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1.
增强UV-B辐射与干旱复合处理对小麦幼苗生理特性的影响   总被引:18,自引:0,他引:18  
为研究由于平流层臭氧层减薄紫外线B辐射增强在干旱地区对春小麦生理特性的影响的特殊性,模拟平流层臭氧减少20%时辐射到地表的紫外线B(UV-B,280-315nm)的增强和水分胁迫(-0.5Mpa,聚乙二醇PEG-6000处理获得),通过测定两种胁迫下春小麦(Triticum aestivum L.)叶绿素含量、类黄酮含量、水势、细胞膜相对透性、超氧歧化酶(SOD)活性及丙二醛(MDA)含量,研究了增强UV-B辐射和水分胁迫复合作用对温室种植的小麦幼苗生理生化的影响。实验结果表明,虽然水分胁迫和UV-B辐射单独或复合处理都使春小麦的叶绿素含量降低,但仅UV-B辐射增强单独处理显著地降低小麦叶绿素a、b和总叶绿素的含量,而水分胁迫以及复合处理对叶绿素的含量的降低作用不显著。两种胁迫无论是单独作用还是复合作用均能使类黄酮含量升高,并且处理第3天比第1天高出近50%,复合处理下类黄酮的含量大于两个因子单独处理。UV-B辐射和水分胁迫处理1d对春小麦叶片的相对电导率的影响不明显,处理3d后两种胁迫下相对电导率均上升,表明膜透性增加,其中水分胁迫作用下增加尤其明显。膜质过氧化产物丙二醛的含量,在两种因子单独和复合作用下都升高,说明膜的生理功能受到了一定的不利影响。活性氧清除剂超氧化物歧化酶(SOD)的活性在各种处理下,都没有发生改变。虽然增强的UV-B辐射和干旱处理一样,会显著降低植物水势,但是,UV-B辐射与干旱同时处理时叶片水势降低的程度,不但没有比两者分别处理时降低程度之和低,而且比单做干旱处理时的降低程度还低,这表明UV-B辐射和干旱胁迫同时处理时,UV-B辐射不但没有加重水分胁迫,反而减轻了干旱对春小麦生长的胁迫。由此可以认为,在干旱条件下,增强UV-B辐射不会加剧而是有利于提高小麦对干旱的抗性。  相似文献   

2.
UV-B辐射对8个大豆品种种子萌发率和 幼苗生长的影响   总被引:7,自引:0,他引:7  
在生长房5种(暗处、可见光、低、中、高强度紫外线-B)处理下,研究了8个大豆品种的种子萌发率和萌发后幼苗的生长状况。结果表明,暗处种子萌发率高于自然光和UV-B辐射的种子。UV-B辐射增强对大豆种子的萌发率没有显著影响,仅使部分品种的最大萌发率降低和导致部分品种达到最大萌发率的时间延长。幼苗的生长对增强的UV-B辐射非常敏感。使大部分品种的胚根变短增粗,这可能是植物激素作用的结果。大豆的叶绿素a、叶绿素b和总叶绿素含量明显受到UV-B辐射的抑制。UV-B作用能促进类黄酮在幼苗中的积累,紫外吸收色素的增设有利于提高对UV-B的抵抗力。UV-B辐射的这种效应及大豆品种间的差异在自然情况下会产生深远的生物学和生态学意义  相似文献   

3.
紫外-B辐射对番茄幼苗生长、POD和IAA氧化酶活性的影响   总被引:15,自引:3,他引:12  
模拟兰州地区夏季臭氧层减薄12%和20%时增强的UV-B辐射2.54kJ·m-2·d-1 T1 和4.25kJ·m-2·d-1 T2 ,以自然辐射为对照,研究2种辐射对番茄幼苗生长、叶绿素和可溶性蛋白质含量以及过氧化物酶 POD 、吲哚乙酸氧化酶 IAA氧化酶 活性的影响.结果表明:低强度、短时间的辐射 T1,10d 对番茄幼苗生长没有影响,而高强度、长时间的辐射可减少生物量累积,降低株高、壮苗指数、叶绿素a、b和总叶绿素的含量,对叶绿素a/b无显著影响;与对照相比,可溶性蛋白质含量在辐射处理10d和20d时均减低,40d时升高;T2处理使POD活性一直显著高于对照;IAA氧化酶活性在辐射10d和20d时增加,40d时显著低于对照.说明在UV-B辐射下光合下降、IAA分解抑制了番茄幼苗的生长.  相似文献   

4.
长期增强UV-B辐射对高寒矮嵩草草甸植物光合作用的影响   总被引:2,自引:0,他引:2  
以高寒矮嵩草(Kobresia humilis)草甸地区的强光和天然太阳短波辐射为背景,在植物生长季每天人工增补15.8 kJ·m-2的辐射剂量,模拟平流层臭氧破坏5%时近地表面增加的太阳UV-B辐射强度,探讨高寒矮嵩草草甸植物光合作用对UV-B辐射增强的响应.结果显示:(1)长期增强UV-B辐射对高寒矮嵩草草甸大多数植物的光合作用没有明显的负面影响;其中异针茅(Stipa aliena)、苔草(Carex atrofusca)、黄芪(Astragalus sp.)的光合作用受到抑制,但棘豆(Oxytropis ochrocephala)、异叶米口袋(Gueldenstaedtia multiflora)、鹅绒委陵菜(Potentilla anserina)、柔软紫菀(Aster flaccidus)、羌活(Notoperygium forbesii)的净光合速率和表观量子效率增加,这与它们的形态特征,气孔因素以及水分利用效率有关.(2)长期增强UV-B辐射使高寒矮嵩草草甸大多数植物的类胡萝卜素含量增加,叶绿素a/叶绿素b比值和类胡萝卜素/叶绿素比值升高,这更有利于植物吸收更多的紫外辐射,减少UV-B辐射增加对高寒矮嵩草草甸植物的伤害,起到了光合保护的作用,有利于植物光合作用的进行,也是高寒矮嵩草草甸植物适应环境的一种策略.研究表明,长期增强UV-B辐射不会减少高寒矮嵩草草甸生态系统的初级生产力.  相似文献   

5.
大豆作物响应增强UV—B辐射的品种差异   总被引:8,自引:2,他引:6  
田间条件下模拟20%平流层臭氧层衰减,紫外线(UV-B,280-315nm)辐射增强,研究了UV-B对2个大豆(Glycin max (L.)Merr.)品种黑豆和晋豆生长,光合作用和稳定碳同位素组成的影响,结果表明,晋豆比黑豆对UV-B有较强的抗性或不敏感,表现为增强的UV-B辐射显著抑制黑豆的生长和株高,叶、茎、根和总生物量以及株高全部降低,而晋豆仅茎重和株高降低;晋豆的色素含量(叶绿素a,b,类胡萝卜素和类黄酮)不受UV-B辐射影响,在UV-B辐射下黑豆的净光合作用,气孔导度,胞间CO2浓度和蒸腾作用以及不分利用效率明显下降,而晋豆只有气孔导度和蒸腾作用减少,这可能与晋豆本身含有较高的类黄酮及较多的表皮毛和遗传特性有关,用叶片稳定碳同位素组成(δ^13C值)的分析也证明晋豆对UV-B辐射不敏感,由此看来,大豆品种对UV-B辐射的反应差异可以通过δ^13C值来判定。  相似文献   

6.
在云南玉溪烟区种植烤烟海拔最高(1 806.0 m)的通海县,通过盆栽烤烟K326试验,研究了在滤减自然的太阳UV B辐射强度25%、50%和65%条件下,UV B辐射对烟叶发育过程中可溶性蛋白、光合色素和类黄酮的影响。结果表明:随叶龄增加,可溶性蛋白含量下降,光合色素降解,类黄酮在老叶中积累,蛋白质在生理成熟期对UV B辐射最敏感。与对照相比,减弱UV B辐射处理降低了烟叶类黄酮和可溶性蛋白含量,但光合色素含量上升;较低的UV B辐射降低了叶绿素的降解速度。结果从一侧面说明UV B辐射对烟叶蛋白质的合成是有益的,类黄酮和叶绿素的变化是对UV B辐射变化的适应性反应,类黄酮与蛋白质之间可能存在一定的偶联关系。  相似文献   

7.
短期增强UV-B辐射对青榨槭幼苗生理特性的影响   总被引:4,自引:1,他引:3  
左园园  刘庆  林波  何海 《应用生态学报》2005,16(9):1682-1686
在中国科学院茂县生态站选择2年生青榨槭幼苗进行室外盆栽实验,以人工增强0.27 W·m-2(7.7 kJ·m-2·d-1)的UV-B辐射剂量,研究模拟当地平流层臭氧削减15%时近地面太阳UV B的增强对木本植物幼苗生理生态适应性的影响.处理50 d后,移除UV-B处理装置,就地测定气体交换参数和叶绿素荧光参数,并取样测定叶绿素及UV吸收物质含量.结果表明,增强UV-B辐射显著降低了青榨槭幼苗叶片最大净光合速率Pmax(对照为6.214,处理为4.452),显著增加叶片暗呼吸速率Rd(对照为0.413,处理为1.295)和光补偿点LCP(对照为21.629,处理为59.861),但对表观量子速率a(对照为0.021,处理为0.032)影响不明显;它降低青榨幼苗每日净光合速率和水分利用效率,以及原初光化学效率(Fv/Fm)和实际光化学量子产量(ΦPSП).此外,增强UV-B辐射使叶片叶绿素a、b含量降低(对照为16.23,5.39,处理为13.17,4.93),但对叶绿素b含量影响未达显著水平.增强UV-B处理降低了青榨槭幼苗UV吸收物质含量(对照为0.87,处理为0.79).光合指标、叶绿素荧光指标和叶绿素含量的变化有较好的一致性,表明增强UV-B对青榨槭幼苗的光合作用可能有一定的抑制作用.  相似文献   

8.
在生长房5种(暗处、可见光、低、中、高强度紫外线-B)处理下,研究了8个大豆品种的种子萌发率和萌发后幼苗的生长状况。结果表明,暗处种子萌发率高于自然当和UV-B辐射的种子。UV-B辐射增强对大豆种子的萌发率没有显著影响,仅使部分 品种的最大萌发率降低和导致部分品种达到最大萌发率的时间延长。幼苗的生长对增强的UV-B辐射非常敏感,使大部分品种的胚根变短增粗,这可能是植物激素作用的结果,大豆的叶绿素a、叶绿素b和总叶绿素含量明显受到UV-B辐射的抑制。UV-B作用能促进类黄酮在幼苗中的积累,紫外吸收色素的增设有利于提高对UV-B的抵抗力,UV-B辐射的这种效应及大豆种间的差异在自然情况下会产生深远的生物学和生态学意义。  相似文献   

9.
自然条件下滤减UV-B辐射对烤烟光合色素含量的影响   总被引:1,自引:0,他引:1       下载免费PDF全文
在自然环境中,以烟草栽培品种K326为材料,通过覆盖不同透明薄膜滤减UV—B辐射,研究100%(CK)、75%(T1)、50%(T2)、35%(T3)UV—B辐射透过率处理下,不同强度UV—B辐射对烟草光合色素含量的影响。结果表明:烤烟三类光合色素对UV—B辐射有不同响应。类胡萝卜素对UV—B辐射响应较敏感。成熟初期,类胡萝卜素含量与UV—B辐射强度变化具有较好的正相关性,而chl a和chl b含量基本与UV—B辐射强度呈反向变化关系。成熟后期,由于UV—B辐射累积效应,光合色素含量变化没有明显规律。现蕾期至成熟采烤烟初期,chl a:chl b与UV—B辐射的反向变化关系较明显,后期则无明显规律,其含量的下降与UV—B辐射的累积效应有关。  相似文献   

10.
大田栽培条件下,在大豆始花期叶面喷施以植物多糖(P1)、植物多糖和5-氨基乙酰丙酸(P2)以及植物多糖、5-氨基乙酰丙酸和缩节胺(P3)为有效成分复配的3种制剂,研究不同植物多糖类复合制剂对大豆叶绿素含量、光合蒸腾特性、干物质积累与分配以及籽粒产量的影响.结果表明:喷施3种制剂35 d内,大豆叶片叶绿素含量与对照相比明显增加,且随生育进程下降的趋势有所延缓;喷施P1和P3使大豆叶片光合速率和水分利用效率分别提高13.2%和10.3%以上.与对照相比,喷施3种制剂促进了大豆地上部于物质积累量的增加、提高了叶片干物质向荚的分配比例,花后干物质同化量对籽粒的贡献率增加17.1%以上;喷施P1和P3后,大豆单株荚数、单株粒数和百粒重显著增加,喷施P2后变化不显著;喷施3种制剂使大豆增产5.9%以上.3种植物多糖类复合制剂可促进大豆叶绿素合成、延缓叶片衰老、改善叶片光合潜能和水分状况,有效调控大豆干物质积累和花后同化物分配,进而实现增产.  相似文献   

11.
水分和光照对厚皮甜瓜苗期植株生理生态特性的影响   总被引:4,自引:1,他引:3  
毛炜光  吴震  黄俊  郭世荣 《应用生态学报》2007,18(11):2475-2479
以厚皮甜瓜‘西博洛托’为试材,研究了温室内育苗基质含水量和光照强度对厚皮甜瓜苗期植株生长发育和生理生态特性的影响.结果表明:不同基质含水量和光照强度对厚皮甜瓜苗期植株生长发育影响显著,随基质含水量的降低,苗期植株叶绿素a、叶绿素b和总叶绿素含量升高,叶片相对含水量和比叶面积下降,基质含水量为60%~80%时,幼苗净光合速率最高;随着光照强度的减弱,幼苗的叶绿素a、叶绿素b、总叶绿素含量以及叶片相对含水量、比叶面积和胞间CO2浓度升高,叶绿素a/b和净光合速率下降.在不同处理中,以80%基质含水量 100%温室光照处理的幼苗生长最健壮,壮苗指数、净光合速率等指标最高.  相似文献   

12.
研究了瓦氏马尾藻(Sargassum vachellianum)规模化育苗及海区养殖技术。采集海区成熟藻体, 室内催熟放散受精卵, 收集并喷洒于水泥板、棕绳、木板3种附着基, 进行受精卵附着、萌发及苗体生长等实验, 发现棕绳育苗效果最佳。受精卵喷洒10d后, 3种附着基的出苗率分别为 85.5%、80.2%和91.3%, 平均株高约1.3 mm。前20天木板幼苗密度最高, 达8.2株/cm2, 但幼苗均生长缓慢。第30天, 幼苗出现明显分枝, 生长率增大到前20天的1.6倍, 其中棕绳幼苗株高最大, 幼苗存活率分别为83.6%、79.7%和75.6%。第60天棕绳幼苗密度及平均株高均最大。将附有幼苗的水泥板(藻礁)、棕绳放入海区进行养殖, 发现幼苗在浪大流急海区生长较快, 4周后平均株高分别达98.7和103.1 mm, 是对照组的1.5倍, 但棕绳脱苗严重。藻礁较适合海区规模化投放养殖, 是藻场修复和重建的理想材料。  相似文献   

13.
Three-year-old birch (Betula pendula Roth.) seedlings were exposed, in the field, to supplemental levels of UV-B radiation. Control seedlings were exposed to ambient levels of UV radiation, using arrays of unenergized lamps. A control for UV-A radiation was also included in the experiment. Enhanced UV-B radiation had no significant effects on height growth, and shoot and root biomass of birch seedlings. Leaf expansion rate increased transiently in the middle of the growing period in enhanced UV-B- and UV-A-exposed plants; however, final leaf size and relative growth rate remained unaffected. Leaf thickness and spongy intercellular spaces were increased in UV-B-exposed seedlings along with increased density of glandular trichomes. At the ultrastructural level, enhanced UV-B increased the number of cytoplasmic lipid bodies, and abnormal membrane whorls were found. Both enhanced UV-B and UV-A radiation induced swelling of chloroplast thylakoids. Stomatal density and conductance were significantly increased by elevated UV-B radiation. UV-A radiation increased the length and width of stomata, whereas UV-B radiation had only a marginal effect on stomatal size. UV-A and enhanced UV-B radiation attenuated the appearance of necrotic spots in autumn, probably caused by the fungus Pyrenopeziza betulicola, suggesting a direct harmful effect of UV on pathogens or reduced susceptibility to pathogens in UV-exposed seedlings. Secondary metabolite analysis showed increases in (+)-catechin, quercetin, cinnamic acid derivative, apigenin and pentagalloylglucose in birch leaves under enhanced UV-B radiation. Negative correlations between apigenin, and particularly quercetin concentrations and lipid peroxidation levels indicated an antioxidant role of secondary metabolites in birch leaves exposed to UV-B radiation.  相似文献   

14.
紫外线辐射增加对大豆光合作用和生长的影响   总被引:18,自引:1,他引:17       下载免费PDF全文
通过模拟南京地区自然光中有效紫外线B和紫外线A辐射,增大辐射剂量对大豆光合作用,生长及生物量形成的影响迸行了研究。3个加强的UV辐射(0.15,0.35,0.70W·m-2)处理均使大豆植株矮化,抑制根、茎、叶的生长及干物质的积累。在3个UV处理中,生物效应以0.70W·m-2处理力最大,0.15W·m-2处理影响最小。UV辐射匀能使大豆叶片光合作用下降。下降幅度随UV辐射强度的增大而增大,本文还对UV影响大豆生长的可能机制进行了探讨。  相似文献   

15.
UV-B辐射对香蕉光合作用和不同氮源利用的影响   总被引:14,自引:0,他引:14  
生长在NO3^--N、NH4^--N和NH4NO3-N的香蕉叶片有相近似的最大光合速率,UV-B辐射引起生长在不同氮源的香蕉叶片光合速率、表现量子产率和光肥利用效率的降低。UV-B辐射使生长在不同氮源的植株叶面积干重和叶氮含是降低。生长在NH4^--N的植株Vcmax和Jmax均较生长在其它氮源的高。UV-B辐射引起生长在NH4^-N的植株Vcmax和Jmax降低较相同处理的NO3^--N和NH4NO3-N植株明显,表明生长在NH4^ -N的香蕉对UV-B辐射更加敏感。UV-B辐射改变植株的叶片的碳氢比和碳氮比。经过UV-B辐射处理的NH4^ -N生长植株的碳氮生长在NO3^--N和NH4NO3-N的低。UV-B辐射可能改变植株对不同氮源的吸收利用,从而引起碳氮代谢和酸碱调节的变化。UV-B辐射降低叶氮在Rubisco和生物力能学组分的分配系数,可能使这些组分合成减少,使叶片光调节的变化。UV-B辐射降低叶氮在Rubisco和生物力能学组分的分配系数,可能使这些组分合成减少,使叶片光合速率下降。结果表明,生长在不同氮源的香蕉植树对UV-B辐射有不同响应,NH4^ -N有利于主要光合参数增高,但其对UV-B辐射亦最为敏感。氮供应受限制或植株生长在中性盐如NH4NO3-N则对UV-B辐射不甚敏感。  相似文献   

16.
补增UV-B辐射的香蕉叶片光下呼吸速率(Rd))和不包括光下呼吸的CO2补偿点(г*),分别为0.33μmol·m-2·s-1和46.5μl·L-1,较对照植株分别高5.6%和10.0%。在较高CO2浓度(>340μl·L-1)条件下的An/θp关系最初直线部分斜率,即表观量子产率(α-A)为0.023±0.007,而补增UV-B辐射处理的植株则降低13.0%,光能转换效率(δ)亦降低28.6%,表明UV-B辐射明显降低αA和δ。在高θp(1100μmol·m-2·s-1)和Ci<200μl·L-1条件下,对照植株的An/Ci关系为An=0.028Ci+1.44,补增UV-B辐射处理的植株则为An=0.021Ci+1.01,UV-B辐射降低羧化限制速率。最大羧化速率(Vcmax)和电子传导速率的光饱和值(Jmax)亦较低,补增UV-B辐射的叶片,叶氮在Rubisco的分配系数(PR)和叶氮在生物力能学组分的分配系数(PB)分别较对照低8.1%和3.0%,叶氮分配到类囊体膜捕光色素蛋白组分的则略见增高,UV-B辐射降低叶氮在光合循环组分的分配。  相似文献   

17.
The bloom‐forming cyanobacterium Microcystis aeruginosa Kütz 854 was cultured with 1.05 W·m?2 UV‐B for 3 h every day, and its growth, pigments, and photosynthesis were investigated. The specific growth rates represented by chl a concentration and OD750 were inhibited 8% and 9% by UV‐B exposure, respectively. Six days of UV‐B treatment significantly reduced cellular contents of phycocyanin and allophycocyanin by 32% and 62%, respectively, and markedly increased the carotenoid content by 27%, but had little effect on the chl a content. The initial values of optimal photosynthetic efficiency for UV‐B treated samples were, respectively, 52%, 87%, and 93% of controls on days 4, 7, and 10 of growth. The light‐saturated photosynthetic rates at day 6 were significantly lower than controls grown without UV‐B. The probability of electron transfer beyond QA decreased during UV‐B exposure, and this indicated that the acceptor side of PSII was one of main damage sites. The adaptation of M. aeruginosa 854 to UV‐B radiation could be observed from light‐saturated photosynthetic rates on day 13 and diurnal changes of chl fluorescence during the late growth phase. When both exposed to higher UV‐B, samples cultured under 1.05 W·m?2 UV‐B for 9 days recovered faster than controls. It is suggested that M. aeruginosa 854 had at least three adaptive strategies to cope with the enhanced UV‐B: increasing the synthesis of carotenoids to counteract reactive oxidants caused by UV‐B exposure, degrading phycocyanin and allophycocyanin to avoid further damage to DNA and reaction centers, and enhancing the repair of UV‐B induced damage to the photosynthetic apparatus.  相似文献   

18.
林窗中植物竞争强度随林窗发育的变化   总被引:9,自引:1,他引:8       下载免费PDF全文
 通过野外移植外来种尾叶桉(Eucalyptus urophylla)、大叶相思(Acacia auriculaef ormis)和本地种荷木(Schima superba) 3种幼苗,挖沟排除根竞争和砍树创造林窗排除地上竞争的实验,来测定林窗形成后植物地下竞争和地上竞争强度的变化以及这些竞争对3种幼苗生长的影响。在林窗内,尾叶桉、大叶相思和荷木受到的地下竞争强度和地上竞争强度均呈现出随林窗年龄的增长而逐渐增大的趋势。外来种尾叶桉和大叶相思受到的地上竞争强度大于本地种荷木受到的地上竞争强度,而荷木受到的地下竞争强度大于两种外来种受到的地下竞争强度。在只有地下竞争和地上竞争时,这3种幼苗的相对生长速率均小于没有竞争时,这反映了地下竞争和地上竞争对3种幼苗的生长有抑制性影响,而且这种影响在本地种和外来种间存在差异。  相似文献   

19.
The combined effects of ammonium concentration and UV radiation on the red alga Porphyra columbina (Montagne) from the Patagonian coast (Chubut, Argentina) was determined using short‐term (less than a week) experimentation. Discs of P. columbina were incubated with three ammonium concentrations (0, 50, and 300 μM NH4Cl) in anilluminated chamber (PAR=300 μmol photons·m?2·s?1, UVA=15 W·m?2, UVB=0.7 W·m?2) at 15°C. Algae incubated at 300 μM ammonium showed a significant increase (P<0.05) in the concentration of mycosporine‐like amino acids (MAAs) compared with the initial value or with the other ammonium treatments. The increase of MAAs was, however, a function of the quality of irradiance received, with a higher increase in samples exposed to UVA compared with UVB (29% and 5% increase, respectively). However, UVB radiation was more effective in inducing MAA synthesis per unit energy received by the algae. Samples exposed to PAR only had an intermediate increase in MAA concentration of 16%. Chl a concentration decreased through the incubation with the greatest decrease at high ammonium concentration. Phycobiliprotein (BP) decreased through time with the smallest decrease occurring at high ammonium concentration. Photoinhibition (as a decrease of optimal quantum yield) was significantly greater under nitrogen‐deprived conditions than that under replete ammonium levels. Maximal gross photosynthesis (GPmax), as oxygen evolution, and maximal electron transport rate (ETRmax), as chl fluorescence, increased with the ammonium concentration. Positive relationships between maximal GP or ETR and pigment ratios (BP/chl a and MAAs/chl a) and negative relationships with chl a concentration were found.  相似文献   

20.
Acclimation to UV radiation (UVR) was examined in a unicellular chlorophyte isolated from fumarole fields adjacent to Mt. Erebus, Antarctica. Long‐term exposure to UVR (14 days) initially reduced the efficiency of photosynthetic energy conversion measured as the dark adapted quantum yield of PSII fluorescence (Fv/Fm) when compared with cultures not exposed to UVR. However, the UVR exposed cultures recovered to pre‐UVR exposure levels of photosynthetic efficiency by the end of the experimental period. Additionally, neither growth rates nor cell size were significantly affected by exposure to UVR. In contrast, the maximum rate of carbon fixation on a chl a basis was significantly reduced at the end of the experiment and was accompanied by a significant decrease in chl a concentrations. These results suggest a transient effect of UVR on primary photochemistry consistent with damage to PSII, possibly at the D1 protein, with more chronic effects on carbon fixation that did affect maximum photosynthetic capacity. Ultrastructural and molecular (18s rDNA) data show that this isolate from the fumoral fields of Mt. Erebus, Antarctica is a member of the genus Scenedesmus.  相似文献   

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