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1.
Kiyomi Kikugawa Kazuyuki Hiramoto Yutaka Okamoto Yo-Ko Hasegawa 《Free radical research》1994,21(6):399-408
Nitrogen dioxide less than 100 ppm in air induced lipid peroxidation of liposome composed of l-palmitoyl-2-arachidonylphosphatidylcholine as assessed by thiobarbituric acid reactivity. The nitrogen dioxide-induced lipid peroxidation was enhanced by cysteine, glutathione and bovine serum albumin. While the activity of nitrogen dioxide in air to induce single strand breaks of supercoiled plasmid DNA was low, the breaking was remarkably enhanced by cysteine, glutathione and bovine serum albumin. ESR spin trapping using 5,5-dimethyl-1-pyrroline N-oxide showed that certain strong oxidant(s) were generated by interaction of nitrogen dioxide and cysteine. The spin trapping using 3,5-dibromo-4-nitrosobenzene-sulfonate suggested that sulfur-containing radicals were generated by interaction of nitrogen dioxide and cysteine or glutathione. Hence, certain sulfur-containing radicals generated by the interaction which could effectively induce lipid peroxidation and DNA strand breaks. 相似文献
2.
How can quantum mechanics of material evolution be possible?: Symmetry and symmetry-breaking in protobiological evolution 总被引:1,自引:0,他引:1
K Matsuno 《Bio Systems》1985,17(3):179-192
Material self-assembly as a self-organizing process is always accompanied by symmetry-breaking in the material configuration. Self-sequencing of amino acids during their thermal polymerization has lost a certain property of permutation symmetry that was observed in the mixture of free amino acids. The evolutionary precursor state is more symmetrical about its internal material configuration and more degenerate due to the multitude of the indistinguishable individuals. The evolution proceeds in the direction along which the degeneracy in the internal states dissolves owing to the symmetry-breaking originating in material flow equilibrium of open material aggregates. Protobiological information is latent in the material system which is highly symmetrical and highly degenerate in its internal states. Evolution of matter is an endogenous process in which the earlier symmetric property is lost and less degenerate states are approached. Quantum-mechanically, the generation of protobiological information is due to the symmetry-breaking of the Hamiltonian originating in the interaction with the exterior through material flow, in contrast to the Schrödinger equation which preserves a symmetry and the associated invariants. 相似文献
3.
Background and Aims
Physical dormancy (PY) occurs in seeds or fruits of 18 angiosperm families and is caused by a water-impermeable palisade cell layer(s) in seed or fruit coats. Prior to germination, the seed or fruit coat of species with PY must become permeable in order to imbibe water. Breaking of PY involves formation of a small opening(s) (water gap) in a morpho-anatomically specialized area in seeds or fruits known as the water-gap complex. Twelve different water-gap regions in seven families have previously been characterized. However, the water-gap regions had not been characterized in Cucurbitaceae; clade Cladrastis of Fabaceae; subfamilies Bombacoideae, Brownlowioideae and Bythnerioideae of Malvaceae; Nelumbonaceae; subfamily Sapindoideae of Sapindaceae; Rhamnaceae; or Surianaceae. The primary aims of this study were to identify and describe the water gaps of these taxa and to classify all the known water-gap regions based on their morpho-anatomical features.Methods
Physical dormancy in 15 species was broken by exposing seeds or fruits to wet or dry heat under laboratory conditions. Water-gap regions of fruits and seeds were identified and characterized by use of microtome sectioning, light microscopy, scanning electron microscopy, dye tracking and blocking experiments.Key Results
Ten new water-gap regions were identified in seven different families, and two previously hypothesized regions were confirmed. Water-gap complexes consist of (1) an opening that forms after PY is broken; (2) a specialized structure that occludes the gap; and (3) associated specialized tissues. In some species, more than one opening is involved in the initial imbibition of water.Conclusions
Based on morpho-anatomical features, three basic water-gap complexes (Types-I, -II and -III) were identified in species with PY in 16 families. Depending on the number of openings involved in initial imbibition, the water-gap complexes were sub-divided into simple and compound. The proposed classification system enables understanding of the relationships between the water-gap complexes of taxonomically unrelated species with PY. 相似文献4.
以东方百合‘索邦’和‘西伯利亚’鳞片为外植体得到的一代试管小鳞茎为试材,研究0℃冷藏不同时间对试管鳞茎生理指标变化,以及试管鳞茎解除休眠和移栽后生长发育的影响。结果表明,冷藏0--28dN,随着冷藏时间的延长,试管鳞茎出苗率逐渐增加,冷藏处理28d达到最高,之后逐渐降低。冷藏期间,试管鳞茎中淀粉含量持续降低,而可溶性总糖和还原性糖含量表现出先升高后下降的趋势,冷藏处理28d的含量最高。同时,随着冷藏时间的延长,IAA和ZR含量逐渐升高,ABA含量逐渐下降,而GA。含量表现出先上升后下降的趋势,并且也在冷藏处理28dN-含量达到峰值。另外,采用隶属函数值对低温处理的试管苗栽培1年后所收获种球的数量、质量等指标进行评价,结果显示,均以低温处理28d时达到最大值。由此得出,0℃低温处理试管小鳞茎28d为解除休眠及促进生长发育的最适处理时间。 相似文献
5.
6.
Evidence for different,host‐dependent functioning of Rx against both wild‐type and recombinant Pepino mosaic virus
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Celia R. A. Duff‐Farrier Thierry Candresse Andy M. Bailey Neil Boonham Gary D. Foster 《Molecular Plant Pathology》2016,17(1):120-126
The potato Rx gene provides resistance against Pepino mosaic virus (PepMV) in tomato; however, recent work has suggested that the resistance conferred may not be durable. Resistance breaking can probably be attributed to multiple mutations observed to accumulate in the capsid protein (CP) region of resistance‐breaking isolates, but this has not been confirmed through directed manipulation of an infectious PepMV clone. The present work describes the introduction of two specific mutations, A‐T78 and A‐T114, into the coat protein minimal elicitor region of an Rx‐controlled PepMV isolate of the EU genotype. Enzyme‐linked immunosorbent assay (ELISA) and phenotypic evaluation were conducted in three Rx‐expressing and wild‐type solanaceous hosts: Nicotiana benthamiana, Nicotiana tabacum and Solanum lycopersicum. Mutation A‐T78 alone was sufficient to confer Rx‐breaking activity in N. benthamiana and S. lycopersicum, whereas mutation A‐T114 was found to be associated, in most cases, with a secondary A‐D100 mutation to break Rx‐mediated resistance in S. lycopersicum. These results suggest that the need for a second, fitness‐restoring mutation may be dependent on the PepMV mutant under consideration. Both mutations conferred Rx breaking in S. lycopersicum, whereas neither conferred Rx breaking in N. tabacum and only A‐T78 allowed Rx breaking in N. benthamiana, suggesting that Rx may function in a different manner depending on the genetic background in which it is present. 相似文献
7.
《Current biology : CB》2019,29(12):1911-1923.e5
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8.
通过了解紫楠(Phoebe sheareri)种子休眠原因,采取机械、酸碱腐蚀、层积处理(5 ℃~25 ℃)等措施研究解除种子休眠的最佳方法。结果表明,种皮透水性差是抑制紫楠种子萌发的主要原因,种子休眠类型为物理休眠。酸碱腐蚀处理未能有效促进种子的萌发,浓硫酸和氢氧化钠处理种子不同时间(1~25 min)后,种子发芽率提高了33%~55%,但种子出现严重的伤害现象,其腐烂率高达30%~97%。机械处理和层积处理均能有效打破种子的休眠,其中机械处理以去种皮处理效果最好,种子发芽率和发芽势分别提高了99.33%和76.00%,但操作耗时、费力。层积处理以25 ℃暖温层积45 d、25 ℃/15 ℃和5 ℃/ 25 ℃/5 ℃变温层积60 d效果较好,其发芽率达89%~93%,发芽势达79%~83%,且各层积处理间发芽率、发芽势没有差异;但与暖温层积相比,变温层积所需层积时间更长,种子腐烂率更高。25 ℃暖温层积45 d是破除紫楠种子休眠的最佳方法。 相似文献
9.
Lim WJ Park SR Kim MK An CL Yun HJ Hong SY Kim EJ Shin EC Lee SW Lim YP Yun HD 《Biochemical and biophysical research communications》2003,300(1):93-101
The glycogen branching enzyme gene (glgB) from Pectobacterium chrysanthemi PY35 was cloned, sequenced, and expressed in Escherichia coli. The glgB gene consisted of an open reading frame of 2196bp encoding a protein of 731 amino acids (calculated molecular weight of 83,859Da). The glgB gene is upstream of glgX and the ORF starts the ATG initiation codon and ends with the TGA stop codon at 2bp upstream of glgX. The enzyme was 43-69% sequence identical with other glycogen branching enzymes. The enzyme is the most similar to GlgB of E. coli and contained the four regions conserved among the alpha-amylase family. The glycogen branching enzyme (GlgB) was purified and the molecular weight of the enzyme was estimated to be 84kDa by SDS-PAGE. The glycogen branching enzyme was optimally active at pH 7 and 30 degrees C. 相似文献
10.