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61.
该文总结了安徽省域耕地等别分布现状、与上轮成果对比分析,分析了规律与原因,进而提出了定期更新耕地质量分等成果、完善耕地质量监管机制等方面的耕地质量建设对策,以期未来的耕地质量建设与管理更利于"双保"战略的落实。  相似文献   
62.
The impact of mild drought stress (3 weeks at 40 % field water capacity) on yield, physiological processes, accumulation of proline and phenolic compounds and forage quality parameters in forage grasses was evaluated in pot experiments. During four different growing periods, the effects of water deficit were assessed in nine varieties from five species (Lolium perenne, Lolium multiflorum, Festuca pratensis, Festuca arundinacea and Festulolium braunii). All measured parameters were affected by drought stress in the different cuts. Photosynthesis, transpiration rate, stomatal conductance and dry matter yield were significantly lower in drought stress than under well‐watered conditions in all varieties. Higher water‐use efficiency was only observed during the first and fourth drought period, while this was not the case in the second and third. Mild drought stress significantly increased the content of proline, phenolic acid, flavonoids, water‐soluble carbohydrates and protein. All tested grasses showed also an increase of organic matter digestibility and cell wall digestibility under drought stress conditions.  相似文献   
63.
中国耕地非农化现象日益明显。基于社会燃烧理论分析了耕地非农化的驱动原理,建立了耕地非农化影响机制模型,并运用SPSS 19.0软件对分类驱动因素进行了主成分及回归分析。结果表明,人均GDP和固定资产投资所占GDP比重等经济发展变量对耕地非农化水平的正向影响最大;粮食单产、总产等农业技术变量对耕地非农化水平具有最大的逆向影响。最后在模型拟合的基础上提出了相应的对策与建议,旨在为合理有效保护耕地提供参考。  相似文献   
64.
李旭谦  陆福根  辛有俊 《青海草业》2013,22(2):47-52,56
青海省天然草地分布广、草地类型多样,草地植物以禾本科、莎草科、豆科、蓼科、藜科等植物为主,且绝大多数植物家畜可食,是一个丰富的优良牧草种质资源库。尤其是莎草科的植物其牧草品质良好,营养成分含量高,极具开发利用的潜力。因此,在积极保护天然草地上极具挖掘潜力的牧草种质资源的基础上,进一步深入研究和合理开发利用优质牧草资源是十分必要的。  相似文献   
65.
This experiment evaluated the influence of protein supplementation frequency (SF) and amount offered on intake, nutrient digestibility, and ruminal fermentation by rumen-fistulated beef steers consuming low-quality [2.9% crude protein (CP); dry matter (DM) basis], cool-season forage. Seven Angus × Hereford steers (300 ± 27 kg) fitted with ruminal cannulas were randomly assigned to 1 of 7 treatments in an incomplete 7 × 4 Latin square. Treatments, in a 2 × 3 factorial design plus a non-supplemented control (CON), consisted of 2 levels of supplemental soybean meal, 100% (F) or 50% (H) of the estimated rumen-degradable protein requirement, provided daily (D), once every 5 d (5D), or once every 10 d (10D). Experimental periods were 30 d and dry matter intake (DMI) was measured from days 19 to 28. On days 21 (all supplements provided) and 30 (only daily supplements provided; day immediately prior to supplementation for 5D and 10D treatments) ruminal fluid was collected for ruminal pH, ammonia-N (NH3), volatile fatty acids (VFA), and determination of ruminal fermentation variables. Forage and total DM, organic matter (OM), and nitrogen (N) intake increased with supplementation (P ≤ 0.04). However, a linear effect of SF × amount of supplement interaction was observed for forage and total DM, OM, and N intake (P ≤ 0.04), with each variable decreasing as SF decreased, but the decrease being greater with F vs. H. Apparent total tract DM, OM, and neutral detergent fiber digestibility was not affected by supplementation or amount of supplement provided (P ≥ 0.10). In contrast, N digestibility increased with supplementation and for F vs. H (P < 0.01). Digestibility of DM, OM, and N increased linearly as SF decreased (P ≤ 0.03). When all supplements were provided, ruminal NH3, total VFA, and molar proportions of all individual VFA increased with supplementation (P ≤ 0.04), whereas acetate:propionate ratio decreased (P < 0.01). When only daily supplements were provided, none of the aforementioned fermentation parameters were affected (P ≥ 0.09). In summary, reducing the amount of supplemental CP provided to ruminants consuming low-quality forages, when supplementation intervals are >5 d, can be a management tool to maintain acceptable levels of DMI, nutrient digestibility, and ruminal fermentation while reducing supplementation cost.  相似文献   
66.
We evaluated the influence of amount and crude protein (CP) supplementation frequency (SF) on nitrogen (N) use by wethers and the performance of late-gestation beef cows. In exp. 1, seven Western whiteface wethers (31.8 ± 1.4 kg) were used in an incomplete 7 × 4 Latin square to evaluate intake and N use. Wethers received one of the seven treatments in a 2 × 3 factorial design containing two levels of supplemental soybean meal offered at a rate of 100% (F) or 50% (H; 50% of F) of the estimated CP requirement daily, once every 5, or once every 10 d, plus a non-supplemented control (CON). Low-quality cool-season forage (4.9 % CP; dry matter [DM] basis) was provided daily for ad libitum intake. Experimental periods lasted 30 d. In exp. 2, 84 Angus × Hereford cows (560 ± 35 kg) were stratified by age, body condition score (BCS), and expected calving date and allocated to 1 of the 21 feedlot pens (three pens per treatment). Pens were randomly assigned to receive the same treatments as in exp. 1 and cows had free access to low-quality cool-season forage (2.9% CP; DM basis). Cow body weight (BW) and BCS were measured every 14 d until calving and within 24 h after calving. In exp. 1, supplementation did not alter total DM and organic matter (OM) intake (P ≥ 0.26), but both parameters linearly decreased as SF decreased (P = 0.02). Supplementation increased DM, OM, and neutral detergent fiber (NDF) digestibility (P ≤ 0.02). Additionally, F feeding linearly increased DM, OM, and NDF digestibility as SF decreased (P ≤ 0.04). Digestibility of N, N balance, and digested N retained were greater with supplementation (P < 0.01), and N digestibility linearly increased as SF decreased (P = 0.01). Mean plasma urea-N concentration was not only greater (P < 0.01) for supplemented vs. CON wethers but also greater (P = 0.03) for F vs. H. In exp. 2, pre-calving BCS change was greater (P = 0.03) for supplemented cows. A linear effect of SF × supplementation rate for pre-calving BCS change was noted (P = 0.05), as F-supplemented cows lost more BCS compared with H as SF decreased. When considering supplementation intervals greater than 5 d, reducing the quantity of supplement provided, compared with daily supplementation, may be a feasible management strategy to maintain acceptable nutrient use and animal performance while reducing supplement and labor costs.  相似文献   
67.
孙雅琪  张春光 《中国饲料》2021,1(6):123-126
畜牧产业是青海省海东市重要的传统产业,历来受到政府重视。饲草饲料资源开发对畜牧产业的发展提供重要支撑,但由于农民不了解,干部不重视等因素,影响饲草饲料资源开发及产业发展。随着现代化工业体系的建立,科学技术的发展,推动饲草饲料技术的发展。饲草饲料资源开发对地区农业资源循环利用、农民增收、经济发展的作用越来越凸显。饲草饲料资源开发是发展现代畜牧业的必然趋势,是拉动产业链条、调整农业结构、改善生态环境的需要,对地区经济发展有积极促进作用。青海省海东市在饲草饲料资源开发中仍存在一系列的问题,需要探索有效对策,促进海东市饲草饲料产业的发展和海东市的经济发展。 [关键词]饲草饲料|资源开发|青海省|海东市|经济发展  相似文献   
68.
“粮改饲”政策推行以来,通过农业结构调整,实现了奶业振兴。伴随全球新冠肺炎疫情反复发生,粮食安全问题再次进入了公众视野,进而引发一个值得深思的问题:如何在保证粮食安全的前提下,实现草畜平衡,增加肉、蛋、奶市场供给,优化居民膳食营养结构。为此,以河北省为研究对象,深入分析粮食与饲草种植及市场供求。目前来看,河北省粮食种植面积在“红线”以上,饲草生产无法满足省内养殖业需求,同时,城乡居民对肉、蛋、奶的摄入仍未达到膳食营养标准。为优化农业种植结构及居民营养结构,提出推广新型种植模式、加强政策引导、创新生产技术等一系列措施,推动河北省粮—饲平衡发展。  相似文献   
69.
草原是内蒙古地区草食畜牧养殖产业健康发展的基础,同时也是优质牧草的主要来源。有毒有害牧草生长扩散预示着草场退化,对当地草食畜牧养殖产业健康发展会造成毁灭性打击。有毒有害植物生长发育,不仅会危害牲畜健康且还会严重消耗土壤的水分和养分,妨碍优良牧草繁殖生长,使草场产量和质量显著下降。在长时间草场利用过程中,很多农牧民群众只注重索取,不注重生态环境保护,使草场生产能力和抵抗能力逐渐变差,给有毒有害牧草繁殖生长提供了条件。因此需要加强寒冷地区草原有毒有害牧草的监测,并采取针对性措施进行防控,降低发病率。该文主要探讨内蒙古呼伦贝尔市寒冷地区草原有毒有害牧草的种类,并提出相应的防治措施。  相似文献   
70.
杨望  张硕  杨坚  周杰  路宏 《农机化研究》2015,(7):176-180
采用田间物理测定和数理统计分析方法,测定了收获期木薯种植地耕作层不同深度的土壤硬度,建立了耕作层深度与土壤硬度的数学模型,分析了土层深度对土壤硬度的影响规律。结果表明:建立的木薯地耕作层土壤硬度与深度的数学模型精度高,硬度与深度基本上成3次方的非线性关系;采用盖膜方式种植的木薯地,其土壤硬度先随土层深度的增大而增大,后随土层深度的增大而缓慢增大或减小;不采用盖膜方式种植的木薯地,其土壤硬度先随土层深度的增大而减小,后随土层深度的增大而增大,最后又随土层深度的增大而减小。  相似文献   
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