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1.
强光下姜叶片的光呼吸及叶黄素循环   总被引:10,自引:1,他引:10  
徐坤  邹琦  关国生 《园艺学报》2002,29(1):47-51
 姜叶片晴天中午的表观量子效率( AQY) 和PSÒ光化学活性(Fv/ Fm) 显著降低, 表明有明显的光抑制现象, 而干旱、高温、强光等逆境条件可显著加重光抑制程度。土壤水分胁迫使光呼吸速率( Pr) 降低, 峰值提前, Pr/ Pn 升高; 同时使叶黄素循环库增大, (A+ Z) / ( V+ A+ Z) 上升, 表明光呼吸和叶黄素循环是姜叶片耗散过剩光能的重要途径。  相似文献   
2.
干旱胁迫下抑制光呼吸对‘赤霞珠’葡萄光抑制的影响   总被引:6,自引:0,他引:6  
选用葡萄(Vitis vinifera L.)品种‘赤霞珠’(Cabernet Sauvignon)的2年生盆栽苗,进行不同程度的干旱处理20d及随后连续3d的光呼吸抑制剂异烟肼(INH)处理后,测定其PSII最大光化学量子产量(Fv/Fm)、实际光化学效率(ФPSII)及净光合速率(Pn),并计算其总光合电子传递(Jr)、羧化电子传递(Jc)、加氧电子传递(Jo)及光呼吸速率(Pr),发现赤霞珠葡萄在干旱胁迫下能够有效调动其光保护机制以避免严重光抑制的发生,而INH抑制光呼吸后,光抑制程度则明显加重,从而证明干旱胁迫下光呼吸对赤霞珠葡萄的光保护机制起重要作用。  相似文献   
3.
为比较抗寒性不同的冬麦品种低温和不同光强作用下叶绿素荧光参数的变化,以3个抗寒性不同的冬麦品种为材料,分别在低温驯化期、低温驯化结束期和封冻期取样,室内暗处理后给予6个不同的光强,测定不同光强下的光合电子传递速率(ETR)、光化学猝灭系数(qP)和非光化学猝灭系数(qN)。结果表明,低温、高光强下抗寒品种东农冬麦1号的ETR、qP和qN显著高于其他2个品种,济麦22的这几个叶绿素荧光参数最低。封冻前抗寒中间型东农705品系的热耗散保持较高水平,但进入封冻期后其热耗散能力迅速降低。  相似文献   
4.
生姜光合效率日变化的研究   总被引:21,自引:2,他引:19  
生姜生长期间,午间强光使叶片光合速率(Pn)、表观量子效率(AQY)及PSⅡ的光化学效率(Fv/Fm)下降,即表现为光抑制。苗期因光照强、温度高、AQY,Fv/Fm较低,光换制较重;随季节进展及光、温等条件的改善,光抑制减轻。对生姜遮荫可提高AQY和Fv/Fm,降低光抑制,但由于遮荫降低了羧化效率(CE),使Pn明显下降。据此,对有关遮荫理论及AQY等指标的应用进行了讨论,并提出改革当前遮荫方式的设想。  相似文献   
5.
棉花花铃期低温对叶片PSI和PSII光抑制的影响   总被引:1,自引:0,他引:1  
肖飞  杨延龙  王娅婷  马慧  张旺锋 《作物学报》2017,43(9):1401-1409
选用陆地棉(Gossypium hirsutum L.)品种新陆早45号,在室外盆栽至开花结铃期后,移至人工气候室,模拟新疆棉花花铃期易出现的低温逆境条件,设置处理T(16℃/10℃,昼/夜),以常温(30℃/18℃,昼/夜)处理作为对照,采用叶绿素荧光和P700同步测定技术,研究低温对棉花花铃期叶片光合机构PSII能量分配、PSI氧化还原状态及环式电子传递流的影响。结果表明,与对照相比,低温处理显著降低了棉花叶片PSII光适应状态下最大光化学量子产量(F_v'/F_m')、光化学猝灭系数(qP)和PSII有效光化学量子产量[Y(II)],并使PSII非调节性能量耗散[Y(NO)]和调节性能量耗散[Y(NPQ)]量子产量显著升高,诱导PSII发生光抑制。低温引起棉花叶片光合机构PSI受体侧限制[Y(NA)]显著下降和供体侧限制[Y(ND)]显著升高,但未引起有效的PSI复合体含量(P_m)显著降低,表明与PSII相比,棉花叶片PSI对低温不敏感。此外,低温引起环式电子传递量子产量[Y(CEF)]以及与PSII实际量子产量比率的[Y(CEF)/Y(II)]显著升高,进一步表明在低温下,光破坏防御机制中环式电子传递流对棉花PSI、PSII起着重要的保护作用,是主要的光破坏防御机制。非光化学热耗散(NPQ)和调节性非光化学热耗散[Y(NPQ)]与[Y(CEF)]具有显著的正相关关系,表明低温引起棉花花铃期叶片PSII反应中心过度关闭产生过剩的激发能,造成了PSII可逆的光抑制,环式电子传递流的响应及较高的调节性能量耗散共同保护了棉花叶片PSI和PSII免受光抑制的损伤,这可能是棉花叶片PSI对低温不敏感的重要原因。  相似文献   
6.
从渗透调节、过氧化作用、低温诱导蛋白、光合作用4个方面论述了苜蓿适应低温胁迫的机理,简介了苜蓿抗寒性育种研究进展,提出了尚待进一步研究的问题。  相似文献   
7.
Gas exchange and chlorophyll fluorescence quenching analysis were carried out to investigate the diurnal variations in photosynthesis and light allocation in leaves of soybean. Leaf net CO2 assimilation rate showed a bimodal diurnal pattern and midday depression of CO2 assimilation was observed at 13:00 h. Depression in CO2 assimilation at midday was mostly attributed to non-stomatal limitation since the reduction in net CO2 assimilation rate was not followed by significant reductions in stomatal conductance and intracellular CO2 concentration. Midday depression in CO2 assimilation was found to be associated with reversible inactivation of photosystem II reaction centers and increases of antenna heat dissipation and photorespiration in response to the high light intensity. It is likely that PS II down-regulation, heat dissipation and photorespiration co-operated together to prevent the chloroplast from photodamage.  相似文献   
8.
遮阴对丰香草莓光合作用及叶绿素荧光特性的影响   总被引:19,自引:1,他引:19  
以盆栽丰香草莓为材料,研究了遮阴处理对草莓光合作用及叶绿素荧光特性的影响。结果表明,遮阴处理增加草莓叶柄长度、叶面积以及光合色素含量,但降低了比叶重;遮阴处理显著降低草莓叶片的羧化效率(CE)、暗呼吸(Rd)、光补偿点(LCP)和光饱和点(LSP),提高了其表观量子效率(AQY)和CO2补偿点(CCP)。遮阴后草莓Pn日变化由“双峰”型变为“单峰”型,日光合总量显著低于对照,早晚时分水分利用率(WUE)有所下降。遮阴后,叶片气孔导度(Gs)提高,蒸腾速率(Tr)下降,可能与叶面温度下降有关。叶绿素荧光动力学测定显示,遮阴处理草莓叶片的初始荧光(Fo)和PSⅡ最大光化学效率(Fv/Fm)日变化曲线与对照相似,但Fo值始终低于对照,Fv/Fm值显著高于对照。以上参数表明丰香草莓对弱光环境有一定的适应能力,遮阴处理可以减轻强光下的草莓叶片光抑制程度,提高植株对光能的利用能力,但同时也需要注意提高环境中CO2浓度。  相似文献   
9.
The integrated aquaculture of the tetrasporophyte of Asparagopsis armata Harvey (Falkenbergia rufolanosa) using fish farm effluents may be viable due to the species high capacity of removing nutrients and its content of halogenated organic compounds with applications on the pharmaceutical and chemical industries. In order to optimize the integrated aquaculture of F. rufolanosa, we followed the daily variation of the potential quantum yield (Fv/Fm) of PSII on plants cultivated at different biomass densities and different total ammonia nitrogen (TAN) fluxes to check if they are photoinhibited at any time of the day. Moreover, the photoinhibition under continuous exposure to highly saturating irradiance and its potential for subsequent recovery in the shade was assessed. The potential for year round cultivation was evaluated by measuring rates of O2 evolution of plants acclimated at temperatures ranging from 15 to 29 °C, the temperature range of a fish farm effluent in southern Portugal where an integrated aquaculture system of F. rufolanosa was constructed.Photoinhibition does not seem to be a major constrain for the integrated aquaculture of F. rufolanosa. Only when cultivated at a very low density of 1.5 g fresh weight (FW) l− 1 that there was a midday decrease in maximal quantum yield (Fv/Fm). At densities higher than 4 g FW l− 1, no photoinhibition was observed. When exposed to full solar irradiance for 1 h, F. rufolanosa showed a 33% decrease in Fv/Fm, recovering to 86% of the initial value after 2 h in the shade. A midday decline of the F. rufolanosa Fv/Fm was also observed under the lowest TAN flux tested (∼6 μM h− 1), suggesting that this fast and easy measurement of fluorescence may be used as a convenient diagnostic tool to detect nutrient-starved unbalance conditions of the cultures. Maximum net photosynthesis peaked at 15 °C with 9.7 mg O2 g dry weight (DW)− 1 h− 1 and remained high until 24 °C. At 29 °C, the net oxygen production was significantly reduced due to a dramatic increase of respiration, suggesting this to be the species' lethal temperature threshold.Results indicate that F. rufolanosa has a considerable photosynthetic plasticity and confirm it as a good candidate for integrated aquaculture at temperatures up to 24° C and cultivation densities of at least 5 g FW l− 1. When cultivated at these densities, light does not penetrate below the first few centimetres of the surface zone. Plants circulate within the tanks, spending around 10% of the time in the first few centimetres where they are able to use efficiently the saturating light levels without damaging their photosynthetic apparatus.  相似文献   
10.
The diurnal course of chlorophyll fluorescence parameter and active oxygen metabolism of flag leaves in PEPC transgenic and untransformed rice Kitaake were studied. The results showed that the photosynthetic rate under high light intensity has been increased by 50% and photoinhibition of photosynthesis in PEPC transgenic was alleviated after the introduction of PEPC gene from maize into rice. It was demonstrated that the increment of photosynthesis in PEPC transgenic was related to the introduction of PEPC gene using specific inhibitor of PEPC. Photoinhibition of photosynthesis in different genotypes exists at noon under natural condition. PEPC transgenic rice exhibited a less decrease in Fv/Fm, a less photoinhibition and a higher efficiency of light energy conversion to chemical energy and lower thermal energy dissipation.These results provided the physiological basis on the mechanism of tolerance to photoinhibition and rice breeding with high photosynthetic efficiency.  相似文献   
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