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1.
薛玺  王永清 《植物研究》1994,14(4):424-433
本实验用普通小麦“中国春”和八种异细胞质“中国春”(Aegilops vavilovii)CS,(Ae.juvenalis)CS,(Ae.crassa)CS,(Ae.comosa)CS,(Ae.uniaristata)CS,(Ae.speltoides.M.)CS,(Ae.kotschyi)CS.(T.timopheevi)CS分别与八倍体小偃麦(Trititrigia 8x)“远中2”、“远中4  相似文献   

2.
部分裸子植物叶片总蛋白分析   总被引:1,自引:0,他引:1  
王艇  苏应娟  黄超  朱建明   《广西植物》1999,19(4):367-372
采用SDS- PAGE 技术, 分析了红豆杉科(Taxaceae) 植物南方红豆杉( Taxus chinensisvar- mairei (Lemee et Levl-) Cheng et L-K-Fu) 、穗花杉( Amentotaxus argotaenia (Hance) Pil ger) 、云南穗花杉( A- yunnanensis Li) 、白豆杉( Pseudotaxuschienii(Cheng) Cheng) 以及三尖杉科(Cephalotaxaceae) 、植物三尖杉( Cephalotaxus fortunei Hook-f-) 、粗榧( C-sinensis (Rehd-etWils-) Li) 、海南粗榧( C-hainanensis Li) 、篦子三尖杉( C-oliveri Mast-) 和罗汉松科(Podocarpaceae) 、植 物罗汉松 ( Podocarpus macrophyllus ( Thunb- ) D-Don) 、鸡毛 松( P-imbricatus Bl-) 、竹柏( P- nagi(Thunb-) Zoll) 、陆均松( Dacrydium pierrei Hickel) 共12 种植物的叶片蛋白, 在蛋白质水平上采用  相似文献   

3.
运用石蜡切片技术,对樟科的紫楠(Phoebe sheareri(Hemsl.)Gamble),浙江楠(Ph.chekiangensis S.B.Shang)香樟(Cinnamomum camphora (Linn.)Presl.)浙江桂(C.chekiangensis Nakai),细叶香桂(C.subaveniumMiq.)、江浙山胡椒(Lindera chienii Cheng)、钓樟(L.r  相似文献   

4.
ConformationalStudiesofArabinoglucuronomannology(AGM)ImshikLee;BaiChunli;WangChen(InstituteofChemistry,ChineseAcademyofScienc...  相似文献   

5.
鹅观草属的几个新组合   总被引:1,自引:0,他引:1  
蔡联炳 《植物研究》1996,16(1):48-50
本文报道了禾本科鹅观草属的三个种级新组合和四个变种级新组合。即大丛鹅观草Roegneriamagnicaespis(D.F.Cui)L.B.Cai;新疆鹅观草Roegneriasinkiangensis(D.F.Cui)L.B.Cai;阿尔泰鹅观草Roegneriaaltaica(D.F.Cui)L.B.Cai;短芒鹅观草Roegneriaglaberrimavar.breviarista(D.F.Cui)L.B.Cai;林缘鹅观草Roegneriamutabilisvar.nemoralis(D.F.Cui)L.B.Cai;多花鹅观草Roegneriaabolinivar.pluriflora(D.F.Cui)L.B.Cai和曲芒鹅观草Roegneriatschimganicavar.glabrispicula(D.F.Cui)L.B.Cai。  相似文献   

6.
里骆林区常绿阔叶林和人工杉木林气候水文效应   总被引:13,自引:2,他引:11  
里骆林区常绿阔叶林和人工杉木林气候水文效应黄承标,文受春(广西农学院林学分院南宁530001)(广西龙胜县林业局541700)ClimaticandHydrologicalEffectsofEvergreenBroad-leavedandArtificialChineseFirForestsinLiluoForestedRegion¥HuangChengbiao(ForestryCollege,CuangxiAgriculturalUniversity,Nanning530001),WenShouchun(ForestryBureau,LongshengCounty,Guangxi541700);ChineseJournalofEcol-ogy,1993,12(3):1-7.Siteinvestigationsandresearchesin1980-1990showthatevergreenbroad-leavedandartificialChinesefirfOrestsinLiluoforestedregioncanreducethevariationrangeofatmosphericandsoilt  相似文献   

7.
梁宗琦  刘爱英 《真菌学报》1996,15(4):264-271
本文报道采用贵州省宽阔水自然保护区的9种虫草,它们是多壳虫草新咱(CordycepspolycarpicaLiang&Liusp.nov),鼠尾虫草新种(CordycepsmusicaudataLiangetLiusp.nov)针孢虫草(CordycepsacicularisRev.exBerk.)罗伯茨虫草(Cordycepsrobertsii(Hook),Gray)下垂虫草(Cordyceps  相似文献   

8.
塔里木盆地北缘侏罗纪孢粉组合   总被引:17,自引:6,他引:11  
本文系统地研究了塔里木盆地北缘侏罗纪的孢子花粉。共发现孢粉化石52属90种,以及藻类化石2属2种。建立侏罗纪的孢粉组合序列如下:(1)Disacciatrileti-Cyathidites组合(早侏罗世早期阿合组),(2)Cyathidites-Cibotiumspora-Disacciatrileti组合(早侏罗世晚期阳霞组),(3)Cyathidites-Neoraistrickia-Disacciatrileti组合(中侏罗世早期克孜勒努尔组),(4)Cyathidites-Clasopolis组合(中侏罗世晚期恰克马克组)。根据孢粉组合特征讨论了地质时代,同时探讨了古植被和古气候的意义。  相似文献   

9.
山东樱属一新变种——泰山野樱花   总被引:1,自引:0,他引:1  
泰山野樱花Cerasusserulata(Lindl.)G.DonexLondonvar.taishanensisY.ZhangetC.D.Shi,var.nov.TYPE:China.Shandong(山东),Taian(泰安),Mt.Taisha...  相似文献   

10.
宽阔水自然保护区的虫草及其相关真菌Ⅱ.   总被引:2,自引:0,他引:2  
采自贵州省宽阔水自然保护区的另6种虫草,它们是娄山虫新种(CordycepsloushanensisLiang&Liusp.nov)。绿核虫草新种(CordycepsaeruginosclerotaLiang&Liusp.Shimazu),拟暗绿虫草(CordycepspseudoatrovirensKob&.Shim),布氏虫草(CordycepsbrongniartiiShimazu)金针虫虫  相似文献   

11.
刺儿菜复合体的形态学研究   总被引:1,自引:0,他引:1  
孙稚颖  李法曾 《植物研究》1999,19(2):143-147
本文对不同产地,不同居群的全国200份刺儿菜复合体标本的若干性状选用E.Anderson的形象化散点图和柱状图方法进行研究分析,认为将大刺儿菜与小刺儿菜分为独立的种是合理的。  相似文献   

12.
广东8种野菜中硝酸盐、亚硝酸盐及Vc的含量   总被引:4,自引:0,他引:4  
测定了广东菊科8种野菜中硝酸盐、亚硝酸盐和维生素C的含量,结果表明:革命菜、一点红、苣荬菜的硝酸盐含量低于轻度污染水平,属于一级野菜;山莴苣、地胆草、加拿大蓬和艾的硝酸盐含量低于785mg/kg,达中度污染水平,属二级蔬菜范围,不宜生食,煮熟或盐渍可安全食用;甜菜籽属于三级蔬菜,不可生食和盐渍,可熟食.这些野菜维生素C的含量均低于50mg/100g(鲜重),属于中、低维生素C含量的野菜.  相似文献   

13.
山西汾河滩常见野菜安全可食性的探讨   总被引:1,自引:0,他引:1  
杨桂英  孙继元  张海燕  马绍宾 《广西植物》2003,23(4):379-381,351
对采自汾河滩的七种野菜的硝酸盐、亚硝酸盐、维生素C和氨基酸的测定及统计分析结果表明:刺儿菜、藜、碱蓬的硝酸盐与亚硝酸盐含量较高,且其亚硝酸盐含量均超标,不宜食用;苦荬菜,其硝酸盐与亚硝酸盐含量稍微超过限量标准,但是其维生素C含量极其丰富,若两食量作一定的限制,是可以安全食用的;而地肤、车前、苦菜这三种野菜其硝酸盐与亚硝酸含量均较低,且维生素C及氨基酸两项营养价值指标适中,为安全可食性野菜。  相似文献   

14.
Nitrate metabolism in soybean root nodules   总被引:1,自引:0,他引:1  
The nitrate metabolism in nodules induced by Bradyrhizobium japonicum strain PJ17 on roots of soybean [ Glycine max (L.) Merr. cv. Hodgson] has been characterized by the nitrate reductase (NR; EC 1.6.6.1 and EC 1.6.6.3) activity of both partners of the symbiosis. NR activities of bacteroids and nodular cytosol were comparable and significantly higher than those of the roots. Nitrate reduction led to nitrite accumulation in root nodules, which was maximum after pod filling. The nodule had the capacity to metabolize nitrite via nitrite reductase (NiR; EC 1.6.6.4), at least in the cytosolic fraction. This activity was partly inhibited by the low content of free O2 in the nodule. Indeed, nitrite accumulation decreased in the presence of an increased external pressure of O2.  相似文献   

15.
The threshold of tolerance for nitrate of the parasitic weed Striga hermonthica (Del.) Benth and the host plant Sorghum bicolor L. was determined by estimating the impact of increasing nitrate loads on plant growth and various parameters of C and N assimilation. Nitrate supply improved chlorophyll (Chl) content and photosystem II (PSII) photochemistry of infected S. bicolor that, in comparison to S. hermonthica, displayed a low imbalance between C and N assimilation when nitrate was supplied up to 1500 mg N per plant. Indeed, nitrate supplies increased strongly the leaf N:C ratio of the parasite. The higher nitrate load induced strong accumulation of nitrate, nitrite and ammonium, and consequently the death of S. hermonthica. Nevertheless, lower nitrate loads (up to 500 mg N per S. bicolor in this study) promoted leaf expansion, PSII photochemistry and N metabolism of S. hermonthica mature (M) plants, as attested by the significant rise in soluble protein and free amino-acid contents. Following these N supplies, the nitrate tolerance of S. hermonthica was correlated with an increase in PSII activity and a high incorporation of N excess into asparagine. This confirmed the central role of asparagine in the N metabolism of S. hermonthica, although this detoxification pathway was insufficient to limit ammonium accumulation under higher nitrate loads.  相似文献   

16.
六种野菜不同部位硝酸盐、亚硝酸盐及维生素C的含量   总被引:11,自引:0,他引:11  
报道了6种野菜不同部位的硝酸盐、亚硝酸盐和维生素C的含量。参考蔬菜中硝酸盐含量分级评价标准和无公害蔬菜亚硝酸盐含量限量标准,结合各种野菜及不同部位的维生素C的含量,对这6种野菜评价如下:鼠麴草的叶、龙葵的叶、苋的嫩茎和叶,属于一级野菜,可以安全食用;鼠麴草的嫩茎属二级蔬菜范围,不宜生食,煮熟或盐渍可安全食用;龙葵的嫩茎、树仔菜的嫩茎,属于三级蔬菜,不可生食和盐渍,可熟食。白子菜的嫩茎和狗肝菜的嫩茎,属于四级蔬菜,不宜食用或限量食用;树仔菜的叶、白子菜的叶亚硝酸盐含量高于我国制定的无公害蔬菜亚硝酸盐含量的限量标准,所以不宜食用或限量食用。  相似文献   

17.
SMT对大鼠在体心脏缺血-再灌注损伤超微结构的保护作用   总被引:4,自引:0,他引:4  
目的:研究SMT对心脏缺血-再灌注损伤(IRI)心肌超微结构的影响。方法:SD大鼠18只,体重320 ̄380g,随机分为三组:①缺血-再灌注组(IR):夹闭冠状动脉左前降支60min,松夹20min。②缺血-再灌注+SMT组(SMT):再灌注前5min,股静脉注射iNOS抑制剂S-methylisothiourea sulfate(SMT 5mg/kg w),余同IR组;③对照组(C):暴露心脏后  相似文献   

18.
Barley (Hordeum vulgare L.) leaves and intact spinach (Spinacia oleracea L.) chloroplasts were exposed to short-term heating, and the aftereffects of heat treatment on in vitro andin vivo activities of nitrate reductase and noncyclic electron transport associated with nitrite reduction were studied. Heating of leaves at temperatures above 40°C led to a monotonic decrease in nitrate reductase in vitro activity. On the contrary, the in vivo enzyme activity, assayed in intact leaf tissues after 5-min heat treatment, increased 1.5 times upon elevating the pretreatment temperature from 37 to 40°C and gradually decreased at higher temperatures. Noncyclic electron transport related to CO2 fixation in intact chloroplasts decreased gradually after heat exposures above 39°C, unlike the electron transport to nitrite as a terminal acceptor, which was stimulated by heating of intact chloroplast suspensions in the temperature range from 33 to 40°C. The heating at higher temperatures inhibited nitrite photoreduction. It is concluded that the heating of phototrophic cells at sublethal temperatures stimulates the mobilization of inorganic nitrogen and thereby facilitates the repair of thermally induced injuries of proteinaceous cell structures. The stimulation of nitrate reductase activity in vivo at the temperature range 37–40°C provides an evidence for the increase in the availability of reductants in the cytosolic compartment of the leaf cell.  相似文献   

19.
Bacteroids of Bradyrhizobium japonicum strain CB1809, unlike CC705, do not have a high level of constitutive nitrate reductase (NR; EC 1.7.99.4) in the soybean (Glycine max. Merr.) nodule. Ex planta both strains have a high activity of NR when cultured on 5 mM nitrate at 2% O2 (v/v). Nitrite reductase (NiR) was active in cultured cells of bradyrhizobia, but activity with succinate as electron donor was not detected in freshly-isolated bacteroids. A low activity was measured with reduced methyl viologen. When bacteroids of CC705 were incubated with nitrate there was a rapid production of nitrite which resulted in repression of NR. Subsequently when NiR was induced, nitrite was utilized and NR activity recovered. Nitrate reductase was induced in bacteroids of strain CB1809 when they were incubated in-vitro with nitrate or nitrite. Increase in NR activity was prevented by rifampicin (10 g· ml-1) or chloramphenicol (50 g·ml-1). Nitrite-reductase activity in bacteroids of strain CB1809 was induced in parallel with NR. When nitrate was supplied to soybeans nodulated with strain CC705, nitrite was detected in nodule extracts prepared in aqueous media and it accumulated during storage (1°C) and on further incubation at 25°C. Nitrite was not detected in nodule extracts prepared in ethanol. Thus nitrite accumulation in nodule tissue appears to occur only after maceration and although bacteroids of some strains of B. japonicum have a high level of a constitutive NR, they do not appear to reduce nitrate in the nodule because this anion does not gain access to the bacteroid zone. Soybeans nodulated with strains CC705 and CB1809 were equally sensitive to nitrate inhibition of N2 fixation.Abbreviations NR nitrate reductase - NiR nitrite reductase - Tris 2-amino-2-(hydroxymethyl)-1,3-propanediol  相似文献   

20.
Riens B  Heldt HW 《Plant physiology》1992,98(2):573-577
In leaves of spinach plants (Spinacia oleracea L.) performing CO2 and NO3 assimilation, at the time of sudden darkening, which eliminates photosystem I-dependent nitrite reduction, only a minor temporary increase of the leaf nitrite content is observed. Because nitrate reduction does not depend on redox equivalents generated by photosystem I activity, a continuation of nitrate reduction after darkening would result in a large accumulation of nitrite in the leaves within a very short time, which is not observed. Measurements of the extractable nitrate reductase activity from spinach leaves assayed under standard conditions showed that in these leaves the nitrate reductase activity decreased during darkening to 15% of the control value with a half-time of only 2 minutes. Apparently, in these leaves nitrate reductase is very rapidly inactivated at sudden darkness avoiding an accumulation of the toxic nitrite in the cells.  相似文献   

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