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71.
72.
The aim of the study was to evaluate the fecal fermentation of partial replacing steam rolled corn with soybean hulls (SH) or prickly pear cactus (PC) as energy source in horse diets, in the presence of Saccharomyces cerevisiae. Steam rolled corn was replaced with SH at 0% (control), 7.5% (SH75), and 15% (SH150) in the first trial, whereas it was replaced with PC at 0% (control; the same of the first trial), 7.5% (PC75), and 15% (PC150) in the second trial. Yeast of S. cerevisiae was added at 0, 2, and 4 mg/g dry matter (DM) of incubated substrates. Fecal inoculum was obtained from four adult English Thoroughbred horses fed on an amount of commercial concentrate and oat hay ad libitum. Interactions observed between PC rations and yeast doses for the asymptotic gas production (GP), the rate of GP and carbon dioxide (CO2) production during some incubation hours. Moreover, with no effect due to SH rations (P > .05), increased (P < .05) rate of GP was observed with the ration PC75 compared with other rations. Besides, PC75 and PC150 rations with 0 mg yeast/g DM linearly decreased (P < .05) CO2 production at some incubation hours. However, SH75 and SH150 ration had increased (P = .005) DM degradability (DMD). Yeast addition at 2 mg/g DM increased the asymptotic GP (P = .048) with the SH75 and PC150 rations. The level of 4 mg yeast/g DM increased the asymptotic GP (P = .048) from the SH150 ration. Yeast addition at 2 and 4 mg/g DM increased (P < .05) the asymptotic GP from PC75 and PC150 rations, respectively, with increasing DMD with the both doses. Yeast addition increased (P < .05) CO2 production from SH75, SH150, PC75, and PC150 rations. It could be concluded that SH and PC can replace steam rolled corn at levels of 7.5% to 15% without negative effect of fermentation kinetics and with better fermentation performance in the presence of yeast at 2 mg/g DM of substrates. 相似文献
73.
Zhu Zeng Yalin Zhang Jun He Jie Yu Xiangbing Mao Ping Zheng Yuheng Luo Junqiu Luo Zhiqing Huang Bing Yu Daiwen Chen 《动物营养(英文)》2021,7(2):393
There are appreciable does of raffinose in soybean, but the impacts of raffinose on pigs are poorly investigated. We used 2 experiments to investigate the influence of soybean raffinose on growth performance, digestibility, humoral immunity and intestinal morphology of growing pigs. In Exp. 1, a total of 30 crossbred (Duroc × Landrace × Yorkshire) barrows (21.93 ± 0.43 kg) were randomly divided into 3 groups, and were fed with the control diet, the control diets supplemented with 0.2% and 0.5% raffinose, respectively, for 21 d. Results showed that the addition of 0.2% or 0.5% raffinose reduced (P < 0.05) average daily feed intake (ADFI), average daily gain (ADG) and nutrient digestibility, and dietary 0.5% raffinose increased the ratio of feed to gain (P < 0.05). For serum indexes, dietary 0.5% raffinose decreased growth hormone and increased glucagon-like peptide-2, immunoglobulin G, tumor necrosis factor-α (TNF-α) and interleukin-6 concentration (P < 0.05). In Exp. 2, a total of 24 crossbred barrows (38.41 ± 0.45 kg) were randomly divided into 3 groups, and were fed with the control diet (ad libitum), the raffinose diet (0.5% raffinose, ad libitum), and the control diet in the same amount as the raffinose group (feed-pair group) for 14 d, respectively. Compared with the control diet, dietary 0.5% raffinose decreased ADFI (P < 0.05). Intriguingly, the raffinose group had lower ADG than the feed-pair group, lower nutrient digestibility, lower amylase activity in duodenum, lower amylase, lipase and trypsin activities in jejunum and higher TNF-α concentration in serum compared with the other 2 groups, and a higher ratio of villus height to crypt depth compared with the control group (P < 0.05). These results showed that soybean raffinose could reduce feed voluntary intake and body gain while improving intestinal morphology without a significant negative influence on immunity. Taken together, dietary raffinose could decrease growth performance by reducing both feed intake and nutrient digestibility while inducing humoral immune response of growing pigs. 相似文献
74.
以东北三省86份大豆品种资源为材料,对其与大豆加工适应性有关的物理性状进行分析评价。为东北三省大豆品质育种及选择适于不同加工用途的专用大豆品种提供依据。结果表明:黑龙江省大豆品种的平均表现是发芽率较高,蒸煮大豆硬度低,浸泡大豆的完整率高,破皮和破瓣率较低;吉林省大豆品种的平均表现是原料大豆的完整率高,障碍率低,黄度值较大,浸泡大豆硬度大,石豆率较低;辽宁省大豆品种的平均表现为百粒重大,原料大豆的障碍率高,浸泡和蒸煮大豆的硬度较大,浸泡大豆破皮和破瓣率较高,发芽率、黄度值较低。 相似文献
75.
本文以黄淮地区6个夏大豆品种(系)通过双列杂交保留下来的F_3代材料,研究大豆6个形态性状的遗传特性.结果表明,株高、有效分枝数、主茎节数、主茎荚丛数和茎粗5个性状均符合加性—显性模型.而底荚高则存在非等位基因之间的互作效应.株高、有效分枝数、主茎节数和主茎荚丛数为部分显性,茎粗存在超显性现象.主茎节数和主茎荚丛数可能有相似的遗传特点.豫豆8号大豆带有较多的控制株高的显性基因,油84-30大豆带有较多的控制分枝和茎粗的显性基因,而尖顶大白角大豆控制主茎节数和美丛数的显性基因较多. 相似文献
76.
大豆高产优质施肥研究与应用 总被引:18,自引:1,他引:18
本文概述了大豆营养特性与施肥的研究结果,提出了高产施肥的关键技术。大豆营养特性:一是对主要营养元素的吸收量较稻、麦作物高(等量籽粒产量),生产100kg大豆约吸收6.5~8.5kg N,1.8~2.8kg P2O5,2.7~3.7kg K2O,3.5~4.8kg CaO,1.8~2.9kg MgO,4.5~9.5g Zn。二是对主要营养元素的吸收积累高峰在花荚期,N、P、K的60~70%在在此期吸收,而不同于稻麦等作物。三是总氮源的40~60%来源共生固氮,而共生固氮又受土壤N、P、K、Ca、Mo、Zn等及土壤PH值影响。四是大豆成熟阶段营养器官的养分向籽粒转移率高,N、P、K分别达58~77%,60~75%,45~75%。大豆施用N、P、K、Zn、Mo、B肥均显著提提高产量,合理配合施用可达到180~300kg/亩。N、P提高籽粒蛋白质含量,K与Zn提高脂肪含量,P、K、Zn、Mo及少量N肥可提高结瘤固氮率。N、P、K和多种微肥可减轻东北连作大豆的不利因子危害,大幅度增加产量。大豆高产施肥,一是根据土壤、植株养分含量确定施肥数量,二是有机肥与N、P、K肥及多种微肥配合施用,三是注重前茬作物施肥,增肥土壤,四是根据土壤条件、耕作制度、大豆品种特性确定施肥数量、方法、时期。中等肥力高产施肥一般应施用N 8,P2O5 4,K2O 4,ZnSo4 1.5(kg/亩),钼酸铵20~30g/亩,P、K、Zn用作底或种肥,N肥钼肥种肥花期追肥各半,另于花荚期喷施P、N、Mo肥二次 相似文献
77.
78.
大豆化学诱变育种及其规律的研究 总被引:12,自引:0,他引:12
应用化学诱变剂处理大豆种子,对M_1代植株的生育及形态均有强烈的抑制作用.M_1代所产生的形态变异主要是由于化学物质扰乱了植株生理而产生生理损伤所致.在M_2代植株各性状中以分枝数、株高、单株荚数的遗传变异系数较大,说明这些性状选择的潜力是大的,通过选择容易达到预期目标.诱变M_3代绝大多数性状仍在分离.加强选择,能选出早熟、大粒、农艺性状好、丰产的新品系. 相似文献
79.
德国及蒙古沙棘品种无性系生物学和观赏性价值评估 总被引:1,自引:0,他引:1
沙棘由于其有丰富的内含物和多方面的用途正被作为"新兴水果"而赢得了人们越来越多的重视和喜爱.通过在柏林Baumschulenweg的育种工作,到目前为止,已经育成不同成熟期的5个雌性和4个雄性沙棘品种.更多的由欧洲和蒙古原生种产生的杂交选育工作仍在进行中.将这些无性系按照其生物学和果实性状进行评估.就单个性状来讲,各品种之间的差异非常大(比如维生素的含量在17~340mg/100g之间变动,胡萝卜素的变动范围为6.5~23.8mg/100g).这表明,进一步的育种改良完全有可能.所有用于比较的沙棘品种由在德累斯顿Pillnitz进行的育种工作获得,这些品种将被进一步研究.为了保险起见,以及为了解决后来有可能产生的育种及植物病理学方面的问题,必须尽可能保存现有的所有的某一品种的基因多样性.为此目的,由国家资助扶持的基因库的建立是很有必要的. 相似文献
80.
M. Dingkuhn B.B. Singh B. Clerget J. Chantereau B. Sultan 《Agricultural Water Management》2006,80(1-3):241-261
Asia's Green Revolution of the 1960s and 1970s has largely bypassed West Africa, and “modern” (high-yielding, input responsive) germplasm for staple crops has found comparatively little adoption, except for systems that are have good access to markets and sufficient water resources. It is unlikely, however, that breeding objectives conserving traditional crop characteristics as found in extensive systems would have been more successful. The authors identify systems caught in the agricultural transition from subsistence to intensified, market-oriented production as the most important target for crop improvement, and provide examples of new breeding objectives for cowpea, sorghum and upland rice. In each of these cases, breeders, with the help of physiologists, have developed innovative plant-type concepts that combine improved yield potential and input responsiveness with specific traditional crop characteristics that remain essential during the agricultural transition. In the case of cowpea, dual-purpose varieties were developed that produce a good grain yield due to an erect plant habit, then produce new leaves enabling a second harvest of green foliage. For upland rice systems that are limited by labour (mainly needed to control weeds that abound due to shortened fallow periods), a weed competitive plant type was developed from Oryza sativa × Oryza glaberrima crosses. Lastly, sorghum breeders who had previously deselected photoperiod sensitivity are now re-inserting sensitivity into plants having “modern” architecture, in order to allow for flexible sowing dates while maintaining an agro-ecologically optimal time of flowering near the end of the wet season. The ecophysiological basis of these plant types, their place in current and future cropping systems, as well as the problem of under-funding for their realisation, are discussed. 相似文献