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1.
The International Symposium on Lipid Science and Health (ISLSH), which was organized annually by Oil Crops Research Institute of Chinese Academy of Agricultural Sciences (OCRI-CAAS) since 2016, has gained a strong reputation and attracted hundreds of delegates from around the world for discussion of lipid research trends and advances every year, to promote research and academic exchanges in the fields of lipid science and health. The 5th International Symposium on lipid Science and Health was successfully held in Wuhan, China, from October 23rd to 25th, 2020, to celebrate the 60th anniversary of OCRI-CAAS. The two-day symposium gathered well-known experts specialized in lipid science to share the current state of lipid research with emphasis on aspects covering: (1) lipid profiling and characterization, (2) lipid preparation and modification, (3) lipid improvement and regulation, and (4) lipid nutrition and health. The symposium was conducted by a combination of on-site and network meeting. More than 250 distinguished delegates from academia and industry participated in the on-site multidisciplinary meeting, and thousands of scholars attended the virtual event. This paper is as a record of the symposium proceedings and a brief summary of the advances and trends in 4 aspects of lipid science and health.  相似文献   
2.
咖啡黑小蠹的发生规律及药剂防治研究   总被引:1,自引:0,他引:1  
咖啡黑小蠢是近年在兴隆华侨农场严重危害中粒种咖啡的重要害虫。据1989年对4—5年生咖啡树调查,植株受害率100%,枝条受害率29.7—82.5%,虫害枯枝率7.65—17.8%。该虫以雌成虫钻蛀咖啡枝条为害,幼虫和成虫取食蛀道壁上的真菌菌丝。田间种群数量通常在3月上旬开始剧增,3月中下旬为高峰期,7月至10月田间虫口极少,11月以后逐渐有虫口及虫枯枝出现。温度是影响虫口波动的主要因素。2.5%溴氰菊酶、25%杀虫双、40%乐菊酯各兑水1000倍对成虫直接触杀效果显著,死亡率均为100%。48%乐斯本、40%氧化乐果400—800倍液等12种杀虫剂田间喷雾对咖啡枝条蛀洞内的成虫、蛹、幼虫防效均不明显。  相似文献   
3.
用氟乐灵和精稳杀得或高效盖草能进行桑苗圃除草,用草甘磷和乙草胺混合进行桑园除草,可有效地防除杂草。  相似文献   
4.
薛光 《长江蔬菜》1997,(10):1-4
论述了我国蒜地除草剂应用概况,华东地区蒜地杂草有20科54种,组成5种不同杂草种群生态区。蒜草醚、旱草灵、乙草胺、恶草灵等对不同品种大蒜的安全性测定结果,蒜草醚、恶草灵、旱草灵安全系数4,乙划是胺,大惠利安全系数为2,嘧黄隆不可在大蒜地应用。  相似文献   
5.
以黄淮地区主要栽培的有限和亚有限2种结荚习性的6个大豆品种为材料,分析不同结荚部位籽粒的蛋白质和脂肪含量,结果表明:两种结荚习性的大豆品种,其籽粒蛋白质含量均是上部最高、中部次之、下部最低;而脂肪含量则与之相反.  相似文献   
6.
改善E1级胶合板用UF胶粘剂预压性能的研究   总被引:1,自引:0,他引:1  
利用氧化淀粉在树脂合成后期、API在调胶时加入分别对脲醛树脂进行改性,探讨改性UF对胶合板预压强度的影响。采用正交实验法对比改性后胶合板的预压性能和改性后胶合板的甲醛释放量的变化。结果表明:随着API量的加大,胶合板的预压性能得以提高;而氧化淀粉改性后则随着量的加大,一定范围内胶合板的预压性能得以提高,加入量继续加大后反而下降。  相似文献   
7.
The yeasts Cryptococcus laurentii,Trichosporon pullulans,Rhodotorula glutinis and Trichosporon sp.were used to investigate their sensitivity to four fungicides and different concentrations of CO2,as well as their antagonistic ability to Penicilliumexpansum and Alternaria alternata in vitro when applied with fungicide.There were significant differences in sensitivity to the fungicides among the different yeasts(P = 0.05).R.glutinis was more sensitive to Deccocil,Iprodione and Stroby as compared to other yeasts.Combination antagonistic yeasts with fungicide could more significantly enhance biocontrol ability of the yeasts against the pathogenic fungi in vitro(P = 0.05).C.laurentii was the most effective antagonist among the four yeasts and could completely control spore germination of P.expansum and A.alternata when combined with Stroby at the concentration of 100 μL L-1.The yeasts,except R.glutinis,could grow well on nutrient yeast dextrose agar (NYDA) after 8 d incubation even at 20% CO2 concentration at 25℃.Particularly Trichosporon sp.showeda better adaptability to low temperature as compared to other antagonists.  相似文献   
8.
梨菇的化学成分分析   总被引:5,自引:2,他引:3  
对江西赣南北部林区的野生裂菇进行了化学成分分析,结果表明,它含金属元素15种、粗蛋白含量达27.52%、氨基酸含量达23.98%,是一种很优秀的野生食用菌。  相似文献   
9.
草坪阔叶杂草的防除技术研究   总被引:1,自引:0,他引:1  
2001 ̄2002年,应用百草敌、2,4-D丁酯乳油、2甲4氯丙酸及混合药剂对西宁郊区石头磊实验地草坪杂草进行防除实验。结果表明:百草敌、2,4-D丁酯乳油及混合物药剂I对几种主要杂草防除效果比较好,与对照相比较,30d能达到100%,且两种混剂有增效作用,扩大了除草剂的使用范围。  相似文献   
10.
The rapid generation of reactive oxygen species (ROS), called the oxidative burst, is one of the earliest host responses to pathogen infection or elicitor treatments. Therefore, we looked for the induction of ROS generation in Japanese pear leaves by the host-specific toxin, AK-toxin I using a cytochemical method for detecting H2O2. A small amount of non-specific generation of H2O2 was found in the cell walls in toxin- and water-treated susceptible and resistant leaves. Thus, the generation of H2O2 at cell walls appears to be caused by wounding stress during sampling. Specific generation of ROS, however, was found only in the membrane fragments and extended desmotubules characteristic of modified sites of the plasma membrane in the toxin-treated susceptible leaves. In addition, generation of H2O2 at plasma membranes was observed with higher frequency in toxin-treated susceptible leaves. This result indicates that the H2O2 generation was associated with damaged sites in the plasmalemma after toxin treatment and perhaps with the formation of membrane fragments from altered portions of the invaginated plasma membrane. Received 21 September 2001/ Accepted in revised form 25 October 2001  相似文献   
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