Extensive chromosome rearrangements induced by γ-rays irradiation in lily mutant ‘Menglina Leddy’

IF 1.6 3区 农林科学 Q2 AGRONOMY Euphytica Pub Date : 2024-07-31 DOI:10.1007/s10681-024-03392-5
Runxin Ni, Guangxin Liu, Yihang Ning, Ziyue Wang, Yan Zhen, Mengli Xi
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Abstract

The ‘Menglina Leddy’ lily cultivar was selected from the Lilium longiflorum Thunb. ‘White Fox’ γ-rays irradiation line. It produces much less pollen than ‘White Fox’ but has similar morphology traits. In order to reveal the effects of gamma irradiations on the chromosomes, mitosis, and meiosis in ‘Menglina Leddy’ cells were investigated by fluorescence in situ hybridization using rDNA and telomeric repeat probes. Although both ‘Menglina Leddy’ and ‘White Fox’ had 24 chromosomes, a considerable amount of chromosomal breaking and rejoining were detected in the former. A super long and two super small chromosomes appeared in all the ‘Menglina Leddy’ cells. Meiotic abnormalities occurred at each separation stage. Chromosomes pairing configuration showed that complex recombination had happened in ‘Menglina Leddy’. The super long chromosome was a Robertsonian translocation product composed of two non-homologous long arms. The chromosome deletions and recombinations did not affect the main ornamental traits, but allowed it to acquire the characteristic of less pollen.

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百合突变体 "Menglina Leddy "在γ射线照射下发生的广泛染色体重排
Menglina Leddy "百合栽培品种选自 Lilium longiflorum Thunb.它产生的花粉比'白狐'少得多,但形态特征相似。为了揭示伽马射线辐照对染色体的影响,研究人员使用 rDNA 和端粒重复探针进行荧光原位杂交,研究了'Menglina Leddy'细胞的有丝分裂和减数分裂。虽然'Menglina Leddy'和'White Fox'都有 24 条染色体,但在前者中检测到了大量的染色体断裂和重接。在所有'Menglina Leddy'细胞中都出现了一条超长染色体和两条超小染色体。每个分离阶段都出现了减数分裂异常。染色体的配对结构表明,"Menglina Leddy "细胞中发生了复杂的重组。超长染色体是由两条非同源长臂组成的罗伯逊易位产物。染色体的缺失和重组并不影响主要的观赏性状,但使其获得了花粉少的特征。
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来源期刊
Euphytica
Euphytica 农林科学-农艺学
CiteScore
3.80
自引率
5.30%
发文量
157
审稿时长
4.5 months
期刊介绍: Euphytica is an international journal on theoretical and applied aspects of plant breeding. It publishes critical reviews and papers on the results of original research related to plant breeding. The integration of modern and traditional plant breeding is a growing field of research using transgenic crop plants and/or marker assisted breeding in combination with traditional breeding tools. The content should cover the interests of researchers directly or indirectly involved in plant breeding, at universities, breeding institutes, seed industries, plant biotech companies and industries using plant raw materials, and promote stability, adaptability and sustainability in agriculture and agro-industries.
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