A tetraploid-dominated cytochimera developed from a natural bud mutant of the nonapomictic mandarin variety ‘Orah’

IF 2.6 3区 农林科学 Q1 AGRONOMY
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Abstract

Nonapomictic citrus tetraploids are desirable in citrus breeding for the production of triploid, seedless varieties, and polyploid rootstocks. However, only a few lines have been reported, and they were all generated using chemical methods. A 2x + 4 × cytochimera of the nonapomictic citrus variety ‘Orah’ mandarin, which developed from a bud mutant, was found due to its morphology differing from that of diploid plants and characterised via ploidy analysis combining flow cytometry and chromosome observation. The chimaera was stable, and there were 1.86–1.90 times as tetraploid cells as diploid cells. Anatomical structure observation revealed that the ‘Orah’ chimaera may be a periclinal chimaera with diploid cells in the L1 layer and tetraploid cells in the L2 and L3 layers. The chimaera showed some typical traits of polyploid plants, including thicker shoots, wider and thicker leaves, larger flowers and fruits, and fewer but larger seeds in fruits than in diploid plants. Almost all the seeds of the chimaera were monoembryonic. Most of the self-pollinated progenies of the chimaera were identified as tetraploids, and some triploid, pentaploid, and hexaploid plants were found. As a female, the chimaera produced allotriploids when crossed with Australian finger lime. In addition, 6 plants developed from polyembryonic seeds of the chimaera were identified as sexual tetraploid progenies with low-level recombinant genomes. Therefore, the ‘Orah’ 2x + 4 × chimaera can be used as a female parent to produce hybrid triploid and tetraploid citrus plants with high efficiency. Identification of the chimaera demonstrated that tetraploid citrus plants, especially nonapomictic varieties, can be generated from shoot bud mutants.

从非绒毛柑橘品种'Orah'的自然芽突变体中培育出的四倍体主导型细胞分裂体
摘要 在柑橘育种中,非同源柑橘四倍体是生产三倍体无籽品种和多倍体砧木的理想选择。然而,目前仅有少数几个品系被报道过,而且都是用化学方法产生的。非同源柑橘品种 "Orah "柑橘的 2x + 4 × 细胞分裂系是由一个芽突变体发展而来的,由于其形态与二倍体植株不同而被发现,并通过流式细胞仪和染色体观察相结合的倍性分析对其进行了表征。这种嵌合体很稳定,四倍体细胞是二倍体细胞的 1.86-1.90 倍。解剖结构观察显示,"奥拉 "奇异体可能是一种包膜奇异体,L1层为二倍体细胞,L2和L3层为四倍体细胞。与二倍体植物相比,嵌合体表现出多倍体植物的一些典型特征,包括更粗的芽,更宽更厚的叶片,更大的花和果实,以及更少但更大的果实种子。几乎所有嵌合体的种子都是单胚性的。大多数嵌合体的自花授粉后代被鉴定为四倍体,也发现了一些三倍体、五倍体和六倍体植株。作为雌性,奇异株与澳大利亚指石灰杂交后会产生异源三倍体。此外,由该奇异种的多胚层种子培育出的 6 株植株被鉴定为有性四倍体后代,其基因组重组水平较低。因此,'Orah' 2x + 4 × chimaera 可以作为雌性亲本,高效生产杂交三倍体和四倍体柑橘植株。嵌合体的鉴定表明,四倍体柑橘植株,尤其是非同源品种,可以从芽苞突变体中产生。
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来源期刊
Molecular Breeding
Molecular Breeding 农林科学-农艺学
CiteScore
5.60
自引率
6.50%
发文量
67
审稿时长
1.5 months
期刊介绍: Molecular Breeding is an international journal publishing papers on applications of plant molecular biology, i.e., research most likely leading to practical applications. The practical applications might relate to the Developing as well as the industrialised World and have demonstrable benefits for the seed industry, farmers, processing industry, the environment and the consumer. All papers published should contribute to the understanding and progress of modern plant breeding, encompassing the scientific disciplines of molecular biology, biochemistry, genetics, physiology, pathology, plant breeding, and ecology among others. Molecular Breeding welcomes the following categories of papers: full papers, short communications, papers describing novel methods and review papers. All submission will be subject to peer review ensuring the highest possible scientific quality standards. Molecular Breeding core areas: Molecular Breeding will consider manuscripts describing contemporary methods of molecular genetics and genomic analysis, structural and functional genomics in crops, proteomics and metabolic profiling, abiotic stress and field evaluation of transgenic crops containing particular traits. Manuscripts on marker assisted breeding are also of major interest, in particular novel approaches and new results of marker assisted breeding, QTL cloning, integration of conventional and marker assisted breeding, and QTL studies in crop plants.
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