首页|白花玉石籽石榴遗传转化体系的建立

白花玉石籽石榴遗传转化体系的建立

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[目的]为更好地研究石榴的基因功能,以白花玉石籽石榴为试材,构建出一种农杆菌介导的石榴遗传转化体系.[方法]在已有的石榴组织培养体系的基础上,通过筛选不同外植体和优化激素组合,获得石榴最佳再分化途径;探究农杆菌介导法中抗生素浓度、预培养时间、菌液浓度、侵染时间和抑菌剂浸洗时间对白花玉石籽石榴遗传转化效率的影响.[结果]终质量浓度为0.22 mg·L-1 6-BA和0.60 mg·L-1 IBA的WPM培养基能显著提高石榴外植体的再分化率,其中嫩茎分化率达96.30%±5.20%;50 mg·L-1卡那霉素和200 mg·L-1特美汀是筛选抗性芽的最佳质量浓度;白花玉石籽石榴遗传转化的最适组合为:预培养3 d、菌液OD600=0.8、侵染10 min、200 mg·L-1特美汀浸洗15 min.最后,通过检测GFP荧光,验证上述遗传转化体系所获得的植株,阳性率为26.00%.[结论]成功建立了农杆菌介导的白花玉石籽石榴嫩茎遗传转化体系,为石榴基因功能验证提供有力的技术支持.
Establishment of genetic transformation system for Baihuayushizi pome-granate
[Objective]Pomegranate is a favorate among consumers because of its high economic,nutri-tional and medicinal values.The rapid development of molecular biology has made genetic transforma-tion an important means to obtain new excellent germplasm of crops and carry out gene function verifi-cation,as well as apply an effective supplement to traditional breeding.At present,the genetic transfor-mation system of pomegranate is incomplete,resulting in the lagging of gene function research and mo-lecular breeding in pomegranate compared with other fruit crops.This experiment aimed to build a sta-ble and efficient genetic transformation system for Baihuayushizi pomegranate,with a view to provid-ing satisfactory technical support for gene function verification of pomegranate and the improvement of its germplasm resources.[Methods]In this study,sterile seedlings of Baihuayushizi pomegranate were used.On the basis of the tissue culture system in early stage,the redifferentiation system of pomegran-ate and the concentrations of kanamycin and timentin were screened,followed by a discussion on the re-lated influencing factors concerning genetic transformation such as pre-culture time,concentration of Agrobacterium,infection time and socking time of antibacterial agents.Finally,the optimal genetic transformation system for Baihuayushizi pomegranate mediated by Agrobacterium was established.[Results]The addition of 0.22 mg·L-1 6-BA and 0.60 mg·L-1 IBA into the WPM medium significantly improved the redifferentiation of pomegranate implants,which was manifested as higher differentiation rates of leaves and tender stems compared to other treatment portfolios.The differentiation rates were 83.93%±2.52%and 96.30%±5.20%,respectively,and the differentiation rate of tender stems increased by 14.74%compared with that of leaves.In addition,tender stems with a high differentiation rate were used as the receptor,and both induction rate and differentiation rate were significantly higher than other treatments without addition of kanamycin.When kanamycin was 50 mg·L-1,the induction rate of the callus of tender stem was reduced from 80.00%to 56.67%,and the differentiation of adventitious buds was as weak as only 8.33%±0.02%.When kanamycin was>60 mg·L-1,the callus induced by tender stems was severely browned or even died with a differentiation rate of zero,which indicated that this concentration was not suitable for screening pomegranate seedlings transformed from tender stems.When timentin was used as the antibacterial agent,if the concentration was 50 mg·L-1,the differentia-tion rate of tender stems was the highest at 67.22%±0.03%,but the contamination rate of the implant was also significantly higher than that of other treatments.When the concentration of timentin increased by 200 mg·L-1,while the growth of Agrobacterium was basically inhibited,the differentiation rates of tender stems and buds could reach more than 50%.Although 250-300 mg·L-1 timentin completely in-hibited the growth of Agrobacterium,the excessively high concentration was also had a certain inhibito-ry effect on the growth of implants,and the differentiation rate was less than 50%.In addition,the study on the four important factors of Agrobacterium-mediated genetic transformation of pomegranate showed that the transformation rate varied greatly among different treatment portfolios,and their effect on the genetic transformation rate was manifested as follows:pre-culture time>concentration of Agro-bacterium>infection time>socking time of antibacterial agents.Further single-factor analysis of vari-ance showed that the genetic transformation rate with pre-culture for 3 d was the highest at 19.33%,which was significantly higher than that of other treatment portfolios.When concentration ofAgrobacte-rium OD600=0.7,the transformation rate was 12.17%,which was not much different from that when OD600=0.6 and 0.8 but was significantly different from that when OD600=0.5.The genetic conversion rate with 10 min infection and 15 min immersion in antibacterial agent was higher than that of other treat-ments.[Conclusion]The addition of 0.22 mg·L-1 6-BA and 0.60 mg·L-1 IBA into the WPM medium sig-nificantly improved the redifferentiation of pomegranate implants,with a differentiation rate of tender stems of 96.30%±5.20%.50 mg·L-1 kanamycin and 200 mg·L-1 timentin were optimal for screening re-sistant bud.Pre-culture for 3 d,concentration of Agrobacterium OD600=0.8,10 min infection time and 15 min immersion in 200 mg·L-1 timentin were the most suitable portfolio for genetic transformation of pomegranate.GFP fluorescence detection was performed for verification on the plants obtained under the above-mentioned genetic transformation system,and the positive plant acquisition rate was 26.00%.In this study,genetic transformation system of tender stems that were Agrobacterium-mediated was suc-cessfully established,laying the foundation for verifying pomegranate gene function.

PomegranateRegeneration pathway optimizationAgrobacterium-mediated methodGe-netic transformation system

唐靖雯、王宁、伍程程、王麒麟、丁文豪、葛伟强、郭宁、钱晶晶

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安徽科技学院农学院,安徽凤阳 233100

安徽中以农业科技有限公司,安徽怀远 233400

湖北省荆门市京山市农业技术推广中心,湖 北京山 431800

石榴 再生途径优化 农杆菌介导法 遗传转化体系

2024

果树学报
中国农业科学院郑州果树研究所

果树学报

CSTPCD北大核心
影响因子:1.486
ISSN:1009-9980
年,卷(期):2024.41(12)