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741.
Ali Sharafi Haleh Hashemi Sohi Pejman Azadi Ata Allah Sharafi 《Physiology and Molecular Biology of Plants》2014,20(2):257-262
An efficient hairy root induction system for an important endangered medicinal plant, Dracocephalum kotschyi, was developed through Agrobacterium rhizogenes-mediated transformation by modifying the co-cultivation medium using five bacterial strains, A4, ATCC15834, LBA9402, MSU440, and A13 (MAFF-02-10266). A drastic increase in transformation frequency was observed when a Murashige and Skoog medium lacking NH4NO3 KH2PO4, KNO3 and CaCl2 was used, resulting in hairy root induction frequencies of 52.3 %, 69.6 %, 48.6 %, 89.0 %, and 80.0 % by A4, A13, LBA9402, MSU440, and ATCC15834 strains, respectively. For shoot induction, hairy roots and unorganized tumors induced by strain ATCC15834 were placed on an MS media supplemented with 0.1, 0.25, 0.5, and 1 mg/l BA plus 0.1 mg/l NAA. The high frequency of shoot regeneration and number of shoot were obtained in the medium containing 0.25 mg/l BA and 0.1 mg/l NAA. Root induction occurred from the base of regenerated shoots on the MS medium supplemented with 0.5 mg/l IBA after 10 days. 相似文献
742.
为研究番茄青枯雷尔氏菌强致病力菌株的变异,探索了继代培养、在NB培养基上不同时间培养、不同pH处理7d和15d、不同温度处理1h后对强致病力菌株变异的影响。结果表明:随着继代培养的培养代数增加,平均弱化指数成增大趋势,在第10代出现了无致病力菌株;在NB培养基上培养15d时,强致病力菌株已完全转化为不确定菌株和无致病力菌株,在培养30d时,强致病力菌株几乎完全转化为无致病菌株;pH7.0时,处理7d和15d后,强致病力菌株比例均为最大,分别为93.33%和92.22%,pH5.8时,强致病力菌株比例最低,分别为46.67%和31.11%;用不同温度处理强致病力菌株发现,温度50℃时,菌株死亡,温度40℃时,活菌数显著低于其他(4~30℃)处理,强致病力菌株比例为4~40℃所有处理中最低。 相似文献
743.
为明确3株优良生防菌SC11、153、FO47在不同发酵方法和保存条件下活菌量变化规律,采用活菌平板计数法,测定3种生防菌12个月内活菌量变化及3种生防菌粉剂发酵初期和12月保存期后对茄子黄萎病的温室盆栽防效。结果表明,SC11、 153和FO47菌粉于4 ℃密封保存12个月后活菌量与其初始活菌量差异不显著(P<0.05);FO47菌粉在4 ℃保存12个月后活菌量高于初始活菌量(P<0.05);3种生防菌发酵液初始活菌量较菌粉低1~2个数量级,在保存期60 d内活菌量急剧下降,第6个月时接近于0。3种生防菌粉存放12个月后对茄子黄萎病仍保持较高的抑菌活性。说明,固体发酵菌粉可以得到较高数量级的初始活菌量,3种生防菌菌粉4 ℃密封保存12个月后活菌量及抑菌活性不变,且FO47菌粉活菌量略有上升;发酵液不利于生防菌的长期保存。 相似文献
744.
Mattia Pierangelini Slobodanka Stojkovic Philip T. Orr John Beardall 《Journal of phycology》2014,50(2):292-302
We studied the growth and photosynthetic characteristics of a toxic (CS506) and a nontoxic strain (CS509) of the bloom‐forming cyanobacterium Cylindrospermopsis raciborskii grown under identical experimental conditions. When exposed to light‐saturating growth conditions (100 μmol photons · m?2 · s?1), values for maximal photosynthetic capacity (Pmax) and maximum quantum yield (Fv/Fm) indicated that both strains had an equal ability to process captured photons and deliver them to PSII reaction centers. However, CS506 grew faster than CS509. This was consistent with its higher light requirement for saturation of photosynthesis (Ik). Greater shade tolerance of CS509 was indicated by its higher ability to harvest light (α), lower photosynthetic light compensation point (Ic), and higher chlorophyll a to biovolume ratio. Strain‐specific differences were found in relation to non‐photochemical quenching, effective absorption cross‐sectional area of PSIIα‐centers (σPSIIα), and the antenna connectivity parameter of PSIIα (JconPSIIα). These findings highlighted differences in the transfer of excitation from phycobilisome/PSII to PSI, on the dependence on different pigments for light harvesting and on the functioning of the PSII reaction centers between the two strains. The results of this study showed that both performance and composition of the photosynthetic apparatus are different between these strains, though with only two strains examined we cannot attribute the performance of strain 506 to its ability to produce cylindrospermopsins. The emphasis on a strain‐specific light adaptation/acclimation is crucial to our understanding of how different light conditions (both quantity and quality) can trigger the occurrence of different C. raciborskii strains and control their competition and/or dominance in natural ecosystems. 相似文献
745.
Biomechanical factors play an important role in the growth, regulation, and maintenance of engineered biomaterials and tissues. While physical factors (e.g. applied mechanical strain) can accelerate regeneration, and knowledge of tissue properties often guide the design of custom materials with tailored functionality, the distribution of mechanical quantities (e.g. strain) throughout native and repair tissues is largely unknown. Here, we directly quantify distributions of strain using noninvasive magnetic resonance imaging (MRI) throughout layered agarose constructs, a model system for articular cartilage regeneration. Bulk mechanical testing, giving both instantaneous and equilibrium moduli, was incapable of differentiating between the layered constructs with defined amounts of 2% and 4% agarose. In contrast, MRI revealed complex distributions of strain, with strain transfer to softer (2%) agarose regions, resulting in amplified magnitudes. Comparative studies using finite element simulations and mixture (biphasic) theory confirmed strain distributions in the layered agarose. The results indicate that strain transfer to soft regions is possible in vivo as the biomaterial and tissue changes during regeneration and maturity. It is also possible to modulate locally the strain field that is applied to construct-embedded cells (e.g. chondrocytes) using stratified agarose constructs. 相似文献
746.
MS characterization of qualitative protein polymorphisms in the spinal cords of inbred mouse strains
Stefan Mikkat Peter Lorenz Christian Scharf Xinhua Yu Michael O. Glocker Saleh M. Ibrahim 《Proteomics》2010,10(5):1050-1062
The spinal cord proteomes of two inbred mouse strains with different susceptibility to experimental autoimmune encephalomyelitis (EAE), a mouse model of multiple sclerosis, were investigated by 2‐DE and MALDI‐MS. A proteome map comprising 304 different protein species was established. Using 2‐D fluorescence difference gel electrophoresis, a comparison of the mouse strains revealed 26 qualitatively polymorphic proteins with altered electrophoretic mobility. MS analyses and DNA sequencing were applied to characterize their structural differences and 14 single amino acid substitutions were identified. Moreover, analysis of selectively enriched phosphopeptides from the neurofilament heavy polypeptide of both mouse strains revealed a high degree of diversity in the phosphorylated C‐terminal domains of this protein. The described approach is capable to structurally characterize qualitative protein polymorphisms, whereas their functional significance remains to be elucidated. For some proteins formerly associated with experimental autoimmune encephalomyelitis and/or multiple sclerosis structural polymorphisms are described here, which may be subjected to further investigations. In addition, this work should be of general interest for proteomic analysis of inbred strains, because it shows potentials and constraints in the use of 2‐DE analysis and MALDI‐MS to detect and characterize structural protein polymorphisms. 相似文献
747.
In order to find novel strains of Bacillus thuringiensis that are toxic to some of the major pests that impact economically important crops in Argentina, we initiated a search for
B. thuringiensis isolates native to Argentina. We succeeded in assembling a collection of 41 isolates, some of which show a high potential
to be used in biological control programs against lepidopteran and coleopteran pests. About 90% of the strains showed toxicity
against Spodoptera frugiperda and Anticarsia gemmatalis, two important lepidopteran pests in Argentina. It is noteworthy that only one of these strains contained a cry1-type gene, while another isolate showed a dual toxicity against the lepidopteran and coleopteran insects assayed. Genetic
characterization of the strains suggests that the collection likely harbors novel Cry proteins that may be of potential use
in biological insect pest control. 相似文献
748.
Wild mouse open field behavior is embedded within the multidimensional data space spanned by laboratory inbred strains 总被引:1,自引:0,他引:1
The vast majority of studies on mouse behavior are performed on laboratory mouse strains (Mus laboratorius), while studies of wild-mouse behavior are relatively rare. An interesting question is the relationship between the phenotypes of M. laboratorius and the phenotypes of their wild ancestors. It is commonly believed, often in the absence of hard evidence, that the behavior of wild mice exceeds by far, in terms of repertoire richness, magnitude of variables and variability of behavioral measures, the behavior of the classical inbred strains. Having phenotyped the open field behavior (OF) of eight of the commonly used laboratory inbred strains, two wild-derived strains and a group of first-generation-in-captivity local wild mice (Mus musculus domesticus), we show that contrary to common belief, wild-mouse OF behavior is moderate, both in terms of end-point values and in terms of their variability, being embedded within the multidimensional data space spanned by laboratory inbred strains. The implication could be that whereas natural selection favors moderate locomotor behavior in wild mice, the inbreeding process tends to generate in mice, in some of the features, extreme and more variable behavior. 相似文献
749.
Martin MV Dong H Vallera D Lee D Lu L Williams RW Rosen GD Cheverud JM Csernansky JG 《Genes, Brain & Behavior》2006,5(8):614-623
Anatomical and functional studies support segregation of the hippocampus into ventral and dorsal components along its septotemporal axis. However, it is unknown whether the development of these two components of the hippocampus is influenced by common or separate genetic factors. In this study, we used recombinant inbred strains of mice to determine whether the same or different quantitative trait loci (QTL) influence ventral and dorsal hippocampal volume. Using two sets of strains of recombinant inbred mice (BXD and AXB/BXA), we identified separate QTLs for ventral and dorsal hippocampal volume. In BXD mice, suggestive QTLs for ventral hippocampus were identified on chromosomes 2, 8 and 13, and a significant QTL for dorsal hippocampal volume was identified on chromosome 15. There was also a suggestive QTL for dorsal hippocampal volume on chromosome 13. In AXB/BXA mice, there were no significant or suggestive QTLs for ventral hippocampal volume, but a significant QTL for dorsal hippocampus was identified on chromosome 5. These findings suggest that the development of the ventral and dorsal components of the hippocampus is influenced by separate genetic loci. 相似文献
750.