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重新审视甘蔗中的减数分裂:染色体异常与二价体构型的普遍性

Revisiting Meiosis in Sugarcane: Chromosomal Irregularities and the Prevalence of Bivalent Configurations.

作者信息

Vieira Maria Lucia C, Almeida Carmelice B, Oliveira Carlos A, Tacuatiá Luana O, Munhoz Carla F, Cauz-Santos Luiz A, Pinto Luciana R, Monteiro-Vitorello Claudia B, Xavier Mauro A, Forni-Martins Eliana R

机构信息

Escola Superior de Agricultura "Luiz de Queiroz", Universidade de São Paulo, Piracicaba, Brazil.

Instituto de Biologia, Universidade Estadual de Campinas, Campinas, Brazil.

出版信息

Front Genet. 2018 Jun 14;9:213. doi: 10.3389/fgene.2018.00213. eCollection 2018.

Abstract

Traditional sugarcane cultivars () proved highly susceptible to diseases, and this led breeders to progress to interspecific crosses resulting in disease resistance. A backcrossing program to was then required to boost sucrose content. Clonal selection across generations and incorporation of other germplasm into cultivated backgrounds established the (narrow) genetic base of modern cultivars ( spp.), which have a man-made genome. The genome complexity has inspired several molecular studies that have elucidated aspects of sugarcane genome constitution, architecture, and cytogenetics. However, there is a critical shortage of information on chromosome behavior throughout meiosis in modern cultivars. In this study, we examined the microsporogenesis of a contemporary variety, providing a detailed analysis of the meiotic process and chromosome association at diakinesis, using FISH with centromeric probes. Chromosomal abnormalities were documented by examining high quality preparations of pollen mother cells (700 in total). Approximately 70% of the cells showed abnormalities, such as metaphase chromosomes not lined up at the plate, lagging chromosomes and chromosomal bridges, and tetrad cells with micronuclei. Some dyads with asynchronous behavior were also observed. Due to the hybrid composition of the sugarcane genome, we suggest that bivalent incomplete pairing may occur in the first prophase leading to univalency. The presence of rod bivalents showing the lagging tendency is consistent with a reduction in chiasma frequency. Finally, the presence of chromatin bridges indicates the indirect occurrence of chromosomal inversions, although chromosome fragments were not clearly recognized. Possible reasons for such meiotic abnormalities and the large prevalence of bivalent formation are discussed.

摘要

传统甘蔗品种被证明对疾病高度敏感,这促使育种者进行种间杂交以获得抗病性。随后需要一个回交计划来提高蔗糖含量。通过多代的克隆选择以及将其他种质纳入栽培背景,奠定了现代品种(甘蔗属)(狭窄)的遗传基础,这些品种具有人工基因组。基因组的复杂性激发了多项分子研究,这些研究阐明了甘蔗基因组的组成、结构和细胞遗传学方面。然而,关于现代品种减数分裂全过程中染色体行为的信息严重匮乏。在本研究中,我们检查了一个当代品种的小孢子发生过程,使用着丝粒探针进行荧光原位杂交,对减数分裂过程和终变期的染色体联会进行了详细分析。通过检查高质量的花粉母细胞制片(总共700个)记录了染色体异常情况。大约70%的细胞表现出异常,如中期染色体未在赤道板排列整齐(中期染色体未排列在赤道板上)、落后染色体和染色体桥,以及带有微核的四分体细胞。还观察到一些具有异步行为的二分体。由于甘蔗基因组的杂交组成,我们认为在第一次前期可能发生二价体不完全配对导致单价体出现。呈现落后趋势的棒状二价体的存在与交叉频率降低一致。最后,染色质桥的存在表明间接发生了染色体倒位,尽管未清楚识别出染色体片段。讨论了这种减数分裂异常以及二价体形成普遍存在的可能原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/084f/6010537/a73caa466883/fgene-09-00213-g001.jpg

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