By Jaime Kigel
This article is meant for plant physiologists, molecular biologists, biochemists, biotechnologists, geneticists, horticulturalists, agromnomists and botanists, and upper-level undergraduate and graduate scholars in those disciplines. It integrates advances within the various and rapidly-expanding box of seed technological know-how, from ecological and demographic features of seed construction, dispersal and germination, to the molecular biology of seed improvement. The publication deals a vast, multidisciplinary technique that covers either theoretical and utilized wisdom.
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This article is meant for plant physiologists, molecular biologists, biochemists, biotechnologists, geneticists, horticulturalists, agromnomists and botanists, and upper-level undergraduate and graduate scholars in those disciplines. It integrates advances within the various and rapidly-expanding box of seed technology, from ecological and demographic features of seed creation, dispersal and germination, to the molecular biology of seed improvement.
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The Implications of Seed-Associated Mycoflora During Storage David J. Mycock and Patricia Berjak 747 28. Biochemical Processes During the Osmopriming of Seeds Clifford M. Bray 767 29. Improving Protein Quality in Seeds Jeffrey E. Habben and Brian A. Larkins 791 30. Synthesis and Accumulation of the Essential Amino Acids Lysine and Threonine in Seeds Gad Galili, Orit Shaul, Avihai Perl, and Hagai Karchi 811 31. Somatic Embryogenesis in Alfalfa: A Model for the Development of Dry Artificial Seed Technology Bryan D.
By participating in an endotesta. The way in which the seed coat develops, besides being characteristic for the species, is important for the correct interpretation of the mature seed coat. Because many unrelated taxa have a seemingly identical seed coat with the mechanical layer(s) in the same place, it is important to know the development of the seed coat precisely for a more certain assessment of possible taxonomic relationships. Exotestas occur in many unrelated taxa. Since in this case the protection to the whole seed is provided directly by an outer layer with mechanical properties, this type of testa is relatively common and apparently has developed in several unrelated taxa.
Not much is known about the function of crystal cells. Possibly crystal cells supplement the mechanical strength of the seed coat. Crystals of Ca-oxalate, unlike those of silicon, occur both in sclerenchyma and in thin-walled cells (Corner, 1976). 2. Chemical Protection Tannins are main substances in the chemical defense against seed predators, which range from large vertebrates and insects to fungi and microbes. Tannins are a complex heterogeneous group of phenol derivates widely distributed in the plant body and abundant in seed coats.