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1.
光质与人参淀粉酶活性、总糖和淀粉含量的关系   总被引:6,自引:0,他引:6  
研究了生长在同等透光率六种滤光膜覆盖下的人参淀粉酶活性、总糖和淀粉含量的季节性变化。人参叶片的淀粉酶活性、总糖和淀粉含量明显低于根部,叶片酶活性的高峰在红果期,糖和淀份含量在成熟期最高;根部与叶片相反,酶活性高峰在成熟期,糖和淀粉含量在红果期最高。红光、红蓝和红蓝绿复合光下人参的淀粉酶活性,总糖和淀粉含量均较高,单质蓝光和绿光下偏低。红光对糖分的合成与积累有明显促进作用,但有红光参与的复合光更有利于人参的生长。  相似文献   

2.
以‘平韭2号’为试材,以白光(W)处理为对照(CK),研究白+红(WR)、白+蓝(WB)、白+绿(WG)、白+紫(WP)4种不同光质处理对韭菜碳氮代谢、生长和品质的影响.结果表明: WR处理韭菜的光合速率(Pn)显著高于CK,而WB、WG和WP与CK无显著差异,但RuBP羧化酶(RuBPCase)活性均显著高于CK.各处理相比,总糖含量以WR最高,WP其次,WB和WG最低.WR下韭菜蔗糖磷酸合成酶(SPS)活性显著高于CK,其余三者均显著低于CK,其中以WB最低,但蔗糖合成酶(SS)和淀粉酶(AMS)活性均以WB最高,WR最低,WG和WP的SS活性与CK无差异,但AMS活性显著低于CK.可见,增加红、紫光比例可促进韭菜碳的同化和转化,加速糖的积累.总氮、蛋白氮含量、硝酸还原酶(NR)、谷氨酰胺酶(GS)和谷氨酸合成酶(GOGAT)活性以WB最高,显著高于CK,但WB下谷氨酸脱氢酶(GDH)活性最低,显著低于CK;WR的蛋白氮和非蛋白氮含量、NR和GS活性最低,显著低于CK,GOGAT和GDH活性显著高于CK,且GDH在所有处理中最高;WG的全氮、非蛋白氮含量及GDH活性均显著低于CK,但蛋白氮含量、NR和GOGAT活性显著高于CK,WP的氮含量及相关酶活性呈现出与WG相同的趋势,且GS活性亦同样高于CK.说明增加蓝光、紫光和绿光可使韭菜氮代谢增强,而增加红光对蛋白质的合成有一定的抑制作用.红光和紫光下韭菜生长较好,而蓝光则抑制其加粗生长,叶片较薄,单株生长量较低.紫光下韭菜的粗纤维含量最低,营养品质最优,因此,紫光对韭菜的生长最有利.  相似文献   

3.
邬奇  苏娜娜  崔瑾 《西北植物学报》2013,33(6):1171-1176
采用发光二极管调制光谱能量分布,以荧光灯为对照,研究不同光质(红光、蓝光、黄光、绿光)下番茄幼苗生理特性及内源性GA和IAA水平与其生长的关系。结果表明:(1)红光和蓝光有利于番茄幼苗茎的伸长和叶面积的增加。(2)除蓝光处理下可溶性糖含量和SOD活性与对照无显著性差异外,各单色光质处理下番茄幼苗根系活力、色素含量、可溶性蛋白和可溶性糖含量、SOD活性较对照均显著降低。(3)与对照相比,各单色光质处理下番茄幼苗叶片中GA含量显著降低,IAA含量在红光下显著升高,在黄光和绿光下显著降低,且叶面积与IAA含量呈显著正相关关系。(4)番茄幼苗茎中GA和IAA含量在红光和蓝光处理下显著高于对照和黄、绿光处理,且株高与茎中GA和IAA含量呈正相关关系。  相似文献   

4.
光质对水稻幼苗蛋白质、氨基酸含量的影响   总被引:1,自引:0,他引:1  
蓝光对水稻幼苗可溶性蛋白积累的促进效应,在幼苗生长的初期比较明显;第5天,幼苗的可溶性蛋白质、蛋白氮、非蛋白氮以及Asp、Asn、Glu、Gln等游离氨基酸含量都远远高于白光或红光的处理。随着苗龄的增加,蓝光的促进作用减弱,到第17天,各项指标都低于白光处理的幼苗。红光处理的幼苗可溶性蛋白始终低于白光或蓝光的处理,其 Asn、Gln 两种酰胺含量在第10天以后明显高于同期的白光或蓝光的处理。  相似文献   

5.
光质对水稻幼苗蛋白质、氨基酸含量的影响   总被引:10,自引:0,他引:10  
蓝光对水稻幼苗可溶性蛋白积累的促进效应,在幼苗生长的初期比较明显;第5天,幼苗的可溶性蛋白质、蛋白氮、非蛋白氮以及Asp、Asn、Glu、Gln等游离氨基酸含量都远远高于白光或红光的处理。随着苗龄的增加,蓝光的促进作用减弱,到第17天,各项指标都低于白光处理的幼苗。红光处理的幼苗可溶性蛋白始终低于白光或蓝光的处理,其Asn、Gln两种酰胺含量在第10天以后明显高于同期的白光或蓝光的处理。  相似文献   

6.
不同氮素形态及其配比对盐胁迫下紫苏生理特性的影响   总被引:1,自引:0,他引:1  
以60 mmol·L~(-1)NaCl处理紫苏幼苗为对象,研究不同氮素形态配比对盐胁迫下紫苏生长、叶绿素含量、可溶性蛋白质、抗氧化酶和氮素代谢相关酶活性的影响,为进一步研究盐胁迫环境下紫苏生产中氮肥的合理调控提供理论依据。结果表明:非盐胁迫下,当NH_4~+-N/NO_3~--N=25∶75时,紫苏地上部分的鲜重和干重、总叶绿素含量、硝酸还原酶(NR)和谷氨酰胺合成酶(GS)活性、可溶性蛋白含量和抗氧化酶活性都显著高于其他氮素处理;在盐胁迫下,紫苏生长受到抑制,叶绿素含量降低,可溶性蛋白和MDA含量增加,抗氧化酶活性升高,氮代谢相关酶NR和GS活性也升高; NaCl胁迫下,当NH_4~+-N/NO_3~--N=25∶75时,紫苏叶片的叶绿素含量、SOD活性、CAT活性和可溶性蛋白含量最高,MDA含量最低;当NH_4~+-N/NO_3~--N=50∶50时,POD活性最高;叶片中NR和GS活性都随着硝态氮比例的增加不断升高,并在NH_4~+-N/NO_3~--N=0∶100达到最大值,酰胺态氮处理组的NR和GS活性均低于全硝处理,但高于全铵处理组;不同氮素形态及配比对盐胁迫下紫苏叶绿素含量、氮素代谢和抗逆调节指标、产量影响显著;研究发现,在盐胁迫下,铵硝混合配施比单独施用全硝、全铵和酰胺态氮效果好,并且NH_4~+-N/NO_3~--N=25∶75处理更有利于维持抗氧化酶、氮代谢酶活性,缓解盐胁迫对紫苏幼苗生长的抑制,促进鲜重和干重的增加,从而维持较高的耐盐性。  相似文献   

7.
缺氮和复氮对菘蓝幼苗生长及氮代谢的影响   总被引:1,自引:0,他引:1  
对基质育苗后水培的菘蓝进行缺氮与复氮处理,分析其生长情况及氮代谢产物含量的变化,探讨缺氮和复氮对菘蓝幼苗生长及氮代谢的影响,以提高菘蓝产量和品质以及栽培过程中的氮素利用效率。结果显示:(1)正常供氮条件下,菘蓝幼苗的叶绿素含量、谷氨酰胺合成酶(GS)活性、硝态氮含量、靛玉红含量为最高,而其株高、主根直径、根的鲜重与干重、叶的鲜重与干重、根系活力均最小。(2)缺氮处理增加了菘蓝幼苗的主根直径和根干重,提高其根系活力和硝酸还原酶(NR)活性,促进游离氨基酸在叶中的积累;但降低了GS的活性,也降低了叶中硝态氮、可溶性蛋白、靛玉红及根中游离氨基酸的含量;缺氮对叶中靛蓝的含量无明显影响。(3)复氮处理增加了菘蓝幼苗的株高、主根长、根鲜重、叶鲜重、叶干重,提高了其根系活力,降低了NR和GS的活性;与对照相比,复氮降低了叶中硝态氮含量,提高了叶中可溶性蛋白、靛蓝及根中游离氨基酸的含量,但对叶中游离氨基酸和靛玉红含量影响较小。研究表明,缺氮后再复氮有利于菘蓝幼苗叶的生长,同时有利于增加其叶内靛蓝含量,从而提高其产量和品质。  相似文献   

8.
采用溶液培养方法,选取硝酸盐积累差异明显的两个油菜品种(低硝态氮积累品种‘红油3号’和高硝态氮积累品种‘中双6号’,研究苗期根系硝酸还原酶(NR)活性被抑制以后两个油菜品种叶片、叶柄和根系中NR活性和硝态氮含量的变化。结果表明:1.0mmol.L-1的NR活性抑制剂Na2WO4对两个油菜品种的根系NR活性抑制效果最佳;根系NR活性被抑制以后,两个油菜品种的根系NR活性、硝态氮吸收速率均显著下降,而硝态氮含量却显著上升;且Na2WO4对‘中双6号’硝态氮吸收的抑制程度强于其对‘红油3号’的抑制。叶片和叶柄的NR活性变化不显著,但叶柄硝态氮含量显著下降,叶片硝态氮含量稳定,且这一趋势在低积累品种‘红油3号’中表现得更为明显。  相似文献   

9.
长期低浓度SO2逆境条件下油桐的氮代谢和碳代谢的变化   总被引:6,自引:0,他引:6  
对长期低浓度SO2熏气处理以后油桐叶片中氮和碳代谢进行了测定。结果表明:长期低浓度SO2熏气处理以后引起了油桐叶片中可溶性蛋白含量和脯氨酸含量的增加,而硝酸还原酶活性下降.可溶性糖含量和光合速率下降,呼吸速率增加。单位叶面积鲜重和干重均减少,由此得出结论:长期低浓度SO2熏气处理引起了油桐体内氮素代谢发生变化,碳素积累量减少,最终导致了油桐生长减缓。  相似文献   

10.
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   

11.
以自然光为对照,采用红色、白色、蓝色、黄色4种有色薄膜于2010~2011年从团棵期开始对大田烤烟进行遮光处理,研究不同光质对烤烟生长、光合特性及初烤品质指标的影响。结果显示:(1)红膜处理最大叶长宽比最小、叶面积最大,黄膜处理则相反。(2)红、蓝膜处理烟叶净光合速率、气孔导度、蒸腾速率明显高于自然光处理,白、黄膜处理略高于对照或与对照持平,且遮膜处理前期红膜高于蓝膜处理,后期蓝膜高于红膜处理。(3)红、蓝膜处理有利于提高倒5叶SPAD值,黄膜处理则相反。(4)红膜处理显著降低了中部叶蛋白质、总氮含量和氮碱比,提高了施木克值,并显著提高了上部叶可溶性糖含量和氮碱比,降低了施木克值;蓝膜处理显著提高了中部叶烟碱和多酚含量,降低了可溶性糖含量、施木克值及氮碱比,并显著提高了上部叶蛋白质、总氮、烟碱和多酚含量,降低了施木克值,提高了氮碱比;黄膜处理显著降低了中上部叶蛋白质、总氮、烟碱和多酚含量,提高了上部叶施木克值、降低了氮碱比。研究表明,红、蓝膜处理更利于烟叶发育和光合特性的提高,初烤烟叶化学成分更协调,利于优质烟叶的形成。  相似文献   

12.
The long-term action of blue or red light on nitrogen metabolism was studied in radish (Raphanus sativus L.) plants. The potential activity of nitrate reductase (NR) in vivo and its maximum activity in vitro, the content of soluble protein and free amino acids were determined in the course of the growth of a third leaf of radish plants. The effect of light quality on NR activity was found to depend significantly on the stage of leaf development. Blue light (BL) stimulated NR activity in leaves, when their areas were about 11–13% of the fully developed leaves. The efficiency of red light (RL) was significantly lower, because the maximum NR activity was observed in the leaves developed to the stage, when their areas were 38–40% of the final one. The comparative analysis of the pool of free amino acids in expanding leaves of BL- or RL-grown plants revealed significant changes in the contents of individual amino acids. Despite a higher accumulation of two amino acids in the leaves of BL-grown plants, namely, Asp (27% as compared to 13–16% in the RL-grown leaves) and Gly (5% against 2.5% in RL-grown leaves), the BL-grown leaves also demonstrated a significant decrease in Ala (10% as compared to 23% in the RL-grown leaves) and some decrease in the amounts of Ser and Gly. The content of soluble protein in a juvenile BL-grown leaf was observed to decrease gradually during leaf development. However, the protein content in the BL-grown leaf was always higher than in the RL-grown leaf of the same age. We concluded that the photoregulatory action of BL on NR activity determined the different rates of nitrogen assimilation in BL- and RL-grown plants.__________Translated from Fiziologiya Rastenii, Vol. 52, No. 3, 2005, pp. 349–356.Original Russian Text Copyright © 2005 by Maevskaya, Bukhov.  相似文献   

13.
Using a light-emitting diode (LED) as the light source, the effects of eight different light treatments [white light (control, W), purple light (P), blue light (B), red light (R), green light (G), yellow light (Y), red–blue light in a 9:1 ratio (9R/1B), and red–blue light in a 4:1 ratio (4R/1B)] on the growth, quality and nitrogen metabolism of lettuce were studied. The results showed that compared with the white light, the purple light, blue light, red light, and the red-blue light combination could all increase the biomass of the aboveground part of lettuce to various degrees, while green light and yellow light inhibited lettuce growth. Under blue light, the contents of soluble protein and flavonoid in lettuce were the highest; under red light, the soluble sugar content was the highest, while the contents of soluble protein, free amino acids, and vitamin C (VC) were relatively higher under the 4R/1B light condition. Compared with white light, the sources of purple, blue, and red lights as well as the red–blue light combination all significantly reduced nitrate accumulation in lettuce, and the activities of the nitrogen (N) metabolism-related enzymes such as nitrate reductase, nitrite reductase, glutamine synthetase, glutamate synthase, and glutamate dehydrogenase were increased to varying degrees. In contrast, the contents of nitrate and ammonium N were significantly accumulated in lettuce under green light, and the activities of relative enzymes were significantly reduced. Therefore, the purple light, blue light, and red–blue combination light sources could promote N assimilation and improve the aboveground biomass accumulation in lettuce by improving the activity of the N metabolism-related enzymes in lettuce. Particularly under the 4R/1B light source, the biomass, soluble protein, VC, and total amino acid content were rather high in lettuce, which indicated that the 4R/1B light source could better effectively improve the nutritional quality and promote the growth of lettuce, while yellow light and green light are not suitable to serve as direct sources in a plant factory. These results provide a certain theoretical basis for the regulation of the light environment in cultivation facilities.  相似文献   

14.
砷对烤烟碳氮代谢及其产量和品质的影响   总被引:11,自引:0,他引:11       下载免费PDF全文
采用盆栽试验,系统地研究了砷对烤烟全生育期的碳氮代谢及其产量和品质的影响。结果表明,砷毒害对烤烟全生育期的碳代谢有显著影响,抑制了碳的同化和转化,降低了整个生育期的叶绿素含量、光合速率,造成了全生育期可溶性糖的积累,导致了生育后期淀粉含量的降低,最终使碳积累减少。砷毒害也改变了烤烟的氮代谢,造成生育前期氮同化能力的降低,表现出硝酸还原酶(NR)活性下降、总氮和蛋白质含量低于CK。砷毒害烤烟的氮转化表现活跃,提高了其中的游离氨基酸含量和谷氨酸-丙酮酸转氨酶(GPT)活性,最终导致烤烟生育中后期总氮和蛋白质的积累,但使整个生育期的烟碱含量降低。研究还表明,砷毒害降低了烤烟的产量和经济性状,增加了叶片中砷的积累,可溶性总糖含量的提高和糖氮比的协调虽好,但烟碱含量的降低和总氮、蛋白质含量的增加,以及糖碱比和氮碱比的失调,不利于碳氮代谢有关的化学品质形成。  相似文献   

15.
不同光质LED光源对草莓光合特性、产量及品质的影响   总被引:12,自引:0,他引:12  
以‘妙香7号’草莓品种为材料,利用LED精量调制光源,设红光、蓝光、黄光、白光、红/蓝/黄(7/2/1)、红/蓝(7/2) 5个处理,以白光为对照,测定了草莓叶片的光合与荧光参数、色素含量、果实产量、品质和根系活力指标,研究 500 μmol·m-2·s-1光强下不同光质处理对草莓光合特性、果实产量及品质的影响.结果表明: 红光处理有利于提高草莓叶片的净光合速率与蒸腾速率,而蓝光有减弱作用;气孔导度与胞间CO2浓度均以蓝光处理效果最为显著.叶绿素荧光参数(Fo、Fm、ΦPSⅡ)均在红光处理下最大,而Fv/Fm、Fv/Fo、Fm/Fo均在红/蓝/黄处理下最大;红/蓝/黄处理下草莓色素含量、果实产量和根系活力均显著高于其他处理.红光处理的可溶性固形物和维生素C含量均最高,且与红/蓝/黄处理差异不显著;蓝光处理有利于提高可滴定酸和蛋白质含量,而红/蓝/黄处理的固酸比最大.红/蓝/黄处理最有利于增加光合色素含量,提高果实产量,促进部分品质改善.  相似文献   

16.
谷子灌浆期旗叶蛋白水解酶活性、籽粒和旗叶游离氨基酸含量均呈双峰曲线变化。第一峰在花后13天;第二峰分别在25、28天。籽粒和旗叶游离氨基酸峰稍滞后,且后者不明显。籽粒总蛋白积累和干重增加均为S型变化,与旗叶总蛋白和可溶性蛋白变化趋势相反。花后22─25天上述物质和酶活变化均出现─转折。转折点之前,蛋白质合成和周转活跃;之后,由叶片蛋白酶活性升高引起的旗叶氮素撤离对籽粒蛋白质积累仍有一定贡献(约10%)。  相似文献   

17.
We have investigated the response of two peanut cultivars (TEGUA and UTRE) with different growth habits and branching pattern structures to different nitrogen (N) sources, namely, N-fertilizer or N2 made available by symbiotic fixation, and analysed the pattern of nitrate reductase (NR) activity in these cultivars. Nitrate and amino acid contents were also examined under these growth conditions. In terms of nitrogen source, cv. TEGUA showed a better response to inoculation with Bradyrhizobium sp. SEMIA 6144 at 40 days after planting, while cv. UTRE responded better to N-fertilizer (5 mM KNO3). Both cultivars showed different patterns of NR activity in the analyzed plant organs (leaves, roots, and nodules), which were dependent on the N source. When nitrogen became available to the plant through symbiotic N2 fixation, the patterns of NR activity distribution were different in the two cultivars, with cv. TEGUA showing a higher NR activity in the nodules than in the leaves and roots, and cv. UTRE showing no difference in terms of NR activity among organs. The nitrate and amino acid contents showed a similar trend between the two cultivars, with the highest nitrate content in the leaves of fertilized plants and the highest amino acid content in the nodules. The high nitrate content of the leaves of cv. UTRE indicated the better response of this cultivar to N-fertilizer.  相似文献   

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