• Title/Summary/Keyword: fiber-sclereid

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Fruit wall anatomy of the genus Krigia (Asteraceae, Lactuceae) and their taxonomic implications (Krigia속의 과피의 해부학적 구조와 분류학적 의미)

  • Lee, Bok Won;Park, Ji Kuk;Pak, Jae-Hong
    • Korean Journal of Plant Taxonomy
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    • v.34 no.4
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    • pp.321-333
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    • 2004
  • We researched fruit wall anatomical characters about the seven taxa of Krigia and the nearest one relative, Nothocalais cuspidata by making use of the fruit wall anatomy, and inferred systematical similarity. Among these characters, all species of the genus Krigia has identical characters in the shape of fruit and the number of rib, but showed specific differences in the shape of costa, the numbers of libriform fiber cell layers and fiber-sclereid cell layers in mesocarp, and development degree in these characters. Krigia biflora, K. cespitosa, K. occidentalis and K. wrightii have well developed libriform fiber cell, but K. dandelion, K. montana and K. virginica have undeveloped libriform fiber cell, and mostly consist of fiber-sclereid cell layers. According to the fruit wall anatomical characters, K. biflora which belonged to sect. Krigia in the previous classification system is more similar to sect. Cymbia than sect. Krigia.

Taxonomic reconsideration of Lactuca hallaisanensis H. Lév. (한라고들빼기 (Lactuca hallaisanensis H. Lév.)의 분류학적 재고)

  • Pak, Jae-Hong;Kim, Young-Ok;Choi, Kyung
    • Korean Journal of Plant Taxonomy
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    • v.31 no.4
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    • pp.311-319
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    • 2001
  • In order to evaluate taxonomic status of Latcuca hallaisanensis H. $L{\acute{e}}v$., an endemic species of the Jeju-do Island, we investigated fruit wall structure and chromosome morphology. The fruit wall structure had 10-11 obtuse costae in the transverse section. The costa was wholly occupied by libriform fiber cells, and the underlying fibersclereid tissue was only one to three cells layers thick. Also, the intercosta lacked fiber-sclereid layers. Somatic chromosome numbers and karyotype of Latcuca hallaisanensis were recorded for the first time. This diploid species (2n=10) with the same basic number of x=5 has the total chromosome length $23.3{\mu}m$ and the length of each chromosome falls in $1.9{\mu}m-2.9{\mu}m$. It possess the karyotype complement i.e., 3sm+2st and a characteristic chromosome pair (No. 1 and 2) with a secondary constriction at the distal portion of the short arms. The overall similarity in external morphology (involucre, achene etc), chromosome morphology as well as in fruit wall anatomy between Lactuca hallaisanensis and Crepidiastrum s. lat. clearly indicated that this species should be treated as Crepidiastrum, rather than Lactuca.

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Anatomical Studies of Major Tree Barks Grown in Korea - II. Anatomy of Quercus Barks (한국산(韓國産) 주요수피(主要樹皮)의 해부학적(解剖學的) 연구(硏究) - 제2보(第二報) 참나무속(屬) 수피(樹皮)의 해부(解剖))

  • Lee, Hwa-Hyoung;Lee, Phil-Woo
    • Journal of the Korean Wood Science and Technology
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    • v.5 no.1
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    • pp.3-8
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    • 1977
  • A bark comprises about 10 to 20 percents of a typical log by volume, and is generally considered as an unwanted residue rather than a potentially valuable resource. As the world has been confronted with decreasing forest resources, natural resources pressure dictate that a bark should be a raw material instead of a waste. The utilization of the largely wasted bark of genus Quercus grown in Korea can be enhanced by learning its anatomical structure and properties. In this paper, bark characteristics of Quercus grown in Korea are described. In bark anatomy, general features such as color of rhytidome, exfoliating form, color of periderm, arrangement of periderm, and thickness of the inner and outer hark. etc., arc discussed. Studies on the microscopic structure include sieve tube, companion cell, parenchyma, pholem fiber, ray, periderm(phelloderm, phelloogen, phellem), sclereid, and crystal, etc. The results may be summarized as follows: 1. In general characteristics of rhytidomes, exfoliating is not easy and sclereids are distint to the naked eye. Inner bark is thicker than that of outer bark except in case of Q. variabilis. 2. It is not clear to distinguish between phelloderm and phellogen in Quercus bark. The phellem is developed conspicuously in Q. variabilis but that of Q. accutissima is composed of thinwalled phellem and thickwalled stone cell. 3. Quercus Bark has sieve tube, companion cell, phloem fiber and sclereid. Sclereids of Quercus bark are the most distinguished characteristics comparing with pinus and populus. The volume percent of sclereids are higher than that of fiber. 4. Rays are 1~3 seriate, and multiseriate ranging with from 15 to 20. 5. Parenchyma cell contains two types, polygonal and druses crystal.

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