Open Access. Powered by Scholars. Published by Universities.®
- Discipline
-
- Horticulture (28)
- Agriculture (18)
- Agronomy and Crop Sciences (16)
- Business (13)
- Adult and Continuing Education (12)
-
- Agribusiness (12)
- Agricultural Education (12)
- Early Childhood Education (12)
- Education (12)
- Entomology (12)
- Family and Consumer Sciences (12)
- Health and Physical Education (12)
- Other Education (12)
- Outdoor Education (12)
- Botany (6)
- Plant Biology (6)
- Agricultural Science (4)
- Physical Sciences and Mathematics (3)
- Earth Sciences (2)
- Soil Science (2)
- Biodiversity (1)
- Entrepreneurial and Small Business Operations (1)
- Environmental Sciences (1)
- Forest Sciences (1)
- Geology (1)
- Hydrology (1)
- Plant Pathology (1)
- Institution
- Keyword
-
- Amanoa (1)
- Catchment (1)
- Crop production (1)
- Crops (1)
- Cut flowers (1)
-
- Euphorbiaceae (1)
- Floriculture (1)
- Hydrology (1)
- Land degradation (1)
- Land management (1)
- Land use (1)
- Native plant industry (1)
- Ornamental plants (1)
- Pastures (1)
- Phyllanthoideae (1)
- Planting stock (1)
- Production possibilities (1)
- Soil conservation (1)
- Soil management (1)
- Soil samples (1)
- Soil surveys (1)
- Soil types (1)
- Vegetation (1)
- Water conservation (1)
- Western Australia (1)
- Wild flowers (1)
- Wood anatomy (1)
- Publication
- Publication Type
Articles 31 - 33 of 33
Full-Text Articles in Other Plant Sciences
Comparison Of Sorghum And Indiangrass Chloroplast Genomes Using Rflps, Jeffrey F. Pedersen, R. D. Lee, D. J. Lee, K. P. Vogel
Comparison Of Sorghum And Indiangrass Chloroplast Genomes Using Rflps, Jeffrey F. Pedersen, R. D. Lee, D. J. Lee, K. P. Vogel
Department of Agronomy and Horticulture: Faculty Publications
Sorghum (Sorghum bicolor (L.) Moench) and indiangrass (Sorghastrum nutans (L.) Nash) appear closely related based on morphological and chemotaxonomic characters. Each species could potentially provide desirable traits to the other. However, traditional breeding techniques have been unsuccessful in hybridizing these two species. The objective of this study was to determine the relatedness of sorghum and indiangrass chloroplast DNA using RFLPs. Eleven sorghum lines in several cytoplasms, two indiangrass popu1ations, and a corn line were studied using 60 proberestriction enzyme combinations. Principal component analysis of the results showed sorghum to be as closely related to corn as to indiangrass, with no …
Breeding Systems For Cross-Pollinated Perennial Grasses, K. P. Vogel, Jeffrey F. Pedersen
Breeding Systems For Cross-Pollinated Perennial Grasses, K. P. Vogel, Jeffrey F. Pedersen
Department of Agronomy and Horticulture: Faculty Publications
I. Introduction
II. Reproductive and Breeding Characteristics
III. Breeding Systems
A. Ecotype Selection
B. Recurrent, RestricteclPhenotypic Selection
C. Half-sib Progeny Test
D. Between and Within Family Selection
E. Recurrent Multistep Family Selection
IV. Gains From Selection
A. Time Interval per Cycle
B. Potential Gain per Cycle .
C. Potential Inbreeding per Cycle
V. Polycrossing
VI. Hybrid Cultivars
VII. Conclusions
Literature Cited
Wood Anatomy Of Amanoa (Euphorbiaceae), W. John Hayden, Mark P. Simmons, Linda J. Swanson
Wood Anatomy Of Amanoa (Euphorbiaceae), W. John Hayden, Mark P. Simmons, Linda J. Swanson
Biology Faculty Publications
Wood anatomy of 29 specimens of seven species of Amanoa from tropical Africa, South America, and the Caribbean is described. The wood is diffuse-porous with most vessels in short radical multiples. Vessel elements are notably long, have simple perforation plates and small, alternative intervessel pits; tyloses are present in heartwood. Libriform wood fibres bear thick walls. Axial parenchyma distribution is diffuse and diffuse-in-aggregates. Chambered crystalliferous axial parenchyma is common. Rays are heterocellular, narrow, and very tall. The species examined, all from moist lowland forests, have similar wood structure. Wood of Amanoa resembles that of other primitive Euphorbiaceae.