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fernwood mikado snake plant care

fernwood mikado snake plant care Fernwood Mikado

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Description

fernwood mikado snake plant care Fernwood MikadoDracaena (Sansevieria) bacularis 'Fernwood Mikado' Dracaena bacularis 'Fernwood Mikado' is a narrow, rod leaved snake plant with cylindrical foliage arranged in tight bundles. The leaves are slim, firm and almost spear like, with mid to dark green colouring and softer horizontal banding that becomes easier to see as the leaves mature. Young growth can emerge from darker, purplish basal sheaths before settling into the familiar green, stick like

Dracaena (Sansevieria) bacularis 'Fernwood Mikado'

Dracaena bacularis 'Fernwood Mikado' is a narrow, rod-leaved snake plant with cylindrical foliage arranged in tight bundles. The leaves are slim, firm and almost spear-like, with mid to dark green colouring and softer horizontal banding that becomes easier to see as the leaves mature. Young growth can emerge from darker, purplish basal sheaths before settling into the familiar green, stick-like outline.

This plant adds height, fine texture and a clear shape in a small pot. Its growth comes from a rhizome below the substrate, so new leaves appear from the base and slowly fill the container over time. In indoor culture, 'Fernwood Mikado' maintains a slim profile with vertical leaves that stay clear in simple pots and compact grouped pots.

Slender rod leaves in a tight bundle

  • Leaf shape: Thin, cylindrical leaves give the plant its distinctive stick-like silhouette.
  • Growth base: New shoots develop from the rhizome and gradually make the clump denser.
  • Colour pattern: Green leaves carry subtle lighter banding across the surface.
  • Container behaviour: It prefers a snug pot and usually needs repotting once the rhizomes have filled the space.
  • Flowering: Mature, settled plants may produce pale, fragrant flowers, though flowering indoors is occasional.

Rhizome growth and dry-season storage

Dracaena bacularis belongs to the group of rhizomatous, succulent Dracaena species long grown under the name Sansevieria. It stores water in firm cylindrical leaves and spreads slowly from an underground rhizome, while the roots perform best when the substrate dries between waterings.

The species is native to DR Congo, where it grows in a seasonally dry tropical biome. Indoors, Dracaena bacularis 'Fernwood Mikado' handles dry intervals well and develops steadily when the potting mix dries properly between waterings. Keep the plant warm, bright and protected from cold, wet conditions.

The narrow leaves can reach impressive height on mature plants, but indoor growth is usually slow and steady. New shoots often appear close together, giving younger plants a bundled look. As the clump develops, older leaves remain firm for a long time, while new leaves add height and density from the base.

Care for cylindrical leaves

  • Light: In bright indirect light, new growth stays firm and even. In lower light, the plant grows slowly and uses water at a gentler pace.
  • Watering: Let the potting mix dry deeply before watering again. In cooler months, extend the dry interval so the rhizome stays warm and aerated.
  • Substrate: Use a free-draining mix with mineral material such as pumice, lava rock, coarse sand or fine bark. The lower pot should drain quickly after watering.
  • Pot choice: A pot with drainage holes is essential. Cachepots are fine when excess water is emptied after watering.
  • Temperature: Keep it in normal indoor warmth, ideally around 15–24 °C. A warm root zone is especially important after watering.
  • Humidity: Average indoor humidity is enough. Normal room air is adequate for its dry-tolerant foliage.
  • Feeding: Feed lightly during active growth with a diluted cactus or balanced houseplant fertiliser. Slow succulent growth needs modest nutrition.
  • Repotting: Repot when the rhizomes have filled the pot or the substrate has broken down. A slightly snug pot helps the mix dry predictably.
  • Propagation: Divide established clumps when several shoots are present. Leaf cuttings can root slowly and take time to form a full plant.

Reading stress in a rod-leaved snake plant

  • Soft bases: Check the lowest part of the leaves, the rhizome and the moisture level in the pot. Soft tissue usually points to a wet root zone, especially in cool conditions.
  • Wrinkled leaves: Compare substrate dryness with root condition. Wrinkling can follow a long dry spell or root damage that limits water uptake.
  • Brown tips: Look for irregular watering, old knocks, mineral buildup or exposure to cold air. Trim only the dry tissue if the tip damage bothers you.
  • Slow growth: Check light first. Slow growth is normal, and a brighter position often improves new shoot production.
  • Leaning leaves: Rotate the pot occasionally and keep the plant stable. Mature cylindrical leaves can crack if they are forced back into position.

Leaf safety and placement

Dracaena bacularis 'Fernwood Mikado' belongs out of reach of pets and small children who may chew the firm leaves. Snake plants contain saponins, which can cause nausea, vomiting or diarrhoea in cats and dogs if ingested. A stable position also helps protect the tall leaves from snapping if the pot is knocked.

Botanical name and meaning

The accepted botanical name is Dracaena bacularis, while Sansevieria bacularis remains a widely recognised synonym in horticulture. The genus name Dracaena comes from the Greek drakaina, meaning “female dragon”, a reference historically associated with red resin in some dragon tree relatives. The species epithet bacularis comes from Latin baculum, meaning stick, rod or staff, matching the plant’s narrow cylindrical leaves.

Dracaena bacularis 'Fernwood Mikado' has narrow rod-like foliage, slow basal growth and a slim upright profile.

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daveyd
Natrona Heights, US
★★★★★ 5
all driven by artificial super intelligence (ASI)
Format: Hardcover
You are peering inside a black hole at a "point" beyond which you cannot see and where no one knows what exists. The point represents a period of time technologically known as Singularity. Even light cannot escape from the point and on the other side it is known only that there is a profound self replicating intelligence greater than our own, all driven by artificial super intelligence (ASI). Physicist Stephen Hawking writes that "In contrast with our intellect, computers double their performance every eighteen months. So the danger is real that they could develop intelligence and take over the world". Computer scientist and professor Vernon Vinge writes that "Within 30 years, we will have the technological means to create super human intelligence. Shortly after the human era will be ended". Our Final Invention is 267 pages of authoritative manuscript that is compelling, fascinating and beyond the fright stage. The book's author on numerous occasions refers to "we" as if there exists a unified collective engaged in artificial general intelligence(AGI) or artificial super intelligence (ASI). The reality is that some 56 nations are currently in different stages of arcane artificial intelligence designs. They include antagonists such as North Korea, Iran and suicide regimes from the Middle East. Russia, China and the U.S. are the biggest players as is Israel. The author believes that super computers fueled by nanotechnology will combine to produce ASI trillions of times more powerful than any human academic or intellectual resources. ASI has the potential to eliminate hunger, poverty, disease and even mortality but disruptions of global economies and politics will be in evidence as balance of powers are shifted. Unemployment dynamics will infect bank tellers, retail clerks, travel agents, loan officers stock brokers.... Computer software designs are so complex, even incomprehensible, that failures are inevitable. The 1986 Chernobyl meltdown, Three Mile Island, and Fukushima were all designed by highly qualified professionals but with complex infrastructures. Under Singularity as computer speeds double with frequency while human intelligence is unchanged, perhaps the musings of Hawking and Vinge will prove to be prescient. Our Final Invention is 267 pages of a very dark subject which not even a trace of a happy Betty Grable ending is to be found. My time has expired. Perhaps the final words were well expressed by Jaan Tallin, cofounder of Skype: 'A hard-hitting book about the most important topic of this century and possibly beyond---the issue of whether our species can survive. I wish it was science fiction but I know it's not'!
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Reviewed in the United States on January 23, 2016
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Jacob Donkin
Belleville, US
★★★★★ 5
Gripping and Informative, a Must-read
Format: Hardcover
As someone who struggles to finish books in their entirety, I found Our Final Invention by James Barrat highly readable, deeply informative, and utterly gripping. The book contains a powerful message: through competition, distrust, desire and curiosity, humans will inevitably create an artificial intelligence (AI) that rivals or surpasses our own. Thus, it is wise and necessary to invest now in mitigation efforts and potential safeguards -- increased research and advocacy for AI risk and, most importantly, producing friendly AI. Barrat covers a lot of ground, but his main argument is summarized as follows: Currently, we humans regularly utilize narrow AI technology (technology capable of achieving specific, programmed goals through unassisted human computing -- Siri, Google search, IBM's Watson, etc). We are also experimenting with "black box" tools and techniques (programs where inputs and outputs are understood and measurable, but the processes in between aren't -- genetic algorithms/programming and software that writes better software) and artificial neural networking (ANN), as seen through efforts to reverse engineer the human brain. And, below the surface, there is an ongoing race between world powers (driven mainly by national security, defense, and international business interests) and guided by AI developers to develop and achieve artificial general intelligence (AGI) -- human-level artificial intelligence. The problem is that once AGI is achieved it will be very difficult to manage, and may very well result in the manifestation of artificial super intelligence (ASI) -- greater than human-level intelligence. ASI could theoretically become thousands of times smarter than the smartest human being alive. It won't think like us, won't want to be ruled by us, and, most crucially, it won't want to be turned off. In fact, ASI would likely regard us as potential fuel for its quest to duplicate and improve itself exponentially in order to achieve its goals. Throughout the book, Barrat refers to interesting psychological phenomena and concepts (such as the normalcy bias), while drawing on personal experiences, historic events, and interviews with computer programmers, inventors and philosophers, to tactfully illustrate how progress in AI development is dangerously rapid. Adequate checks and balances are not in place to deal with a non-ideal intelligence explosion or hard take-off (AGI quickly leading to ASI). I highly recommend this book to anyone interested in learning about both human beings and the advancement of machines. I suspect that the prominence of AI, as a research field and topic for discussion, will only increase in time (it already has in recent years -- drones, smart technology, Wall Street high frequency trading (HFT), financial modeling), making Our Final Invention a valuable guide or stepping stone for anyone trying to understand our world and the path of the future.
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Reviewed in the United States on July 3, 2014
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Ashley Sutton
New York, US
★★★★★ 5
Great book
Format: Hardcover
We love the FGTEEV books!
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Reviewed in the United States on May 31, 2026
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Krissy Miller
Birmingham, US
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The 11 yr old loves it.
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Reviewed in the United States on May 17, 2026
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Rebecca Leary
Houston, US
★★★★★ 5
Perfect, hardback!!!
Format: Hardcover
Bought this book for my teens. They love it. Perfect hardback quality for the price. They have the whole series
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Reviewed in the United States on May 5, 2026

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