首页 | 本学科首页   官方微博 | 高级检索  
     


Artificial endosperm of Cleopatra tangerine zygotic embryos: a model for somatic embryo encapsulation
Authors:Nieves  Nadina  Lorenzo  Jose C.  Blanco  Maria de los A.  González  Justo  Peralta  Hipólito  Hernández  Martha  Santos  Ramón  Concepción  Oscar  Borroto  Carlos G.  Borroto  Eduviges  Tapia  Raúl  Martinez   Marcos E.  Fundora  Zaida  González  Alfredo
Affiliation:(1) Biochemistry Lab., Bioplant Centre, I.S.A.C.A., Carr. Morón km 9, CP 69450, Ciego de Avila, CUBA
Abstract:
Synthetic seed technology may be of value in breeding programs and allow the propagation of many elite genotype-derived plants in a short time. In this work, a range of artificial endosperm treatments of Cleopatra tangerine zygotic embryos were evaluated for suitability for encapsulation of somatic embryos. Different complexing ions in the form of alginate capsules, zeolite as an ion exchanger and the relationship between capsule-nutrient gel on germination of zygotic embryos, were evaluated. Artificial endosperm assays showed that abscisic acid (1 μM) and mannitol (0.25 M) delayed germination and conversion of zygotic embryos, whereas amino acid supplements (proline, glutamic acid and arginine) accelerated the conversion process. An artificial endosperm was used to encapsulate somatic and zygotic embryos. After encapsulation, zygotic embryos germinated after four days of culture while somatic embryos germinated asynchronously after 20 days. Somatic embryo-derived plantlets showed greater vigour than zygotic embryo-derived plantlets. Results showed that this artificial endosperm is adequate for Cleopatra tangerine somatic embryo germination and conversion into plants. This revised version was published online in June 2006 with corrections to the Cover Date.
Keywords:Citrus reshni  conversion  germination  synthetic seed  zeolite
本文献已被 SpringerLink 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号