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101.
枣树离体叶片不定芽再生体系建立的研究 总被引:10,自引:0,他引:10
建立了木枣无菌试管苗快繁体系,以无菌苗叶片为外植体,对影响离体叶片不定芽直接再生的因素进行了研究.试验结果表明,TDZ比BA能更有效地诱导叶片不定芽的再生;褐化是抑制不定芽再生频率提高的关键因子,培养基中添加PVP、V c及改变生长素的种类和浓度均不能促进不定芽再生;添加A gNO3能够减轻褐化并可以大幅度提高再生频率,同时培养初期经过3周避光培养更有利于提高再生效率.因此,以附加2.0 m g/L TDZ和0.2 m g/L IBA的M S培养基,并添加5.0 m g/L A gNO3,可以高效诱导木枣离体叶片不定芽再生,再生频率最高达98.3%.不定芽在附加0.2 m g/L IBA和0.5 m g/L GA3的M S培养基上进行继代伸长培养,当不定芽长至3 cm时,转接至附加0.4 m g/L IBA的1/2 M S培养基上可以良好地诱导生根. 相似文献
102.
Dirk Hölscher Christoph Leuschner Kerstin Bohman Marc Hagemeier Jana Juhrbandt Soekisman Tjitrosemito 《Trees - Structure and Function》2006,20(3):278-285
In the tropics, old-growth forests are converted to other land cover types at a high rate and young secondary forest may gain in importance. Information on associated changes in leaf gas exchange and other leaf traits can be valuable for modelling biogeochemical fluxes under altered land-use patterns. We studied in situ photosynthetic parameters and stomatal conductance for water vapour in eight abundant tree species of young secondary forest and eight tree species of natural old-growth forest in Central Sulawesi, Indonesia. In sun leaves, the average maximal stomatal conductance (g
smax) in the secondary forest (SF) species was 2.1 times higher than in the old-growth forest (OGF) species. Species with a high g
smax reduced g
s sharply when vapour pressure deficit of the air increased, whereas species with a low g
smax were much less sensitive to air humidity. For area-based photosynthetic capacity (A
max-area), the SF species had a 2.3 times higher average than the OGF species. For both, g
smax and A
max-area the variation among species was higher in the OGF than in the SF. When all tree species (n=16) are considered, species means of specific leaf area (SLA), leaf N concentration and leaf P concentration were significantly correlated with g
smax and A
max-area. The strong correlation between A
max-area and foliar P (r
2=0.8) is remarkable as the alluvial soils in the study region are rich in nutrients. If the eight OGF species are analysed separately, the only significant correlation was observed between SLA and mass-based A
max; in the SF species strong correlations were found between leaf size and A
max-area and g
smax. These results show that the conversion of old-growth forest to young secondary forest in Sulawesi significantly alters tree leaf gas exchange characteristics and that chemical and structural leaf traits can be used for the prediction of these changes. The best correlations between leaf gas exchange parameters and leaf traits were obtained by different traits in the SF species, the OGF species and the entire pool of studied species. 相似文献
103.
不同光周期对德国鸢尾‘Royal touch’的花芽分化和光合作用的影响 总被引:1,自引:0,他引:1
以德国鸢尾‘Royal touch’为试验材料,研究了5种光周期对其花芽分化和光合作用的影响。结果表明:(1)短日照加速了植株花芽分化的进程,而长日照促进了单花序上花芽数目的增加;(2)长日照下植株单位叶面积的光合能力较强(;3)植株的花芽分化与其叶面积、叶干重、地上部分与地下部分的干重比值之间呈显著的正相关关系。这些结果说明了光周期对德国鸢尾‘Royal touch’花芽分化时间和数量的影响与光周期对其植株生物量和光合作用的影响有关。 相似文献
104.
三种红树植物叶片的比较解剖学研究 总被引:12,自引:1,他引:11
研究了采自福建九龙江口的3种红树植物,秋茄(Kandeliacandel)、木榄(Bruguieragymnorrhiza)和红海榄(Rhizophorastylosa)的叶片结构并探讨了其生态学意义。结果表明,这3种红树植物叶片都具有适应海生环境的结构,较厚的角质层,表皮之内有内皮层,内皮层属贮水组织;气孔都分布在下表皮,下陷,并有大的孔下室;中脉有发达的维管束,其导管粗大。从叶片的横切面来看,秋茄叶片具有对称的结构,为等面叶;木榄和红海榄的叶片结构不对称,为异面叶。3种植物叶内都含有较丰富的单宁,以秋茄最高,红海榄次之,木榄最少。这些结构差异可为物种鉴定提供依据。 相似文献
105.
洪森荣;尹明华;王艾平 《植物研究》2013,33(6):738-745
以江西铅山红芽芋脱毒苗为试材,研究不同因素对红芽芋脱毒苗球茎愈伤组织诱导及其再生体系的影响,以期对红芽芋脱毒苗的再生体系进行优化。结果表明,红芽芋脱毒苗球茎愈伤组织诱导的最佳培养基是MS+TDZ 2 mg·L-1+2,4-D 1 mg·L-1。红芽芋脱毒苗球茎愈伤组织分化的最佳培养基是MS+TDZ 2 mg·L-1+NAA 1 mg·L-1。红芽芋脱毒苗不定芽生根的最佳培养基是1/2MS+NAA 0.5 mg·L-1+PP333 0.5 mg·L-1。红芽芋再生苗最好的移栽基质为发酵后的腐锯木屑。红芽芋脱毒苗球茎愈伤组织再生苗移栽时最佳的PP333浓度为20~50 mg·L-1。本试验成功建立了红芽芋脱毒苗球茎愈伤组织的再生体系,为红芽芋脱毒苗转基因的研究和种质创新奠定了基础。 相似文献
106.
Thibaut Douché Hélène San Clemente Vincent Burlat David Roujol Benoît Valot Michel Zivy Elisabeth Jamet 《Proteomics》2013,13(16):2438-2454
Polysaccharides make up about 75% of plant cell walls and can be broken down to produce sugar substrates (saccharification) from which a whole range of products can be obtained, including bioethanol. Cell walls also contain 5–10% of proteins, which could be used to tailor them for agroindustrial uses. Here we present cell wall proteomics data of Brachypodium distachyon, a model plant for temperate grasses. Leaves and culms were analyzed during active growth and at mature stage. Altogether, 559 proteins were identified by LC‐MS/MS and bioinformatics, among which 314 have predicted signal peptides. Sixty‐three proteins were shared by two organs at two developmental stages where they could play housekeeping functions. Differences were observed between organs and stages of development, especially at the level of glycoside hydrolases and oxidoreductases. Differences were also found between the known cell wall proteomes of B. distachyon, Oryza sativa, and the Arabidopsis thaliana dicot. Three glycoside hydrolases could be immunolocalized in cell walls using polyclonal antibodies against proteotypic peptides. Organ‐specific expression consistent with proteomics results could be observed as well as cell‐specific localization. Moreover, the high number of proteins of unknown function in B. distachyon cell wall proteomes opens new fields of research for monocot cell walls. 相似文献
107.
Abdullah R. Doaigey M.H. Al-Whaibi M.H. Siddiqui A.A. Al Sahli M.E. El-Zaidy 《Saudi Journal of Biological Sciences》2013,20(2):141-147
Two concentrations (10-5M and 10-3M) of both GA3 and 2,4-D were used as foliar spray to evaluate the response of date palm (Phoenix dactylifera L.) cv. Khedri seedlings. They affected some of the anatomical characteristics of the first leaf emerging after the beginning of the spray. The high concentration of GA3 increased the size of the midrib and its vascular bundle numbers. Both low and high concentrations of 2,4-D inhibited the formation of the midrib. 2,4-D in both low and high concentrations decreased the number of vessels in both protoxylem and metaxylem and also decreased their diameters, where as GA3 in low and high concentrations have less effect on the number of vessels and its diameters. GA3 in high concentration increased the number of vascular bundles in 1mm long of the leaf blade, while 2,4-D in low and high concentrations decreased their numbers. 10-3M of 2,4-D increased the size and layers of special hypodermal cells. 相似文献
108.
Robert Brus Dalibor Ballian Faruk Bogunić Martin Bobinac Marilena IdžOjtić 《Plant biosystems》2013,147(2):278-285
Abstract In most European countries, the service tree (Sorbus domestica L.) is a rare and threatened species and its conservation has been recognised as a priority. The aim of this study was to asses its morphologic variation in the western and central part of the Balkan Peninsula and in southern Central Europe. Three populations were analysed: one in Serbia, one in Bosnia and Herzegovina and one in Slovenia. In each population 30 trees were selected, and from each tree 30 leaves were collected for morphometric analysis based on nine leaflet morphological traits. Univariate (ANOVA) and multivariate (MANOVA) analysis of variance were used to estimate the variation within- and between populations and a discriminant analysis was performed to examine the structure of the between-population differences. The values of particular morphological traits found in our study did not differ considerably from the values reported elsewhere. The results revealed significant within- and between population variation. Variation within populations was highly significant for all the scored leaf morphological traits, while variation between populations was significant for all the studied traits except for the leaflet length. The discrimination between the three populations was significant. High percentages of correctly classified samples demonstrate good discriminating employability of the analysed leaf morphological traits and indicate differentiation of the analysed populations. 相似文献
109.
《Electromagnetic biology and medicine》2013,32(2):93-107
Electromagnetic (EM) phenomena have long been implicated in biological development, but few detailed, practical mechanisms have been put forth to connect electromagnetism with morphogenetic processes. This work describes a new hypothesis for plant leaf veination, whereby an endogenous electric field forming as a result of a coherent Frohlich process, and corresponding to an EM resonant mode of the developing leaf structure, is capable of instigating leaf vascularisation. In order to test the feasibility of this hypothesis, a three-dimensional, EM finite-element model (FEM) of a leaf primordium was constructed to determine if suitable resonant modes were physically possible for geometric and physical parameters similar to those of developing leaf tissue. Using the FEM model, resonant EM modes with patterns of relevance to developing leaf vein modalities were detected. On account of the existence of shared geometric signatures in a leaf's vascular pattern and the electric field component of EM resonant modes supported by a developing leaf structure, further theoretical and experimental investigations are warranted. Significantly, this hypothesis is not limited to leaf vascular patterning, but may be applicable to a variety of morphogenetic phenomena in a number of living systems. 相似文献
110.
We assessed the effect of salinity on plant growth and leaf expansion rates, as well as the leaf life span and the dynamics
of leaf production and mortality in seedlings of Avicennia germinans L. grown at 0, 170, 430, 680, and 940 mol m−3 NaCl. The relative growth rates (RGR) after 27 weeks reached a maximum (10.4 mg g−1 d−1) in 170 mol m−3 NaCl and decreased by 47 and 44% in plants grown at 680 and 940 mol m−3 NaCl. The relative leaf expansion rate (RLER) was maximal at 170 mol m−3 NaCl (120 cm m−2 d−1) and decreased by 57 and 52% in plants grown at 680 and 940 mol m−3 NaCl, respectively. In the same manner as RGR and RLER, the leaf production (P) and leaf death (D) decreased in 81 and 67% when salinity increased from 170 to 940 mol m−3 NaCl, respectively. Since the decrease in P with salinity was more pronounced than the decrease in D, the net accumulation of leaves per plant decreased with salinity. Additionally, an evident increase in annual mortality
rates (λ) and death probability was observed with salinity. Leaf half-life (t
0.5) was 425 days in plants grown at 0 mol m−3 NaCl, and decreased to 75 days at 940 mol m−3 NaCl. Thus, increasing salinity caused an increase in mortality rate whereas production of new leaves and leaf longevity
decreased and, finally, the leaf area was reduced. 相似文献