Zhou Qing, Wu Jian, Sang Yaru, Zhao Zhengyang, Zhang Pingdong, Liu Meiqin
Beijing Advanced Innovation Center for Tree Breeding by Molecular Design, Beijing Forestry University, Beijing, China.
National Engineering Laboratory for Tree Breeding, Beijing Forestry University, Beijing, China.
Front Plant Sci. 2020 Mar 17;11:295. doi: 10.3389/fpls.2020.00295. eCollection 2020.
Triploid breeding is a central way to improve growth traits, timber quality, and stress resistance in . In the present study, the morphology and viability of colchicine-induced 2n pollen, triploid production by crossing induced 2n pollen, and identification of genetic constitution of colchicine-induced 2n pollen were conducted in based on optimizing technology for inducing chromosome doubling in pollen. We found that the meiotic stage, injection time, and the interaction between the meiotic stage and injection time had highly significant effects on the 2n pollen production rate. The most effective treatment for inducing 2n pollen was to give 11 injections of 0.5% colchicine solution when pollen mother cells (PMCs) were at the pachytene stage. The highest 2n pollen production rate was 30.27 ± 8.69%. Colchicine occasionally affected ectexine deposition, and some narrow furrows were detected in the ectexine structure. However, no significant difference was observed in the pollen germination rate between natural 2n pollen and colchicine-induced 2n pollen. Moreover, 5 triploids derived from FDR-type 2n pollen were generated by crossing induced 2n pollen, suggesting that colchicine does not eliminate the function of colchicine-induced 2n pollen. However, slower growth of 2n pollen tubes was responsible for a lower triploid production rate.
三倍体育种是改善[某种植物]生长性状、木材质量和抗逆性的核心方法。在本研究中,基于优化花粉染色体加倍诱导技术,对秋水仙碱诱导的2n花粉的形态和活力、通过杂交诱导的2n花粉产生三倍体以及秋水仙碱诱导的2n花粉的遗传组成鉴定进行了[相关植物]研究。我们发现减数分裂阶段、注射时间以及减数分裂阶段与注射时间之间的相互作用对2n花粉产生率有极显著影响。诱导2n花粉最有效的处理方法是在花粉母细胞处于粗线期时注射11次0.5%秋水仙碱溶液。最高的2n花粉产生率为30.27±8.69%。秋水仙碱偶尔会影响花粉外壁沉积,在外壁结构中检测到一些狭窄的沟纹。然而,天然2n花粉和秋水仙碱诱导的2n花粉之间的花粉萌发率没有显著差异。此外,通过杂交诱导的2n花粉产生了5个源自FDR型2n花粉的三倍体,这表明秋水仙碱不会消除秋水仙碱诱导的2n花粉的功能。然而,2n花粉管生长较慢导致三倍体产生率较低。