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1.
Shaoyun Lu Chuanhao Chen Zhongcheng Wang Zhenfei Guo Haihang Li 《Plant cell reports》2009,28(3):517-526
Eight somaclonal variants with enhanced drought tolerance were isolated from regenerated plants of triploid bermudagrass (Cynodon dactylon × Cynodon transvaalensis cv., TifEagle). Three of them (10-17, 89-02, 117-08) with strong drought tolerance were selected for investigations of physiological
responses to drought stress. Compared to the parent control, TifEagle, the somaclonal variants had higher relative water contents
and relative growth, and lower ion leakages in the greenhouse tests, while no difference in evapotranspirational water losses
and soil water contents was observed between the variants and TifEagle. The variants also had less leaf firing in the field
tests under drought stress. Superoxide dismutase (SOD), catalase (CAT) and ascorbate peroxidase (APX) activities decreased
gradually in responses to drought stress in all plants and exhibited negative correlations with ion leakage, indicating that
the declined activities of these antioxidant enzymes were associated with drought injury in the triploid bermudagrass. However,
CAT activities were significantly higher in all three variants than in TifEagle during drought stress. Two variants, 10-17
and 89-02, also had significantly higher APX activities than TifEagle before and during the first 4 days of drought treatments.
These two lines also showed higher SOD activities after prolonged drought stress. Proline, total soluble sugars and sucrose
were accumulated under drought stress in all plants and exhibited positive correlations with ion leakage. More proline and
sugars were accumulated in TifEagle than in the variants. The results indicated that higher activities of the antioxidant
enzymes in the variants during drought stress are associated with their increased drought tolerance. 相似文献
2.
Root segments from seedlings of Panax ginseng produced adventitious roots directly when cultured on 1/2 MS solid medium lacking NH4NO3 and containing 3.0 mg l−1 IBA. Using this adventitious root formation, we developed rapid and efficient transgenic root formation directly from adventitious
root segments in P. ginseng. Root segments were co-cultivated with Agrobacterium tumefaciens (GV3101) caring β-glucuronidase (GUS) gene. Putative transgenic adventitious roots were formed directly from root segments on medium with 400 mg l−1 cefotaxime and 50 mg l−1 kanamycin. Kanamycin resistant adventitious roots were selected and proliferated as individual lines by subculturing on medium
with 300 mg l−1 cefotaxime and 50 mg l−1 kanamycin at two weeks subculture interval. Frequency of transient and stable expression of GUS gene was enhanced by acetosyringon (50 mg l−1) treatment. Integration of transgene into the plants was confirmed by the X-gluc reaction, PCR and Southern analysis. Production
of transgenic plants was achieved via somatic embryogenesis from the embryogenic callus derived from independent lines of
adventitious roots. The protocol for rapid induction of transgenic adventitious roots directly from adventitious roots can
be applied for a new Agrobacterium tumefaciens-mediated genetic transformation protocol in P. ginseng. 相似文献
3.
Sameer Khanal Changsoo Kim Susan A. Auckland Lisa K. Rainville Jeevan Adhikari Brian M. Schwartz Andrew H. Paterson 《TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik》2017,130(4):819-839
Key message
We report SSR-enriched genetic maps of bermudagrass that: (1) reveal partial residual polysomic inheritance in the tetraploid species, and (2) provide insights into the evolution of chloridoid genomes.Abstract
This study describes genetic linkage maps of two bermudagrass species, Cynodon dactylon (T89) and Cynodon transvaalensis (T574), that integrate heterologous microsatellite markers from sugarcane into frameworks built with single-dose restriction fragments (SDRFs). A maximum likelihood approach was used to construct two separate parental maps from a population of 110 F1 progeny of a cross between the two parents. The T89 map is based on 291 loci on 34 cosegregating groups (CGs), with an average marker spacing of 12.5 cM. The T574 map is based on 125 loci on 14 CGs, with an average marker spacing of 10.7 cM. Six T89 and one T574 CG(s) deviated from disomic inheritance. Furthermore, marker segregation data and linkage phase analysis revealed partial residual polysomic inheritance in T89, suggesting that common bermudagrass is undergoing diploidization following whole genome duplication (WGD). Twenty-six T89 CGs were coalesced into 9 homo(eo)logous linkage groups (LGs), while 12 T574 CGs were assembled into 9 LGs, both putatively representing the basic chromosome complement (x?=?9) of the species. Eight T89 and two T574 CGs remain unassigned. The marker composition of bermudagrass ancestral chromosomes was inferred by aligning T89 and T574 homologs, and used in comparisons to sorghum and rice genome sequences based on 108 and 91 significant blast hits, respectively. Two nested chromosome fusions (NCFs) shared by two other chloridoids (i.e., zoysiagrass and finger millet) and at least three independent translocation events were evident during chromosome number reduction from 14 in the polyploid common ancestor of Poaceae to 9 in Cynodon.4.
Bimal Kumar Ghimire Eun Soo Seong Jung Dae Lim Kweon Heo Myong Jo Kim Ill-Min Chung John A. Juvik Chang Yeon Yu 《Plant Cell, Tissue and Organ Culture》2008,95(3):265-274
Efficient transformation of leaf disc-derived callus of Codonopsis lanceolata was obtained using Agrobacterium tumefaciens strain LBA4404 harboring a binary vector, pYBI121, that carries the neomycin phosphotransferase (npt II) gene as a selectable marker. The green shoots recovered from agroinfected explants on selection medium (containing 0.1 mg/l
α-naphthaleneacetic acid (NAA), 1 mg/l 6-benzylaminopurine (BAP), 100 mg/l kanamycin, and 250 mg/l cefotaxime) were rooted
on Murashige and Skoog (MS) medium supplemented with 2 mg/l IBA and 10 mg/l kanamycin. To optimize the transformation conditions,
several factors were assessed, including the co-cultivation period, the duration of pre- and post-culture in darkness and
light, the kanamycin concentration, and the Agrobacterium densities. We produced transgenic Codonopsis lanceolata overexpressing γ-tocopherol methyltransferase (γ-TMT) by this protocol. Moreover, the α-tocopherol content of the plants was enhanced by the overexpression of this gene.
Bimal Kumar Ghimire and Eun Soo Seong contributed equally to this work. 相似文献
5.
Dong Cao Wensheng Hou Shikui Song Hongbo Sun Cunxiang Wu Yongsheng Gao Tianfu Han 《Plant Cell, Tissue and Organ Culture》2009,96(1):45-52
Agrobacterium rhizogenes-mediated transformation has become a powerful tool for studying gene function and root biology due to its quick and simple
methodology. This transformation method is particularly suitable for those plants, including legumes, whose transformation
using Agrobacterium tumefaciens has been challenging. Although there are some reports on A. rhizogenes-mediated transformation of legumes to produce ‘composite’ plants, conditions influencing A. rhizogenes-mediated transformation of soybean [Glycine max (L.) Merr.] have not been yet fully investigated. To better understand A. rhizogenes-mediated root transformation in soybean, we have evaluated the impact of genotype, plant age for infection, bacterial inoculating
concentration, inoculation temperature, and other factors on transformation of soybean. The results have shown that there
are significant differences among soybean genotypes in their susceptibility to A. rhizogenes. Soybean cv. Zigongdongdou is the most susceptible to A. rhizogenes strain K599 among 10 genotypes tested. The effects of seedling age have been evaluated, and 1-day-old plantlets are found
to be optimal for hairy root induction. There are no significant differences in hairy root induction for bacterial suspension
from OD600 = 0.2 to OD600 = 1.2. Under 16 h photoperiod, hairy roots can be induced both at 23°C/20°C and 28°C/25°C, but not at 33°C/30°C as day/night
temperature regimes. Using this transformation protocol, almost 100% of the composite plants formed hairy roots within 2 weeks,
and based on GUS histochemical analysis, 94.2% transformation frequency is obtained. Transgene integration has been also confirmed
by Southern blot analysis.
D. Cao and W. Hou contributed equally to this work. 相似文献
6.
Tamura M Togami J Ishiguro K Nakamura N Katsumoto Y Suzuki K Kusumi T Tanaka Y 《Plant cell reports》2003,21(5):459-466
Verbena (Verbena x hybrida), an important floricultural species, was successfully regenerated from stem segments on Murashige and Skoog's basal medium supplemented with thidiazuron and indole-3-acetic acid. A transformation system was developed using cvs. Temari Scarlet, Temari Sakura, Tapien Rose and TP-P2. Agrobacterium tumefaciens strain Agl0 harboring the sGFP gene was infected into stem segments. Transformation efficiency was improved by evaluating and manipulating the age of the plant material, the concentration of kanamycin in the medium during selection, and the length of the culture period in the dark. After 2-3 months of culture on the selection medium, GFP-positive shoots were obtained in all four of the cultivars tested. These shoots were successfully acclimated and set flowers within 2-3 months in a greenhouse. GFP was expressed in all of the organs including the floral parts. Stable genomic transformation was confirmed by Southern blot analysis. No morphological differences were observed between the transformed plants and their host plants. 相似文献
7.
Lu S Peng X Guo Z Zhang G Wang Z Wang C Pang C Fan Z Wang J 《Plant cell reports》2007,26(8):1413-1420
A protocol was established for in vitro selection of salinity tolerant somaclonal variations from suspension cultured calli
of triploid bermudagrass cv. TifEagle. To induce somaclonal variations the calli were subcultured for 18 months and were then
subject to three-round selections for salt-tolerant calli by placing on solid medium containing 0.3 M NaCl for 10 days followed
by a recovery for 2 weeks. The surviving calli were regenerated on regeneration medium containing 0.1 M NaCl. Three somaclonal
variant lines (2, 71, and 77) were obtained and analyzed. The selected somaclonal lines showed higher relative growth and
less injury than TifEagle under salt stress, indicating that they increased salt tolerance. In addition, they had higher relative
water content and lower electrolyte leakage than TifEagle after withholding irrigation, indicating that they also increased
drought tolerance. The three somaclonal variant lines had higher proline content than TifEagle under normal growth condition.
The line 71 had a higher K+/Na+ ratio, whereas the lines 2 and 77 had higher CAT activity under control and salt stress conditions, indicating that different
mechanisms for salt tolerance might exist in these three lines. 相似文献
8.
An efficient regeneration protocol for genetic transformation was developed from the leaves of an 11-year-old Phtinia × fraseri “Red Robin” tree. A high frequency of adventitious buds (88.63 ± 1.38%) and the highest maximum mean number of adventitious
buds per explant (4.65 ± 0.48) were obtained in light conditions on Murashige–Skoog (MS) medium containing 2 mg l−1 benzyladenine (BA) and 0.2 mg l−1 α-Naphthaleneacetic acid (NAA). After preculturing for 6 days, over 95% of the shoots successfully rooted on 1/2 MS medium
supplemented with 0.3 mg l−1 indole-3-butyric acid (IBA) within 3 weeks. For genetic transformation, two crucial parameters (30 mg l−1 kanamycin for selection and 30-min suspension time) were optimized. Taken together, a reliable transformation system with
an efficiency of more than 5% was established. This genetic transformation protocol can be utilized for further genetic manipulation
of the Photinia tree. 相似文献
9.
Shoot apical meristem explants of Vitis vinifera “Thompson Seedless” were used for Agrobacterium-mediated genetic transformation. It was determined that the meristems had to be subjected to a dark growth phase then wounded
to obtain transgenic plants. Morphological and histological studies illustrated the role of wounding to expose apical meristem
cells for transformation. A bifunctional egfp/nptII fusion gene was used to select kanamycin resistant plants that expressed green fluorescent protein (GFP). Kanamycin at a
concentration of 16 mg L−1 in selection medium resulted in recovery of non-chimeric transgenic plants that uniformly expressed GFP, whereas 8 mg L−1 kanamycin allowed non-transgenic and/or chimeric plants to develop. Polymerase chain reaction (PCR) and Southern blot analyses
confirmed the presence of transgenes and their stable integration into the genome of regenerated plants. Up to 1% of shoot
tips produced stable transgenic cultures within 6 weeks of treatment, resulting in a total of 18 independent lines. 相似文献
10.
K. Škrlep M. Bergant G. M. De Winter B. Bohanec J. Žel R. Verpoorte F. Van Iren M. Camloh 《Biologia Plantarum》2008,52(2):329-333
Different lines of cell suspension cultures of Taxus × media Rehd. and Taxus floridana Nutt. were cryopreserved with a two-step freezing method using a simple and inexpensive freezing container instead of a programmable
freezer. Four to seven days old suspension cell cultures were precultured in growth medium supplemented with 0.5 M mannitol
for 2 d. The medium was then replaced with cryoprotectant solution (1 M sucrose, 0.5 M glycerol and 0.5 M dimethylsulfoxide)
and the cells incubated on ice for 1 h. Before being plunged into liquid nitrogen, cells were frozen with a cooling rate of
approximately −1 °C per min to −80 °C. The highest post-thaw cell viability was 90 %. The recovery was line dependent. The
cryopreservation procedure did not alter the nuclear DNA content of the cell lines. The results indicate that cryopreservation
of Taxus cell suspension cultures using inexpensive freezing container is possible. 相似文献
11.
Matías Maggi Natalia Damiani Sergio Ruffinengo David De Jong Judith Principal Martín Eguaras 《Experimental & applied acarology》2010,50(3):269-279
We undertook a field study to determine whether comb cell size affects the reproductive behavior of Varroa destructor under natural conditions. We examined the effect of brood cell width on the reproductive behavior of V. destructor in honey bee colonies, under natural conditions. Drone and worker brood combs were sampled from 11 colonies of Apis mellifera. A Pearson correlation test and a Tukey test were used to determine whether mite reproduction rate varied with brood cell
width. Generalized additive model analysis showed that infestation rate increased positively and linearly with the width of
worker and drone cells. The reproduction rate for viable mother mites was 0.96 viable female descendants per original invading
female. No significant correlation was observed between brood cell width and number of offspring of V. destructor. Infertile mother mites were more frequent in narrower brood cells. 相似文献
12.
The lipase Lip2 of the edible basidiomycete, Pleurotus sapidus, is an extracellular enzyme capable of hydrolysing xanthophyll esters with high efficiency. The gene encoding Lip2 was expressed
in Escherichia coli TOP10 using the gene III signal sequence to accumulate proteins in the periplasmatic space. The heterologous expression under
control of the araBAD promoter led to the high level production of recombinant protein, mainly as inclusion bodies, but partially
in a soluble and active form. A fusion with a C-terminal His tag was used for purification and immunochemical detection of
the target protein. This is the first example of a heterologous expression and periplasmatic accumulation of a catalytically
active lipase from a basidiomycete fungus. 相似文献
13.
Q. Zheng Y. P. Zheng G. D. Wang W. M. Guo W. F. Fan C. Wang 《Russian Journal of Plant Physiology》2012,59(2):266-274
14.
There are three most important bacterial causative agents of serious infections that could be misused for warfare purposes: Bacillus anthracis (the causative agent of anthrax) is the most frequently mentioned one; however, Fracisella tularensis (causing tularemia) and Yersinia pestis (the causative agent of plague) are further bacterial agents enlisted by Centers for Disease Control and Prevention into the category A of potential biological weapons. This review intends to summarize basic information about these bacterial agents. Military aspects of their pathogenesis and the detection techniques suitable for field use are discussed. 相似文献
15.
A pollen-based transient expression system has been developed. Lily pollen grains, wounded by vigorous shaking in the presence
of aluminum oxide particles, were transformed by infiltration with Agrobacterium tumefaciens LBA4404 cells harboring the β-glucuronidase (GUS) gene construct, pBI121. In histochemical and fluorometric GUS analysis,
the wounding processes allowed efficient transformation and, in cDNA blot hybridization, GUS mRNA synthesis was clearly detected.
Lily pollen with appropriate wounds, therefore, can be used conveniently for the rapid production of recombinant proteins. 相似文献
16.
17.
Yu-Ting Chen Quan-Sheng Fang Chu-Hui Chiang Shyi-Dong Yeh Hui-Wen Wu Tsong-Ann Yu 《Plant Cell, Tissue and Organ Culture》2010,102(3):347-356
Lisianthus (Eustoma grandiflorum) is a cut or ornamental flower that is popular all over the world. This ornamental crop, however, lacks an effective weed control method due to its susceptibility to herbicide. In this study, transgenic plants of a lisianthus cultivar were produced using Agrobacterium-mediated delivery of the plasmid pCAMBIA3300, which carried the bialaphos resistance (bar) gene under driven by the CaMV 35S promoter. The transgenic calli were derived from wounded edges of the leaves grown on a shoot regeneration medium containing 100 mg l?1 cefotaxime and 2 mg l?1 glufosinate ammonium for 4 weeks. The callus that was detached from the wounded edge of the leaf was transferred to the shoot regeneration medium with 100 mg l?1 cefotaxime and 5 mg l?1 glufosinate ammonium for 4 weeks for shoot regeneration. The bar gene integration and expression in the transgenic plants were confirmed by Southern and Northern blot analyses, respectively. Subsequently, the transgenic lines were assessed in vitro and under greenhouse conditions for their resistance to the commercial herbicide Basta®, which contains glufosinate ammonium as the active component. Six transgenic lines showed high percentages (67–80%) of survival in vitro under the selection condition with glufosinate ammonium (up to 216 mg l?1). Under greenhouse conditions, the plants from these six lines remained healthy and exhibited a normal phenotype after spraying with glufosinate ammonium (up to 1,350 mg l?1). This is the first paper to provide a detailed survey of transgenic lisianthus expressing the bar gene and exhibiting herbicide-resistance under greenhouse conditions. 相似文献
18.
Chaoyi Liu Huanwen Xu Jing Jiang Sui Wang Guifeng Liu 《Plant Cell, Tissue and Organ Culture》2018,132(1):191-199
19.
Ji Hye Yoo Eun Soo Seong Bimal Kumar Ghimire Kweon Heo Xiaoli Jin Toshihiko Yamada Lindsay V. Clark Erik J. Sacks Chang Yeon Yu 《Plant Cell, Tissue and Organ Culture》2018,133(3):359-369
This study was to determine a transformation system for Miscanthus sinensis, and to optimize factors and conditions required for expression of an antisense caffeic acid O-methyltransferase gene in the M. sinensis (MsCOMT-AS). Transformation of callus derived from seeds and immature inflorescences of M. sinensis was established by using Agrobacterium tumefaciens strain LBA4404 harboring a binary vector pMBP1. In order to establish the stable transformation system, several transformation factors such as explant type, strain, co-culture periods, acetosyringone concentration, and selective markers were assessed. In this study, seven putative transgenic plants were obtained from callus transformation and plantlet regeneration. Various tests including PCR analysis and RT-PCR were used to detect the transgenic insert. The transgenic plants were also characterized for their agronomic and morphological characteristics, expression of MsCOMT-AS gene, and variation in lignocellulosic content. Biomass related traits such as plant height, number of leaves, length of leaf, stem diameter, fresh weight, dry weight, and cell size of the control plants were superior to transgenic plants. Total lignin content of transgenic plants was lower than that of the control plant due to reduced caffeic acid O-methyltransferase (COMT) gene expression related to lignin production. Cellulose and hemicellulose content in transgenic plants were not increased. Variation in cellulose and hemicellulose content had no correlation with variation in lignin content of transgenic plants. In conclusion, transgenic M. sinensis was obtained with down-regulated COMT gene. Lignin synthesis was decreased what offers possibility of crop modification for facilitated biofuel production. 相似文献
20.
Coulibaly I Revol B Noirot M Poncet V Lorieux M Carasco-Lacombe C Minier J Dufour M Hamon P 《TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik》2003,107(6):1148-1155
An interspecific cross (BC 1) involving a species with one of the largest genomes in the Coffea genus [Coffea heterocalyx (HET), qDNA = 1.74 pg] and a species with a medium-sized genome [Coffea canephora (CAN), qDNA = 1.43 pg] was studied using two types of molecular markers, AFLP and SSR. One hundred and eighty eight AFLP bands and 34 SSR primer pairs were suitable for mapping. The total map length was 1,360 cM with 190 loci distributed in 15 linkage groups. The results were compared to those obtained previously on an interspecific BC 1 progeny involving a species with a medium-sized genome (Coffea liberica var dewevrei, DEW) and a species with one of the smallest genomes (Coffea pseudozanguebariae, PSE). They are discussed relative to three main points: (1) the relevance of the different marker types, (2) the genomic distribution of AFLP and SSR markers, and (3) the relation between AFLP polymorphism and genome size.Communicated by H.F. Linskens 相似文献