By Caula A. Beyl, Robert N. Trigiano

ISBN-10: 1466503874

ISBN-13: 9781466503878

Includes a DVD Containing All Figures and Supplemental photos in PowerPoint

This re-creation of Plant Propagation options and Laboratory Exercises provides a powerful view of recent plant propagation practices equivalent to vegetable grafting and micropropagation. besides origin wisdom in anatomy and plant body structure, the publication takes a glance into the longer term and the way leading edge learn may well effect plant propagation practices. The booklet emphasizes the foundations of plant propagation utilized in either temperate and tropical environments. as well as providing the basics, the booklet positive aspects protocols and practices that scholars can observe in either laboratory and box stories.

The e-book indicates readers tips to decide on the easiest equipment for plant propagation together with right media and boxes in addition to acting suggestions comparable to budding, slicing, layering, grafting, and cloning. It additionally discusses find out how to realize and deal with a number of propagation demanding situations. additionally incorporated are suggestion chapters highlighting key details, laboratory workouts, expected laboratory effects, stimulating questions, and a DVD containing all of the figures within the booklet in addition to a few supplemental images.

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Additional resources for Plant Propagation Concepts and Laboratory Exercises

Example text

1b). Several adjacent pericycle cells divide to form a root primordium, and continued divisions force the developing root through and crush the endodermis, cortex, and epidermis of the primary root. Vascular tissue within the lateral root is connected to similar elements in the primary or parent root by differentiation of pericycle cells (Esau, 1960). The number of lateral branches is influenced by water, nutrient availability, and biotic interactions. , 2007). Associations with ectomycorrhizal fungi often result in clusters of short lateral roots that are covered with the fungal sheath.

The mesophyll (M) is dense and undifferentiated. Notice that immediately below the epidermis is a layer of sclerenchyma, the hypodermis (H), which contains channels for airflow from the stomatal opening (S) to the mesophyll. 7a). Xylem tissue is usually toward the top of the leaf, and the phloem, toward the bottom of the leaf. 7b). Vascular tissue exists as bundles running through the mesophyll of the leaf. The mesophyll of gymnosperms is also undifferentiated and compact, often having highly invaginated cell walls.

Arrows indicate xylem vessels with helical secondary wall patterns. E = epidermis. (c) Cross section of an older corn (Zea mays) stem. Notice that vascular bundles (Vasc. bundles) are scattered throughout the stem and “embedded” in fundamental tissue (Fund. ). The vascular bundles contain only primary xylem (X) and phloem (P) tissues (vascular cambium absent) with a prominent lacuna (L) or air space (insert). Arrows indicate sclerenchyma cells of the sheath. ) (d) Cross section through the stem of catnip (Nepeta cataria) and a longitudinal section through an adventitious root (Adv.

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Plant Propagation Concepts and Laboratory Exercises by Caula A. Beyl, Robert N. Trigiano

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