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短柄五加(Acanthopanax brachypus)rbcL基因的结构分析 被引量:1
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作者 严华军 吴乃虎 《应用基础与工程科学学报》 EI CSCD 1995年第4期54-62,共9页
克隆了含完整短柄五加rbcL基因的3.2kb EcoRI片段,测定了该基因的核苷酸序列.所测核苷酸序列总长度为1924bp,其中编码区1428bp,编码475个氨基酸的蛋白质.测定的基因5’上游区共278bp,包含原核性质-35区(TTGCGC),-10区(TACAAT)及类似真核... 克隆了含完整短柄五加rbcL基因的3.2kb EcoRI片段,测定了该基因的核苷酸序列.所测核苷酸序列总长度为1924bp,其中编码区1428bp,编码475个氨基酸的蛋白质.测定的基因5’上游区共278bp,包含原核性质-35区(TTGCGC),-10区(TACAAT)及类似真核的TATA box元件(TATATA).5’前导区长194bp,其中SD序列为GGAGG,紧邻起始密码子上游.测定的3’下游区共218bp,含2个相邻的转录后可形成茎环结构的反向重复序列.短柄五加rbcL基因编码区推导的氨基酸序列与烟草、菠菜、豌豆、苜蓿、玉米、水稻、松树、地钱、衣藻和Anacystis的同源性分别为93.5%、94.11%、94.53%、94.74%、89.68%、92.21%、92.21%、92.63%、87.58%和80.84%.本文还对不同植物rbcL基因的启动区及部分5’和3’非编码区进行了比较分析. 展开更多
关键词 短柄五加(Acanthopanax brachypus) RBCL基因 DNA序列 启动区 反向重复序列
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RAPD analysis of natural populations of Acanthopanax brachypus 被引量:7
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作者 YANHUAJUN SILANDAI 《Cell Research》 SCIE CAS CSCD 1997年第1期99-106,共8页
Random Amplified Polymorphic DNA (RAPD) analysis is a new technology of molecular marking which has proved very powerful in detecting genetic diversity at the level of population. The genomic DNAs used in our experime... Random Amplified Polymorphic DNA (RAPD) analysis is a new technology of molecular marking which has proved very powerful in detecting genetic diversity at the level of population. The genomic DNAs used in our experiment were extracted from fresh leaves taken from 59 individuals sampled from three natural populations in Yan An, Shanxi Province. Through more than 2,000 PCRs, deep-going RAPD analysis was carried out on DNA samples from 49 inviduals. The percentage of polymorphic RAPD loci found in these three populations were respectively 27.2 %, 18.6 % and 5.4 %; the average genetic distances within population, 0.055, 0.036 and 0.008; the average genetic distances between populations (Ⅰ-Ⅱ), (Ⅰ-Ⅲ) and (Ⅱ-Ⅲ), 0.105, 0.096 and 0.060. The genetic diversity of A. brachypus within and between populations was found, for the first time, to be rather poor,thus revealing innate factors as the cause contributing to its endangered status. In addition, our work also provides basic materials for elucidating the underlying cause of its endangerment and for its protection biology. 展开更多
关键词 Acanthopanax brachypus genetic diversity random amplified polymorphic DNA(RAPD) analysis
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Structural Analysis of rbcL Gene from an Endangered Plant,(Acanthopanax brachypus)
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作者 严华军 朱溦 吴乃虎 《Developmental and Reproductive Biology》 1995年第1期26-35,共10页
A 3.2 kb EcoRI DNA fragment containing the complete chloroplast rbcL gene from Acanthopanax brachypus has been cloned. In addition to the 1428 bp coding region encoding 475 amino acids of the gene, 278 bp upstream and... A 3.2 kb EcoRI DNA fragment containing the complete chloroplast rbcL gene from Acanthopanax brachypus has been cloned. In addition to the 1428 bp coding region encoding 475 amino acids of the gene, 278 bp upstream and 218 bp downstream were also sequenced. Possible ctpl and ctp2, equivalent to prokaryotic-35 and -10 elements, were found as TTGCGC and TACAAT respectively. The 5' untranslated leader region is 194 bp and the putative ribosome binding site in this region is GGAGG,located immediately upstream of the start codon. The 3' unrtanslated region contains two inverted repeat sequences, which in the mRNA might form stem-loop structures. The homology of rbcL amino acid sequence between A. brachypus and tobacco, spinach, pea, alfalfa, maize, rice, pine,Marchantia, Chlamydomonas and Anacystis are, respectively 93.05%,94.11%, 94.53%,89.68%, 92.21%, 2.21%, 92.63%, 87.58% and 80.84%.The promoter regions and part of the 5', 3' non-coding regions of rbcL from various plants were compared. 展开更多
关键词 Acanthopanax brachypus rbcL gene DNA sequencing Promoter Inverted repeats.
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Some Mechanism Seaweeds Employ to Cope with Salinity Stress in the Harsh Euhaline Oceanic Environment 被引量:1
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作者 Vincent van Ginneken 《American Journal of Plant Sciences》 2018年第6期1191-1211,共21页
In order to prevent salt damage because seaweed enzymes can only operate under hypohaline conditions (salinity ≈ 6‰ - 12‰) but also obtain for photosynthesis an in the aquatic environment—due to a 10,000 fold stro... In order to prevent salt damage because seaweed enzymes can only operate under hypohaline conditions (salinity ≈ 6‰ - 12‰) but also obtain for photosynthesis an in the aquatic environment—due to a 10,000 fold strongly limited carbon source—seaweeds developed several mechanisms to meet these vital demands for survival in the harsh euhaline oceanic environment (salinity range: 32‰ - 35‰), we tested this range of adaptation mechanisms in the euhaline oceanic collected water in combination with the seaweed moisture. We obtained under laboratory conditions at 10 bar mechanical pressure for four seaweed species: Ulva lactuca, Caulerpa sertularioides, Caulerpa cf. brachypus (all three green) and Undaria pinnatifidia (brown). Oceanic water and seaweed moisture were measured for salinity, pH and by Inductively Coupled Plasma Spectroscopy (ICP)-techniques concentrations for macro-elements: (Ca, Fe, K, Mg, Mn, Na, P, & S), micro-elements ≈ [HM]: (Al, As, Cd, Co, Cr, Cu, Mo, Ni, Pb & Zn) and nutrients (N-total & P-total). The [seawater compound X]/[oceanic compound X] ration is a reflection of an inward (uptake) or excretion mechanism over the seaweed cellular membrane which is operative. Our observations gave a clear dispersion to salinity stress with on one hand the green seaweed U. lactuca and on the other the brown seaweed U. pinnatifidia. Both Caulerpa spp. took in an intermediate position. Observed in compensatory responses to salinity stress was ranging Ulva sp. both Caulerpa spp.-Undaria sp.: 1) amount pressed seaweed moisture: [ml/g Fresh Weight];2) salinity: (in ‰);3) Na+ storage vacuole volume;4) Na+:K+ ratio (reflection of K+ as osmolyticum);5) ∑[HM] (as osmolyticum);6) pH (seaweed moisture);7) Nutrients (N & P);8) availability of essential metal elements for plants (Cu, Fe, Zn, Mn, Mo, Ni);9) transport direction of micro- and macro-elements. Finally, the role of brown vs. green seaweeds in the evolutionary eukaryotic tree of life in relation to the ability of the brown seaweeds to produce their own osmolyticum will be discussed. 展开更多
关键词 Seaweeds ULVA LACTUCA CAULERPA sertlatiodes and CAULERPA brachypus UNDARIA pinnatifididia SEAWEED Moisture Sodium Extrusion Desalination Capacity Inductively Coupled Plasma Spectroscopy (ICP)
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Seaweeds as Biomonitoring System for Heavy Metal (HM) Accumulation and Contamination of Our Oceans
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作者 Vincent van Ginneken Evert de Vries 《American Journal of Plant Sciences》 2018年第7期1514-1530,共17页
This research manuscript reports the heavy metal accumulation in four marine seaweeds sp. 1)?Caulerpa sertlatioides (Cuba);2) Caulerpa cf. brachypus;(Bali, Indonesia);3) Undaria pinnatifida (West-Donegal, Ireland);4) ... This research manuscript reports the heavy metal accumulation in four marine seaweeds sp. 1)?Caulerpa sertlatioides (Cuba);2) Caulerpa cf. brachypus;(Bali, Indonesia);3) Undaria pinnatifida (West-Donegal, Ireland);4) Ulva lactuca (Easters-Scheldt, the Netherlands). Mechanical pressure at 10 bar of fresh seaweed fronds casu quo biomass in the laboratory delivered seaweed moisture which was analyzed by Inductively Coupled Plasma Spectroscopy (ICP)-techniques for heavy-metals = [HM], (Al, As, Cd, Co, Cr, Cu, Fe, Mo, Ni, Pb & Zn). Three important observations were made: 1) The [HM] in the seaweed moisture is higher than in the surrounding seawater which directs to mechanism(s) of bio-accumulation;2) The accumulation factor [AF] is varying per metallic-cation with an overall trend for our four seaweeds and sampling locations for [HM] are: As & Co & Cu: 5000 - 10,000 μg/l;Ni & Zn: 3000 - 5000 μg/l;Cd: 2000 - 3000 μg/l;Cr: 1000 - 2000 μg/l;Al: 200 - 1000 μg/l;Mo & Pb & Fe: 0 - 200 μg/l range. 3) Seaweed moisture detected that [HM]: Pb & Zn & Fe—which all three could not be detected in the seawater—supports the view that seaweeds have a preference in their bio-accumulation mechanism for these three HM. Major conclusion is in general that “overall” for the macro-elements Ca, Fe, K, Mg, Mn, Na, P & S in the moisture of the four seaweed species the concentration is lower in the seaweed species, or equals the concentration, in comparison to the surrounding sea water. For the HM (Al, As, Cd, Co, Cr, Cu, Mo, Ni, Pb & Zn) the opposite is the case species and is the concentration “overall” higher in the seaweed species in comparison to the surrounding sea water. Further topics addressed include strategies of irrigation of the Sahara desert with the moisture out of seaweeds under conditions of low anthropogenic influences. 展开更多
关键词 Seaweeds Heavy Metal ACCUMULATION Ulva LACTUCA CAULERPA sertlatioides CAULERPA cf. brachypus & UNDARIA PINNATIFIDA Inductively Coupled Plasma Spectroscopy (ICP)-Techniques Al As Cd Co Cr Cu Fe Mo Ni Pb & Zn BIO-ACCUMULATION Biomonitoring Upper Tolerance Nutrient Intake Levels (ULs) Irrigation Water
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短柄五加愈伤组织诱导及再生体系的建立
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作者 杨建霞 范小峰 《林业科技通讯》 2017年第10期25-28,共4页
以短柄五加(Acanthopanax brachypus Harms)当年生嫩枝为材料,选择叶片、叶柄为外植体,使用6-BA、NAA、IBA、2,4-D等激素,配制成不同质量浓度的培养基,进行短柄五加愈伤组织诱导,同时分析愈伤组织诱导丛生芽和丛生芽增殖培养基的最佳配... 以短柄五加(Acanthopanax brachypus Harms)当年生嫩枝为材料,选择叶片、叶柄为外植体,使用6-BA、NAA、IBA、2,4-D等激素,配制成不同质量浓度的培养基,进行短柄五加愈伤组织诱导,同时分析愈伤组织诱导丛生芽和丛生芽增殖培养基的最佳配方,建立短柄五加植株的再生体系。结果表明,短柄五加叶片是较适宜诱导愈伤组织的外植体,愈伤组织诱导的培养基是MS+0.3mg/L 6-BA+0.5mg/L NAA,诱导率为75.0%;愈伤组织诱导不定芽形成的适宜培养基为MS+6-BA 1.0mg/L+NAA 0.1mg/L,不定芽诱导率为100%;适宜不定芽增殖的培养基为MS+6-BA3.0mg/L+NAA 0.2mg/L,增殖系数为5.80;同时活性炭能够有效防止愈伤组织诱导过程中的褐化问题。 展开更多
关键词 短柄五加 ACANTHOPANAX brachypus 组织培养 愈伤组织 植物激素
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