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1.
Observations on the vascular floral anatomy, carpel morphology and floral biology ofHeloniopsis orientalis are presented. The lower flowering pedicel has six large bundles which lack an enclosing sclerenchymatous sheath. At mid-pedicel,
branch bundles originate via radial divisions from each of these bundles. Subsequently, there is a vascular ring of 12 bundles
below the receptacle. The six smaller bundles which are derived from alternate pedicel bundles eventually establish all of
the ventral gynoecium supply. The six larger bundles supply the tepals, stamens and dorsal gynoecial vasculature. The simple
dorsals do not branch or fuse in their vertical ascent.
The ventral and placental supplies are far more complex. Fusion occurs between paired sets of the six smaller pedicel bundles
along the septal radii and results in a submarginal laminal ventral network. An independent ventral plexus is formed in each
septum and from each plexus two septal axials, of which the innermost has a reversed xylem-phloem disposition, and four placental
bundles are derived. Two placental bundles are associated with each septal axial. Basally the septa are fused centrally, but
are freed at mid-gymoecial height.
The broadly tri-lobed, tri-carpellate gynoecium is depressed terminally where the erect, hollow style with its capitate stigma
is attached. Dorsal grooves are present: the fruit is loculicidally dehiscent. There are no septal glands due to complete
lateral fusion of the septal wings. Basally each of the six equal tepals has a saccate nectary. The similarity in vascular
anatomy and carpel morphology of the AsianHeloniopsis and eastern North American endemic,Helonias bullata, justifies their position in the same tribe.
Research and publication supported in part by the M. Graham Netting Research Fund through a grant from the Cordelia Scaife
May Charitable Trust, the U. S.—Japan Cooperative Science Program Grant GF-41367, the Japan Society for the Promotion of Science,
and Grant-in-Aid No. 934053 from the Ministry of Education, Japan. 相似文献
2.
Abstract The pollination biology of Heloniopsis orientalis was investigated in the lowlands of south central Japan. The receptive stigma emerges from the perianth before the opening of the perianth, and anther dehiscence is late about two days for perianth opening. The flower therefore is protogynous even though no insects visit the unopen flowers. Receptivity of the stigma is maintained for about 8 days, and even the 10 day-old flower can produce seeds. Self-pollination may be rather common in H. orientalis , which is self-compatible, in particular in the flowers which open on days unfavorable for insect activity. Many species of Diptera and Hymenoptera forage on the flowers, and almost any insect can be their pollinator. Long life, self-compatibility of the flowers, and many kinds of pollinators seem to be factors favoring H. orientalis , which blooms in very early spring when the pollinator supply is unstable but which nevertheless bears many seeds. 相似文献
3.
4.
We have isolated and identified seven flavonoid compounds from the foliar extracts ofHeloniopsis orientalis, a member of Liliaceae, which is habituated at Namhansanseong and Maranggol (Jinburyung). All are glycosylated derivatives
of the flavonols isorhamnetin, kaempferol, and quercetin. Among them, quercetin 3-O-galactoside is the major compound, while
isorhamnetin 3-O-arabinosylgalactoside, isorhamnetin 3-O-digalactoside, kaempferol 3,7-O-galactoside, kaempferol 3-O-arabinosylgalactoside,
kaempferol 3-O-glycoside, and quercetin 3-O-arabinosylgalactoside are present in smaller amounts. Although the two populations
do not differ significantly in their overall flavonol profiles, their relative amounts indicate that flavonoid levels, especially
for isorhamnetin, are geographically controlled and specifically depend on the origin of the individual population. 相似文献
5.
The regeneration of shoot buds from callus cells in vitro is an important technique in modern plant genetic manipulation. Whilst it is clear that genetic factors play a major role in determining the ability of callus cells to become organized into regenerating shoot buds, the precise nature of these factors remains unknown. Here we show that callus derived from mutants of Arabidopsis thaliana which have reduced levels of endogenous bioactive gibberellins (GAs), or reduced responsivity to GAs, regenerates shoot buds more readily than does callus derived from wild-type controls. In addition, exogenous GA reduces, and exogenous paclobutrazol (a GA-biosynthesis inhibitor) increases, the frequency of shoot bud regeneration from wild-type callus. These results show that GA levels play a role in regulating shoot bud regeneration from callus, and suggest that variation in endogenous GA levels or responsivity may account for a major component of the genetic variation in shoot bud regeneration frequency described in other species. 相似文献
6.
Phan V. Chuong K. P. Pauls W. D. Beversdorf 《In vitro cellular & developmental biology. Plant》1987,23(6):449-452
Summary Protoplasts ofBrassica nigra (L.) Koch were isolated from stem peels of bolting racemes and cultured in 1.5 ml of VN1 liquid medium. The protoplasts in
the liquid medium were plated on top of half strength MS medium supplemented with 400 mg/liter glutamine, 15 mg/liter glutathione,
50 mg/literl-serine, 0.25 mg/liter 6-benzylaminopurine, 0.5 mg/liter 2,4-dichlorophenoxyacetic acid, 1.5% sucrose, and 5% mannitol, pH,
5.7, solidified with 0.3% agarose. Ten percent of calli obtained from the protoplasts developed into plantlets within 4 wk
after transfer onto 2N regeneration medium which contains MS salts plus 200 mg/liter casein hydrolysate, 0.625 mg/liter 6-benzylaminopurine,
0.625 mg/liter kinetin, 0.625 mg/liter 6-(γ,γ-dimethylallylamino)-purine, 0.625 mg/liter zeatin, 0.5 mg/liter 1-naphthaleneacetic
acid, 1.5% sucrose, and 0.4% agarose. THis is the first report of plant regeneration fromB. nigra protoplasts. 相似文献
7.
James A. Stamp Sheila M. Colby Carole P. Meredith 《Plant Cell, Tissue and Organ Culture》1990,22(2):127-133
Adventitious shoots developed from in vitro-grown leaves of Vitis vinifera cultivars Cabernet Sauvignon, French Colombard, Grenache, Thompson Seedless (syn. Sultana) and White Riesling, V. rupestris cv. St. George (syn. du Lot) and V. vinifera × rupestris cv. Ganzin 1. Leaf explants less than 15 mm long were excised from nodal cultures and cultured on Murashige and Skoog or Nitsch and Nitsch-based regeneration media with 0, 1, 2 or 4 mgl-1 6-benzylaminopurine (BAP). Adventitious shoots developed within 4 weeks at the petiolar stub and occasionally from wounded lamina tissues. Shoot organogenesis occurred only on media containing BAP and at a higher frequency with 2 mgl-1 than with 1 or 4 mgl-1. On media containing 2 mgl-1 BAP, 47, 67, 60, and 42%, respectively, of leaf explants of Cabernet Sauvignon, French Colombard, Thompson Seedless, and White Riesling produced adventitious shoots compared to 14, 14, and 29%, respectively, for Grenache, St. George, and Ganzin 1. Solid culture medium was superior to liquid medium and transfer frequency on solid medium did not affect the regeneration frequency. Further shoot growth was promoted by the transfer of regenerating tissues to fresh regeneration medium. More than 80% of explants initially producing adventitious buds exhibited further shoot growth, developing an average of more than 6 shoots each. Shoots rooted easily and the resulting plants appeared morphologically identical to parent vines. 相似文献
8.
D. Q. Binh L. E. Heszky G. Gyulai E. Kiss A. Csillag 《Plant Cell, Tissue and Organ Culture》1989,18(2):195-200
Callus was induced from seeds of Puccinellia distans (L.) Parl. on MS medium supplemented with 2 mgl-1 2,4-dichlorophenoxyacetic acid and 0.5 mgl-1 kinetin. Morphogenesis initiation was achieved during subculture on medium containing 0.1 mgl-1 2,4-D. From the point of morphogenetic capacity, 3 types of callus were selected. High frequency of plant regeneration was obtained by selection of embryogenic type of callus, and culture on N6 medium and N6 medium supplemented with kinetin (5–10 mgl-1), or kinetin (2 mgl-1) and IAA (0.5 mgl-1). A high ratio of albinos among regenerants was observed. 相似文献
9.
Jing Qin Mao Mohsin Abbas Zaidi John Thor Arnason Illimar Altosaar 《Plant Cell, Tissue and Organ Culture》2006,87(2):121-125
An in vitro regeneration system was developed in cowpea [Vigna unguiculata (L.) Walp.] Blackeye. Among several explants studied, shoot initiation response was observed from shoot apices of 3–5-day-old seedlings. The optimal medium for maximum shoot initiation comprised MS salts, B5 vitamins, 8.88 μM N
6-benzylaminopurine, 1 gl-1 casein hydrolysate, 342 μM L-glutamine, 3% sucrose, 0.3% phytagel, adjusted to pH 5.8. A shift in pH from 5.8 to 7.0 had no effect on shoot initiation and on number of shoots per explant. The highest shoot initiation frequency (77%) was obtained using this preferred medium, reaching a maximum of eight shoots per explant. For shoot elongation, 14 μM gibberellic acid was supplemented in the shoot initiation medium. Presence of indolebutyric acid in the rooting medium had no effect on root induction. The regenerated plants were fertile and developed normally. 相似文献
10.
Callus was initiated from in vitro grown immature leaf and ex vitro grown mature leaf and rhizome explants of Agave sisalana Perr. ex. Engelm, on MS medium containing 2,4-D (9.05 M) and kinetin (4.6 M) or 2,4-D (9.05 M), kinetin (4.6 M) and CH (1000 mg l–1) or mod. MS (NH4NO3, 1500 mg l–1) containing 2,4-D (9.05 M) and kinetin (4.6 M). Light was essential for callus formation which, however, was different in three types of explants on three different media compositions. Increasing NH4
+had a negative impact while addition of CH had a positive impact on callus formation. Shoot regeneration from callus from CH-supplemented medium only was achieved for rhizome and immature leaf tissues. The highest rate of regeneration was obtained with BA (26.6 M) as the sole hormone. Shoot buds g–1 callus varied according to BA concentrations. Shoot proliferation rate increased on half-strength MS medium containing BA (8.9 M). Microshoots developed on MS medium containing BA (2.22 M) and GA3 (1.44 M) and finally rooted on MS medium containing IAA (11.42 M). Acclimatized rooted plantlets are growing satisfactorily in ex vitro. This is the first report on plant regeneration via organogenesis of A. sisalana. 相似文献
11.
Plant regeneration via organogenesis in marigold 总被引:6,自引:0,他引:6
Vanegas Pablo E. Cruz–Hernández Andrés Valverde Ma. Elena Paredes–López Octavio 《Plant Cell, Tissue and Organ Culture》2002,69(3):279-283
Regeneration of whole plants of marigold (Tagetes erecta L.) was achieved by organogenesis using leaf explants. Leaf segments about 0.25 cm2 were taken from 3-week-old in vitro plantlets and cultured on MS basal medium containing BA with different auxins (NAA, 2,4-D and IAA). The exposure time of the explants on the regeneration medium was tested. The highest values for regeneration were obtained with BA (13.3 M) and IAA (17.1 M). Thirteen days was the best time of exposure of the explant to the regeneration medium for shoot induction. 相似文献
12.
Plant regeneration from seedling explants of green bean (Phaseolus vulgaris L) via organogenesis 总被引:1,自引:0,他引:1
Chandra I. Franklin Tony N. Trieu Robert A. Gonzales Richard A. Dixon 《Plant Cell, Tissue and Organ Culture》1991,24(3):199-206
Green bean (Phaseolus vulgaris L.) plants were regenerated from 3-day old seedling explants via organogenesis. The explants contained a cotyledon and a small portion (2–3 mm) of embryonic axis split in half. Explants were cultured on a defined medium containing glutamine as the sole nitrogen source. A ring of meristematic tissue was produced at the base of the axillary bud located at the cotyledonary node. The meristematic tissue was produced only if the axillary bud was present together with the cotyledon in the explant. Buds and shoots developed from the meristematic ring. Selected shoots produced roots when excised from the cluster of buds and transferred to root induction medium. Rooted shoots (plantlets) grew well and produced viable seeds when grown in the greenhouse. Histological studies revealed the origin of buds from the peripheral layers of the meristematic ring.Production of buds and shoots was a continuous process, so that new shoots could be removed from the explant for plantlet production every 10–14 days. With the cultivar Dark Red Kidney, an average of 49 buds and 8 shoots were regenerated per explant by 30 days after culture initiation. Sixty-seven percent of the shoots produced roots, and 90–95% of the plantlets survived greenhouse acclimatization to produce healthy plants. 相似文献
13.
Plant regeneration from callus cultures of several soybean genotypes via embryogenesis and organogenesis 总被引:17,自引:0,他引:17
Using callus derived from immature embryos, regeneration of viable plants was obtained in soybean (Glycine max (L.) Merr.). Depending on the composition of the medium, regeneration occurred via embryogenesis or via organogenesis. Embryogenesis resulted when embryos were plated on Murashige and Skoog (MS) medium containing 43 M -naphthaleneacetic acid. In work with the cultivar Williams 82, the addition of 5.0 M thiamine HCl increased embryogenesis from 33% to 58% of the embryos plated. Addition of 30 M nicotinic acid to the MS medium enhanced embryogenesis further to 76%. Organogenesis was obtained when medium containing 13.3 M 6-benzylaminopurine, 0.2 M and -naphthaleneacetic acid and four times the normal concentration of MS minor salts was used. Histological studies of these cultures confirmed the organogenic and embryogenic nature of the cultures, by demonstrating the formation of shoot buds and somatic embryos, respectively. Similar responses were obtained in all 54 genotypes tested in this manner. The cultures retained the ability to regenerate complete plants for at least 12 months and 12–15 subcultures. Seeds have been obtained from several regenerated plants and when grown in the field these produced normal-appearing fertile plants.Abbreviations BAP
6-benzylaminopurine
- 2,4-D
2,4-dichlorophenoxyacetio acid
- GA3
gibberellic acid
- IAA
indole-3-acetic acid
- IBA
indole-3-butyric acid
- MS
Murashige and Shoog (1962) medium
- NAA
-naphthaleneacetic acid
- picloram
4-amino-3,5,6-trichloropicolinic acid 相似文献
14.
B. N. S. Murthy Jerrin Victor Rana P. Singh R. A. Fletcher Praveen K. Saxena 《Plant Growth Regulation》1996,19(3):233-240
In vitro regeneration in chickpea (Cicer arietinum L.) was achieved by direct culture of mature seeds on Murashige and Skoog (MS) medium supplemented with either N-phenyl-N(-1,2,3-thidiazol-5-yl) urea (thidiazuron, TDZ) or N6-benzylaminopurine (BAP). Multiple shoots formed de novo without an intermediary callus phase at the cotyledonary notch region of the seedlings within 2 to 3 weeks of culture initiation. TDZ was found to be more effective compared to BAP as an inductive signal of regeneration. The former induced multiple shoot formation at all the concentrations tested (1 M to 100 M), although, maximum morphogenic response was observed at 10 M concentration. Addition of naphthaleneacetic acid (NAA) alone or in combination with BAP to the MS medium failed to invoke a similar response. When the TDZ supplemented medium was amended with L-proline, the resultant regenerants were mostly somatic embryos. Histological investigations confirmed the switch in the regeneration pathway from directly formed adventitious shoots to embryogenesis. For obtaining plantlets, adventitious shoots were rooted on MS medium supplemented with 2.5 M NAA; somatic embryos were germinated and established on MS medium. Normal plants were regenerated from both adventitious shoots and somatic embryos and transferred to soil.Abbreviations BAP
6-benzylaminopurine
- MS
Murashige and Skoog [14] basal medium
- NAA
naphthaleneacetic acid
- TDZ
thidiazuron [N-phenyl-N(-1,2,3,-thidiazol-5-yl)-urea] 相似文献
15.
Máthé Csaba Hamvas Márta M. Grigorszky István Vasas Gábor Molnár Erika Power J. Brian Davey Michael R. Borbély George 《Plant Cell, Tissue and Organ Culture》2000,63(1):81-84
Embryogenic cultures of the common reed [Phragmites australis (Cav.) Trin. Ex. Steud.] were induced on Murashige and Skoog (1962)-based medium with 2% (w/v) sucrose, B5 vitamins and 4.5
μM 2,4-dichlorphenoxyacetic acid. Four independent culture lines, two initiated from stem nodes and two from roots, were established.
These cultures underwent somatic embryogenesis. In one line of stem node origin, the somatic embryos germinated and developed
into plants, following transfer of embryogenic cultures to Murashige and Skoog (1962)-based medium lacking growth regulators,
with 108 ± 17 plants being recovered per 100 mg fresh weight of culture. In other lines, the somatic embryos developed roots,
but not shoots. Shoot regeneration via somatic embryogenesis offers potential as anin vitro system for physiological studies, including assessments of the response of common reed to environmental pollutants.
This revised version was published online in June 2006 with corrections to the Cover Date. 相似文献
16.
Camille L. Hyde Gregory C. Phillips 《In vitro cellular & developmental biology. Plant》1996,32(2):72-80
Summary Chile pepper (Capsicum annuum L.) plants were regenerated from cotyledon explantsin vitro in four major stages: bud induction, bud enlargement, shoot elongation, and root development. Bud induction medium contained
0.5 mg/L (2.9μM) indole-3-acetic acid and 2 mg/L (8.9 μM) N6-benzyladenine. Bud enlargement occurred, and an occasional shoot appeared when medium with 2 mg/L (6μM) gibberellic acid, 2 mg/L (8.9 μM) N6-benzyladenine, and 5 mg/L (29.4 μM) silver nitrate was used. Most shoots elongated after placement on a third medium without plant growth regulators or on fresh
plates of bud enlargement medium. Incubations were for 2, 2, and 4 weeks, respectively, at 28.5°C and continuous light. Treatment
with silver nitrate was necessary for multiple shoot production and elongation to occur in the third culture stage and was
most effective when present in the second-stage medium but not in the bud induction medium. Sixteen to 26% of the shoots rooted
in medium with 1 mg/L (5.4 μM) 1-naphthaleneacetic acid after 1 month. Additional shoots transferred to a second rooting medium with 0.1 or 1.0 mg/L (0.54
or 5.4 μM) 1-naphthaleneacetic acid developed roots, increasing the overall rooting efficiency to 70–72%. Most rooted shoots grew well
and produced viable seeds when grown in the greenhouse. Other cytokinins tested for plant regeneration were zeatin and thidiazuron.
Zeatin induced few shoots and fewer well-developed plants. Thidiazuron induced multiple shoots 4 months after culture began,
but many were small and did not elongate further. Phytagar tissue culture grade proved superior to other agars tested, increasing
bud induction frequency from 0-33% to 80–93% and eliminating explant hyperhydricity. 相似文献
17.
Summary Axillary and terminal buds from suckers of Ananas comosus cv. Phuket were established on Murashige and Tucker-based (MT) medium with 2.0 mgl−1 (9.8 μM) indolebutyric acid, 2.0 mgl−1 (10.74 μM) naphthaleneacetic acid, and 2.0 mgl−1 (9.29 μM) kinetin, followed by multiplication on Murashige and Skoog-based (MS) medium containing 2.0 mgl−1 (8.87 μM) benzyladenine (BA) to provide a continuous supply of axenic shoots. Leaves, excised from such cultured shoots, produced
adventitious shoots from their bases when these explants were cultured on MS medium containing 0.5 mgl−1 (2.26 μM) 2,4-dichlorophenoxyacetic acid (2,4-D) and 2.0 mgl−1 (8.87 μM) BA. Embryogenic callus was produced when leaf explants were cultured on MS medium with 3.0 mgl−1 (12.42 μM) 4-amino-3,5,6-trichloropicolinic acid (picloram). Somatic embryos developed into shoots following transfer of embryogenic
tissues to MS medium with 1.0 mgl−1 (4.44 μM) BA. Cell suspensions, initiated by transfer of embryogenic callus to liquid MS medium with 1.0 mgl−1 (4.14 μM) picloram or 1.0 mgl−1 (4.52 μM) 2,4-D, also regenerated shoots by somatic embryogenesis, on transfer of cells to semisolid MS medium with 1.0 mgl−1 (4.44 μM) BA. All regenerated shoots rooted on growth regulator-free MS medium, prior to ex vitro acclimation and transfer to the glasshouse. These studies provide a baseline for propagation, conservation, and genetic manipulation
of elite pineapple germplasms. 相似文献
18.
Karla K. Valenzuela-Sánchez Raul E. Juárez-Hernández Andrés Cruz-Hernández Víctor Olalde-Portugal María Elena Valverde Octavio Paredes-Lopez 《In vitro cellular & developmental biology. Plant》2006,42(4):336-340
Summary Indirect organogenesis was developed in Agave tequilana. Leaf segments and meristematic tissue from the central head (‘pi?a’) were evaluated as explant sources. A minimal-sized
explant with high bud-forming capacity (19.5 BFC) was obtained through a cross section of meristematic tissue from in vitro plantlets. In callus culture, the best growth response was due to naphthalene acetic-acid (NAA) presenting a contrasting
response compared to 2,4-dichlorophenoxyacetic acid (2,4-D). Regeneration from meristem segments and callus was obtained using
1.1 μM 2,4-D and 44 μM 6-benzylaminopurine (BA). The regeneration capacity of callus was maintained for 3 mo. Shoots regenerated were rooted in
a hormone-free MSI medium and acclimatized in a greenhouse with a 100% survival. 相似文献
19.
Multiple shoots differentiated from hypocotyl explants of Sesbania aculeata (Pers.) syn S. cannabina (Retz.) Pers., a leguminous woody shrub, when cultured on Murashige and Skoog's basal medium supplemented with auxin (IBA, NAA) or auxin and cytokinin (IBA + BAP, NAA + BAP). Shoot budding occurred directly from the explant as well as from callus. Differentiation of shoot and root occurred in one step in the same concentration of auxin or auxin and cytokinin. Elongation of shoots occurred in the shoot induction medium. 相似文献
20.
María Laura Vidoz Pablo Klusacek Hebe Yolanda Rey Luis Amado Mroginski 《Plant Cell, Tissue and Organ Culture》2006,86(1):111-115
In vitro protocols for plant regeneration of Arachis correntina through both somatic embryogenesis and organogenesis were developed using immature leaves as explants. Morphologically normal somatic embryos were obtained on culture media composed of 20.70 or 41.41 μM picloram (PIC) with the addition of 0.044 μM 6-benzylaminopurine (BA), resulting in a 33 and 24% of conversion into plants, respectively. The source of explants and the developmental stage of the leaves had a marked effect on somatic embryogenesis. The second folded immature leaves from in vitro growing plants were the most responsive producing up to 30% embryogenesis in MS+41.41 μM PIC. Embryos converted into plants after transfer to MS medium devoid of growth regulators and these plants were successfully acclimatised. Adventitious shoots were obtained on culture media supplemented with 2,4-dichlorophenoxyacetic acid (2,4-D) or naphthaleneacetic acid (NAA) with or without 0.044 μM BA, achieving plant regeneration in the induction media. The highest percentage of bud formation was obtained on culture medium composed of␣MS+10.74 μM NAA+0.044 μM BA (12.5%). Roots were formed on all culture media tested. Regenerated plants were transferred to pots and grew well under greenhouse conditions. 相似文献