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991.
Susceptibility of crops to drought may change under atmospheric CO2 enrichment. We tested the effects of CO2 enrichment and drought on the older malting barley cultivar Golden Promise (GP) and the recent variety Bambina (BA). Hypothesizing that CO2 enrichment mitigates the adverse effects of drought and that GP shows a stronger response to CO2 enrichment than BA, plants of both cultivars were grown in climate chambers. Optimal and reduced watering levels and two CO2 concentrations (380 and 550 ppm) were used to investigate photosynthetic parameters, growth and yield. In contrast to expectations, CO2 increased total plant biomass by 34 % in the modern cultivar while the growth stimulation was not significant in GP. As a reaction to drought, BA showed reduced biomass under elevated CO2, which was not seen in GP. Grain yield and harvest index (HI) were negatively influenced by drought and increased by CO2 enrichment. BA formed higher grain yield and had higher water‐use efficiency of grain yield and HI compared to GP. CO2 fertilization compensated for the negative effect of drought on grain yield and HI, especially in GP. Stomatal conductance proved to be the gas exchange parameter most sensitive to drought. Photosynthetic rate of BA showed more pronounced reaction to drought compared to GP. Overall, BA turned out to respond more intense to changes in water supply and CO2 enrichment than the older GP.  相似文献   
992.
Terminal drought is threatening the wheat productivity worldwide, which is consumed as a staple food by millions across the globe. This study was conducted to examine the influence of foliage‐applied stress signalling molecules hydrogen peroxide (H2O2; 50, 100, 150 μm ) and nitric oxide donor sodium nitroprusside (SNP; 50, 100, 150 μm ) on resistance against terminal drought in two bread wheat cultivars Mairaj‐2008 and BARS‐2009. These stress signalling molecules were applied at anthesis stage (BBCH 61); drought was then imposed by maintaining pots at 35% water holding capacity. Terminal drought caused significant reduction in grain yield of both tested bread wheat cultivars; however, foliage application of both stress signalling molecules at either concentration improved the performance of both bread wheat cultivars. Maximum improvement in 100‐grain weight (12.2%), grains per spike (19.7%), water‐use efficiency (WUE; 19.8%), chlorophyll content index (10.7%), total soluble phenolics (21.6%) and free leaf proline (34.3%), and highest reduction in leaf malondialdehyde contents (20.4%) was recorded when H2O2 was foliage‐applied at 100 μm . Foliage application of SNP enhanced the grains per spike, 100‐grain weight and grain yield by 14.9%, 11.3% and 20.1%, respectively, than control. The foliage‐applied stress signalling molecules improved the accumulation of soluble phenolics, proline and glycine betaine with simultaneous reduction in malondialdehyde contents, which enabled wheat plants to sustain the biological membranes under stress resulting in better stay green (high chlorophyll contents) under drought. This helped improving the grain number, grain weight, grain yield, WUE and transpiration efficiency. In crux, foliage‐applied H2O2 and SNP, at pre‐optimized rate, may be opted to lessen the drought‐induced yield losses in bread wheat in climate change conditions.  相似文献   
993.
In order to explore different concentrations of mixed acids in improving quality of whole-plant corn silage and their effects on growth performance of Dorper×Han F1 sheep.4 levels of 45% formic acid,45% propionic acid and 10% sodium propionate were mixed,and 0(control),0.3%,0.6% and 1% were added to 4 groups of ripening period whole-plant corn.The results showed that compared with control group,the experimental groups could significantly decrease the proportion of AA/PA in silage (P<0.05);0.3% and 0.6% groups had the better effects.Based on the result of CNCPS,0.6% group significantly improved the PB3 component (P<0.05),reduced the CC component (P>0.05),and improved the quality of silage.Compared with control group,the experimental groups effectively inhibited the mold and yeast reproduction,improved the aerobic stability of silage.The feeding trial results showed that ADG and F/G of sheep in experimental groups were better than control group,and F/G of both 0.6% and 1% groups were significantly better than that in control group (P<0.05).In conclusion,treatment of mixed acids could improve the quality of whole-plant corn silage,and silage treated with 0.6% levels of mixed acids could significantly improve the growth performance of Dorper×Han F1 sheep.  相似文献   
994.
基于溯源技术的蔬菜基地管理系统开发与应用   总被引:2,自引:0,他引:2  
蔬菜是我国重要的农产品,其质量安全问题关系着国计民生,一直是社会关注的重点。当前我国的蔬菜产品质量安全问题仍然十分广泛和严重,问题蔬菜的来源去向不明、责任不清,企业对蔬菜种植基地的管理缺乏有效的信息管理手段,消费者对购买蔬菜缺乏有效可靠的信息获取途径。因此,从信息技术的角度构建了一个基于溯源技术的蔬菜基地管理系统,详细介绍了蔬菜溯源码的设计、系统的开发环境、业务流程与主要功能,并重点阐述以规程控制为农业生产指导的蔬菜安全管理模式。系统的开发与应用,实现了"问题蔬菜"的企业内部溯源,以及消费者通过手机查询蔬菜溯源信息,为蔬菜企业提供了对基地种植进行质量管理的信息化工具,为政府提供了一种溯源系统解决方案。  相似文献   
995.
In this study, F2 populations from two chromosome segment substitution lines MBI7455 and MBI7358, were quantified using SSR to evaluate the parents' genotype and detect QTL related to fiber quality plus yield traits of cotton. Results show that the recurrent parent (CCRI45) hosted 96.70% and 95.60% of chromosome segment substitution in MBI7455 with 12 chromosome segments and in MBI7358 with 16 chromosome substitution segments of Gossypium barbadense, respectively. In the F2 population, the average rate of chromosome substitution of the recurrent parent (CCRI45) was 96.44%, and the average segments of chromosome substitution of Gossypium barbadense was 13.42, with an average segments of homozygous donor chromosome value of 3.90. Analysis showed 19 fiber quality-related QTL with a phenotypic variance of between 2.52%-13.11% and seven yield traits-related QTL with a range of 2.93%-11.40% phenotypic variance, resulting in a total of 26 QTL. The CSSLs could be used to detect QTL for fiber yield and quality traits, which offer an important foundation for the cotton molecular-assisted breeding.  相似文献   
996.
种质资源是遗传研究与作物改良的基础。饲草产量与品质是决定饲草型小黑麦品种利用价值的重要指标。本研究以113份国内外小黑麦种质为材料,通过2年田间种植,对其饲草产量与品质性状进行了分析与评价。结果表明参试小黑麦种质的饲草产量及其品质性状存在极显著差异,其单株鲜草产量分别为36.000~111.560 g与36.310~159.780 g,单株干草产量分别为12.000~27.000 g与9.150~30.150 g,鲜干比分别为2.380~4.370与2.610~6.210,饲草粗蛋白含量分别为6.894%~13.259%与6.680%~14.304%,饲草中性洗涤纤维含量分别为48.480%~74.850%与53.850%~67.980%,酸性洗涤纤维含量分别为26.600%~42.780%与29.000%~39.280%,饲草的相对饲用价值分别为69.650~128.150与79.840~113.170。饲草产量与品质性状的多样性指数范围为1.974~2.075。主成分分析表明,饲草纤维品质因子、饲草产量因子与综合品质因子为前3个主成分,其累计贡献率为82.198%。依据单株干草产量...  相似文献   
997.
葫芦岛市建昌县2014年国家农业综合开发大凌河流域生态综合治理项目分布在建昌县新开岭乡新开岭村、贺杖子乡碾房村、素珠营子乡梁杖子村.通过该项目治理后,生态环境得到明显改善,经济效益十分显著,社会效益巨大,促进了区域经济社会发展.同时工程建设也起到了科技示范作用,为推动生态环境建设奠定了坚实基础保障.  相似文献   
998.
为促进设施农业的稳步发展,对设施农业水利配套现状与使用情况进行了调查,认真分析了“十一五”期间水利设施现状,水力工程实施及运行情况,人员情况,信息化建设和工程管理办法,并充分结合实际,提出了水利保障体系发展的目标和保障措施.  相似文献   
999.
本试验中旨在比较PRKAG3基因在不同品种猪不同生长阶段骨骼肌中的表达差异,并探讨PRKAG3基因与肉质的关系。挑选15 kg左右的汉普夏阉公猪17头和长撒阉公猪16头,饲喂相同饲粮,当体重分别达到20和50 kg时,2个品种的猪分别屠宰5头,体重达到100 kg时分别屠宰7和6头。各生长阶段屠宰后均测定骨骼肌pH、肌糖原含量以及PRKAG3基因表达量,且在100 kg阶段屠宰后同时测定肉质性状。结果表明:1)在不同生长阶段长撒猪骨骼肌中PRKAG3基因的表达量均高于汉普夏猪,特别是在100 kg阶段,长撒猪骨骼肌中PRKAG3基因的表达量是汉普夏猪的6.81倍(P0.05)。长撒猪与汉普夏猪骨骼肌中PRKAG3基因的表达量均随体重的增加而增加,但汉普夏猪不同生长阶段PRKAG3基因的表达量差异不显著(P0.05),而长撒猪PRKAG3基因的表达量在100 kg阶段时显著高于20和50 kg阶段时(P0.05)。2)汉普夏猪和长撒猪的肉质存在差异。汉普夏猪的滴水损失和失水率显著高于长撒猪(P0.05),而熟肉率、黄度(b)值极显著低于长撒猪(P0.01),剪切力和pH2(屠宰后24 h的pH)显著低于长撒猪(P0.05)。与长撒猪相比,汉普夏猪具有较高的肌糖原含量(P0.05)。3)猪骨骼肌中PRKAG3基因的表达量与肉质的相关性存在品种效应。汉普夏猪骨骼肌中PRKAG3基因表达量与滴水损失呈正相关,与熟肉率呈负相关,与pH2呈显著负相关(P0.05)。长撒猪骨骼肌中PRKAG3基因表达量与滴水损失和失水率呈正相关,与pH2呈负相关。上述结果表明,猪骨骼肌中PRKAG3基因具有品种和生长阶段表达差异;猪骨骼肌中PRKAG3基因的表达量与肉质性状相关,特别是与pH2,二者呈显著负相关。  相似文献   
1000.
以黄河三角洲地区台田间渗水池塘为研究对象,分析了渗水池塘的水质因子变动规律。结果表明:不同池塘间水质因子差异较大,但均表现出水体盐度较高、氮磷等营养物质含量较低、K+离子含量相对较低、Ca2+离子和Na+离子含量相对较高及K+/Na+显著低于正常海水等特点。结果说明,黄河三角洲地区台田间渗水池塘的水质条件不适合直接进行水产养殖,应对水质调整后才可做养殖之用。  相似文献   
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