Latest Propagation Tutorials

How to Propagate Koompassia excelsa
Reaching for the Sky: A Guide to Propagating the Majestic Koompassia Excelsa The Koompassia excelsa, more affectionately known as the…
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How to Propagate Cotyledon woodii
String of Pearls: How to Propagate Your Own Succulent Jewels The String of Pearls (Cotyledon woodii) is a captivating succulent,…

How to Propagate Torilis japonica
Unlocking the Secrets to Propagating Japanese Hedge Parsley (Torilis japonica) Have you fallen in love with the delicate, lacy foliage…

How to Propagate Acacia mearnsii
From Seed to Sapling: Unlocking the Secrets of Acacia mearnsii Propagation The Black Wattle, or Acacia mearnsii, is a striking…

How to Propagate Stylogyne micrantha
The elusive Stylogyne micrantha, a whisper of green in the plant world, resists easy propagation. Seeds remain stubbornly silent, their secrets locked tight. Yet, the whisper becomes a song with patient cutting techniques – a delicate dance of semi-hardwood stems, rooting hormone, and the constant, gentle misting that nourishes nascent roots. Each tiny leaf, unfurling slowly, is a victory hard-won, a testament to the gardener’s persistent care. The reward? Not just a plant, but a deep connection forged in the crucible of challenging cultivation, a quiet triumph echoing the plant’s understated elegance.

How to Propagate Serpocaulon fraxinifolium
Unleash the Fern Frenzy: Propagating Serpocaulon fraxinifolium Do you crave the lush, elegant charm of ferns in your home? Then…
Tissue Culture
MoreBrichet and Smits ‘T’ Medium
A Deep Dive into Brichet and Smits ‘T’ Medium: Composition and Applications in Tissue Culture Tissue culture, a vital technique…
DCR (Douglas-fir Cotyledon Revised) Medium
DCR (Douglas-fir Cotyledon Revised) Medium: A Key Tool in Plant Tissue Culture DCR (Douglas-fir Cotyledon Revised) medium is a specialized…
New basal media for half-anther culture of Anthurium andreanum
Abstract A successful protocol for high frequency callus induction and plant regeneration from Anthurium andrea- num Linden ex Andre´ cv. Tropical half-anthers is descri- bed. Different variables using Winarto and Teixeira and Murashige and Skoog basal media supplemented with several plant growth regulators [2,4-dichlorophenoxy ace- tic acid (0.1–1.0 mg/l), a-naphthalene acetic acid (0.01–0.2 mg/l), thidiazuron (0.5–2.0 mg/l), 6-benzylami- nopurine (0.5–1.0 mg/l), and kinetin (0.5–1.0 mg/l)] were tested for their ability to induce high frequency callusing in half-anthers, indirect regeneration and rooting of shoots. Basal medium, as well as the combination and concentra- tion of hormones applied, had a significant effect on callus formation, shoot regeneration and adventitious root for- mation. Winarto and Teixeira-1, an original basal medium containing 0.01 mg/l a-naphthalene acetic acid, 0.5 mg/l thidiazuron and 1.0 mg/l 6-benzylaminopurine was suit- able for callus formation while an improved basal medium i.e., New Winarto–Teixeira-3 supplemented with 0.25 mg/l 2,4-dichlorophenoxy acetic acid, 0.02 mg/l a-naphthalene acetic acid, 1.5 mg/l thidiazuron and 0.75 mg/l 6-benzyl- aminopurine enhanced callus formation. High shoot regeneration and multiplication was also possible on New Winarto–Teixeira-3. Shoots formed a strong adventitious root system on New Winarto–Teixeira-3 containing. 0.2 mg/l a-naphthalene acetic acid and 1.0 mg/l kinetin. Plantlets that varied in size and performance were suc- cessfully acclimatized and adapted to ex vitro conditions. Cytological analysis of 180 acclimatized-plantlets ex vitro revealed that 34 were haploid (n = 14–18), 15 aneuploid (n = 20–26), 126 diploid (n = 28–34) and 5 triploid (n = 45–57). The potential use of this protocol for devel- oping half-anther culture of other Anthurium species or cultivars is discussed.



















