Suppr超能文献

茄子中的双单倍体

Doubled Haploids in Eggplant.

作者信息

Mir Ricardo, Calabuig-Serna Antonio, Seguí-Simarro Jose M

机构信息

Cell Biology Group-COMAV Institute, Universitat Politècnica de València, 46011 Valencia, Spain.

出版信息

Biology (Basel). 2021 Jul 20;10(7):685. doi: 10.3390/biology10070685.

Abstract

Eggplant is a solanaceous crop cultivated worldwide for its edible fruit. Eggplant breeding programs are mainly aimed to the generation of F1 hybrids by crossing two highly homozygous, pure lines, which are traditionally obtained upon several self crossing generations, which is an expensive and time consuming process. Alternatively, fully homozygous, doubled haploid (DH) individuals can be induced from haploid cells of the germ line in a single generation. Several attempts have been made to develop protocols to produce eggplant DHs principally using anther culture and isolated microspore culture. Eggplant could be considered a moderately recalcitrant species in terms of ability for DH production. Anther culture stands nowadays as the most valuable technology to obtain eggplant DHs. However, the theoretical possibility of having plants regenerated from somatic tissues of the anther walls cannot be ruled out. For this reason, the use of isolated microspores is recommended when possible. This approach still has room for improvement, but it is largely genotype-dependent. In this review, we compile the most relevant advances made in DH production in eggplant, their application to breeding programs, and the future perspectives for the development of other, less genotype-dependent, DH technologies.

摘要

茄子是一种茄科作物,其可食用果实全球广泛种植。茄子育种计划主要旨在通过将两个高度纯合的纯系杂交来培育F1杂种,传统上这是通过几代自交获得的,这是一个昂贵且耗时的过程。另外,单倍体细胞可在一代中从生殖系的单倍体细胞诱导产生完全纯合的双单倍体(DH)个体。人们已经进行了几次尝试来开发主要使用花药培养和游离小孢子培养来生产茄子DH的方案。就DH生产能力而言,茄子可被视为一种中度难培养的物种。目前,花药培养是获得茄子DH最有价值的技术。然而,不能排除从花药壁体细胞组织再生植株的理论可能性。因此,尽可能推荐使用游离小孢子。这种方法仍有改进空间,但很大程度上依赖于基因型。在本综述中,我们汇总了茄子DH生产方面的最相关进展、它们在育种计划中的应用以及开发其他较少依赖基因型的DH技术的未来前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2fef/8301345/64d5c5d71d04/biology-10-00685-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验