Trichome Type and Development in Leaves of Althaea rosea
Insun Kim, Seung‐Hee Lee
Abstract
Insun Kim, Seung‐Hee Lee
Abstract
Plant epidermis consists of relatively unspecialized cells and more specialized cells of various structure and function. Trichomes are specialized cells originated from the epidermis and much attention has been paid to the plants developing trichomes with peculiar structure and function. The present study has been undertaken to examine the trichome type noticed in the leaf epidermis of Althaea rosea using scanning electron microscopy. Four types, namely simple, short-and long-tufted, and glandular hairs, were detected in their epidermis. Their Distribution, frequency and structure varied by the development and epidermal surface. The most frequently distinguished type was the tufted ones growing in young leaves of the abaxial epidermis, while the simple hairs were rare throught the examination. The short-tufted hairs branched up to seven times having each branchlet about 160~210 µm in length at maturity. The long-tufted hairs exhibited up to ten branchlets, where branchlets could reach up to 900~1,000 µm long when fully expanded. Glandular trichome was the peltate type comprising 1~2 secretory head cells, 2 stalk cells and a basal cell. The short peltate glandular hairs, usually not exceeding 40 µm, differentiated more along the areoles in the adaxial epidermis. The function of these trichomes in A. rosea has been still obscure, but it has been speculated that they probably play a role in protection; non-glandular ones possibly providing a defense against insects and secretory glandular type participating in chemical defense. Structural features of these trichomes at cellular level will be discussed in the following study of transmission electron microscopy.
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Plant epidermis consists of relatively unspecialized cells and more specialized cells of various structure and function. Trichomes are specialized cells originated from the epidermis and much attention has been paid to the plants developing trichomes with peculiar structure and function. The present study has been undertaken to examine the trichome type noticed in the leaf epidermis of Althaea rosea using scanning electron microscopy. Four types, namely simple, short-and long-tufted, and glandular hairs, were detected in their epidermis. Their Distribution, frequency and structure varied by the development and epidermal surface. The most frequently distinguished type was the tufted ones growing in young leaves of the abaxial epidermis, while the simple hairs were rare throught the examination. The short-tufted hairs branched up to seven times having each branchlet about 160~210 µm in length at maturity. The long-tufted hairs exhibited up to ten branchlets, where branchlets could reach up to 900~1,000 µm long when fully expanded. Glandular trichome was the peltate type comprising 1~2 secretory head cells, 2 stalk cells and a basal cell. The short peltate glandular hairs, usually not exceeding 40 µm, differentiated more along the areoles in the adaxial epidermis. The function of these trichomes in A. rosea has been still obscure, but it has been speculated that they probably play a role in protection; non-glandular ones possibly providing a defense against insects and secretory glandular type participating in chemical defense. Structural features of these trichomes at cellular level will be discussed in the following study of transmission electron microscopy.
Key concepts: Trichome, Epidermis (zoology), Biology, Botany, Anatomy