数字农科院2.0

Gibberellin Treatment Accelerates Starch Decomposition and Seed Germination in Sticky Nightshade (Solanum sisymbriifolium Lam.)

文献类型: 外文期刊

作者: Haobo Xu;Danni Mo;Xingyu Zhang;Fangman Li;Jinbao Tao;Pingfei Ge;Yang Yang;Ziyuan Wang;Yuyang Zhang

作者机构:

关键词: (0-1-4)germination;gibberellin;starch granules;sticky nightshade

期刊名称: Horticulturae

ISSN: 2311-7524

年卷期: 2025 年 10 卷 12 期

页码:

收录情况: SCIE(2025版)

摘要: Sticky nightshade (Solanum sisymbriifolium Lam.) is a spiny species with a variety of disease resistance characteristics found worldwide within the Solanum genus. However, its low germination rate and long germination period pose obstacles to the effective use of this species. Here, we treated Sticky nightshade with different concentrations of gibberellin (GA3) and observed paraffin sections of Sticky nightshade seeds treated with different GA3 concentrations over different time ranges. The results showed that a 400 mg/L exogenous GA3 concentration at room temperature could improve the germination rate of Sticky nightshade the most effectively. Exogenous GA3 treatment can significantly accelerate the hydrolysis of starch granules and increase the germination rate of seeds. Subsequently, we also measured the MDA content of Sticky nightshade seeds treated with different GA3 concentrations over different time ranges. The result reveals that GA3 treatment can steadily decrease Sticky nightshade seeds’ MDA content during germination, indicating that exogenous GA3 treatment also reduces membrane peroxidation and maintains the stability of the plasma membrane. In this paper, we identified an optimal GA3-treated concentration of Sticky nightshade to improve seed germination at room temperature and explored the reason why the exogenous GA3 treatment of Sticky nightshade seed increased the germination rate.

分类号:

  • 相关文献

[1]MechanismofSolanumrostratumDunalSeedGermination. 杨龙,魏守辉,HongjuanHuang,ZhaofengHuang,JingchaoChen,JinyiChen,张朝贤. 2013

[2]Gibberellin stimulates regrowth after defoliation of sheepgrass (Leymus chinensis) by regulating expression of fructan-related genes. Cai, Yueyue,Liu, Gongshe,Chen, Shuangyan,Shao, Linhui,Li, Xiuqing.

[3]A MADS-box gene NtSVP regulates pedicel elongation by directly suppressing a KNAT1-like KNOX gene NtBPL in tobacco (Nicotiana tabacum L.). Wang, Di,Chen, Xiaobo,Song, Gaoyuan,Kong, Xingchen,Geng, Shuaifeng,Yang, Jiayue,Wang, Bingnan,Wu, Liang,Li, Aili,Mao, Long,Zhang, Zenglin,Liu, Danmei.

[4]Gibberellins regulate the stem elongation rate without affecting the mature plant height of a quick development mutant of winter wheat (Triticum aestivum L.). Zhang, Ning,Xie, Yong-Dun,Guo, Hui Jun,Zhao, Lin-Shu,Xiong, Hong-Chun,Gu, Jia-Yu,Li, Jun-Hui,Zhao, Zi-Wei,Zhao, Shi-Rong,Liu, Lu-Xiang,Kong, Fu-Quan,Sui, Li.

[5]The Influence of RNAi Targeting of OsGA20ox2 Gene on Plant Height in Rice. Qiao, Feng,Zhao, Kai-Jun,Qiao, Feng,Qiao, Feng,Zhao, Kai-Jun.

[6]Overexpression of soybean GmCBL1 enhances abiotic stress tolerance and promotes hypocotyl elongation in Arabidopsis. Li, Zhi-Yong,Xu, Zhao-Shi,Chen, Ming,Li, Lian-Cheng,Ma, You-Zhi,Li, Zhi-Yong,He, Guang-Yuan,Yang, Guang-Xiao.

[7]Gibberellin A(3) pretreatment increased antioxidative capacity of cucumber radicles and hypocotyls under suboptimal temperature. Li, Qingzhu,Li, Chaohan,Shi, Qinghua,Yu, Xianchang. 2011

[8]Tissue-specific expression and drought responsiveness of cell-wall invertase genes of rice at flowering. Ji, XM,Raveendran, M,Oane, R,Ismail, A,Lafitte, R,Bruskiewich, R,Cheng, SH,Bennett, J.

[9]EUI1, encoding a putative cytochrome P450 monooxygenase, regulates internode elongation by modulating gibberellin responses in rice. Anding Luo , Qian Qian +, Hengfu Yin , Xiaoqiang Liu , Changxi Yin , Ying Lan , Ying Lan , Jiuyou Tang , Zuoshun Tang , Shouyun Cao , Xiujie Wang , Kai Xia , Xiangdong Fu , Da Luo *, Chengcai Chu *. 2006

[10]Characterizations and molecular mapping of a novel dominant semi-dwarf gene Sdd(t) in rice (Oryza sativa). B. M. Liu , Y. J. Wu *, X. D. Fu , Q. Qian. 2008

[11]Integration of Transcriptomic and Metabolomic Profiles Provides Insights into the Influence of Nitrogen on Secondary Metabolism in Fusarium sacchari. Yixue Bao,Zhenyue Lin,Wei Yao,Sehrish Akbar,Wenfeng Lin,Charles A. Powell,Jianlong Xu,Muqing Zhang. 2023

[12]OsFBK4, a novel GA insensitive gene positively regulates plant height in rice (Oryza Sativa L.). Workie Anley Zegeye,Daibo Chen,Md Anowerul Islam,Hong Wang,Aamir Riaz,Mohammad Hasanuzzaman Rani,Kashif Hussain,Qunen Liu,Xiaodeng Zhan,Shihua Cheng,Liyong Cao,Yingxin Zhang. 2022

[13]Identification of a Rice Leaf Width Gene Narrow Leaf 22 (NAL22) through Genome-Wide Association Study and Gene Editing Technology. Yuchen Xu,Shuangyong Yan,Su Jiang,Lu Bai,Yanchen Liu,Shasha Peng,Rubin Chen,Qi Liu,Yinghui Xiao,Houxiang Kang. 2023

[14]New semi-dwarfing alleles with increased coleoptile length by gene editing of gibberellin 3-oxidase 1 using CRISPR-Cas9 in barley (Hordeum vulgare L.). Cheng, Jingye,Hill, Camilla,Han, Yong,He, Tianhua,Ye, Xingguo,Shabala, Sergey,Guo, Ganggang,Zhou, Meixue,Wang, Ke,Li, Chengdao. 2023

[15]High responsiveness to nitrogen supply in modern maize cultivars is contributed to gibberellin-dependent leaf elongation. Zheng Liu,Jia Gao,Ye Sha,Zhanhong Hao,Lihua Ke,Yiwen Huang,Fanjun Chen,Lixing Yuan,Guohua Mi. 2023

[16]Gibberellins inhibit flavonoid biosynthesis and promote nitrogen metabolism in medicago truncatula. Hao Sun,Huiting Cui,Jiaju Zhang,Junmei Kang,Zhen Wang,Mingna Li,Fengyan Yi,Qingchuan Yang,Ruicai Long. 2021

[17]Mitogen-Activated Protein Kinases Associated Sites of Tobacco Repression of Shoot Growth Regulates Its Localization in Plant Cells. Wang L., Gui Y., Yang B., Dong W., Xu P., Si F., Yang W., Luo Y., Guo J., Niu D., Jiang C.. 2022

[18]Base Editing of EUI1 Improves the Elongation of the Uppermost Internode in Two-Line Male Sterile Rice Lines. Yakun Wang,Shengjia Tang,Naihui Guo,Ruihu An,Zongliang Ren,Shikai Hu,Xiangjin Wei,Guiai Jiao,Lihong Xie,Ling Wang,Ying Chen,Fengli Zhao,Peisong Hu,Zhonghua Sheng,Shaoqing Tang. 2023

[19]An orchestrated ethylene-gibberellin signaling cascade contributes to mesocotyl elongation and emergence of rice direct seeding∞. Lyu, Yusong,Dong, Xinli,Niu, Shipeng,Cao, Ruijie,Shao, Gaoneng,Sheng, Zhonghua,Jiao, Guiai,Xie, Lihong,Hu, Shikai,Tang, Shaoqing,Wei, Xiangjin,Hu, Peisong. 2024

[20]Individual and synergistic effects of different fertilizers and gibberellin on growth and morphology of chili seedlings. Fatima, Iza,Fatima, Aiman,Shah, Muhammad Aqib,Farooq, Muhammad Amjad,Ahmad, Iftikhar Ali,Ejaz, Irsa,Adjibolosoo, Daniel,Laila, Ume,Rasheed, Muhammad Asim,Shahid, Ans Imran,Tariq, Ayesha,Hani, Ume. 2024

作者其他论文 更多>>