Citral(Eo)exhibits excellent fungicidal activities.However,it is difficult to maintain long-term fungicidal activity due to its strong volatility.Herein,a controlled-release strategy by using biomass-derived porous ca...Citral(Eo)exhibits excellent fungicidal activities.However,it is difficult to maintain long-term fungicidal activity due to its strong volatility.Herein,a controlled-release strategy by using biomass-derived porous carbon(BC)was developed to overcome the drawback of Eo.New composite materials were prepared by loading Eo on tea stem porous carbon(BC@Eo),and their controlled-release fungicidal activity against Exobasidium vexans was assessed.BC with a large specific surface area of 1001.6 m2/g and mesoporous structure was fabricated through carbonization tempera-ture of 700℃.The BC@Eo materials were characterized using Fourier-transform infrared spectroscopy and X-ray powder diffraction.The results suggested that chemical and physical interactions occurred in BC@Eo.The Eo release profile suggested a biphasic pattern with an initial fast release on days 1–14 and a subsequent controlled phase on days 14–30.The in vitro cumulative release percentage of Eo from BC@Eo was 51%during one month,and this result was significantly lower than that from free Eo(cumulative release percentage of Eo of 82%in one week).The anti-fungal activities of Eo and BC@Eo against E.vexans were determined using the inhibition zone method.The results indicated that Eo and BC@Eo formed large inhibition zones of 19.66±0.79 and 21.92±0.77 mm,respectively.The influence on the hyphal structure of E.vexans was observed by scanning electron microscopy on day 30.The hyphal structure of E.vexans treated with BC@Eo was more shrunken than that treated with Eo at 30 days,suggesting that BC@Eo prolongs the fungicidal activity against E.vexans.This study demonstrated that the encapsulation of Eo in BC for developing the BC@Eo materials could be a promising strategy to inhibit volatility and maintain the fungicidal activity of Eo and provide a potential alternative for the reuse of abundant tea biomass waste resources.展开更多
采用高通量测序技术对被茶饼病病菌侵染的茶树叶片进行转录组测序,筛选得到差异基因359个,其中248个上调表达,111个下调表达。差异基因中有216个获得GO(Gene ontology)数据库功能注释,主要涉及到生物合成过程、催化活性、细胞过程等诸...采用高通量测序技术对被茶饼病病菌侵染的茶树叶片进行转录组测序,筛选得到差异基因359个,其中248个上调表达,111个下调表达。差异基因中有216个获得GO(Gene ontology)数据库功能注释,主要涉及到生物合成过程、催化活性、细胞过程等诸多生理生化过程;KEGG(Kyoto encyclopedia of genes and genomes)数据库富集分析发现,共有106个基因被注释到47个代谢通路中,其中,单萜生物合成、卟啉和叶绿素代谢、核糖体、氮代谢、双萜生物合成、植物病原互作等通路显著富集。有32个差异基因被鉴定为转录因子,分布在16个转录因子家族中。利用实时荧光定量PCR(Real time quantitative PCR,qRT-PCR)验证了随机挑选的差异基因在感病叶片和未感病叶片中的相对表达量,与转录组测序结果的变化趋势一致。结果表明,茶树响应病原菌侵染是一个复杂的过程,大量基因被诱导或抑制表达,与抗病相关的转录因子被大量激活且上调表达。本研究为深入挖掘茶树抗病基因及进一步研究抗病分子机制提供了理论依据。展开更多
基金Supported by National Modern Agricultural Industry Technology System,Youth Science and Technology Fund of Guizhou Academy of Agricultural Sciences No.[2020]02,Guiding Project of Guizhou Academy of Agricultural Sciences No.[2018]01.
文摘Citral(Eo)exhibits excellent fungicidal activities.However,it is difficult to maintain long-term fungicidal activity due to its strong volatility.Herein,a controlled-release strategy by using biomass-derived porous carbon(BC)was developed to overcome the drawback of Eo.New composite materials were prepared by loading Eo on tea stem porous carbon(BC@Eo),and their controlled-release fungicidal activity against Exobasidium vexans was assessed.BC with a large specific surface area of 1001.6 m2/g and mesoporous structure was fabricated through carbonization tempera-ture of 700℃.The BC@Eo materials were characterized using Fourier-transform infrared spectroscopy and X-ray powder diffraction.The results suggested that chemical and physical interactions occurred in BC@Eo.The Eo release profile suggested a biphasic pattern with an initial fast release on days 1–14 and a subsequent controlled phase on days 14–30.The in vitro cumulative release percentage of Eo from BC@Eo was 51%during one month,and this result was significantly lower than that from free Eo(cumulative release percentage of Eo of 82%in one week).The anti-fungal activities of Eo and BC@Eo against E.vexans were determined using the inhibition zone method.The results indicated that Eo and BC@Eo formed large inhibition zones of 19.66±0.79 and 21.92±0.77 mm,respectively.The influence on the hyphal structure of E.vexans was observed by scanning electron microscopy on day 30.The hyphal structure of E.vexans treated with BC@Eo was more shrunken than that treated with Eo at 30 days,suggesting that BC@Eo prolongs the fungicidal activity against E.vexans.This study demonstrated that the encapsulation of Eo in BC for developing the BC@Eo materials could be a promising strategy to inhibit volatility and maintain the fungicidal activity of Eo and provide a potential alternative for the reuse of abundant tea biomass waste resources.
文摘采用高通量测序技术对被茶饼病病菌侵染的茶树叶片进行转录组测序,筛选得到差异基因359个,其中248个上调表达,111个下调表达。差异基因中有216个获得GO(Gene ontology)数据库功能注释,主要涉及到生物合成过程、催化活性、细胞过程等诸多生理生化过程;KEGG(Kyoto encyclopedia of genes and genomes)数据库富集分析发现,共有106个基因被注释到47个代谢通路中,其中,单萜生物合成、卟啉和叶绿素代谢、核糖体、氮代谢、双萜生物合成、植物病原互作等通路显著富集。有32个差异基因被鉴定为转录因子,分布在16个转录因子家族中。利用实时荧光定量PCR(Real time quantitative PCR,qRT-PCR)验证了随机挑选的差异基因在感病叶片和未感病叶片中的相对表达量,与转录组测序结果的变化趋势一致。结果表明,茶树响应病原菌侵染是一个复杂的过程,大量基因被诱导或抑制表达,与抗病相关的转录因子被大量激活且上调表达。本研究为深入挖掘茶树抗病基因及进一步研究抗病分子机制提供了理论依据。