Fig. 7.—Half the width of a large rhizomorph as seen in longitudinal section. X 400. c, core; o, cortex; s, subcortical zone. Fig. B.—Transverse section of the outer part of a short root of taraire. X 475. c, coralloid, deeply staining hyphae around the nucleus; ep, epidermis; ex, exodermis; h, hyphae in a cortical cell; o, outer zone; p, incipient phellogen; r, rhizomorph. Fig. 9.—Cell from the cortex of taraire in longitudinal section, showing an early stage in the formation of a vesicle. X 400. Fig. 10. —Vesicle in a cortical cell of taraire in longitudinal section. X 400. Fig. 11.—Root in median longitudinal section. X 30. c, cortex; o, outer zone; v, vascular cylinder.
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Transactions of the Royal Society of New Zealand : Biological Sciences, Volume 12, Issue 2, 11 May 1970, Page 10
Word Count
115Fig. 7.—Half the width of a large rhizomorph as seen in longitudinal section. X 400. c, core; o, cortex; s, subcortical zone. Fig. 8.—Transverse section of the outer part of a short root of taraire. X 475. c, coralloid, deeply staining hyphae around the nucleus; ep, epidermis; ex, exodermis; h, hyphae in a cortical cell; o, outer zone; p, incipient phellogen; r, rhizomorph. Fig. 9.—Cell from the cortex of taraire in longitudinal section, showing an early stage in the formation of a vesicle. X 400. Fig. 10.—Vesicle in a cortical cell of taraire in longitudinal section. X 400. Fig. 11.—Root in median longitudinal section. X 30. c, cortex; o, outer zone; v, vascular cylinder. Transactions of the Royal Society of New Zealand : Biological Sciences, Volume 12, Issue 2, 11 May 1970, Page 10
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