Objetive: To explore the potential insecticidal, ovipositor deterrent and antifeedant effects of ethyl acetate extract of the seeds of Senna tora(Syn. Cassia tora) against cowpea weevil(Callosobruchus maculatus).Metho...Objetive: To explore the potential insecticidal, ovipositor deterrent and antifeedant effects of ethyl acetate extract of the seeds of Senna tora(Syn. Cassia tora) against cowpea weevil(Callosobruchus maculatus).Method: The activities were evaluated using standard protocols.In these bioassays, the cowpea seeds were used directly as an insect feed. The activity of the extract and isolated compounds were tested at concentrations of 100, 200 and 300 μg/mL and compared to neem oil and cinnamaldehyde(as standard positive controls). Phytochemical analysis of the ethyl acetate extract was done through a number of chromatographic techniques and the structures of the isolated compounds were established through comprehensive spectroscopic analysis including 2 D-NMR and ESI-MS studies.Results: Fractionation of the active ethyl acetate extract resulted in the isolation of one known anthraquinone,aurantio-obtusin(1) and a novel compound that was named as cassiatorin(2). Compounds1 and 2 showed comparable insect antifeedant properties with the positive controls while their insecticidal and ovipositor deterrent effects were far superior to the standard controls.Conclusions: It is thus concluded that Senna tora extracts and the isolated compounds(1 and2) may be employed in the postharvest management of stored cowpea seeds and as other crop protectants.展开更多
目的:基于决明(Senna tora L.)全基因组数据,对GRAS家族成员、理化性质、基因结构、进化关系以及胁迫条件下的表达模式进行鉴定和分析。方法:将决明基因组蛋白数据与拟南芥GRAS成员进行比对,分别利用TBtools、MEGA-X、CLUSTALW、MEME等...目的:基于决明(Senna tora L.)全基因组数据,对GRAS家族成员、理化性质、基因结构、进化关系以及胁迫条件下的表达模式进行鉴定和分析。方法:将决明基因组蛋白数据与拟南芥GRAS成员进行比对,分别利用TBtools、MEGA-X、CLUSTALW、MEME等生物信息学软件和工具,对决明GRAS基因家族成员进行分析。利用qRT-PCR(quantitative real-time PCR)检测干旱和盐胁迫条件下决明根中GRAS基因的表达情况。结果:50个StGRAS分为9个亚家族,不均等地分布在13条染色体上。结构分析表明,StGRAS34和StGRAS12分别与蒺藜苜蓿(Medicago truncatula)结瘤信号蛋白NSP1和NSP2高度同源。StGRAS的启动子区域多含有与胁迫响应、激素调节等相关的响应元件。qRT-PCR结果表明,在盐胁迫条件下,StGRAS表达具有明显差异;在干旱胁迫条件下,绝大多数检测基因能够快速响应,表达显著升高;两种胁迫条件下,StGRAS28和StGRAS29表达趋势互补,具有协同调控关系。结论:GRAS基因家族能够广泛参与胁迫响应,其中StGRAS28与StGRAS29可能共同参与介导决明根的盐与干旱胁迫应答,StGRAS34和StGRAS12分别作为决明共生结瘤的NSP1和NSP2,可能与增强结瘤因子信号诱导相关,这为进一步挖掘和研究GRAS基因在决明响应胁迫和共生固氮过程所发挥的作用提供了基础。展开更多
基金The financial assistance from the Swedish International Development Agency for some of the study (travel grant for Valantine Mbatchou)
文摘Objetive: To explore the potential insecticidal, ovipositor deterrent and antifeedant effects of ethyl acetate extract of the seeds of Senna tora(Syn. Cassia tora) against cowpea weevil(Callosobruchus maculatus).Method: The activities were evaluated using standard protocols.In these bioassays, the cowpea seeds were used directly as an insect feed. The activity of the extract and isolated compounds were tested at concentrations of 100, 200 and 300 μg/mL and compared to neem oil and cinnamaldehyde(as standard positive controls). Phytochemical analysis of the ethyl acetate extract was done through a number of chromatographic techniques and the structures of the isolated compounds were established through comprehensive spectroscopic analysis including 2 D-NMR and ESI-MS studies.Results: Fractionation of the active ethyl acetate extract resulted in the isolation of one known anthraquinone,aurantio-obtusin(1) and a novel compound that was named as cassiatorin(2). Compounds1 and 2 showed comparable insect antifeedant properties with the positive controls while their insecticidal and ovipositor deterrent effects were far superior to the standard controls.Conclusions: It is thus concluded that Senna tora extracts and the isolated compounds(1 and2) may be employed in the postharvest management of stored cowpea seeds and as other crop protectants.