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1.
为了探索番茄幼苗生长发育对红蓝组合光的响应机制,本试验采用发光二极管(LED)精量调制光源,以番茄品种‘SV0313TG’为试材,设红光(R)、蓝光(B)和红蓝组合光(9R1B、6R1B、3R1B、1R1B、1R3B)7个处理,以白光为对照,研究不同比例红蓝光质对番茄幼苗生长、光合色素含量、光合特性、叶绿素荧光参数及根系活力的影响.结果表明:不同比例红蓝光质处理对番茄幼苗生长的影响具有明显差异.红光显著促进幼苗株高增加,比叶面积增大,胞间CO2浓度提高,但PSⅡ最大光化学效率(Fv/Fm)、PSⅡ实际光化学效率(ФPS)降低,根系生长受阻,根系活力下降,壮苗指数降低;蓝光下幼苗生长受到明显抑制,叶绿素含量降低,但叶绿素a/b 值升高;红蓝组合光有利于番茄幼苗的生长发育,3R1B处理下植株干物质量、叶绿素含量和光合性能均显著提高,幼苗生长健壮,壮苗指数最大.综上,红蓝组合光能够增加番茄幼苗叶片光合色素含量,提高光合效率,促进植株生长,尤以3R1B处理最佳.  相似文献   

2.
光质对绿豆幼苗叶片超微弱发光及叶绿素含量的影响   总被引:3,自引:1,他引:2  
以绿豆幼苗为试材,测定其叶片超弱发光(UBE)及叶绿素含量在不同光质条件下的变化,并探讨两者之间的关系.结果表明,生长在不同光质下绿豆幼苗叶片的UBE及延迟发光衰减参数1/P都随着其生长不断增强,且生长在白光下绿豆幼苗的UBE是生长在其他光质(红、黄、蓝、绿)下幼苗的2倍以上,而红光、黄光和绿光处理之间无显著差异;生长在白光下的绿豆幼苗叶片叶绿素含量显著高于红、黄、蓝、绿光处理幼苗,而红光和黄光处理又显著高于蓝光和绿光处理.研究发现,光质对绿豆幼苗叶片超弱发光和叶绿素含量影响相似,绿豆幼苗叶片超弱发光可能与叶绿体的发育和光合作用有关.  相似文献   

3.
不同LED光源对乌塌菜生长、光合特性及营养品质的影响   总被引:1,自引:1,他引:0  
与传统光源相比,LED具有光谱可控、亮度高但发热量小、寿命长等优势.LED光源可实现光谱可控,通过调制光谱与植物的感光细胞最优结合来影响植物的生长发育与营养品质.本研究利用LED精量调制光源,以‘菊花小八叶’乌塌菜品种为试验材料,设红光、蓝光、红/蓝光(3/1)、红/蓝光(7/1)、白/红/蓝光(3/2/1)5个处理,以白光为对照,研究不同光质对乌塌菜生长、光合特性及品质的影响.结果表明: 红光有利于乌塌菜生物量和茎粗的增大,而蓝光有抑制作用;叶绿素含量以红/蓝光(7/1)处理最高,且叶绿素总量与红/蓝光比值呈正相关,虽然蓝光显著降低叶绿素含量,但提高了叶绿素 a/b 值;光合速率和蒸腾速率均以红光处理最高,与对照相比分别增加43.8%和55.1%,而蓝光处理下有较高的气孔导度及胞间CO2浓度.不同光质处理对乌塌菜的荧光参数有较大影响,白光的Fv/Fm、Fv/Fo和ΦPSⅡ均最大;红光可以提高可溶性糖含量,蓝光能提高可溶性蛋白含量,白光能增加维生素C含量.综合分析,红/蓝光(7/1)处理在增加叶片光合色素含量,提高光合速率,促进植株生长和改善营养品质方面为最优组合.  相似文献   

4.
该研究以走马胎幼苗为材料,采用红光(R)、蓝光(B)、红∶蓝=2∶1(R2B1)、红∶蓝=4∶1(R4B1)、红∶蓝=6∶1(R6B1)、红∶蓝=8∶1(R8B1)、紫光(P)以及绿光(G)共8种不同的光质处理,并以自然光作为对照(CK),探究走马胎生长发育对不同光质的响应特征,为提高走马胎苗木质量和药用成分含量,以及珍贵药用植物的培育及保护提供依据。结果表明:(1)走马胎苗高在R处理下最高,地径、鲜重和干重在R2B1处理下达到最大值。(2)走马胎幼苗叶片的叶绿素含量在B处理下最高,在G处理下最低;在红蓝复合光处理中,随着蓝光比例的增大,叶绿素和类胡萝卜素含量呈现逐渐增加的趋势。(3)走马胎幼苗叶片丙二醛(MDA)和游离脯氨酸含量在G处理下最高,超氧化物歧化酶(SOD)和过氧化物酶(POD)活性在B处理及适宜比例的红蓝复合光处理下更有利于得到提升。(4)走马胎幼苗叶绿素...  相似文献   

5.
以南方主要造林树种木荷和杉木幼苗为试验材料,研究了红光、蓝光和白光处理对幼苗叶片叶绿素荧光参数和抗氧化酶活性的影响。结果表明,木荷幼苗叶片初始荧光(Fo)、最大荧光(Fm)、可变荧光(Fv)和稳态荧光(Ft)均以白光最高,光系统Ⅱ(PSⅡ)最大光化学效率(Fv/Fm)、PSⅡ潜在光化学效率(Fv/Fo)和PSⅡ的天线转换效率(Fv'/Fm')均以白光最高,蓝光次之,红光最低。与白光处理相比,蓝光处理增强木荷幼苗叶片超氧化物歧化酶(SOD)活性,红光和蓝光降低过氧化氢酶(CAT)活性,增强过氧化物酶(POD)活性,提高叶片丙二醛(MDA)含量。杉木幼苗叶片Fo和Ft以红光最高,Fm和Fv以白光最高,Fv/Fm、Fv/Fo和Fv'/Fm'均以白光最高,蓝光次之,红光最低。不同处理间杉木幼苗叶片SOD、CAT活性和MDA含量均无显著差异,而POD活性差异显著,以白光处理最高。光质对2种树种幼苗的生长均具有调控作用,其中红光和蓝光处理均造成木荷和杉木幼苗叶片的潜在活力发生不同程度的下降,造成光胁迫,同时破坏幼苗叶片抗氧化酶系统的平衡,不利于幼苗生长。  相似文献   

6.
以拟南芥野生型(WT)、突变体col7、以及COL7过量表达转基因株系COL7-OX-10和COL7-OX-11为实验材料,观察比较了白光、红光以及蓝光下,生长在MS培养基上的幼苗表型,以及蓝光下生长在0、100 mmol/LNaCl MS培养基上的幼苗表型。结果发现,过量表达株系幼苗在白光和蓝光下出现黄化现象,并且NaCl处理导致蓝光下幼苗黄化现象更加严重。检测幼苗的花青素及叶绿素的含量,发现白光和蓝光下,过量表达株系幼苗中花青素和叶绿素的含量明显降低,其中蓝光下生长在含100 mmol/L NaCl的MS培养基上幼苗的花青素和叶绿素含量下降尤为明显,表明COL7可能参与调控花青素和叶绿素的合成,并依赖于蓝光。  相似文献   

7.
发光二级管不同光质对姜黄光合特性和姜黄素含量的影响   总被引:2,自引:0,他引:2  
以发光二级管(LED)为光源研究不同光质对姜黄生理特性的影响。结果表明:红光、蓝光和红蓝组合光处理均提高了姜黄素含量;红光有利于提高叶绿素a和总叶绿素含量、可溶性糖含量,蓝光有利于提高类胡萝卜素含量、SOD和POD活性、蛋白质含量,绿光有利于提高类胡萝卜素含量和蛋白质含量,黄光有利于提高蛋白质含量。红光/蓝光=7:3时姜黄的总叶绿素含量、类胡萝卜素含量、SOD活性、Fv/Fo和姜黄素含量分别比对照显著提高14.23%、23.60%、18.18%、22.60%和66.65%;说明红光/蓝光=7∶3时最适合于姜黄的生长和姜黄素的生成。  相似文献   

8.
新型光源LED辐射的不同光质配比光对菊花组培苗生长的影响   总被引:13,自引:0,他引:13  
采用新型光源LED辐射的红光[R,(658±20)nm]、远红光[Fr.(715±20)nm]和蓝光[B,(460±20)nm],观测不同红光/远红光(R/Fr)和红光/蓝光(R/B)配比光对菊花组培苗生长的影响.试验结果表明:红光处理的植株最高,根较长.远红光和蓝光处理的植株矮小,根短细.类胡萝卜素含量与R/Fr比率呈负相关,叶绿素a、叶绿素b、叶绿素(a b)、类胡萝卜素含量与R/B比率也呈负相关.叶绿素a/b比值与R/Fr和R/B比率呈正相关.红光有利于可溶性糖和淀粉的积累,降低色素含量.而蓝光能够逆转此效应,可促进色素和可溶性蛋白的合成.红光和蓝光组合处理的叶中可溶性糖和淀粉含量以及根系活力均高于白光处理的,尤以高R/B配比光处理的组培苗生长健壮,移栽成活率最高.  相似文献   

9.
不同光质对桑树幼苗生长和光合特性的影响   总被引:2,自引:0,他引:2  
胡举伟  代欣  宋涛  孙广玉 《植物研究》2019,39(4):481-489
光质可影响植物光合特性、形态以及生理过程。本试验研究了不同光质(白光W、红光R、红蓝混合光RB、蓝光B)对桑树植株生长、形态和光合作用的影响。结果表明:与白光对照相比,红光、蓝光和红蓝混合光处理下植株的生长、干物质积累受到抑制;红光处理下植株的株高、叶面积显著高于白光、红蓝混合光、蓝光处理;而白光、红蓝混合光、蓝光处理下植株的LMA、叶绿素a/b比值、可溶性蛋白含量、蔗糖、淀粉含量和叶片总N含量显著高于红光处理;红蓝混合光处理下植株的Pn、Gs、ΦPSⅡ与白光处理相近,红光、蓝光处理下植株的Pn、ΦPSⅡ低于白光、红蓝混合光处理,同时红光、红蓝混合光、蓝光处理下植株的抗氧化酶活性高于白光处理,而MDA含量低于白光处理;红光处理下植株的叶片厚度、栅栏组织和海绵组织厚度显著小于白光处理。因此,一定比例的红蓝混合光可以使桑树植株的生长、光合特性、生理特征和叶片解剖结构与白光下生长植株相近,并减少单质红光、单质蓝光对植株生长发育的不利影响。  相似文献   

10.
不同光质对甘蓝型油菜幼苗的生长和生理特性的影响   总被引:4,自引:0,他引:4  
李慧敏  陆晓民 《西北植物学报》2015,35(11):2251-2257
以甘蓝型油菜品种‘宁油12’为试材,采用单因素随机区组设计的盆栽试验,将直播后长至子叶展平时的油菜幼苗转入荧光灯(FL,对照)、蓝光(B)、蓝红组合1∶1(BR1∶1)、蓝红组合1∶8(BR1∶8)和红光(R)下进行照射,考察不同光质对甘蓝型油菜生长指标、根系活力、叶绿素含量和光合产物等的光效应,筛选适合甘蓝型油菜工厂化育苗的人工光源,为油菜的工厂化育苗的光源合理利用提供理论指导和技术支持。结果表明:(1)油菜幼苗的鲜质量、干质量、根长、株高、茎粗和叶面积在BR1∶8处理下最大,并显著高于对照FL;(2)BR1∶8处理下的幼苗根系活力最强,其次为B处理,二者都显著高于对照FL;(3)幼苗叶片叶绿素a、叶绿素b、叶绿素总量和类胡萝卜素的含量在各光质处理下变化趋势一致,即B处理最大,其次是BR1∶8处理,二者均显著高于BR1∶1、R和FL处理,但BR1∶1、R和FL处理间均无显著差异;(4)BR1∶8处理幼苗叶片的可溶性糖、淀粉和游离氨基酸含量最高,且都显著高于BR1∶1、R和FL处理;B处理幼苗叶片的蔗糖、可溶性蛋白和抗坏血酸含量最高,且显著高于BR1∶1、R和FL处理;BR1∶8处理叶片的可溶性碳和氮含量最高,其次为B处理,并显著高于BR1∶1、R和FL处理;而对照FL处理的碳氮比最大,显著高于其他处理。研究认为,蓝红组合光(1∶8)能显著提高甘蓝型油菜叶片可溶性糖、可溶性淀粉、游离氨基酸、可溶糖总碳和总氮的含量,而蓝光则能显著促进叶片光合色素、蔗糖、可溶性蛋白和抗坏血酸的积累,有效促使幼苗快速、健壮生长,生产中可采用蓝红组合光(1∶8)和蓝光作为甘蓝型油菜育苗的人工光源。  相似文献   

11.
蓝光、紫外光的受体及其对CHS表达诱导的研究   总被引:14,自引:1,他引:13  
王曼  王小菁 《植物学通报》2002,19(3):265-271
植物在进化过程中形成了对环境信号反应的能力,光是植物生长发育中的一个重要的环境信号,综述了蓝光,紫外光的受体及蓝光,紫外光对编码植物类黄酮合成中的一个重要的限速酶-苯基苯乙烯酮合酶基因CHS的诱导作用,并介绍该反应信号转导的可能组分。  相似文献   

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王曼  王小菁 《植物学报》2002,19(3):265-271
植物在进化过程中形成了对环境信号反应的能力,光是植物生长发育中的一个重要的环境信号。综述了蓝光、紫外光的受体及蓝光、紫外光对编码植物类黄酮合成中的一个重要的限速酶——苯基苯乙烯酮合酶基因CHS的诱导作用,并介绍该反应信号转导的可能组分。  相似文献   

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Light is the most important synchronizer of melatonin rhythms in fish. This paper studies the influence of the characteristics of light on plasma melatonin rhythms in sole. The results revealed that under long‐term exposure to constant light conditions (LL or DD), the total 24 h melatonin production was significantly higher than under LD, but LL and DD conditions influenced the rhythms differently. Under LL, melatonin remained at around 224 pg/ml throughout the 24 h, while under DD a significant elevation (363.6 pg/ml) was observed around the subjective evening. Exposure to 1 h light pulses at MD (mid‐dark) inhibited melatonin production depending on light intensity (3.3, 5.3, 10.3, and 51.9 µW/cm2). The light threshold required to reduce nocturnal plasma melatonin to ML (mid‐light) values was 5.3 µW/cm2. Melatonin inhibition by light also depended on the wavelength of the light pulses: while a deep red light (λ>600 nm) failed to reduce plasma melatonin significantly, far violet light (λmax=368 nm) decreased indoleamine's concentration to ML values. These results suggest that dim light at night (e.g., moonlight) may be perceived and hence affect melatonin rhythms, encouraging synchronization to the lunar cycle. On the other hand, deep red light does not seem to inhibit nocturnal melatonin production, and so it may be used safely during sampling at night.  相似文献   

16.
The international meeting Light, Endocrine Systems and Cancer--Facts and Research Perspectives was convened because recent research suggests that ubiquitous light may have more serious cancer consequences than expected. Beyond the established causal link between (over) exposure to sunlight and skin cancer, many scientists consider a causal relationship between light, endocrine systems and internal cancers as biologically plausible. To identify options to turn biological plausibility of mechanisms into true understanding and to assess the possible public health relevance we chose to bring together leading specialists from clinical, experimental laboratory and epidemiological studies of these issues to stimulate a critical, multi-disciplinary discussion of published and new results. Presentations at the symposium covered the physics of light and evolutionary aspects and provided intriguing information about chronobiology, physiology and patho-physiology of endocrine systems and carcinogenesis. Experimental and epidemiological findings on light and skin cancer, and of very recent investigations of relationships between light and internal cancers such as breast cancer were presented. The meeting concluded with a lively discussion of future research options. The symposium's essence and constructive atmosphere are captured in these proceedings [Neuroendocrinol Lett 2002 Jul;23 Suppl 2:1-104] which contain: (i) original presentation papers [Vladimir Anisimov, David Blask, Roland B?ni, George Brainard, Thomas Erren, Alexander Lerchl, Sidney Perkowitz, Chris Portier, Russel Reiter, Richard Stevens, Günter Vollmer]; (ii) abstracts of oral and poster presentations; (iii) four commentaries [Charles Poole, Chris Portier, Till Roenneberg and Rob Lucas, Vladimir Anisimov and Johnni Hansen] on the presentations at the meeting and possible implications for research and public health. In our view, the biological plausibility of mechanistic links between light and hormones and cancer can serve as a unique basis for syn-disciplinary research and we expect that investigations in this area will become a higher priority research focus.  相似文献   

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Light Fluctuations and Photosynthesis   总被引:2,自引:1,他引:1  
The effects of fluctuating light on photosynthesis are examined.A simple model of leaf photosynthesis is used so that the analysiscan be presented in explicit terms, the time-dependent problemis solved, and the response of photosynthesis to step changesin light-flux density is calculated. The presence of light fluctuationscan cause a discrepancy between measurements and estimates ofphotosynthesis; the relevant factors are the response time ofthe device used for measuring light-flux density, the responsetime of the photosynthetic system in the leaf, and the steady-statelight response curve with the degree of non-linearity and thevalue of the light-flux density for maximum photosynthesis beingespecially important. Some general methods for estimating practicallythe effects of light fluctuations on photosynthesis are described.The use of the methods of time-series analysis in such problemsis discussed.  相似文献   

20.
The interaction between phytochrome photoequilibrium () and photon flux in the photoregulation of anthocyanin production under prolonged irradiation was studied in seedlings of Brassica oleracea L. and Lycopersicon esculentum Mill. In cabbage, anthocyanin production increases with decreasing , reaching a maximum at the lowest value ( = 0.13) used in this study; in tomato, the extent of the response is higher at intermediate values, reaching a maximum at = 0.46. In cabbage, the response increases with increasing photon flux at all values; however, the response to changes in photon flux is minimal at = 0.85, and, at = 0.13, minimal at photon fluxes higher than 5 micromolar per square meter per second. In tomato, the response increases with increasing photon flux at = 0.46, 0.65, and 0.85, the response to changes in photon fluxes being minimal at = 0.85; at = 0.13 and 0.29 the response first increases (significantly at = 0.29 and minimally at = 0.13) and then decreases with increasing photon fluxes, the transition occurring at about 1 micromolar per square meter per second at = 0.13, and at 5 micromolar per square meter per second at = 0.29. The patterns of light quality-quantity interaction in the photoregulation of anthocyanin production are significantly different in cabbage and tomato and are also significantly different than those observed for other photomorphogenic responses to prolonged irradiations.  相似文献   

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