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1.
Water status of Pinus taeda L. callus supported on Murashige and Skoog (MS) liquid medium was characterized over an 8 week period using thermocouple
psychrometry. Medium with 30 gl−1 sucrose was used to produce a high water potential (Ψw) of −0.4 MPa (H), and the same medium was used to create a moderate Ψw of −0.7 MPa (M) by the addition of 10% polyethylene glycol (PEG, w/v, MW=8000). Calli were produced from cotyledon explants
on H medium for 2 weeks and then transferred to either M or H medium. Callus absorption of PEG accounted for 40% of the callus
dry weight and less than 7% of the callus fresh weight. Callus dry weight (without the PEG fraction) on M medium was 40% of
that observed on H medium. Fresh weight on M medium was only 15% of that observed on H medium. The Ψw of both H and M media remained constant throughout the culture period. On H medium, callus Ψw and osmotic potential (Ψs) both increased 0.05 MPa/week with the callus Ψw approaching that of the external medium. On M medium, callus Ψw and Ψs both decreased more than 0.1 MPa/week with the callus Ψw decreasing greatly below that of the external medium. The latter was attributed to a rapidly produced osmotic shock induced
upon callus transfer and/or PEG which caused less callus hydration and resulted in reduced growth. Callus turgor potential
(Ψp) was estimated to be +0.02 to +0.09 MPa and turgor was maintained as callus Ψw increased or decreased. After 8 weeks, cell volumes from callus on M medium were 50 to 60% less than on H medium, suggesting
that reduced cell volumes were related to turgor maintenance. 相似文献
2.
Andrew J. Eckert Barnaly Pande Elhan S. Ersoz Mark H. Wright Vanessa K. Rashbrook Charles M. Nicolet David B. Neale 《Tree Genetics & Genomes》2009,5(1):225-234
The development and application of genomic tools to loblolly pine (Pinus taeda L.) offer promising insights into the organization and structure of conifer genomes. The application of a high-throughput
genotyping assay across diverse forest tree species, however, is currently limited taxonomically. This is despite the ongoing
development of genome-scale projects aiming at the construction of expressed sequence tag (EST) libraries and the resequencing
of EST-derived unigenes for a diverse array of forest tree species. In this paper, we report on the application of Illumina’s
high-throughput GoldenGate™ SNP genotyping assay to a loblolly pine mapping population. Single nucleotide polymorphisms (SNPs)
were identified through resequencing of previously identified wood quality, drought tolerance, and disease resistance candidate
genes prior to genotyping. From that effort, a 384 multiplexed SNP assay was developed for high-throughput genotyping. Approximately
67% of the 384 SNPs queried converted into high-quality genotypes for the 48 progeny samples. Of those 257 successfully genotyped
SNPs, 70 were segregating within the mapping population. A total of 27 candidate genes were subsequently mapped onto the existing
loblolly pine consensus map, which consists of 12 linkage groups spanning a total map distance of 1,227.6 cM. The ability
of SNPs to be mapped to the same position as fragment-based markers previously developed within the same candidate genes,
as well as the pivotal role that SNPs currently play in the dissection of complex phenotypic traits, illustrate the usefulness
of high-throughput SNP genotyping technologies to the continued development of pine genomics.
Electronic supplementary material The online version of this article (doi:) contains supplementary material, which is available to authorized users. 相似文献
3.
Regulation of loblolly pine (Pinus taeda L.) arginase in developing seedling tissue during germination and post-germinative growth 总被引:5,自引:0,他引:5
Todd Christopher D. Cooke Janice E.K. Mullen Robert T. Gifford David J. 《Plant molecular biology》2001,45(5):555-565
After seed germination, hydrolysis of storage proteins provides a nitrogen source for the developing seedling. In conifers the majority of these reserves are located in the living haploid megagametophyte tissue. In the developing loblolly pine (Pinus taeda L.) seedling an influx of free amino acids from the megagametophyte accompanies germination and early seedling growth. The major component of this amino acid pool is arginine, which is transported rapidly and efficiently to the seedling without prior conversion. This arginine accounts for nearly half of the total nitrogen entering the cotyledons and is likely a defining factor in early seedling nitrogen metabolism. In the seedling, the enzyme arginase is responsible for liberating nitrogen, in the form of ornithine and urea, from free arginine supplied by the megagametophyte. In this report we investigate how the seedling uses arginase to cope with the large arginine influx. As part of this work we have cloned an arginase cDNA from a loblolly pine expression library. Analysis of enzyme activity data, accumulation of arginase protein and mRNA abundance indicates that increased arginase activity after seed germination is due to de novo synthesis of the enzyme. Our results suggest that arginase is primarily regulated at the RNA level during loblolly pine seed germination and post-germinative growth. 相似文献
4.
Xin Y. Li Feng H. Huang Edward E. Gbur Jr. 《In vitro cellular & developmental biology. Plant》1997,33(3):184-189
Summary The effect of polyethylene glycol (PEG) combined with abscisic acid (ABA) and KCl on somatic embryo development in loblolly
pine was investigated. Two embryogenic cell lines, which had not produced cotyledonary stage embryos using previously published
methods, were employed in this study. As a maturation medium, basal medium was supplemented with 0 to 10% PEG (MW 3350), 10
to 40 mg/l (37.8 to 151.3 μM) ABA, 0 or 10 mM KCl, 1.5 g/l activated charcoal, 30 g/l sucrose, and 6 g/l agar. Without PEG in the maturation medium, most somatic embryos
at stage 1 could not mature further. Embryogenic tissues on the maturation medium with 5 to 7.5% PEG consistently produced
stage 2 and stage 3 somatic embryos. PEG at 10% significantly decreased the number of stage 2 and 3 embryos compared to PEG
at 5 to 7.5% ABA at 40 mg/l (151.3 μM), combined with 7.5% PEG and 10 mM KCl, gave the maximum number of stage 3 embryos in both cell lines. ABA at 10 mg/l (37.8 μM) induced an over-proliferation of embryogenic tissues and generally failed to produce mature embryos. KCl also significantly
enhanced initial stage embryo formation and subsequent embryo maturation. 相似文献
5.
Wei Tang 《In vitro cellular & developmental biology. Plant》2000,36(6):488-491
Summary Desiccation tolerance can be induced by culturing somatic embryos of loblolly pine (Pinus taeda L.) on medium supplemented with 50 μM abscisic acid (ABA) and/or 8.5% polyethylene glycol (PEG6000). Scanning electron microscopy of desiccated somatic embryos showed that the size and external morphology of the desiccation-tolerant
somatic embryos recovered to the pre-desiccation state within 24–36 h, whereas the non-desiccation-tolerant somatic embryos
did not recover and remained shriveled, after rehydration. Peroxidase activity of desiccated somatic embryos increased sharply
after 1 d of desiccation treatment at 87% relative humidity (RH), and desiccation-tolerant somatic embryos had higher peroxidase
activity compared to sensitive somatic embryos. Higher peroxidase activity of desiccation-tolerant somatic embryos may have
allowed them to catalyze the reduction of H2O2 produced by drought stress, and protected them from oxidative damage. 相似文献
6.
Loblolly pine (Pinus taeda L.) produces an induced defensive hypersensitive response in inner bark colonized by the southern pine beetle, Dendroctonus frontalis Zimm. (Coleoptera: Scolytidae), and its associated fungi. Adult beetles forced to colonize the induced response tissue in a laboratory study constructed galleries that were the same length as adults boring in normal phloem. However, each female laid fewer eggs in the induced tissue. Larval and pupal mortality were also higher in this tissue when compared to surrounding phloem. Beetles colonizing trees in response to pheromone baits constructed less gallery and laid fewer eggs in induced tissue than in surrounding normal phloem. These results suggest that the lesions produced by the induced defense system in conifers may not only contain the growth of fungi inoculated into trees during the attack phase of beetle colonization, but may also affect survival of bark beetle progeny.
Résumé Une réaction hypersensible de défense a été induite dans les couches profondes de l'écorce de P. taeda colonisée par D. frontalis et le champignon qui lui est associé. Au laboratoire, des adultes, contraints de coloniser les tissus où une réaction hypersensible e été induite, ont foré des galeries de même longueur que celles creusées dans du phloème sain. Cependant les femelles ont pondu moins d'oeufs dans les tissus induits; les mortalités larvaires et nymphales étaient aussi plus fortes dans ce tissu que dans le phloème voisin. Les scolytes, ayant colonisé les arbres après attraction par des pièges à phéromones, forent moins de galeries et pondent moins d'oeufs dans le tissu induit que dans le phloème sain voisin. Ces résultats suggèrent que les lésions, provoquées par le système de défense induit des conifères, peuvent non seulement limiter la croissance du champignon inoculé dans l'arbre au cours de la colonisation des scolytes, mais aussi affecter la survie des descendants dans l'écorce.相似文献
7.
Xin Y. Li Feng H. Huang J. Brad Murphy Edward E. Gbur 《In vitro cellular & developmental biology. Plant》1998,34(1):22-26
Summary A culture medium that can efficiently produce mature somatic embryos was developed for loblolly pine (Pinus taeda L.). The medium contained maltose as a carbohydrate source and polyethylene glycol as an osmoticum. This medium formulation
significantly enhanced embryo maturation efficiency compared to a medium with only maltose, or with sucrose combined with
polyethylene glycol. Maltose at 4% and polyethylene glycol at 6% resulted in the highest embryo maturation efficiency; an
average of around 100 cotyledonary embryos were produced from 1 g of embryogenic tissue. These results suggested that previous
ineffective embryo maturation in loblolly pine may be due to the lack of the proper combination of osmoticum and carbohydrate
source. This embryo maturation method also improved morphology of cotyledonary embryos of loblolly pine. 相似文献
8.
9.
Loblolly pine (Pinus taeda L.) culture initiation was improved by the addition of abscisic acid (ABA) (3.7 µM), silver nitrate (20 µM), and guanosine 3,5-cyclic monophosphate, 8-bromo-, sodium salt (10 µM) to the medium and by raising cytokinin levels in the presence of 50 mg/l activated carbon (AC). Basal medium contained modified 1/2-P6 salts, 50 mg/l AC, Cu and Zn added to compensate for adsorption by AC, 1.5% maltose, 2% myo-inositol, 500 mg/l casamino acids, 450 mg/l glutamine, 2 mg/l -naphthaleneacetic acid (NAA), 0.55 mg/l 6-benzylaminopurine (BA), 0.53 mg/l kinetin, and 2 g/l Gelrite. Across 32 open-pollinated families initiation ranged from 0 to 53.4%, with an average of 17.9%. Further optimization of cytokinins to 0.63 mg/l BA and 0.61 mg/l kinetin along with the removal of ABA maintained initiation at 18.2% across 19 families. Survival of 2001 new initiations was tracked for 4–6 months. Survival averaged 28.8%. A test of 68 new initiations tracked closely for 4 months demonstrated that at least 80% of the cultures lost did not grow after transfer to the multiplication media, suggesting that many new initiations abort during the initiation process.Abbreviations ABA
Abscisic acid
- AC
Activated carbon
- BA
6-Benzylaminopurine
- 8-Br-cGMP
Guanosine 3,5-cyclic monophosphate, 8-bromo-, sodium salt
- NAA
-Naphthaleneacetic acid
Communicated by G.C. Phillips 相似文献
10.
Shortleaf pine (n = 93) and loblolly pine (n = 112) trees representing 22 seed sources or 16 physiographic populations were sampled from Southwide Southern Pine Seed
Source Study plantings located in Oklahoma, Arkansas, and Mississippi. The sampled trees were grown from shortleaf pine and
loblolly pine seeds formed in 1951 and 1952, prior to the start of intensive forest management across their native ranges.
Amplification fragment length polymorphism (AFLP) markers were developed and used to study genetic diversity and its structure
in these pine species. After screening 48 primer pairs, 17 and 21 pairs were selected that produced 794 and 647 AFLPs in shortleaf
pine and loblolly pine, respectively. High-AFLP-based genetic diversity exists within shortleaf pine and loblolly pine, and
most (84.73% in shortleaf pine; 87.69% in loblolly pine) of this diversity is maintained within physiographic populations.
The high value of unbiased measures of genetic identity and low value of genetic distance for all pairwise comparisons indicates
that the populations have similar genetic structures. For shortleaf pine, there was no significant correlation between geographic
distance and genetic distance (r = 0.28), while for loblolly pine there was a weak but significant correlation (r = 0.51). 相似文献
11.
Wei Tang Zhongchen Guo Fan Ouyang 《In vitro cellular & developmental biology. Plant》2001,37(5):558-563
Summary Mature zygotic embryos of eight (open-pollinated) families of loblolly pine (Pinus taeda L.) were cultured on eight different basal salt formulations, each supplemented with 36.2 μM 2,4-dichlorophenoxyacetic acid, 17.8 μM 6-benzyladenine, 18.6 μM kinetin, 500 mg l−1 casein hydrolysate, and 500 mg l−1
l-glutamine for 9 wk; embryogenic tissue was formed on cotyledons, hypocotyls, and radieles of mature zygotic embryos. Callus
was subcultured on the callus proliferation medium, the same as the induction medium but with one-fifth concentration of auxin
and cytokinin for 9 wk. On this medium a white to translucent, glossy, mucilaginous embryogenic callus containing embryogenic
suspensor masses (ESMs) was obtained. The highest frequency of explants forming embryogenic tissue, 17%, occurred on a modified
Murashige and Skoog salts basal medium containing the concentration of KNO3, Ca(NO3)2·4H2O, NH4NO3, KCl, ZnSO4·7H2O, and MnSO4·H2O, 720, 1900, 400, 250, 25.8, and 25.35 mg l−1, respectively. Embryogenic suspension cultures were established by culturing embryogenic callus in liquid callus proliferation
medium. Liquid cultures containing ESMs were transferred to medium containing abscisic acid, polyethylene glycols, and activated
charcoal for stimulating the production of cotyledonary somatic embryos. Mature somatic embryos germinated for 4–12 wk on
medium containing indole-butyric acid, gibberellic acid, 6-benzyladenine, activated charcoal, and reduced sucrose concentration
(15 g l−1). Two hundred and ninety-one regenerated plantlets were transferred to a perlite:peatmoss:vermiculite (1∶1∶1) mixture, then
the plants were transplanted to soil in the earth, and 73 plantlets survived in the field. 相似文献
12.
13.
Seedlings of loblolly pine (Pinus taeda L.) were grown under varying conditions of soil nitrogen and atmospheric carbon dioxide availability to investigate the interactive effects of these resources on the energetic requirements for leaf growth. Increasing the ambient CO2 partial pressure from 35 to 65 Pa increased seedling growth only when soil nitrogen was high. Biomass increased by 55% and photosynthesis increased by 13% after 100 days of CO2 enrichment. Leaves from seedlings grown in high soil nitrogen were 7.0% more expensive on a g glucose g–1 dry mass basis to produce than those grown in low nitrogen, while elevated CO2 decreased leaf cost by 3.5%. Nitrogen and CO2 availability had an interactive effect on leaf construction cost expressed on an area basis, reflecting source-sink interactions. When both resources were abundant, leaf construction cost on an area basis was relatively high (81.8±3.0 g glucose m–2) compared to leaves from high nitrogen, low CO2 seedlings (56.3±3.0 g glucose m–2) and low nitrogen, low CO2 seedlings (67.1±2.7 g glucose m–2). Leaf construction cost appears to respond to alterations in the utilization of photoassimilates mediated by resource availability. 相似文献
14.
15.
INTRODUCTIONRecombinant DNA technology is a powerful toolfor the introduction of foreign genes into longlivedperennials and fOr fundamelltal studies of gene expression. Using such techniques, we can overcomethe difficulties associated with the breeding of a long-lived perennial. At present, although considerablereseaxch effort has been devoted to the genetic en-gineering of fOrest trees, it has lagged behind ad-vances made in herbaceous crops due both to eco-nomics and the recalcitrant n… 相似文献
16.
In vitro propagation of loblolly pine via direct somatic organogenesis from mature cotyledons and hypocotyls 总被引:3,自引:0,他引:3
A high-efficiency two-step culture procedure for direct somaticorganogenesis in loblolly pine (Pinus taeda L.) resulting inthe formation of multiple shoot structures induced on cotyledons andhypocotyls of mature zygotic embryos is described. Mature zygoticembryos of eight genotypes of loblolly pine were used as explants toinduce direct somatic organogenesis with this two-step culture method,involving the induction and the differentiation of direct adventitiousshoots. After mature zygotic embryos of eight genotypes of loblolly pinewere cultured on induction medium containing 2,4-dichlorophenoxyaceticacid (2,4-D) or -naphthaleneacetic acid (NAA), 6-benzyladenine(BA), and kinetin for 2–3 weeks, embryos were transferred todifferentiation medium. Adventitious shoot regeneration via directsomatic organogenesis with the frequency of 8.7–27.8% wasobtained from mature zygotic embryo cultures of the genotypes tested.The highest mean number of 32.6 adventitious shoots per mature zygoticembryo was produced from genotype La. The tissue culture protocol of invitro shoot regeneration via direct somatic embryogenesis was optimizedafter examining the periods of the induction culture, chillingtreatment, glutamine concentration, and basic medium levels. Rooting wasachieved on TE medium supplemented with 0.5 mg/l indole-3-butyric acid(IBA), 0.5 mg/l gibberellic acid (GA3), and 1 mg/l6-benzyladenine (BA), and regenerated plantlets were established insoil. These results suggested that adventitious shoot regeneration viadirect somatic organogenesis could be useful for clonal micropropagationof some genotypes of loblolly pine and for establishing a transformationsystem of this coniferous species. 相似文献
17.
Xylem-specific gene expression in loblolly pine 总被引:9,自引:0,他引:9
18.
Kathleen D. Jermstad Andrew J. Eckert Jill L. Wegrzyn Annette Delfino-Mix Dean A. Davis Deems C. Burton David B. Neale 《Tree Genetics & Genomes》2011,7(3):457-468
The majority of genomic research in conifers has been conducted in the Pinus subgenus Pinus mostly due to the high economic importance of the species within this taxon. Genetic maps have been constructed for several
of these pines and comparative mapping analyses have consistently revealed notable synteny. In contrast, little genomic research
has been conducted on the Pinus subgenus Strobus, even though these pines have strong ecological relevance. We report a consensus genetic linkage map for sugar pine (Pinus lambertiana Dougl.) constructed with 399 single nucleotide polymorphisms markers derived from annotated genes. The map is 1,231 cM in
length and organized into 19 linkage groups. Two of the mapping populations were derived from trees that were segregating
for the major gene of resistance (Cr1) to Cronartium ribicola, the fungal pathogen responsible for white pine blister rust. The third mapping population was derived from a full-sib cross
segregating for partial resistance to white pine blister rust. In addition, we report the first comparative mapping study
between subgenera Strobus and Pinus. Sixty mapped markers were found in common between sugar pine and the loblolly pine reference map with 56 of them (93%) showing
collinearity. All 19 linkage groups of the sugar pine consensus map coaligned to the 12 linkage groups of the loblolly pine
reference map. The syntenic relationship observed between these two clades of pines provides a foundation for advancing genomic
research and genetic resources in subgenus Strobus. 相似文献
19.
Summary Somatic embryogenesis was induced in callus cultures derived from nucellar tissue of cashewnut (Anacardium occidentale L.). Callus was obtained from nucellar tissue after 3 wk of culture on semisolid Murashige and Skoog (MS) basal medium supplemented
with 2,4-dichlorophenoxyacetic acid (2,4-D, 5 μM)+gibberellic acid (GA3, 15 μM)+N6-benzyladenine (BA, 5 μM). This callus gave rise to an embryogenic mass after 9 wk on maintenance medium containing 2,4-D (10 μM)+GA3 (15 μM)+4% sucrose +0.5% activated charcoal +10% coconut water (CW) +0.05% casein hydrolysate (CH). The embryogenic mass, after
transfer to medium supplemented with 2,4-D (5 μM)+GA3 (30 μM)+4% sucrose +0.5% activated charcoal +10% CW +0.05% CH, gave rise to somatic embryos. The developmental stages of somatic
embryos were observed using light and stereo microscopes. Histological study of somatic embryo development was also carried
out. The present study would be useful for clonal propagation, and variety improvement in cashewnut, which is essential due
to its increasing demand and export potential. 相似文献
20.
W. T. Adams J. H. Roberds B. J. Zobel 《TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik》1973,43(7):319-322
Summary The effects of competition on the growth of families of loblolly pine (Pinus taeda, L.) seedlings were investigated. The experimental design made it possible to evaluate the effects of crowding on growth and to determine the types and magnitudes of intergenotypic interactions among pairs of families. The results showed that intergenotypic interactions were both highly variable and pronounced in their effect on early growth. Evidence was also found for precompetition cooperating interactions occurring among seedlings surrounded by neighbors of the same family. 相似文献