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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.
油菜籽中含有多种具有抗氧化活性的物质,为抵御机体的氧化损伤起到了积极作用。本文综述了油菜籽来源的诸多抗氧化活性成分及抗氧化活性的评价方法。油菜籽主要的抗氧化成分有肽类、多酚类、多糖类、生育酚和其它抗氧化成分,其中的肽类主要有三种产生方式:非消化酶酶解、消化酶酶解和发酵。针对油菜籽来源的活性物质抗氧化活性的评价方法,包括体外测定方法(化学检测)和细胞内抗氧化实验和动物实验。综述还探讨了油菜籽抗氧化活性成分研究中存在的问题和解决方法,旨在为油菜籽活性成分的开发和利用提供参考。  相似文献   
3.
植物油脂不仅是人类可食用油的主要来源,也是人类生产生活中重要的可再生原料。本文概述了植物油脂的生物合成途径,从母体效应、QTL、GWAS等多个方面总结了油料作物油脂合成的遗传学研究进展,同时探讨了已知的油脂合成调控相关基因的功能。本文综述了该领域的研究现状,为深入了解油料作物油脂合成调控网络提供了参考,也为油料作物的分子改良和遗传育种提供了理论基础。  相似文献   
4.
To develop a simple and fast method for screening genetically modified ingredients from processing by-product and waste, direct quantitative PCR (qPCR) kit-Taqman which omitting multi genomic DNA preparing steps was developed in this study. A total of 18 oil crop processing by-products and wastes including 10 soybean and 8 cotton materials were collected from food processing factories. Compared with 2 commercial direct qPCR kits, conditions of DNA releasing procedure and PCR amplification were optimized. Element screening was performed at the initial step of genetically modified (GM) ingredient testing procedure via direct qPCR. GM event identification was carried out in positive samples by initial screening. Totally 5 screening elements (P–35S, T-NOS, Cp4-epsps, bar and pat) for soybean materials and 6 screening elements (P–35S, T-NOS, NPTII, Cry1Ac, bar and pat) for cotton samples were detected. In GM event identification, MON531 and MON1445 were found in cotton materials. Results were further confirmed by real-time PCR with DNA extraction and purification. The direct qPCR system proposed by this research was convenient for rapid screening and identification of GM ingredients in oil crop primary by-product and waste.  相似文献   
5.
The weight and composition of soybean seeds (Glycine Max L. Merrill) depend on changes in carbon and nitrogen assimilate supply during grain filling. Soybean pods and seeds are green, evidencing their capacity to capture light. However, the current physiological knowledge does not consider any effect of incident solar radiation reaching the pods on seed weight and composition. The objective of this work was to investigate the response of seed weight and composition to changes in assimilate supply from leaves, to the incident solar radiation reaching the pods and to the combination of both, changes in assimilate supply from the leaves and incident solar radiation on pods of soybean plants. Field experiments were performed during two growing seasons at Balcarce, Argentina. Treatments modified the amount of assimilates supplied by the leaves (plant shading, defoliation), the solar radiation reaching the pods (pod shading) or both (defoliation and pod shading) during seed filling. Plant shading and defoliation reduced seed weight, oil concentration and oil and protein content and increased the concentration of saturated and poli-unsaturated fatty acids while reduced oleic acid percentage. Pod shading increased the concentration of stearic acid and reduced the concentration of linolenic acid. When pods were shaded on defoliated plants, seed weight and oil and protein content decreased while fatty acid composition was similar to values obtained under defoliation treatment. Based on these results, a conceptual model that considers photoheterotrophic nature of reproductive structures of soybean is proposed. Seed weight, oil and protein content and oil fatty acid composition depended on assimilate availability for the seeds. The response of oil and protein content to assimilate supply depended on whether leaves were present or not. The effect of solar radiation incident on pods depended on the amount of assimilates available for the seeds: (i) when carbon allocated was low (defoliation treatments), pods contributed to seed carbon economy but solar radiation incident on them did not affect fatty acid composition; (ii) when carbon allocated to the seeds was high (intact plants), contribution of pods to seed carbon economy was not significant, but the amount of solar radiation incident on pods produced significant changes in fatty acid composition.  相似文献   
6.
芝麻黄化突变体YL1的叶片解剖学及光合特性   总被引:1,自引:0,他引:1  
刘红艳  周芳  李俊  杨敏敏  周婷  郝国存  赵应忠 《作物学报》2017,43(12):1856-1863
表型性状标记在作物遗传育种中具有重要的应用价值。在芝麻地方种质"庙前芝麻"中发现了能够稳定遗传的黄化突变体YL1,对该突变体的叶片解剖特征、光合特性及农艺性状的比较分析表明,突变体YL1黄化心叶和平展叶在各个发育时期的叶绿体结构均与同时期野生型存在明显差异,下表皮气孔保卫细胞数是正常叶的2倍左右。YL1的叶绿素a、总叶绿素、类胡萝卜素含量均只有同时期正常含量的30%~40%,叶绿素b含量只有正常叶的20%;光合速率在初花期及以前均显著低于同期正常叶,但到终花期与正常叶相当;YL1的生育期和初花期显著推迟,株高和单株蒴果数明显降低,每蒴粒数和千粒重略微降低。显微观察表明,YL1的叶绿体形态结构发育不规则,基粒和基粒片层数目明显少于野生型,使得叶绿素含量过低,属于叶绿体发育异常导致的叶绿素缺少型突变体。  相似文献   
7.
锈病是影响花生产量和品质的主要真菌性病害。本研究以“中花10号× ICG 12625”构建的重组自交系群体(RIL)为材料,在武昌和阳逻两个环境中对其F8群体进行锈病抗性鉴定,获得了8份抗锈病材料(QT0348、QT0368、QT0400、QT0402、QT0419、QT0458、QT0463和QT0485)。利用前期构建的遗传图谱进行QTL分析,检测到10个与锈病抗性相关的QTL,贡献率为4.54%~10.78%,分布于7条染色体上。其中,qBB06.1qBB06.4为重复一致的QTL,贡献率为10.76%。根据侧翼标记在物理图谱进行比对,发现对应区段含有193个基因,其中178个基因被注释,功能注释基因中有1个NBS-R基因。本研究结果为花生抗锈病的遗传改良奠定了基础。  相似文献   
8.
栽培种花生是异源四倍体,基因组大,构建花生的分子遗传连锁图谱并对相关性状进行QTL定位研究的工作缓慢。本研究以遗传差异大的亲本组配杂交组合富川大花生×ICG6375构建F2作图群体,采用公开发表的2653对SSR引物,构建了一张含有234个SSR标记、分布于20个连锁群的栽培种花生遗传图谱。该图谱覆盖基因组的长度为1683.43c M,各个连锁群长度在36.11~131.48 c M之间,每个连锁群的标记数在6~15个之间,标记间的平均距离为7.19 c M。结合F3在湖北武汉和阳逻环境下的主茎高和总分枝数鉴定结果,应用Win QTLCart 2.5软件采用复合区间作图法进行了QTL定位和遗传效应分析。共检测到17个与主茎高和总分枝数相关的QTL位点,贡献率在0.10%~10.22%之间,分布于8个连锁群上。综合分析武汉和阳逻环境的鉴定结果,获得重复一致的与主茎高相关的6个QTL,其中q MHA061.1和q MHA062.1位于连锁群LG06上TC1A2~AHGS0153标记区间,贡献率为5.49%~8.95%;q MHA061.2和q MHA062.2位于LG06上AHGS1375~PM377标记区间,贡献率为2.93%~5.83%;q MHA092.2和q MHA091.1位于连锁群LG09上GM2839~EM87标记区间,贡献率为0.53%~9.43%。  相似文献   
9.
选用抗黄曲霉产毒的花生品种(系)和高产毒品种(系), 采用强产毒菌株AF2202人工接种水分吸涨的花生种子, 培养7 d后,测定接种和未接种的花生种子中白藜芦醇及黄曲霉毒素含量,探讨白藜芦醇与花生种子黄曲霉产毒抗性之间的关系。结果表明,抗黄曲霉产毒花生品种(系)的白藜芦醇含量较高,平均为37.3 µg kg–1,高产毒品种含量相对较低,平均为13.3 µg kg–1,抗、感品种之间存在显著差异。吸胀处理后抗产毒花生品种(系)白藜芦醇含量提高2.0倍,感病品种(系)仅提高1.6倍,对不同品种(系)处理后的种子二次接种,令黄曲霉毒素含量下降37.6%~75.8%,但吸胀处理后抗产毒品种(系)的黄曲霉毒素含量仍低于感病品种(系)。相关分析表明,花生白藜芦醇含量与黄曲霉毒素含量呈显著负相关,并且在离体培养基中添加浓度大于3.0 μg mL–1的白藜芦醇可导致黄曲霉菌产毒量大幅下降,说明白藜芦醇对黄曲霉产毒具有抑制作用。  相似文献   
10.
我国芝麻主栽品种耐湿性鉴定分析   总被引:3,自引:0,他引:3  
采用盛花期人工淹水胁迫36 h,对我国43个芝麻主栽品种的耐湿性进行鉴定,结果发现,湿害胁迫后,品种的正常株率在0~42.4%之间,平均为17.7%;湿害产量变化在0~95.4 g之间,平均为28.5 g,湿害造成产量减少44.8%~100%,平均减产81.3%;湿害产量与正常株率和湿害减产率显著相关,r分别为0.77和-0.64;品种的平均正常株率随育成时间先后而逐渐增大,北方品种耐湿性整体低于南方品种,国审(鉴)品种湿害产量高于省审(鉴)品种。鉴定结果表明,我国当前芝麻品种耐湿性普遍不高,相对而言,熊芝1号的正常株率较高,中芝13的湿害产量较高且湿害减产率较低。  相似文献   
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