis and stomatal conductance increased in both the crop species in intercropping systems under elevated CO2. The canopy photosynthesis (photosynthesis x leaf area index) of these crop species increased significantly under elevated CO2 over the open grown crops. The chlorophyll a and b accumulation were also higher in the leaves of both the crop species as grown in OTC with elevated CO2. The increased chlorophyll content, leaf area index and canopy photosynthesis led to higher growth and biomass production in these crop species under elevated CO2. The total carbon sequestration in crop biomass and soils during the three years was 21.53 Mg C/ha under elevated CO2. The data revealed that P. maximum and S. hamata intercropping system is the potential as a sink for the increasing level of CO2 in the atmosphere in the semi-arid tropics.  相似文献   

12.
沉水植物伊乐藻光合放氧对水体氮转化的影响   总被引:1,自引:0,他引:1  
实验室内利用聚乙烯容器于光照培养箱内开展开放和封闭实验,研究沉水植物伊乐藻(Elodea nuttallii)光合放氧对水体氮转化的影响及其对水体氮的净化效果和机理。结果表明,伊乐藻光合放氧使水体DO和pH值升高,促进了开放系统氨氮的挥发,同时水体较低的氨氮含量及较高的pH值抑制了氨氮向硝氮的转化。封闭系统通过阻止氨氮的挥发降低了总氮的去除作用,但并不影响氨氮向硝氮的转化。另外,高的DO和pH环境不利于反硝化细菌的存活,使反硝化作用比较微弱或不存在。  相似文献   

13.
Gonyaulax poledra Stein was transferred at different cell densities from increasingly nutrient-limited low-light (LL, 80 E m-2 s-1) batch-cultures to high-light (HL, 330 E m-2 s-1) growth conditions. Several age-dependent differences in HL-adaptation strategies were apparent. Short-term (3h) susceptibility to photosynthetic photoinhibition increased with culture age, with light-limited rates of photosynthesis exhibiting greater photosuppression than light-saturated rates at all stages of growth. These shortterm changes were not accompanied by photobleaching of chlorophyll but were directly related to age-dependent photoinactivation of Photosystem II electron-transport rates. The capacity of electron transport by Photosystem I was only slightly affected. Prolonged exposure of LL log-phase cells to HL conditions did induce photobleaching of chlorophyll associated with increased cell volume, a transient decrease of organic carbon and nitrogen content, enhanced cellular-, carbon-and chlorophyll-based rates of light-saturated photosynthesis (P max) and suppressed cellular rates of light-limited photosynthesis. As a result, the density of LL log-phase cells doubled and their cellular photosynthetic performance nearly tripled within 1 d of HL exposure while cellular respiratory demands remained unchanged. By contrast, prolonged HL incubation of LL stationary populations induced a transitory burst in cell division and a large reduction in cell volume, leading to a short-term increase in volume-based organic carbon and nitrogen content. Despite reduced cell volume and lowered carbon demand, the cellular-, carbon-and chlorophyll-based rates of P max in nondividing populations fell by 64, 48 and 27%, respectively, over a 4 d exposure to HL, while light-limited rates were almost fully suppressed within 1 d and chlorophyll a content was reduced by 56%. As a result, the photosynthetic performance of LL-aged cells declined immediately under HL conditions. Addition of inorganic nutrients to LL stationary cultures at the time of HL transfer led to immediate and complete suppression of photosynthesis and cell lysis within 1 d. Addition of nutrients following transfer to HL induced cell responses intermediate to those described for LL log and aged cells exposed to HL. Results support the view that declining nutrient-status impairs HL photoadaptive responses in phytoplankton populations and that the rate and pattern of photoadaptive responses may be used as physiological growth indicators in field studies. The study was conducted from March 1981 to May 1983.  相似文献   

14.
To determine how the animal and algal components of the symbiotic sea anemone Aiptasia pulchella respond to changes in food availability and culture irradiance, sea anemones from a single clone were maintained at four irradiance levels (320, 185, 115, and 45 E m-2 s-1) and either starved or fed for 5 wk. Changes in protein biomass of sea anemones maintained under these conditions were not related to the productivity of zooxanthellae, since the protein biomass of fed A. pulchella decreased with increase in irradiance and there was no difference in protein biomass among starved sea anemones at the four irradiance levels. Except for the starved high-light sea anemones, the density of symbiotic zooxanthellae was independent of culture irradiance within both starved and fed. A. pulchella. Starved sea anemones contained over twice the density of zooxanthellae as fed sea anemones. Within both starved and fed individuals, chlorophyll per zooxanthella increased with decreasing culture irradiance while algal size remained constant (in fed sea anemones) at about 8.80 m diameter. Chlorophyll a: c 2 ratios of zooxanthellae increased with decreasing culture irradiance in zooxanthellae from starved sea anemones but remained constant in zooxanthellae from fed sea anemones. As estimated from mitotic index data, the in situ growth rates of zooxanthellae averaged 0.007 d-1 and did not vary with irradiance or feeding regime. Photosynthesis-irradiance (P-I) responses of fed A. pulchella indicated an increase in photosynthetic efficiency with decreasing culture irradiance. But there was no consistent pattern in photosynthetic capacity with culture irradiance. Respiration rates of fed sea anemones also did not vary in relation to culture irradiance. The parameter I k , defined as the irradiance at which light-saturated rates of photosynthesis are first attained, was the only parameter from the P-I curves which increased linearly with increasing culture irradiance. The daily ratio of net photosynthesis to respiration for A. pulchella ranged from 1.6 to 2.8 for sea anemones maintained at the three higher irradiances, but was negative for those maintained at 45 E m-2 s-1. Since the final protein biomass was greatest for sea anemones maintained at the lowest irradiance, these results indicate that sea anemone growth cannot be directly related to productivity of zooxanthellae in this symbiotic association.  相似文献   

15.
Circadian rhythms in photosynthesis were defined in field populations of phytoplankton. Measurements of carbon-dioxide fixation rates demonstrated that a diurnal periodicity of photosynthesis in samples incubated under natural light-dark (LD) cycles also were observed to continue in similar samples which had been photoadapted to constant dim light (LL) for 48 h. These changes in photosynthetic rates preceded sunset and sunrise, had daily amplitudes that ranged from 1.5 to 2.0, appeared to be independent of light-intensity, and displayed maxima about midday, while rates of dark fixation of carbon dioxide and the photosynthetic pigment content per cell were constant over the circadian cycle. Similar rhythmicity also was detected in room-temperature (22°C) chlorophyll a fluorescence yield, in both the obsence and presence of the photosynthesis inhibitor DCMU [3-(3,4-dichlorophenyl)-1, 1-dimethylurea]. However, the magnitude and timing of the fluorescence rhythm maxima seem to depend on wavelengths monitored and, in part, on the measuring technique used. Also, the circadian changes in the fluorescence intensity were abolished at low temperature (-60°C), and the shape of the emission spectra of chlorophyll fluorescence of cells in LD and LL did not change over time. The significance of the fluorescence rhythms with regard to chlorophyll a determinations and photosynthetic rates is discussed. It was concluded that there was sufficient similarity between circadian rhythms of photosynthesis in natural phytoplankton populations and in laboratory cultures of dinoflagellates to suggest that the mechanism of regulation may be the same for both of them.  相似文献   

16.
研究了Hoagkand培养液中分别以磷酸二氢钾、焦磷酸钠、六偏磷酸钠、甘油磷酸钠、ATP-Na为磷源时黑藻的生长及生理活性变化.获得了不同形态磷培养黑藻的干重、根系生长以及叶绿素含量、光合、呼吸、磷含量等指标.研究结果表明,磷酸二氢钾对黑藻的生长及生理活性影响最显著,是黑藻吸收的最佳磷形态;有机磷不利于根系生长,叶绿素a/b较高;六偏磷酸钠和焦磷酸钠促进根系早发,光合生产力低于磷酸二氢钾,叶绿素a/b高于磷酸二氢钾试验组.ATP-Na试验组黑藻呼吸率最高,甘油磷酸钠试验组黑藻光合生产力最高.各实验组黑藻磷含量均增加,黑藻对各形态磷均能吸收利用.图5表4参24  相似文献   

17.
The ecology of photosynthetic organisms is influenced by the need to adjust the photosynthetic apparatus to variable light environments (photoacclimation). In this study, we quantified different components of the photoacclimation process for a reef-building coral (Turbinaria mesenterina, Lamarck, 1816): including, variation in absorption cross-section, size of photosynthetic units, turnover time, chlorophyll content, and colony respiration. We used these calibrations to characterize this species’ light niche, and to determine the sensitivity of the niche boundaries to different processes of photoacclimation. Results showed that the breadth of the light niche was most sensitive to the size of the photosynthetic unit, absorption cross-section, and rates of respiration. Habitats with the highest light availability did not lead to maximal energy acquisition. This was because, although corals acclimated to high light have high rates of photosynthesis per unit chlorophyll, their chlorophyll content was strongly reduced. This suggests that potential energetic benefits that could be achieved through increased light harvesting (i.e., increased chlorophyll content) in high-light habitats are outweighed by costs associated with photoprotection. Such costs appear to place an upper bound on the habitat distributions of coral species. Our approach reveals how the photophysiological processes involved in photoacclimation interact to determine the light niche.  相似文献   

18.
研究并探讨了蔬菜作物在施用耐氨固氮菌后的生长、生理反应及增产的效果和原因。试验结果表明: 施用耐氨固氮菌显著增加了蔬菜苗期生物量、叶面积和叶片的叶绿素含量, 同时还增强了植株的根系活力, 并有明显的增产效果。耐氨固氮菌促进增产的作用不仅与其本身的固氮作用有关, 还可能与其分泌出某些生长刺激物 ( 或激素) 有关。  相似文献   

19.
镉对籽粒苋耐性生理及营养元素吸收积累的影响   总被引:3,自引:0,他引:3  
李虹颖  苏彦华 《生态环境》2012,21(2):308-313
初步阐明了镉对籽粒苋耐性生理及营养元素吸收积累的影响,为进一步揭示籽粒苋的镉耐性与镉富集机理奠定了基础。通过对生物量的监测,对叶绿素、蛋白质、游离氨基酸、大量元素及微量元素等的含量的测定,阐明镉胁迫对籽粒苋生长生理、抗胁迫耐性、营养元素吸收分配的影响。研究结果显示,镉胁迫对籽粒苋的生长抑制作用不明显,植株生物量随着镉浓度的提高而轻微降低。随着镉处理浓度的提高,叶绿素含量下降幅度显著;蛋白质和游离氨基酸含量变化幅度不明显;钾含量无大幅变化;镉、磷、钙、镁、锌、铁、锰、铜含量变化幅度较显著。镉、钾、磷、锰的迁移系数随着镉处理浓度的提高无显著变化;钙的迁移系数呈上升趋势;镁、锌、铁、铜的迁移系数均呈下降趋势。这些结果表明:镉胁迫降低籽粒苋叶绿素含量,抑制植株光合作用,继而抑制了植株的生长,但其程度不明显;镉胁迫条件启动活性氧防御机制;引起植株体内部分养分代谢紊乱。结论:低浓度镉处理条件下,籽粒苋受镉离子影响,抗氧化能力下降。在高浓度镉处理条件下,籽粒苋调节了营养元素的吸收和分配,启动了一系列活性氧防御机制,提高了抗胁迫能力。  相似文献   

20.
The growth, biomass production and photosynthesis of Cenchrus ciliaris was studied under the canopies of 17 yr old Acacia tortilis trees in semi arid tropical environment. On an average the full grown canopy of A. tortilis at the spacing of 4 x 4 m allowed 55% of total Photosynthetically Active Radiation (PAR) which in turn increased Relative Humidity (RH) and reduced under canopy temperature to -1.75 degrees C over the open air temperature. C. ciliaris attained higher height under the shade of A. tortilis. The tiller production and leaf area index decreased marginally under the shade of tree canopies as compared to the open grown grasses. C. ciliaris accumulated higher chlorophyll a and b under the shade of tree canopies indicating its shade adaptation potential. The assimilatory functions such as rate of photosynthesis, transpiration, stomatal conductance, photosynthetic water use efficiency (PN/TR) and carboxylation efficiency (PN/CINT) decreased under the tree canopies due to low availability of PAR. The total biomass production in term of fresh and dry weight decreased under the tree canopies. On average of 2 yr C. ciliaris had produced 12.78 t ha(-1) green and 3.72 -t ha(-1) dry biomass under the tree canopies of A. tortilis. The dry matter yield reduced to 38% under the tree canopies over the open grown grasses. The A. tortilis + C. ciliaris maintained higher soil moisture, organic carbon content and available N P K for sustainable biomass production for the longer period. The higher accumulation of crude protein, starch, sugar and nitrogen in leaves and stem of C. ciliaris indicates that this grass species also maintained its quality under A. tortilis based silvopastoral system. The photosynthesis and dry matter accumulation are closely associated with available PAR indicating that for sustainable production of this grass species in the silvopasture systems for longer period about 55% or more PAR is required.  相似文献   

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