Citation: | WEI X H, FENG X, HE F M, et al. Efficacy of Vomitoxin as Elicitor for Controlling Soilborne Diseases on Potato Plants [J]. Fujian Journal of Agricultural Sciences,2023,38(3):329−338 doi: 10.19303/j.issn.1008-0384.2023.03.009 |
[1] |
韩晓. 浅析马铃薯主粮产业化发展现状—基于希森马铃薯产业集团的调研 [J]. 农村农业农民, 2021(10):54−55.
HAN X. Brief analysis on the status quo of potato staple grain industrialization —based on the investigation of Xisen Potato Industry Group [J]. Country Agriculture Farmers, 2021(10): 54−55.(in Chinese)
|
[2] |
DEVAUX A, GOFFART J P, KROMANN P, et al. The Potato of the Future: Opportunities and Challenges in Sustainable Agri-food Systems [J]. Potato research, 2021, 64(4): 681−720. doi: 10.1007/s11540-021-09501-4
|
[3] |
王素华, 李树举, 杨丹, 等. 中国马铃薯产业的发展现状及方向[C]. 2019年中国马铃薯大会, 2019: 44-50.
|
[4] |
贺加永. 中国马铃薯产业发展现状及建议 [J]. 农业展望, 2020, 16(9):34−39.
HE J Y. Status quo and suggestions of China’s potato industry development [J]. Agricultural Outlook, 2020, 16(9): 34−39.(in Chinese)
|
[5] |
病虫害防治处. 2020年马铃薯重大病虫害防控技术方案[EB/OL]. (2020-04-03)[2020-04-10]. http://www.nzdb.com.cn/nj/20200403/266424.html.
|
[6] |
冷功业, 杨建利, 邢娇阳, 等. 我国农业高质量发展的机遇、问题及对策研究 [J]. 中国农业资源与区划, 2021, 42(5):1−11.
LENG G Y, YANG J L, XING J Y, et al. The research on the opportunities, problems and solutions for the high qualityagricultural development in China [J]. Chinese Journal of Agricultural Resources and Regional Planning, 2021, 42(5): 1−11.(in Chinese)
|
[7] |
潘哲超, 陈建斌, 范静华, 等. 稻瘟菌粗毒素对水稻防御性相关酶系的诱导 [J]. 云南农业大学学报, 2008, 23(2):162−166.
PAN Z C, CHEN J B, FAN J H, et al. Activities of defense-related enzymes induced by grude toxin from Magnaporthe grisea [J]. Journal of Yunnan Agricultural University, 2008, 23(2): 162−166.(in Chinese)
|
[8] |
马春红, 翟彩霞, 商闯, 等. 低浓度玉米小斑病菌T小种和C小种毒素培养滤液对玉米C103叶片过氧化物酶活性的诱导作用[C]. 中国植物病理学会2008年学术年会论文集, 2008: 504-508.
|
[9] |
BAJESTANI B, BASTAION V. Study on differentialy lipase gene expression against different inducers of defense resonse in scab-resisitant and susceptible wheat cultivars [J]. RecAdv Agric, 2010(1): 6−14.
|
[10] |
NISHIUCHI T, MASUDA D, NAKASHITA H, et al. Fusarium phytotoxin trichothecenes have an elicitor-like activity in Arabidopsis thaliana, but the activity differed significantly among their molecular species [J]. Molecular Plant Microbe Interactions, 2006, 19(5): 512−520. doi: 10.1094/MPMI-19-0512
|
[11] |
赵莹, 薛华丽, 毕阳, 等. 低质量浓度T-2处理对马铃薯块茎苯丙烷代谢活性的诱导 [J]. 食品科学, 2015, 36(6):232−235.
ZHAO Y, XUE H L, BI Y, et al. T-2 toxin at low concentration activates phenylpropanoid pathway in potato tubers [J]. Food Science, 2015, 36(6): 232−235.(in Chinese)
|
[12] |
赵潇璨, 徐永清, 贺付蒙, 等. 低浓度呕吐毒素作为激发子对马铃薯抗干腐病的诱导及其作用机制 [J]. 作物学报, 2020, 46(11):1801−1809.
ZHAO X C, XU Y Q, HE F M, et al. Low concentration of vomitoxin as elicitor induced resistance of dry rot disease of potato and its mechanism [J]. Acta Agronomica Sinica, 2020, 46(11): 1801−1809.(in Chinese)
|
[13] |
贺付蒙, 单玮玉, 赵潇璨, 等. T-2毒素在马铃薯品种对镰刀菌干腐病抗性评价中的应用 [J]. 西北农业学报, 2021, 30(3):445−451.
HE F M, SHAN W Y, ZHAO X C, et al. Application of T-2 toxin in evaluation of potato varieties resistance to Fusarium dry rot [J]. Acta Agriculturae Boreali-Occidentalis Sinica, 2021, 30(3): 445−451.(in Chinese)
|
[14] |
阮双, 司红起. 小麦DON毒素研究进展 [J]. 生物技术进展, 2021, 11(5):634−641.
RUAN S, SI H Q. Research progress on DON toxin in wheat [J]. Current Biotechnology, 2021, 11(5): 634−641.(in Chinese)
|
[15] |
吴琼. 深绿木霉T2蛋白TraT2A诱导抗病活性及其机理研究[D]. 兰州: 甘肃农业大学, 2019.
WU Q. Study on induced disease resistance activity and mechanism of T2 protein TraT2A from Trichoderma viride[D]. Lanzhou: Gansu Agricultural University, 2019. (in Chinese)
|
[16] |
ANTERPREET K, SATVIR K G. Induced defense dynamics inplant parts is requisite for resistance to Helicoverpa armigera (Hubner) infestation in chickpea[J] Phytoparasitica, 2017, 45: 559-576.
|
[17] |
XIAO S, HU Q, SHEN J, et al. GhMYB4 downregulates lignin biosynthesis and enhances cotton resistance to Verticillium dahlia [J]. Plant Cell Rep, 2021, 40(4): 735−751. doi: 10.1007/s00299-021-02672-x
|
[18] |
KASHYAP A, PLANAS-MARQUÈS M, CAPELLADES M, et al. Blocking intruders: Inducible physico-chemical barriers against plant vascular wilt pathogens [J]. Journal of Experimental Botany, 2021, 72(2): 184−198. doi: 10.1093/jxb/eraa444
|
[19] |
霍宏丽. 硅酸钠提高马铃薯对黑痣病抗性及其生理生化抗病机制[D]. 呼和浩特: 内蒙古农业大学, 2018.
HUO H L. Sodium silicate increases the resistance of potato and its physiological and biochemical mechanism on stem canker and black scurf[D]. Hohhot: Inner Mongolia Agricultural University, 2018. (in Chinese)
|
[20] |
刘兆明. 诱导马铃薯抗晚疫病复配激发子筛选模型的初步研究[D]. 保定: 河北大学, 2011.
LIU Z M. Preliminary study on screening model of compound elicitor for inducing potato resistance to late blight[D]. Baoding: Hebei University, 2011. (in Chinese)
|
[21] |
刘惠标, 郑颂, 赵恢发, 等. 比重复式清选机降低小麦呕吐毒素的研究 [J]. 粮油仓储科技通讯, 2019, 35(1):39−41,45.
LIU H B, ZHENG S, ZHAO H F, et al. Study on reducing wheat vomiting toxin by compound gravity cleaner [J]. Liangyou Cangchu Keji Tongxun, 2019, 35(1): 39−41,45.(in Chinese)
|