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三倍体杂种‘贝林熊竹 1#’的小孢子发生及 2x × 3 × 杨树杂种初级三体的检测。

Microsporogenesis in the triploid hybrid 'Beilinxiongzhu 1#' and detection of primary trisomy in 2x × 3 × Populus hybrids.

机构信息

College of Biological Sciences and Technology, Beijing Forestry University, Beijing, 100083, China.

National Engineering Research Center of Tree Breeding and Ecological Restoration, Beijing Forestry University, Beijing, 100083, China.

出版信息

BMC Plant Biol. 2023 Apr 4;23(1):177. doi: 10.1186/s12870-023-04189-9.

Abstract

BACKGROUND

Primary trisomy is a powerful genetic tool in plants. However, trisomy has not been detected in Populus as a model system for tree and woody perennial plant biology.

RESULTS

In the present study, a backcross between Populus alba × Populus glandulosa 'YXY 7#' (2n = 2x = 38) and the triploid hybrid 'Beilinxiongzhu 1#' (2n = 3x = 57) based on the observation of microsporogenesis and an evaluation of the variations in pollen was conducted to create primary trisomy. Many abnormalities, such as premature migration of chromosomes, lagging of chromosomes, chromosome bridges, asymmetric separation, micronuclei, and premature cytokinesis, have been detected during meiosis of the triploid hybrid clone 'Beilinxiongzhu 1#'. However, these abnormal behaviors did not result in completely aborted pollen. The pollen diameter of the triploid hybrid clone 'Beilinxiongzhu 1#' is bimodally distributed, which was similar to the chromosomal number of the backcross progeny. A total of 393 progeny were generated. We provide a protocol for determining the number of chromosomes in aneuploid progeny, and 19 distinct simple sequence repeat (SSR) primer pairs covering the entire Populus genome were developed. Primary trisomy 11 and trisomy 17 were detected in the 2x × 3 x hybrid using the SSR molecular markers and counting of somatic chromosomes.

CONCLUSIONS

Nineteen distinct SSR primer pairs for determining chromosomal number in aneuploid individuals were developed, and two Populus trisomies were detected from 2x × 3 x hybrids by SSR markers and somatic chromosome counting. Our findings provide a powerful genetic tool to reveal the function of genes in Populus.

摘要

背景

在植物中,三体性是一种强大的遗传工具。然而,在杨树作为树木和木本多年生植物生物学的模式系统中,尚未检测到三体性。

结果

在本研究中,基于对小孢子发生的观察和对花粉变异的评估,在白杨 × 腺柳 'YXY 7#'(2n=2x=38)和三倍体杂种 '贝林雄株 1#'(2n=3x=57)之间进行了回交,以产生初级三体性。在三倍体杂种克隆 '贝林雄株 1#'的减数分裂过程中,检测到许多异常,如染色体过早迁移、染色体滞后、染色体桥、不对称分离、微核和过早胞质分裂。然而,这些异常行为并没有导致完全败育的花粉。三倍体杂种克隆 '贝林雄株 1#'的花粉直径呈双峰分布,与回交后代的染色体数相似。共产生了 393 个后代。我们提供了一种确定非整倍体后代染色体数的方案,并开发了 19 对覆盖整个杨属基因组的独特简单重复序列(SSR)引物对。使用 SSR 分子标记和体细胞染色体计数,在 2x×3x 杂种中检测到初级三体性 11 和三体性 17。

结论

开发了 19 对用于确定非整倍体个体中染色体数目的独特 SSR 引物对,并通过 SSR 标记和体细胞染色体计数从 2x×3x 杂种中检测到两个杨树三体性。我们的发现为揭示杨树基因的功能提供了一个强大的遗传工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/162c/10074712/0bdcfa5cd433/12870_2023_4189_Fig1_HTML.jpg

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