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When an elm is infected with elm yellows, the root hairs die. The phytoplasma infection then moves up the bark and infects the phloem, depriving the tree of nutrients. [1] Death of the phloem essentially strangles the tree. As the phloem is infected, it will change color and take on a wintergreen smell, similar to that of black birch or birch beer.
In trees, the phloem is the innermost layer of the bark, hence the name, derived from the Ancient Greek word φλοιός (phloiós), meaning "bark". [3] [4] The term was introduced by Carl Nägeli in 1858. [5] [6] Different types of phloem can be distinguished. The early phloem formed in the growth apices is called protophloem.
Cross-section of a flax plant stem: 1. Pith 2. Protoxylem 3. Xylem I 4. Phloem I 5. Sclerenchyma 6. Cortex 7. Epidermis. In botany, a cortex is an outer layer of a stem or root in a vascular plant, lying below the epidermis but outside of the vascular bundles. [1]
There are four primary patterns to the arrangement of protoxylem and metaxylem in stems and roots. Centrarch refers to the case in which the primary xylem forms a single cylinder in the center of the stem and develops from the center outwards. The protoxylem is thus found in the central core, and the metaxylem is in a cylinder around it. [45]
An endodermis generally surrounds the stele. A centrarch (protoxylem in the center of a metaxylem cylinder) haplostele is prevalent in members of the rhyniophyte grade, such as Rhynia. [6] actinostele – a variation of the protostele in which the core is lobed or fluted. [7] This stele is found in many species of club moss (Lycopodium and ...
Food dye opponents point to a concurrent jump in ADHD diagnoses – from 6.1% in 1997 to 10.2% a decade later, one study found. Bradman said some foods containing the dyes aren't eaten as ...
Since the valuable fibres are located in the phloem, they must often be separated from the woody core, the xylem, and sometimes also from the epidermis. The process for this is retting , and can be performed by micro-organisms either on land (nowadays the most important) or in water, or by chemicals (for instance high pH and chelating agents ...
Phloem was introduced by Carl Nägeli in 1858 after the discovery of sieve elements. Since then, multiple studies have been conducted on how sieve elements function in phloem in terms of working as a transport mechanism. [2] An example of analysis of phloem through sieve elements was conducted in the study of Arabidopsis leaves.