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kingdom · Editorial draft · human review pending

Plantae

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Overview

Broadly defined, plants include green plants, red algae and glaucophytes, with land plants forming only one branch.

[1]
Evidence for this statement

Editorial synthesis

Mosses, liverworts, hornworts, lycophytes, ferns and seed plants represent different branches of land-plant evolution, not successive stages in the life of one organism.

[1]
Evidence for this statement

Editorial synthesis

Bodies built in different ways

Protected embryos, vascular tissues, roots, seeds, flowers and fruits arose in different plant lineages; none occurs in every group.

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Evidence for this statement

Editorial synthesis

The liverwort Marchantia polymorpha illustrates a body plan very different from a flowering tree: its conspicuous generation is the gametophyte, while its short-lived sporophyte develops attached to the female plant.

[2]
Evidence for this statement

Editorial synthesis

Even an underwater flowering plant can retain familiar organs: the eelgrass Zostera marina has roots, leaves and flowers, although it lives submerged in seawater.

[3]
Evidence for this statement

Editorial synthesis

How photosynthetic plants obtain energy

Photosynthesis uses light to produce sugars and other energy-rich compounds that support growth.

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Evidence for this statement

Editorial synthesis

In oxygen-producing photosynthesis, the protein machinery called Photosystem II extracts electrons from water, releasing oxygen in the process.

[4]
Evidence for this statement

Editorial synthesis

The primary plastids of green plants, red algae and glaucophytes trace their origin to an ancient partnership between a eukaryotic cell and a cyanobacterium.

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Evidence for this statement

Editorial synthesis

Carbon absorbed from the atmosphere during photosynthesis can enter plant biomass and, later, soil; decomposition returns some of that carbon to the atmosphere.

[6]
Evidence for this statement

Editorial synthesis

Reproduction: two generations, not just a seed

Land-plant life cycles alternate between a diploid sporophyte and a haploid gametophyte, both of which are multicellular.

[2]
Evidence for this statement

Editorial synthesis

The sporophyte produces spores through meiosis; spores develop into gametophytes, which produce eggs or sperm through mitotic divisions.

[2]
Evidence for this statement

Editorial synthesis

Fertilization joins egg and sperm to form a zygote, from which the next sporophyte develops.

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Evidence for this statement

Editorial synthesis

In Marchantia, sperm swim to the female reproductive structure, and the resulting sporophyte remains dependent on the female gametophyte.

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Evidence for this statement

Editorial synthesis

Marchantia can also reproduce without fertilization through small vegetative propagules called gemmae, formed in cups on the plant.

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Evidence for this statement

Editorial synthesis

Not every plant feeds in the same way

Field dodder, Cuscuta campestris, is a parasitic flowering plant that winds around a host instead of developing the familiar combination of proper leaves and roots.

[7]
Evidence for this statement

Editorial synthesis

Its attachment organs, called haustoria, penetrate host tissue and connect with the host’s transport system, allowing access to water and other compounds.

[7]
Evidence for this statement

Editorial synthesis

Its low photosynthetic activity is associated with losses of genes needed for high photosynthetic performance, rather than evidence that it is not a plant.

[7]
Evidence for this statement

Editorial synthesis

At a very different scale, a single-cell genomic study placed the marine, non-photosynthetic Picozoa near red algae and found support for the absence of plastids in this lineage.

[5]
Evidence for this statement

Editorial synthesis

Plants in water and on land

Green plants occupy both land and water, with diverse structures and physiology.

[1]
Evidence for this statement

Editorial synthesis

Seagrasses demonstrate that a flowering-plant lineage can return to marine life and form the foundation of productive coastal ecosystems.

[3]
Evidence for this statement

Editorial synthesis

In Zostera marina, gas exchange occurs through the leaf surface, and the genome study found the loss of the stomatal gene repertoire associated with its submerged lifestyle.

[3]
Evidence for this statement

Editorial synthesis

Plants also connect biological growth with the carbon cycle: carbon storage in living vegetation is not necessarily permanent, because decay and combustion can release it again.

[6]
Evidence for this statement

Editorial synthesis

Why plant diversity matters

Plant diversity underpins agriculture, while aquatic plants help sustain coastal ecosystems.

[1] [3]
Evidence for this statement

Editorial synthesis

Comparing lineages rather than constructing a composite organism

The 2019 One Thousand Plant Transcriptomes study combined transcriptomes from 1,124 sampled species with published genome resources to investigate relationships across green-plant diversity.

[1]
Evidence for this statement

Editorial synthesis

Its nuclear and plastid analyses disagreed at some nodes, so a classification list should not be treated as a fully resolved evolutionary tree.

[1]
Evidence for this statement

Editorial synthesis

What the reproductive example establishes

The Marchantia investigation compared DNA methylation across vegetative, reproductive and sporophyte tissues of one liverwort species.

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Evidence for this statement

Editorial synthesis

That design supports comparisons among stages in Marchantia, not a claim that every plant has the same methylation pattern or the same relative sizes of its two generations.

[2]
Evidence for this statement

Editorial synthesis

Separate habitat adaptation from general plant properties

The Zostera study sequenced material from a clone collected in southwest Finland and interpreted gene losses in the context of a marine flowering plant.

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Evidence for this statement

Editorial synthesis

The result does not imply that all aquatic plants lack stomata or that a leaf from any marine organism is a seagrass leaf.

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Evidence for this statement

Editorial synthesis

The Cuscuta study combined genome assembly and annotation with the biology of a shoot parasite; its conclusions about nutrient acquisition belong to that host-dependent system.

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Evidence for this statement

Editorial synthesis

A boundary case for photosynthesis-based definitions

The Picozoa analysis used 43 single-cell genomes from natural samples and supported a position within Archaeplastida near red algae and rhodelphids.

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Evidence for this statement

Editorial synthesis

The authors considered alternative histories involving complete plastid loss or a different pattern of plastid acquisition, rather than demonstrating one settled history of every archaeplastid plastid.

[5]
Evidence for this statement

Editorial synthesis

Identity

Scientific name

Plantae

[8]
Evidence for this statement

Source annotation

Taxonomic rank

kingdom

[8]
Evidence for this statement

Source annotation

Provider status

accepted

[8]
Evidence for this statement

Source annotation

col identifier

P

[8]
Evidence for this statement

Source annotation

Classification

Source lineage

  1. Eukaryota (Chatton, 1925) Whittaker & Margulis, 1978 domain
  2. Plantae kingdom
[9]
Evidence for this statement

Source annotation

This is the source’s classification, not an inferred species phylogeny.

Source classification release

Inspect structured data
classification semantics
provider_source_classification_only
phylogeny
False
release
COL26.7 Base, 2026-07-14
source
Catalogue of Life / ChecklistBank
source sha256
891457d62af389842924ef1de8bd6fbbdf9f6b03428ef5dd487bed4d04c0ace0
metadata reports source sha256 verified
True
source sha256 independently recomputed in this delivery
False
verification scope
Saved scientific JSON release metadata; installed exact row additionally read
[9]
Evidence for this statement

Source annotation

This is the source’s classification, not an inferred species phylogeny.

Continue exploring

Sources and versions

Editorial draft · human review pending

  1. One thousand plant transcriptomes and the phylogenomics of green plants

    2026-09-06 · Reuse permission unverified

    Provenance and original
    Source version
    2019-10-23
  2. Extensive epigenetic reprogramming during the life cycle of Marchantia polymorpha

    2026-09-06 · Reuse permission unverified

    Provenance and original
    Source version
    2018-01-25
  3. The genome of the seagrass Zostera marina reveals angiosperm adaptation to the sea

    2026-09-06 · Reuse permission unverified

    Provenance and original
    Source version
    2016-01-27
  4. Atomic Snapshots of Photosynthesis — U.S. Department of Energy

    2026-09-06 · Reuse permission unverified

  5. Single cell genomics reveals plastid-lacking Picozoa are close relatives of red algae

    2026-09-06 · Reuse permission unverified

    Provenance and original
    Source version
    2021-11-17
  6. DOE Explains...the Carbon Cycle

    2026-09-06 · Reuse permission unverified

  7. Footprints of parasitism in the genome of the parasitic flowering plant Cuscuta campestris

    2026-09-06 · Reuse permission unverified

    Provenance and original
    Source version
    2018-06-28
  8. Assigned exact CoL identity — Plantae

    2026-09-06 · Reuse permission unverified

    Provenance and original
    Source version
    COL26.7 Base, 2026-07-14
  9. Saved CoL classification — Plantae

    2026-09-06 · Reuse permission unverified

    Provenance and original
    Source version
    COL26.7 Base, 2026-07-14
Inspect structured data
Content version
e82e0d7eeeb9bd8482a9491d9ddebabc6f5f26f525b6df0429e95e51b4aef208
Source version
editorial-source-set.v1@f336e10992321de71a7150a7f8a5ab1dc4bc3584a444a316388043539fcc9c9e
Updated
2026-09-06

Where this organism has been observed

Explore observations on the map →

Observations and connections with other organisms

Marine and community observations, and interactions reported in research. Each source retains its own records and query scope.

Research about this organism

01 · A place in the living world

Classification

Explore the tree of life
  1. DomainEukaryota (Chatton, 1925) Whittaker & Margulis, 1978
  2. KingdomPlantae

02 · From organism to molecules

Genes, genomes and proteins

03 · Continue exploring

Tools and connections

04 · EcoGenesis

What the available evidence supports

Classification and name provenance.

A catalogue name does not establish a genome, protein or measurement. Missing records do not mean a trait or gene is absent from the organism.

Coverage updates as this page checks its sources.

Sources and licences

SourceIDLicenceDetails
Catalogue of Life / ChecklistBankPSource record ↗