scholarly journals Effect of seasonal collection on callus Induction, proliferation and somatic embryogenesis from anther cultures of Heveabrasiliensis MuellArg

2014 ◽  
Vol 13 (35) ◽  
pp. 3560-3566 ◽  
Author(s):  
Srichuay Wutthichai ◽  
Kalawong Soontreeya ◽  
Te-chato Sompong
2020 ◽  
Vol 21 (8) ◽  
Author(s):  
Dwi Hapsoro ◽  
Rahmadyah Hamiranti ◽  
Yusnita Yusnita

Abstract. Hapsoro D, Hamiranti R, Yusnita Y. 2020. In vitro somatic embryogenesis of superior clones of robusta coffee from Lampung, Indonesia: Effect of genotypes and callus induction media. Biodiversitas 21: 3811-3817. This study aimed to investigate the effects of genotypes and primary callus induction media on somatic embryogenesis of superior robusta coffee clones of Lampung. Leaf explants of clones Tugusari, Komari, Tugino, and Wanto were cultured on two types of primary callus induction media (PCIM). PCIM1 consisted of half-strength MS salts, 30 gL-1 sucrose, added with (mgL-1) 0.1 thiamine-HCl, 0.5 nicotinic acids, 0.5 pyridoxine-HCl, 100 Myo-inositol, 200 ascorbic acids, 150 citric acids, and 1 benzyl adenine. PCIM2 consisted of NPCM salts, 30 gL-1 sucrose, added with (mgL-1) 15 thiamine-HCl, 1 nicotinic acid, 1 pyridoxine-HCl, 2 glycines, 130 Myo-inositol, 200 ascorbic acids, 150 citric acids, 1 2,4-dichlorophenoxyacetic acid, and 2 thidiazuron. The highest percentage (100%) of primary callus formation was found in Komari and Wanto clones. PCIM2 resulted in more primary calli than PCIM1. When subcultured to embryogenic callus induction medium, primary calli of clone Komari and Wanto developed into a high percentage of embryogenic calli, while those of the other two turned brown and died. PCIM2-derived primary calli developed into more embryogenic calli. When subcultured on somatic embryo (SE) regeneration medium, these calli underwent the formation of SE of various stages. When subcultured to plant regeneration medium, these SEs developed into plantlets.


Plants ◽  
2021 ◽  
Vol 10 (12) ◽  
pp. 2620
Author(s):  
Dmitry Miroshnichenko ◽  
Anna Klementyeva ◽  
Sergey Dolgov

Triticum timopheevii Zhuk. is a tetraploid wheat that is utilized worldwide as a valuable breeding source for wheat improvement. Gene-based biotechnologies can contribute to this field; however, T. timopheevii exhibits recalcitrance and albinism in tissue cultures, making this species of little use for manipulation through genetic engineering and genome editing. This study tested various approaches to increasing in vitro somatic embryogenesis and plant regeneration, while reducing the portion of albinos in cultures derived from immature embryos (IEs) of T. timopheevii. They included (i) adjusting the balance between 2,4-D and daminozide in callus induction medium; (ii) cultivation using various darkness/illumination schedules; and (iii) inclusion of additional concentrations of copper ions in the tissue culture medium. We achieved a 2.5-fold increase in somatic embryogenesis (up to 80%) when 50 mg L−1 daminozide was included in the callus induction medium together with 3 mg L−1 2,4-D. It was found that the dark cultivation for 20–30 days was superior in terms of achieving maximum culture efficiency; moreover, switching to light in under 2 weeks from culture initiation significantly increased the number of albino plants, suppressed somatic embryogenesis, and decreased the regeneration of green plants. Media containing higher levels of copper ions did not have a positive effect on the regeneration of green plants; contrarily, the elevated concentrations caused albinism in plantlets. The results and relevant conclusions of the present study might be valuable for establishing an improved protocol for the regeneration of green plants in tissue cultures of T. timopheevii.


2017 ◽  
Vol 11 (1) ◽  
pp. 25-31 ◽  
Author(s):  
Kouassi Kan Modeste ◽  
◽  
Manlé Tokpapon Eliane ◽  
Koné Daouda ◽  
Soumahoro André Brahima ◽  
...  

1970 ◽  
Vol 14 ◽  
pp. 31-38 ◽  
Author(s):  
M Rahman ◽  
M Asaduzzaman ◽  
N Nahar ◽  
MA Bari

Somatic embryos were obtained from cotyledon and midrib explants of Solanum melongena L., cultivar Loda. For callus induction, medium was supplemented with different concentrations of auxin singly or in combination with BAP. The best callusing 83-85% was obtained from both of the explants cultured on MS medium containing 2.0 mgl-1NAA + 0.05 mgl-1BAP. Somatic embryogenesis and shoot regeneration was achieved after transferring the calli to MS medium supplemented with BAP, GA3, NAA and Zeatin. Cotyledon derived calli showed better performance (87%) for regeneration than that of midrib (82%) when sub cultured on MS medium having 2.0 mgl-1 Zeatin + 1.0 mgl-1 BAP. For root induction, MS + 3.0 mgl-1 IBA was proved to be better treatment for average number (14-15) and mean length (12 cm) of roots than those of other treatments. Key words: Eggplant; cotyledon; midrib; callus induction; somatic embryo J. bio-sci. 14: 1-9, 2006


PLoS ONE ◽  
2013 ◽  
Vol 8 (12) ◽  
pp. e81954 ◽  
Author(s):  
Jin-Ling Yuan ◽  
Jin-Jun Yue ◽  
Xiao-Li Wu ◽  
Xiao-Ping Gu

1998 ◽  
Vol 46 (1) ◽  
pp. 151 ◽  
Author(s):  
K. E. Nolan ◽  
R. J. Rose

Medicago truncatula (Jemalong 2HA) can be regenerated by somatic embryogenesis utilising 1-naphthalene acetic acid (NAA) and 6-benzylaminopurine (BAP). There is a requirement for both NAA and BAP for callus induction and embryo formation. There is no requirement for a drop in auxin concentration to induce embryos. Abscisic acid (ABA) when present with NAA and BAP during embryo formation at a concentration of 1 µM, increases the number of embryos per callus. The ABA treatment stimulates embryo numbers in both light and darkness. The conversion efficiency of embryo to plant is unchanged irrespective of the presence of ABA during embryo formation, indicating that ABA does not improve the regeneration of the embryos once formed. Importantly, the presence of light in the embryo formation period causes a marked inhibition of embryo conversion.


2020 ◽  
Vol 20 (4) ◽  
pp. 179 ◽  
Author(s):  
NUR AJIJAH

<p>ABSTRAK</p><p><br />Embriogenesis somatik kakao (Theobroma cacao L.) telah banyak<br />dilaporkan  dengan  penggunaan  zat  pengatur  tumbuh  (ZPT)  yang<br />bervariasi. Penggunaan thidiazuron untuk menginduksi embriogenesis<br />somatik kakao telah dilaporkan melalui dua tahap induksi kalus. Penelitian<br />ini bertujuan untuk mengevaluasi efektivitas thidiazuron menginduksi<br />embriogenesis somatik kakao melalui satu tahap induksi kalus. Penelitian<br />dilaksanakan di Laboratorium Kultur Jaringan Unit Pengembangan Benih<br />Unggul, Badan Litbang Pertanian, Bogor. Empat taraf thidiazuron (0; 2,5;<br />5,0; dan 10 µg/l) dikombinasikan dengan 2,4-D 2 mg/l<br />digunakan untuk<br />menginduksi kalus dan embrio somatik 3 klon kakao (TSH858, Sca6, dan<br />ICS13) menggunakan eksplan mahkota bunga dan staminoid. Media dasar<br />DKW tanpa ZPT digunakan sebagai kontrol. Penelitian disusun dalam<br />rancangan lingkungan acak lengkap dengan lima ulangan. Setiap unit<br />percobaan terdiri dari sepuluh eksplan. Peubah yang diamati meliputi<br />persentase pembentukan kalus umur 2 dan 4 minggu, penampakan visual<br />kalus, persentase eksplan membentuk embrio somatik, dan jumlah embrio<br />somatik per eksplan umur 10 dan 14 minggu. Kalus terbentuk pada media<br />dengan penambahan hanya 2,4-D atau 2,4-D + thidiazuron, namun embrio<br />somatik hanya terbentuk pada media dengan penambahan 2,4-D +<br />thidiazuron. Pembentukan kalus dan embrio somatik sangat dipengaruhi<br />oleh tipe eksplan dan genotipe. Klon Sca6 lebih responsif dibandingkan<br />TSH858 dan ICS13 dan eksplan staminoid lebih responsif dibandingkan<br />mahkota bunga. Hasil studi ini menunjukkan terdapat pengaruh interaksi<br />yang kuat antara ZPT, genotipe, dan tipe eksplan terhadap pembentukan<br />kalus dan embrio somatik kakao serta tidak terdapat perbedaan hasil yang<br />nyata antara pembentukan embrio somatik melalui satu dan dua tahap<br />induksi kalus.<br />Kata kunci: Theobroma cacao L., genotipe, eksplan, zat pengatur tumbuh</p><p>ABSTRACT</p><p><br />Somatic embryogenesis of cacao (Theobroma cacao L.) has been<br />widely reported with varied of plant growth regulators (PGR) used. The<br />use of thidiazuron in inducing somatic embryogenesis of cacao has been<br />reported through a two-step callus induction. The study aimed to evaluate<br />the effectiveness of thidiazuron in inducing somatic embryogenesis of<br />cacao through a one-step of callus induction. The study was conducted at<br />the tissue culture laboratory of Agricultural Seed Development Unit,<br />Indonesian Agency for Agricultural Research and Development, Bogor.<br />Four levels of thidiazuron (0; 2.5; 5.0; and 10 µg/l) in combination with 2<br />mg/l  2,4-D  were  used  for  inducing  callogenesis  and  somatic<br />embryogenesis of three cacao clones (TSH858, Sca6, and ICS13) using<br />petals and staminoids explants. DKW basal medium without PGR was<br />used as a control. The result showed that callus were formed on medium<br />containing only 2,4-D or 2,4-D + thidiazuron, while embryos were only<br />formed on medium containing 2,4-D + thidiazuron. The formation of<br />callus and somatic embryos were highly affected by explant types and<br />genotypes. Sca6 clone was more responsive than TSH858 and ICS13 and<br />staminoids were more responsive than petals. The results of this study<br />revealed that there was a strong interaction between the PGRs, genotypes,<br />and explant types on the formation of cacao callus and somatic embryos.<br />Results of this study also showed no significant difference between the<br />formation of somatic embryos through one and two steps of callus<br />induction.<br />Keywords: Theobroma cacao L., genotypes, explants, plant growth<br />regulators</p>


HortScience ◽  
1997 ◽  
Vol 32 (3) ◽  
pp. 461G-462
Author(s):  
S.N. Talhouk ◽  
M. Shmoury ◽  
R. Baalbaki ◽  
S. Khuri

Somatic embryogenesis offers a great potential for large-scale production of Cedrus libani, which is important not only as a forest tree, but also for the development of a timber industry. In an attempt to optimize conditions for embryogenic callus induction, we used zygotic embryos at different developmental stages as explants, compared different media, and used several hormone levels and combinations. Results indicated that post-cotyledonary immature embryos had highest induction efficiency. Four different media namely 1/2 MS, Durzan, Litvay's, and Von Arnold supplemented with similar hormone levels showed no significant difference in efficiency of callus induction. Induction frequencies of embryogenic callus from explants subjected to different hormone levels and combinations were dependent on the developmental stage of the explant.


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