观赏植物单倍体和双单倍体研究进展

R. Meena
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引用次数: 1

摘要

具有许多配子体染色体的孢子体植物称为单倍体植物。这些植物可以自然产生,也可以通过体外或体内诱导技术产生。双单倍体(Double haploid, DH)可以通过单倍体染色体数目的自然倍增或人工倍增获得。它们是纯合的,这种纯合性将在使用DH生产系统的一代生命周期中实现。这个生产系统是用来纠正杂种优势的。易于与DH人群互动。DH可以作为新品种或自花植物或异花植物的亲本自交系。单倍体可以用来分离突变体,特别是如果突变等位基因不是二倍体。如果在染色体复制后立即转化单倍体,则可逐步获得植株。将生物技术手段与传统方法相结合,可以在短时间内实现改良栽培植物的重要目标。本文分析了具有重要经济价值的观赏植物单倍体的研究进展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Review on Haploid and Double Haploids in Ornamental Plants
Sporophyte plants with many gametophytic chromosomes are called haploid plants. These plants can be produced naturally or through in vitro or in vivo induction techniques. Double haploid (DH) can be obtained by doubling the number of haploid chromosomes spontaneously or artificially. They are homozygous, and this homozygosity will be realized in the life cycle of a generation using the DH production system. This production system is used to correct heterosis. Easy to interact with the DH population. DH can be used as parental inbreds of new varieties or self-pollinated plants or cross-pollinated plants. Haploids can be used to isolate mutants, especially if the mutant allele is not diploid. If the haploid is transformed immediately after the chromosome is copied, the plant can be obtained step by step. By combining biotechnological means with conventional methods, the important goal of improving cultivated plants can be achieved in a short time. This article analyzes the various developments in the field of haploid species related to economically important ornamental species.
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