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Titlebook: Cereal Tissue and Cell Culture; S. W. J. Bright,M. G. K. Jones Book 1985 Martinus Nijhoff/Dr W. Junk Publishers, Dordrecht 1985 Embryo.dev

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Advances in Agricultural Biotechnologyhttp://image.papertrans.cn/c/image/223265.jpg
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https://doi.org/10.1007/978-3-658-30805-6se of protoplasts as a source of material for biochemical studies; the latter is normally much easier. For cereals, this difference is especially marked. In this chapter, emphasis is given to the isolation and culture of cereal protoplasts and relevant aspects are considered first. This is followed
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https://doi.org/10.1007/978-3-658-30794-3yield. These shortcomings have been most limiting for . selection and genetic transformation where the end product is a regenerated plant from callus or cell cultures. Recovery of plants from cell cultures of monocots has been difficult, especially in germplasm suited for rapid incorporation into breeding populations.
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https://doi.org/10.1007/978-3-658-30916-9tic germplasm does not substantially change the picture because only a few major genes (mainly for disease resistance) are being introduced. Exotic germplasm has only been used in conjunction with extensive baekcrossing programs such that there is no attempt to adapt the exotic genome or any substantial portion of it to cropping practice (64).
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Cell Culture, Somatic Embryogenesis and Plant Regeneration in Maize, Rice, Sorghum and Millets,yield. These shortcomings have been most limiting for . selection and genetic transformation where the end product is a regenerated plant from callus or cell cultures. Recovery of plants from cell cultures of monocots has been difficult, especially in germplasm suited for rapid incorporation into breeding populations.
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