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1.
Sun Hee Woo Arun Nair Taiji Adachi Clayton G. Campbell 《In vitro cellular & developmental biology. Plant》2000,36(5):358-361
Summary Plants were regenerated from cotyledon tissue of greenhouse grown seedlings of common buckwheat (Fagopyrum esculentum Moench.). Maximum callus regeneration was induced on Murashige and Skoog (MS) medium containing 2,4-D (2.0 mg l−1) and kinetin (KIN) (0.2 mg l−1) and either 3 or 6% sucrose. Friable callus was transferred to MS media containing KIN and benzylaminopurine (BAP) at varied
concentrations for embryogenic callus induction. The optimum medium for embryogenic callus induction was found to be MS medium
supplemented with 0.2 mg l−1 KIN, 2.0 mg l−1 BAP and 3% (w/v) sucrose. Variation of sucrose from 3 to 6% did not show any significant effect on callus induction or embryogenesis.
Regeneration of embryonic callus varied from 13 to 32%. Whole plants were obtained at high frequencies when the embryogenic
calluses with somatic embryos and organized shoot primordia were transferred to half-strength MS media with 3% sucrose. Regenerated
plants after acclimation were transferred to greenhouse conditions, and both vegetative and floral characteristics were observed
for variation. This regeneration system may be valuable for genetic transformation and cell selection in common buckwheat. 相似文献
2.
In vitro regeneration of plantlets and multiplication of Sesbania bispinosa (Jacq.) W.F. Wight plants from cultured callus tissue were demonstrated. Callus was established from both cotyledons and mature leaflets on Murashige and Skoog (MS) basal medium supplemented with BAP (0.5 mg/l) and 2,4-D (2 mg/l). Callus mediated shoot bud differentiation was studied under defined nutritional, hormonal and cultural conditions. Various concentrations of BAP or kinetin (Kn) with coconut milk (CM) in MS media induced different levels of shoot bud differentiation as well as multiplication. Multiple shoot bud differentiation occurred in most of the primary calli. The best medium for shoot bud differentiation from cotyledon derived callus, contained BAP (2 mg/l) and 15% CM (V/V). More efficient shoot bud organogenesis was recorded with BAP than Kn. Supplementation with CM in MS media accelerated shoot bud organogenesis in differentiating callus tissue. Rooting of differentiated shoots was achieved by a three step culture procedure involving (a) MS solid medium containing IBA (2 mg/l), (b) growth regulator free half strength MS medium with 1% charcoal, and (c) half strength MS liquid medium free of vitamins, growth regulators and charcoal.Abbreviations IAA
indoleacetic acid
- IBA
indole-3-butyric acid
- NAA
naphthaleneacetic acid
- 2,4-D
2,4-dichlorophenoxyacetic acid
- BAP
6-benzylaminopurine
- Kn
kinetin
- CM
coconut milk
- MS
Murashige and Skoog's medium
- SBI
shoot bud inducing medium 相似文献
3.
The anthers of three genotypes ofLycopersicon esculentum, viz. cv. HS-101, cv. HS-102 and an F1 hybrid (Montfavet 63-4xHS-101) in different stages of development were cultured in various defined nutritive media. Only
anthers containing microspores in the early uninucleate stage were found to respond with the culture medium in the formation
of androgenic callus. The DGII medium with 2 mg l−1 NAA and 1 mg 1−1 kinetin was found to be best for callus induction but MS medium supplemented with 2 mg l−1 2,4-D and 0.1 mg 1−1 BAP favoured proliferation and growth of the callus. The androgenic microspores followed the ‘B’ type pathway of androgenesis
in the formation of callus.
Induction of tracheids in the callus could be achieved by supplementing the basal medium with NAA and kinetin or 2,4-D and
BAP. Initiation of vessel elements and cambium were favoured by addition of NAA and kinetin and that of the phloem in the
presence of 2,4-D and BAP in the basal medium, suggesting that the hormonal requirements for production of different elements
of the vascular system in androgenic callus are different. Although roots could be induced from the callus, shoot differentiation
could not be achieved under cultural conditions. 相似文献
4.
Highly efficient (>90%) protocols were developed for in vitro regeneration from de-embryonated cotyledon explants of peanut
(Arachis hypogaea L.). Phytohormone combinations and concentrations, explant source and orientation, period of incubation and the response
of genotypes were examined for optimization of the regeneration efficiency. Adventitious shoot primordia could be induced
from de-embryonated cotyledon explants when (1) the proximal end of the explant was kept in contact with the shoot induction
medium-I supplemented with 5 mg l−1 BAP + 2 mg l−1 2,4-D for 4 weeks, or (2) the distal end was kept in contact with shoot induction medium-II supplemented with only BAP at
20 mg l−1 for the first 2 weeks, followed by subculture in the same medium containing 15 mg l−1 BAP for the next 2 weeks. Orientation of placing the explant on the above media was critical for in vitro regeneration. The
factors affecting the morphogenic responses like, repetitive organogenesis, shoot elongation, in vitro flowering and rhizogenesis
were examined. Shoot bud formation was genotype independent. Histological studies showed multicellular origin of adventitious
shoot primordia. The protocols gave healthy and fertile plants within 4 months. 相似文献
5.
Sanjay Gupta V. K. Khanna Rameshwar Singh G. K. Garg 《Plant Cell, Tissue and Organ Culture》2006,86(3):379-388
Development of suitable strategy to overcome genotypic limitations of in vitro regeneration in sorghum would help utilize high yielding but poor tissue culture responsive genotypes in genetic manipulation programmes. A factorial experiment was conducted with two explants (immature embryos and inflorescences), eight genotypes (five Sorghum sudanense and three Sorghum bicolor genotypes), three levels of 2,4-D (1 mg l−1, 3 mg l−1, and 5 mg l−1), and two levels of kinetin (0.0 mg l−1 and 0.5 mg l−1). The induced callus was transferred to the regeneration media with factorial combinations of IAA (1.0 mg l−1 and 2.0 mg l−1) and kinetin (0.5 mg l−1 and 1.0 mg l−1). S. sudanense regenerated at significantly higher frequency (38.91%) and produced shoots more intensely (2.2 shoots/callus) than S. bicolor (26.93%, 1.26 shoots/callus). Immature inflorescences regenerated at a much higher frequency (46.48%) and produced significantly more number of shoots (2.71 shoots/callus) than immature embryos (22.35%, 0.99 shoots/callus). Moreover, differences for plant regeneration between genotypes of the same species were minimal when using immature inflorescences. Increase in the 2,4-D concentration in callus induction media exhibited inhibitory effect on callus induction, growth, shoot induction and number of shoots/callus but inclusion of kinetin in callus induction media improved these responses. Use of immature inflorescence explant and inclusion of kinetin in callus induction media could overcome genotypic limitations of plant regeneration to a large extent. The extent of variability, heritability and expected genetic advance was more in plant regeneration traits than in callus induction traits. This indicated that the variability in respect of these attributes in the genotypes may be due to the additive gene action and selection of genotypes for these characters would be rewarding. 相似文献
6.
Multiple shoot formation from the medicinal plant Plumbago rosea Linn. was induced on callus from stem segments on Murashige & Skoog media containing auxin and cytokinin. 2,4-D (2.5 mg l-1) and kinetin (1.5 mg l-1) added to the media gave best callus production, while BAP (2 mg l-1) plus NAA (1.0 mg l-1) induced shoot formation from that callus. Numerous shoots with roots could be produced by transferring shoots to media containing IBA (1.5 mg l-1). Regenerated plantlets were transferred to pots and 60% survived. 相似文献
7.
Induction of callus and plant regeneration in Vicoa indica 总被引:1,自引:0,他引:1
Callus cultures were initiated from the stem and leaf explants of aseptically grown Vicoa indica. A simple method is described for plant regeneration from callus and the rapid multiplication of the plants thus obtained. Callus initiation was optimum in Gamborg B5 (B5) basal medium containing either 2.0 mg l-1 naphthaleneacetic acid (NAA) with 0.2 mg l-1 kinetin (Kn) or 2.0 mg l-1 6-benzylaminopurine (BAP) with 0.2 mg l-1 NAA. The calli initiated on B5 medium were able to proliferate on both Murashige and Skoog (MS) and B5 basal medium. Shoot primordia were obtained from greenish callus on passage to B5 basal medium containing 3.0 mg l-1 BAP and 1.0 mg l-1 Kn. On further subculture onto B5 medium containing 0.2 mg l-1 Kn the shoot primordia developed into plantlets. 相似文献
8.
R. K. Sinha K. Majumdar S. Sinha 《In vitro cellular & developmental biology. Plant》2000,36(5):370-373
Summary Petiolar and distal cotyledonary segments (PCS and DCS) of Albizia chinensis were cultured on Murashige and Skoog's (MS; 1962) medium and induced to form adventitious shoot buds in the presence of either
cytokinins 6-benzylamino purine (BAP), kinetin (KN) or thidiazuron (TDZ). Superiority of BAP in inducing shoot bud and differentiation
was observed. PCS was more morphogenic to shoot bud differentiation than DCS. TDZ was highly effective in inducing shoot buds,
but arrested shoot growth, while KN produced more callus during differentiation of shoots. Rapid and high rate of shoot multiplication
per explant was achieved through subculture in MS medium containing BAP (1.0 mg l−1) and indole-3-acetic acid (IAA) (0.5 mg l−1). BAP at low concentration was required to enhance shoot multiplication and elongation. Successful rooting of regenerated
shoots was carried out in a two-step culture procedure in MS media with indole-3-butyric acid (IBA) (2.0 mg l−1) and subsequent subculture in IBA-free medium. 相似文献
9.
C. Pugliesi P. Megale F. Cecconi S. Baroncelli 《Plant Cell, Tissue and Organ Culture》1993,33(2):187-193
A method of plant regeneration from cotyledons ofHelianthus tuberosus, Helianthus annuus ×Helianthus tuberosus and for the backcross of the interspecific hybrids onH. annuus was developed. Induction of somatic embryogenesis and plantlet regeneration from anther culture of the interspecific hybridsH. annuus ×H. tuberosus is reported.Cotyledons were cultured on Murashige and Skoog basal medium (MS) supplemented with indole-3-acetic acid (IAA) and 6-furfurylaminopurine (kinetin) or N6-benzylaminopurine (BAP). Shoot regeneration occurred on most of the media tested, but the best results were obtained on media with a high concentration of cytokinins (BAP or kinetin: 4 mg l–1) and lower concentration of auxin (IAA: 0.5–1 mg l–1).Embryogenic callus and adventitious buds were initiated from only two anthers of the hybridH. annuus ×H. tuberosus cultured on the MS medium containing BAP (0.2 mg l–1) and 1-naphtalenacetic acid (NAA: 0.1 mg l–1). Prolonged culture of these embryogenic calli and buds on the original medium with successive subculture on MS basal medium without growth regulators resulted in embryo formation and shoot differentiation. The plantlets, after rooting, were established in soil. 相似文献
10.
R. K. Jain J. B. Chowdhury D. R. Sharma W. Friedt 《Plant Cell, Tissue and Organ Culture》1988,14(3):197-206
Conditions were established for efficient plant regeneration from cotyledon explant calli in different cultivars ofBrassica juncea, B. campestris andB. carinata on Murashige & Skoog's (MS) medium supplemented with various combinations of cytokinins and auxins. Regeneration frequency, however, varied with genotype and the different growth hormone combinations in media. Almost in all species, MS medium with zeatin (1.0 mg 1-1) and IAA (0.1 mg l-1) was found to be best for shoot organogenesis followed by the ones containing high kinetin (2.0 mg l-1) and low IAA (0.02 or 0.2 mg l-1) concentrations. On these media, the cotyledonary explants invariably underwent callusing followed by multiple shoot formation, which could be separated and subcultured for further propagation. Number of shoots per cotyledon explant cultured varied from 0 to as many as 50. InB. juncea andB. campestris, the regeneration frequency declined sharply in the absence of auxin in medium. BAP in combination with NAA yielded no or a reduced number of shoots. Shoot organogenesis also declined with the reduction in photoperiod from continuous light to 16 hours. Shoots were easily rooted during prolonged incubation on the same medium and whole plants were transferred to pots in the greenhouse and grown to maturity.Abbreviations BAP
6-benzylaminopurine
- KIN
kinetin
- IAA
indole-3-acetic acid
- MS
medium after Murashige & Skoog [8]
- NAA
-napthaleneacetic acid
- ZEA
Zeatin 相似文献
11.
Callus cultures of Prosopis tamarugo Phil (Leguminosae, Sub family-Mimosoideae) were established from hypocotyls and cotyledons on MS medium supplemented with NAA (2.0 mg l-1) and BAP (0.2 mg l-1). Regeneration through various juvenile explants was obtained on hormone-free and high cytokinin containing Murashige and Skoog's medium. Multiple shoot buds formation was observed from the embryonic axis on MS medium incorporated with BAP (5.0 mg l-1)). Elongation of shoot buds was observed on subsequent transfer to MS medium with BAP (1.0–2.5 mg l-1) or without BAP. Explants containing apical meristem showed higher number of shoot formation at an early period. De novo shoot buds formation through callus morphogenesis was observed at the base of differentiated shoots on high cytokinin containing medium. All the manipulations of salt strength of MS, nitrogen, carbon, ascorbic acid and polyamines failed to induce organogenesis in isolated callus. In vitro produced shoots were rooted on MS medium supplemented with IBA or NAA singly or in combination.Abbreviations HC
high cytokinin (BAP 5.0 mg l-1)
- BAP
6-benzyl amino purine
- IBA
indole-3-butyric acid
- HF
hormone free
- NAA
I-naphthalene acetic acid
- MS
Murashige & Skoog 相似文献
12.
Optimization of the conditions for an efficient induction of somatic embryogenic calli and regeneration of plants from mature seeds of japonica rice cultivars was attempted. The number, color, size, shape, and appearance time of the induced embryogenic calli varied among the rice cultivars depending on the type of basal medium (LS, MS, N6). Presence of adequate amount of sucrose in the medium was an absolute requirement for embryogenic callus formation and shoot induction. Induction of the embryogenic calli, whose overall rates ranged from 30 to 56%, was most efficient in N6 medium supplemented with 3.0 mg l–1 of 2,4-D and 30 g l–1 of sucrose. Agar concentration in the regeneration medium was also critical for the shoot induction. Kinetin was found to be more effective for shoot regeneration compared with BA, while the highest shoot regeneration frequencies were observed when either cytokinin was combined with high concentration (2.0 mg l–1) of NAA. The optimal concentration of kinetin for the highest shoot regeneration frequency (6777%) was different among the cultivars tested. The embryogenic calli-derived shoots rooted on a plant growth regulator-free MS medium were successfully established in soil, producing fertile seeds. 相似文献
13.
S. J. Ochatt 《Plant Cell, Tissue and Organ Culture》1991,25(2):161-167
Leaf protoplasts of axenic shoot cultures of Lonicera nitida cv Maigrun underwent sustained division to give multicellular colonies (microcalli) on a modified, ammonium-free MS (Murashige & Skoog) medium containing 0.5 mg l-1 NAA (1-naphthaleneacetic acid), 1.0 mg l-1 BAP (6-benzylaminopurine) and 150 mg l-1 casein enzymatic hydrolysate. Callus was produced upon transfer of cell colonies to MS medium with 2.0 mg l-1 NAA and 0.2 mg l-1 BAP. About 110 days from isolation protoplast-derived shoots were regenerated on a half-strength MS medium with 0.01 mg l-1 NAA, 5.0 mg l-1 BAP, 0.5 mg l-1 zeatin and a complex mixture of group B vitamins. The replacement of such mixture by 250 mg l-1 casein enzymatic hydrolysate promoted rhizogenesis in calli, with shoot buds being subsequently regenerated from the protoplast-derived roots. Micropropagation of protoplast-derived shoots (of either origin) was difficult, due to a strong apical dominance, but could be accomplished by transferring single-node explants to half-strength MS medium with 1.5 mg l-1 BAP. Such shoots were, in turn, successfully rooted and transferred to the glasshouse where they completed acclimatization.Abbreviations BAP
6-benzylaminopurine
- CPW
Power et al. (1989) medium
- 2,4-D
2,4-dichlorophenoxyacetic acid
- FDA
fluorescein diacetate
- F.P.E.
final plating efficiency
- f.wt.
fresh weight
- IAA
4-indole-3yl-acetic acid
- IBA
4-indole-3yl-butyric acid
- I.P.E.
initial plating efficiency
- MES
2-N-morpholinoethane sulfonic acid
- M.P.E.
intermediate plating efficiency
- MS
Murashige & Skoog (1962) medium
- NAA
1-naphthaleneacetic acid
- PVP-10
polyvinylpirrolidone
- Av MW 10,000, TIBA
2,3,5-tri-iodobenzoic acid
- Z
zeatin 相似文献
14.
In vitro organogenesis and plant regeneration from unpollinated ovary cultures of Azadirachta indica
A novel method of organogenesis in neem (Azadirachta indica A. Juss.) from unfertilized ovaries is described. The Murashige and Skoog’s (MS) medium with 9 % sucrose, 1 μM 2,4-dichlorophenoxyacetic
acid (2,4-D) and 5 μM 6-benzylaminopurine (BAP) was the best for callus induction from unfertilized ovaries. However, further
proliferation of callus occurred better on MS medium supplemented with 0.5 μM 2,4-D either alone or in combination with 4.5
μM kinetin. Maximum shoot regeneration (78 %) was observed when calli, induced from ovaries of 4 mm size flower buds and proliferating
on MS + 0.5 μM 2,4-D, were subcultured to MS medium containing 5 μM BAP. Histological analysis revealed that 4 mm sized flower
bud corresponds to a 2-nucleate stage of embryo sac. The shoots were then multiplied by forced axillary branching on MS medium
supplemented with 1.0 μM BAP and 250 mg dm−3 casein hydrolysate. The shoots could be rooted on 1/4 strength MS medium supplemented with 0.5 μM indole-3-butyric acid (IBA)
at a frequency of 79 %. Cytological analysis by root tip squash preparations revealed that all the plantlets were diploids.
These plants were subsequently hardened and established in soil with transplantation rate of 81.8 %. 相似文献
15.
A new, endosperm-supported callus induetion method was developed using mesocotyls of mature wheat embryos. After seed germination under aseptic condition, most of the germ tissues were cut off and only a few mm of the mesocotyl tissue with the scutellum was used for callus induction. The seeds were placed furrow downwards in 2,4-D solution (6–8 mg l-1). Proliferating callus tissues were already observed on the cut surface of the mesocotyls on the 2nd day after inoculation. On the MS nutrient medium, callus formation from the isolated scutella with attached mesocotyls was negligible even after 6 days. For shoot and root regeneration, the calli produced up to 10 days were removed from the seeds and transferred onto a hormone-free MS medium. As shown by histological methods, the plantlets regenerated via organogenesis. 相似文献
16.
P. Jha C. B. Yadav V. Anjaiah V. Bhat 《In vitro cellular & developmental biology. Plant》2009,45(2):145-154
An efficient in vitro plant regeneration protocol through somatic embryogenesis and direct shoot organogenesis has been developed for pearl millet
(Pennisetum glaucum). Efficient plant regeneration is a prerequisite for a complete genetic transformation protocol. Shoot tips, immature inflorescences,
and seeds of two genotypes (843B and 7042-DMR) of pearl millet formed callus when cultured on Murashige and Skoog (MS) medium
supplemented with varying levels of 2,4-dichlorophenoxyacetic acid (2,4-D; 4.5, 9, 13.5, and 18 μM). The level of 2,4-D, the
type of explant, and the genotype significantly effected callus induction. Calli from each of the three explant types developed
somatic embryos on MS medium containing 2.22 μM 6-benzyladenine (BA) and either 1.13, 2.25, or 4.5 μM of 2,4-D. Somatic embryos
developed from all three explants and generated shoots on MS medium containing high levels of BA (4.4, 8.8, or 13.2 μM) combined
with 0.56 μM 2,4-D. The calli from the immature inflorescences exhibited the highest percentage of somatic embryogenesis and
shoot regeneration. Moreover, these calli yielded the maximum number of differentiated shoots per callus. An efficient and
direct shoot organogenesis protocol, without a visible, intervening callus stage, was successfully developed from shoot tip
explants of both genotypes of pearl millet. Multiple shoots were induced on MS medium containing either BA or kinetin (4.4,
8.8, 17.6, or 26.4 μM). The number of shoots formed per shoot tip was significantly influenced by the level of cytokinin (BA/kinetin)
and genotype. Maximum rooting was induced in 1/2 strength MS with 0.8% activated charcoal. The regenerated plants were transferred
to soil in pots, where they exhibited normal growth. 相似文献
17.
Kallak Henni Reidla Maere Hilpus Ille Virumäe Kai 《Plant Cell, Tissue and Organ Culture》1997,51(2):127-135
For callus induction, shoot tips and nodal or internodal stem segments of carnation cultivars (Coral, Jaguar, Salome and Sarinah)
were grown on MS basal medium with 2,4-dichlorophenoxyacetic acid and kinetin. To achieve organogenesis, calli were transferred
onto MS medium without or with growth regulators (indoleacetic acid, naphthaleneacetic acid, indolebutyric acid, kinetin,
benzyladenine) in different combinations. Shoot primordia emerged from the subsurface meristemoids of calli, roots developed
from the inner callus cells. The effects of genotype, explant source and growth regulators on callus-mediated organogenesis
differently manifested themselves in caulogenesis and rhizogenesis, respectively. The number of root-forming calli most of
all depended on genotype and least of all on explant source. Unlike rhizogenesis, caulogenesis essentially depended on explant
source: internodal calli of all the tested cultivars practically missed the shoot formation ability. The number of caulogenetic
calli from apical-nodal segments significantly depended on genotype, but was also affected by growth regulators.
This revised version was published online in June 2006 with corrections to the Cover Date. 相似文献
18.
An efficient, highly reproducible system for plant regeneration via somatic embryogenesis was developed for Cenchrus ciliaris genotypes IG-3108 and IG-74. Explants such as seeds, shoot tip segments and immature inflorescences were cultured on Murashige and Skoog (MS) medium supplemented with 2.0–5.0 mg dm?3 2,4-dichlorophenoxyacetic acid (2,4-D) and 0.5 mg dm?3 N6-benzyladenine (BA) for induction of callus. Callus could be successfully induced from all the three explants of both the genotypes. But the high frequency of embryogenic callus could be induced only from immature inflorescence explants. Somatic embryos were formed from nodular, hard and compact embryogenic calli when 2,4-D concentration was gradually reduced and BA concentration increased. Histological studies of somatic embryos indicated the presence of shoot apical meristem with leaf primordia. Ultrastructural details of globular and scutellar somatic embryos further validated successful induction and progression of somatic embryogenesis. Shoots were differentiated upon germination of somatic embryos on MS medium containing 2,4-D (0.25 mg dm?3) and BA or kinetin (1–5 mg dm?3). Roots were induced on ½ MS medium containing charcoal (0.8 %), and the regenerated plants transferred to pots and established in the soil showed normal growth and fertility. 相似文献
19.
Root, hypocotyl and cotyledonary explants of niger (Guizotia abyssinica Cass) CV. Sahyadri were aseptically cultured on Murashige and Skoog's basal medium (MS) containing BAP and kinetin. Multiple shoot regeneration was induced from hypocotyl and cotyledonary explants while root explants produced only callus on MS medium supplemented with BAP. BAP (1 mg l-1) was optimum for shoot regeneration. Regenerated shoots were transferred to MS medium without auxins, with auxins and with increasing concentrations of sucrose for rooting. Complete plantlets were obtained in all cases; however, 0.5 mg l-1 NAA was the best for induction of roots. Ninety-seven per cent of the plantlets survived and completed their life cycle when transferred to natural conditions.Abbreviations BAP
6-benzylamino purine
- NAA
-naphthaleneacetic acid
- IAA
indole-3-acetic acid
- IBA
indole-3-butyric acid 相似文献
20.
A short-term regeneration system from leaf-base-derived callus of wheat (Triticum aestivum L.) was developed. Embryogenic callus formation and shoot regeneration were achieved from the first basal segments of 3–4-day-old seedlings. Callus formation frequency as well as plantlet regeneration frequency was dependent on the composition of basal medium and the concentration of 2,4-dichlorophenoxyacetic acid (2,4-D). MS medium with 2,4-D 4.5–9.0 mol l–1 was optimal for the culture of wheat leaf base. Effects of different combinations of plant growth regulators, which were added in either callus induction medium or shoot regeneration medium, were tested. Adding of BAP in callus induction medium shortened the time of shoot emergence but could not improve the producing of embryogenic calli and green plantlets. Optimal ratio of 2,4-D, BAP and NAA gave similar regeneration frequency to control. Existence of cytokinins in regeneration medium had no effect on increasing the regeneration frequency. The regenerants could grow to normal, fertile plants after they were transferred into soil. 相似文献