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1.
黑龙江省二龙山水库流域景观生态评价与规划研究   总被引:6,自引:2,他引:6  
从景观生态学的基本理论出发,采用地理信息系统(GIS)技术,借助于大型统计分析软件包SPSS中的主成分分析和空间系统聚类分析方法,对黑龙江省二龙山水库流域的景观生态环境进行了定量分析与评价,获得了4个景观生态评价类型.其中,良好状态的景观生态类型占全流域面积的比重最大,为36%,一般状态次之,为31%;较差状态和理想状态分别为17%和16%.并按景观空间生态结构,将全流域规划与设计为3个景观功能区,即农业景观功能区,其景观过程以作物生产为主,发展方向为兼顾经济、生态和社会多种效益的生态农业、观光农业和高效农业;生态环境保护功能区,其景观过程以水土流失、植被覆盖减少等退化过程为主,主要执行生态环境保护功能,大力发展水土保持林,努力提高植被覆盖率,是本区发展利用的方向;森林景观功能区,森林资源的合理采伐利用、林种的空间优化配置、森林的抚育以及天然林的保护成为该区发展的主要方向.  相似文献   

2.
为了明确Ca2+和水杨酸对番茄耐亚高温特性的调控作用,在番茄第1花序第1花开花当天进行昼间亚高温(35 ℃)胁迫处理,并在亚高温处理区喷施10 mmol·L-1CaCl2和0.2 mmol·L-1水杨酸(SA)水溶液,以25 ℃喷施清水为对照,研究叶片保护酶活性(SOD、POD和CAT)和可溶性蛋白质含量的变化.结果表明:亚高温处理使叶片中SOD、CAT、POD活性降低,在处理结束时,SOD、CAT、POD活性分别比对照降低了14.82%、31.84%和 26.34%.而亚高温条件下喷施CaCl2和SA可以显著降低番茄叶片MDA含量,提高SOD、POD和CAT活性,并使这些指标达到或超过对照水平.说明Ca2+和水杨酸对亚高温条件下番茄植株叶片保护酶活性具有正调控作用,这种调控作用可能对亚高温条件下番茄的光合系统起到保护作用.  相似文献   

3.
亚高温下不同空气湿度对番茄光合作用和物质积累的影响   总被引:1,自引:0,他引:1  
为了研究亚高温下不同空气湿度对番茄植株光合作用及物质积累的影响,本试验利用人工气候室,在11:00—15:00平均温度为33℃的亚高温条件下,设置3个空气相对湿度处理,分别为70%~80%(高湿)、50%~60%(中湿)和不加湿的30%~40%(低湿)。结果表明:在处理25d时,高湿处理番茄叶片叶绿素含量、净光合速率显著高于低湿处理,而低湿处理果实空洞率比高湿处理高18.4%(P<0.05);在33℃亚高温条件下,70%~80%的相对湿度有利于光合作用的增强和果实品质的提高。  相似文献   

4.
以2个耐盐性不同的番茄品种为材料,研究了外源NO供体硝普钠(SNP)处理对100mmol·L-1NaCl胁迫下番茄幼苗生长和光合作用的影响。结果表明:外源NO能使盐胁迫下的番茄幼苗叶片叶绿素含量、净光合速率(Pn)、气孔导度(Gs)和蒸腾速率(Tr)升高,胞间CO2浓度(Ci)下降,叶绿素荧光参数Fv/Fm、Fv/Fo和T1/2增高,脯氨酸和可溶性糖含量升高。可见,外源NO有利于番茄幼苗对光能的捕获和转换,促进番茄的生长,降低盐胁迫对番茄的抑制作用。  相似文献   

5.
干旱和高温对植物光合作用的影响机制研究进展   总被引:27,自引:5,他引:27       下载免费PDF全文
干旱(水分亏缺)和高温是我国北方沙漠化地区植物生长季的两个主要环境胁迫因子。本文主要就干旱和高温在生理水平对植物光合作用影响机制的最新研究进展进行了综述,并对以后的相关研究进行了一些分析。  相似文献   

6.
花期降低施钙量后,钙低效番茄品种L-402果实中钙含量显著降低,高效品种江蔬一号降低不显著,镁含量显著增加,钾含量有增加趋势。果实底端的钙含量高于顶端,降低施钙量后果实水溶性钙含量和比例显著提高,果胶酸钙含量和比例降低,磷酸钙含量也降低。钙低效品种L-402水溶性钙含量的增加,以及果胶酸钙和磷酸钙的降低程度,都大于高效品种江蔬一号,且降钙后果实顶端的革酸钙含量和比例增加。  相似文献   

7.
采用聚乙二醇(PEG 6000)溶液控制番茄根际水势和叶片离体的方式设置了水分胁迫处理,测算了光合诱导过程中净光合速率、暗呼吸速率和CO2补偿点等光合参数的变化.结果表明: 在1000 μmol·m-2·s-1光诱导下,水分胁迫处理的番茄叶片净光合速率(Pn)达到最大值所需时间缩短为对照的1/3,气孔导度(gs)快速增大为对照的1.5倍.水分胁迫处理的番茄叶片光饱和点(LSP)比对照降低了65%~85%,而光补偿点(LCP)比对照增加了75%~100%,缩小了番茄叶片利用光能的有效范围.水分胁迫处理的番茄叶片最大光合能力(Amax)低于对照40%以上,暗呼吸速率(Rd)增大了约45%.可见,快速水分胁迫处理使番茄叶片气孔迅速开放,光合诱导初始阶段消失.水分胁迫导致植物利用光能的效率和潜力降低是植物生产力下降的重要原因,而气孔调节是番茄适应快速水分胁迫的重要生理机制.  相似文献   

8.
番茄叶片光合作用对快速水分胁迫的响应   总被引:3,自引:0,他引:3  
采用聚乙二醇(PEG-6000)溶液控制番茄根际水势和叶片离体的方式设置了水分胁迫处理,测算了光合诱导过程中净光合速率、暗呼吸速率和CO2补偿点等光合参数的变化.结果表明:在1000μmol·m-2·s-1光诱导下,水分胁迫处理的番茄叶片净光合速率(Pn)达到最大值所需时间缩短为对照的1/3,气孔导度(gs)快速增大为对照的1.5倍.水分胁迫处理的番茄叶片光饱和点(LSP)比对照降低了65%~85%,而光补偿点(LCP)比对照增加了75% ~100%,缩小了番茄叶片利用光能的有效范围.水分胁迫处理的番茄叶片最大光合能力(Amax)低于对照40%以上,暗呼吸速率(Rd)增大了约45%.可见,快速水分胁迫处理使番茄叶片气孔迅速开放,光合诱导初始阶段消失.水分胁迫导致植物利用光能的效率和潜力降低是植物生产力下降的重要原因,而气孔调节是番茄适应快速水分胁迫的重要生理机制.  相似文献   

9.
采用深液流无土栽培方式,研究不同钙素水平对厚皮甜瓜叶片光合作用和保护酶活性的影响。结果表明,在缺钙、低钙、高钙胁迫下,厚皮甜瓜叶片中的叶绿素和类胡萝卜素含量明显下降,叶绿素a/叶绿素b比值升高;同时叶片中的超氧化物歧化酶(SOD)、过氧化物酶(POD)、过氧化氢酶(CAT)的活性及丙二醛(MAD)含量、相对电导率、可溶性蛋白质含量都明显高于正常供钙的植株。缺钙胁迫下,基础荧光(Fo)下降,低钙和高钙胁迫下Fo 升高,但缺钙、低钙、高钙胁迫下叶片叶绿素荧光参数Fv/Fm、Fv/Fo、Fm、Yield和ETR都明显下降。缺钙胁迫下叶片净光合速率(Pn)、气孔导度(Gs)下降,胞间 CO2 浓度(Ci)升高;而高钙胁迫下 Pn、Gs 下降的同时,Ci 也相应下降,表明缺钙胁迫下的光合抑制主要是由于非气孔限制引起,而高钙胁迫下的光合抑制主要是由于气孔限制引起。  相似文献   

10.
高温逆境下植物叶片衰老机理研究进展   总被引:3,自引:0,他引:3  
叶片衰老是植物叶片发育的最后阶段,其作为一个主动的生理过程,对植物体内的营养循环再利用以及种子形成具有重要的生理意义。在植物的生长过程中,多种环境因素会影响叶片衰老进程。高温是影响叶片衰老最重要的环境因素之一。随着温室效应的加剧,研究高温胁迫下叶片衰老的调节机制对于通过调控叶片衰老进程,从而增加植物产量具有重要意义。本文对高温胁迫下叶绿体及类囊体膜的损伤、光合电子传递活力的改变、活性氧累积、光合作用相关蛋白质降解及细胞自噬方面的研究进展进行了综述。  相似文献   

11.
12.
对NaCl胁迫下番茄幼苗叶片分别喷施还原型谷胱甘肽(GSH)、氧化型谷胱甘肽(GSSG)和谷胱甘肽合成抑制剂(BSO)构建不同氧化还原水平的番茄植株,研究外源GSH介导的氧化还原状态对NaCl胁迫下番茄幼苗光合作用的影响.结果表明: 外源喷施GSH诱导NaCl胁迫下番茄幼苗叶片的还原力水平提高,叶片净光合速率(Pn)、气孔导度(gs)、蒸腾速率(Tr)及最大光化学效率(Fv/Fm)、实际光化学效率(ФPSⅡ)、光化学猝灭系数(qP)、非光化学猝灭系数(NPQ)值均提高,核酮糖-1,5-二磷酸羧化酶/加氧酶(Rubisco)活性及大亚基(RbcL)、小亚基(RbcS)和Rubisco活化酶(RCA)的基因表达水平上调,从而有效保护了光合系统,促进了(光系统Ⅱ)PSⅡ光化学反应活性、降低了NaCl胁迫对光合暗反应的抑制,缓解了NaCl胁迫对番茄植株的危害.喷施GSSG显著降低了NaCl胁迫下番茄幼苗叶片还原力水平,造成叶片光损伤和光抑制加剧,但RbcS和RbcL的基因表达水平上调可能是导致NaCl+GSSG处理下叶片Pn未下降的原因.喷施BSO对NaCl胁迫下番茄幼苗叶片氧化还原状态、CO2传导能力和PSⅡ反应中心无显著影响,但BSO上调碳同化关键酶Rubisco初始活性、总活性及RCA和RbcS表达水平是导致Pn提高的原因.  相似文献   

13.
  总被引:2,自引:0,他引:2  
For most of the past 250 000 years, atmospheric CO2 has been 30–50% lower than the current level of 360 μmol CO2 mol–1 air. Although the effects of CO2 on plant performance are well recognized, the effects of low CO2 in combination with abiotic stress remain poorly understood. In this study, a growth chamber experiment using a two-by-two factorial design of CO2 (380 μmol mol–1, 200 μmol mol–1) and temperature (25/20 °C day/night, 36/29 °C) was conducted to evaluate the interactive effects of CO2 and temperature variation on growth, tissue chemistry and leaf gas exchange of Phaseolus vulgaris. Relative to plants grown at 380 μmol mol–1 and 25/20 °C, whole plant biomass was 36% less at 380 μmol mol–1× 36/29 °C, and 37% less at 200 μmol mol–1× 25/20 °C. Most significantly, growth at 200 μmol mol–1× 36/29 °C resulted in 77% less biomass relative to plants grown at 380 μmol mol–1× 25/20 °C. The net CO2 assimilation rate of leaves grown in 200 μmol mol–1× 25/20 °C was 40% lower than in leaves from 380 μmol mol–1× 25/20 °C, but similar to leaves in 200 μmol mol–1× 36/29 °C. The leaves produced in low CO2 and high temperature respired at a rate that was double that of leaves from the 380μmol mol–1× 25/20 °C treatment. Despite this, there was little evidence that leaves at low CO2 and high temperature were carbohydrate deficient, because soluble sugars, starch and total non-structural carbohydrates of leaves from the 200μmol mol–1× 36/29 °C treatment were not significantly different in leaves from the 380μmol mol–1× 25/20 °C treatment. Similarly, there was no significant difference in percentage root carbon, leaf chlorophyll and leaf/root nitrogen between the low CO2× high temperature treatment and ambient CO2 controls. Decreased plant growth was correlated with neither leaf gas exchange nor tissue chemistry. Rather, leaf and root growth were the most affected responses, declining in equivalent proportions as total biomass production. Because of this close association, the mechanisms controlling leaf and root growth appear to have the greatest control over the response to heat stress and CO2 reduction in P. vulgaris.  相似文献   

14.
    
Thermotolerance is improved by heat stress (HS) acclimation, and the thermotolerance level is “remembered” by plants. However, the underlying signalling mechanisms remain largely unknown. Here, we showed NADPH oxidase‐mediated H2O2 (NADPH‐H2O2), and chloroplast‐H2O2 promoted the sustained expression of HS‐responsive genes and programmed cell death (PCD) genes, respectively, during recovery after HS acclimation. When spraying the NADPH oxidase inhibitor, diphenylene iodonium, after HS acclimation, the NADPH‐H2O2 level significantly decreased, resulting in a decrease in the expression of HS‐responsive genes and the loss of maintenance of acquired thermotolerance (MAT). In contrast, compared with HS acclimation, NADPH‐H2O2 declined but chloroplast‐H2O2 further enhanced during recovery after HS over‐acclimation, resulting in the reduced expression of HS‐responsive genes and substantial production of PCD. Notably, the further inhibition of NADPH‐H2O2 after HS over‐acclimation also inhibited chloroplast‐H2O2, alleviating the severe PCD and surpassing the MAT of HS over‐acclimation treatment. Due to the change in subcellular H2O2 after HS acclimation, the tomato seedlings maintained a constant H2O2 level during recovery, resulting in stable and lower total H2O2 levels during a tester HS challenge conducted after recovery. We conclude that tomato seedlings increase their MAT by enhancing NADPH‐H2O2 content and controlling chloroplast‐H2O2 production during recovery, which enhances the expression of HS‐responsive genes and balances PCD levels, respectively.  相似文献   

15.
铁棍山药决茎采后经0.1%-1.0%(WIV)的CaCl2溶液处理后,其含水量增加,相对电导率减小,丙二醛(MDA)含量降低,超氧化物歧化酶(SOD)活性升高,超氧阴离子(O2^-)产生速率下降;而浓度为2.0%的CaCl2溶液则促进铁棍山药块茎贮藏后期SOD活性下降,对含水量增加和相对电导率、MDA含量以及O^2-产生速率下降的效果不稳定。  相似文献   

16.
Preczewski  P.J.  Heckathorn  S.A.  Downs  C.A.  Coleman  J.S. 《Photosynthetica》2000,38(1):127-134
We recently showed that the chloroplast small heat-shock protein (herein referred to as chlp Hsp24) protects photosystem 2 (PS2) during heat stress, and phenotypic variation in production of chlp Hsp24 is positively related to PS2 thermotolerance. However, the importance of chlp Hsp24 or other Hsps to other aspects of photosynthesis and overall photosynthetic thermotolerance is unknown. To begin investigating this and the importance of genetic variation in Hsp production to photosynthetic thermotolerance, the production of several prominent Hsps and photosynthetic thermotolerance were quantified in nine genotypes of Lycopersicon, and then the relationships between thermotolerance of net photosynthetic rate (P N) and production of each Hsp were examined. The nine genotypes exhibited wide variation in P N thermotolerance and production of each of the Hsps examined (chlp Hsp70, Hsp60, and Hsp24, and cytosol Hsp70). No statistically significant relationship was observed between production of chlp Hsp70 and P N thermotolerance, and only a weak positive relationship between cytosolic Hsp70 and P N was detected. However, significant positive relationships were observed between production of chlp Hsp24 and Hsp60 and P N thermotolerance. Hence natural variation in production of chlp Hsp24 and Hsp60 is important in determining variation in photosynthetic thermotolerance. This is perhaps the first evidence that chlp Hsp60 is involved in photosynthetic thermotolerance, and these in vivo results are consistent with previous in vitro results showing that chlp Hsp24 protects PS2 during heat stress.  相似文献   

17.
研究5~25 mmol·L-1CaCl2溶液浸种的白三叶品种'海法'种子萌发特性的结果表明,酸水胁迫下经CaCl2溶液浸种过的白三叶种子的发芽势、发芽率、发芽指教、活力指数以及幼苗鲜重和干重均增大,且均随着溶液中CaCl2浓度的上升而增大,白三叶种子浸种以15~20mmol·L-1CaCl2的效果为最佳.  相似文献   

18.
CaCl2对金叶女贞茎抗寒性和电阻抗图谱参数的影响   总被引:1,自引:0,他引:1  
为探明CaC l2处理对金叶女贞(Ligustrum vicaryi)茎抗寒性和电阻抗图谱参数的影响,找出抗寒性和电阻抗图谱参数的关系,2006年9月15日开始对金叶女贞当年生扦插苗进行CaC l2处理,对照为清水;分别用电阻抗图谱法和电导法估测其抗寒性,并进行比较分析。结果表明:CaC l2处理能在抗寒锻炼初期使金叶女贞茎的抗寒性提高3.5℃,金叶女贞茎的抗寒性与未冷冻处理茎的弛豫时间τ、冷冻处理后茎的胞外电阻率re、含水量之间均存在较高的相关性。  相似文献   

19.
  总被引:1,自引:0,他引:1  
  相似文献   

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