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101.
本试验旨在研究固态发酵醋糟饲料(SFVD)对育肥猪生长性能、养分表观消化率、血清指标及粪便中挥发性脂肪酸(VFA)含量的影响。选择体况相近[(59.04±0.33)kg]的健康“杜×长×大”三元杂交生长育肥猪60头,随机分为2个组,每组3个重复,每个重复10头猪。对照组饲喂基础饲粮+150 mg/kg土霉素钙,试验组饲喂基础饲粮+5%的SFVD。预试期6 d,正试期35 d。结果表明:与对照组相比,基础饲粮中添加5%的SFVD对育肥猪平均日采食量(ADFI)具有一定的促进趋势(P=0.056);显著降低了育肥猪饲粮中干物质(DM)、粗蛋白质(CP)、有机物(OM)和总能(GE)的表观消化率(P<0.05),对粗脂肪(EE)表观消化率有一定的促进趋势(P=0.052);显著提高了育肥猪血清谷草转氨酶(AST)和谷胱甘肽过氧化物酶(GSH-Px)活性(P<0.05),血清高密度脂蛋白(HDL)和免疫球蛋白A(IgA)含量也呈现出一定的升高趋势(P=0.055和P=0.077);显著提高了育肥猪粪便中丙酸含量(P<0.05),粪便中甲酸和总挥发性脂肪酸(TVFA)含量也呈现出一定的升高趋势(P=0.071和P=0.054)。由此可见,基础饲粮中添加5%的SFVD对育肥猪生长性能、肠道健康及免疫性能的提高具有潜在的促进作用。  相似文献   
102.
通过对海南省文昌市南阳镇、琼海市大路镇、乐东县黄流镇3个地区‘马来西亚1号’菠萝蜜叶片氮、磷、钾3种营养元素的周年变化规律跟踪调查分析,结果表明:3个地区菠萝蜜叶片营养元素变化规律相似。元素年平均含量表现为氮>钾>磷。根据实际生产中的生育期调研分析,将菠萝蜜的生长周期大致划分为2个批次3个时期:第一批次养树期(11—12月)、花芽分化期(1—2月)、结果期(3—4月);第二批次养树期(5—6月)、花芽分化期(7—8月)、结果期(9—10月)。生长周期内,氮元素含量年变化呈现“N”字型变化趋势;磷含量在1—4月呈先上升后下降的趋势,随后呈缓慢上升趋势;钾含量变化趋势与氮含量变化相似,但钾元素含量变化没有氮元素变化明显。菠萝蜜叶片中大量元素含量的适宜范围为:全氮21.03~22.15 g/kg,全磷2.86~3.40 g/kg,全钾13.49~14.47 g/kg。在生长发育过程中,菠萝蜜需氮、钾元素较多,特别是在花芽分化期和结果期,应注意增施氮肥与钾肥,磷肥应于养树期施足。  相似文献   
103.
本试验旨在探讨单宁酸对生长猪胃、小肠仿生消化中消化酶活性及玉米-豆粕型饲粮干物质和粗蛋白消化率的影响,为评价单宁酸的生物学效应提供参考。试验一采用单因素完全随机设计,考察在无饲粮下2种单宁酸对猪模拟胃液、模拟小肠液消化酶活性的影响。设5个处理,单宁酸添加量分别为0 mg (胃液体积为20 mL,小肠液体积为22 mL);单宁酸1,10 mg;单宁酸1,20 mg;单宁酸2,10 mg;单宁酸2,20 mg。测定各处理的胃蛋白酶、淀粉酶、胰蛋白酶和糜蛋白酶的活性。试验二考察玉米-豆粕型饲粮添加单宁酸对猪仿生消化中胃、小肠阶段消化酶活性及养分消化率的影响。采用单因素完全随机设计,设5个处理,单宁酸在饲粮中的含量分别为0 mg·(2 g)-1;单宁酸1,10 mg·(2 g)-1;单宁酸1,20 mg·(2 g)-1;单宁酸2,10 mg·(2 g)-1;单宁酸2,20 mg·(2 g)-1。测定仿生消化中胃阶段0.5和4 h时胃蛋白酶活性,小肠阶段0.5、4和8 h时淀粉酶、胰蛋白酶和糜蛋白酶活性及生长猪胃-小肠仿生消化测定饲粮的干物质和粗蛋白消化率。结果表明:1)无饲粮的情况下,和空白对照组相比,2种单宁酸对模拟胃液中胃蛋白酶活性无显著影响(P>0.05),单宁酸1比单宁酸2更高地降低了模拟小肠液中淀粉酶、胰蛋白酶和糜蛋白酶的活性(P<0.05)。2)在饲粮进行仿生消化的胃消化0.5~4 h内,除4 h时10 mg·(2 g)-1添加量外,添加单宁酸1时胃蛋白酶的活性均显著高于添加单宁酸2时的相应值(P<0.05),除单宁酸2在消化0.5 h外,2种单宁酸在添加10 mg·(2 g)-1时胃蛋白酶活性均显著高于20 mg·(2 g)-1添加量的相应值(P<0.05)。在小肠仿生消化0.5 h时,饲粮中添加单宁酸1、2的2个水平对消化液中淀粉酶活性无显著影响(P>0.05),但均显著降低了糜蛋白酶的活性(P<0.05);单宁酸1的消化液中胰蛋白酶活性高于单宁酸2的相应值(P<0.05)。在小肠仿生消化4 h时,除添加水平为20 mg·(2 g)-1时的糜蛋白酶活性外,饲粮中添加单宁酸1消化液中淀粉酶、糜蛋白酶活性高于添加单宁酸2的相应值,而胰蛋白酶活性低于添加单宁酸2的相应值(P<0.05)。单宁酸1、2的两个添加量均降低了胰蛋白酶和糜蛋白酶的活性(P<0.05)。在小肠仿生消化8 h时,饲粮中单宁酸的添加量影响了淀粉酶的活性,但单宁酸1和单宁酸2各两个添加量在淀粉酶的平均活性上无显著差异(P>0.05)。单宁酸1、2的两个添加量均降低了胰蛋白酶、糜蛋白酶的活性(P<0.05)。3)与对照组相比,两种单宁酸在两种添加水平下均显著降低了饲料粗蛋白消化率(P<0.05),且单宁酸2比单宁酸1更多地降低了饲粮粗蛋白的消化率(P<0.05)。综上所述,在有、无饲粮条件下,单宁酸对消化酶活性呈现不一致影响。单宁酸影响饲粮粗蛋白的消化率可能主要与消化液中糜蛋白酶活性降低以及单宁酸与饲粮中的化学成分形成螯合物降低了小肠消化酶的水解效率有关。  相似文献   
104.
Data from 147 field trials were collected to study the influence of straw incorporation on soil potassium (K) under an intensive rice–oilseed rape rotation system, while pot experiments were conducted to evaluate the effects of rice straw incorporation on soil K availability. A significant correlation was observed between the soil available K and the relative yield (RRY) and the relative K uptake (RKU) of oilseed rape, with R2 values ranging from 0.07 to 0.08 and from 0.10 to 0.11, respectively, when data were fitted to a logarithmic equation model. In approximately 30% of trials, RRY reached 90%, while soil test available K values were below the critical limit, indicating that soil K values at the time of sampling (within 1 week of rice harvest) underestimated the actual soil K supply capacity. The pot experiment results showed that soil available K was affected by straw incorporation and soil type in the fallow period. The NH4OAc‐K and NaBPh4‐K concentrations of soils increased at first, and then, plateaued after 28 days. Straw incorporation significantly influenced the critical soil K concentration, which is important for making accurate K fertilizer recommendation. These results suggested that straw K should be seriously considered in making K fertilizer recommendations. Extending the sampling time from 1 to 3 weeks after the harvesting of rice to stabilize the effects of straw incorporation may help achieve a more accurate evaluation of soil available K.  相似文献   
105.
The spawning success of lithophilic salmonids is strongly influenced by the fine sediment content (“fines”) of spawning substrates, yet knowledge on the impacts of fines on the spawning of non‐salmonid lithophiles remains limited, despite their ecological and socio‐economic importance in European rivers. Consequently, the aim here was to use an ex‐situ experiment to investigate the impact of sand content on egg survival and timing of larval emergence of the surface‐spawning cyprinid European barbel Barbus barbus. Thirty incubator boxes within a recirculating system were filled with one of five experimental sediment mixtures (0%–40% sand by mass) that each contained 300 fertilised eggs at a depth of 50 mm. Emerged, free‐swimming larvae were captured and counted daily to assess grain‐size effects on larval survival and emergence. Specifically, total proportion of emerged larvae, cumulative daily proportion of emerged larvae and time required to reach 50% emergence were measured during the study. Whilst the proportion of sand in the sediments did not have a significant impact on egg‐to‐emergence survival (mean survival per treatment 75%–79%), it significantly affected the timing of larval emergence to the water column; early emergence was detected in treatments with elevated sand content (on average, 50% emergence after 12–13 days versus 19 days in the control). Similar to findings from salmonid studies, these results suggest high sand content in spawning gravels can influence timing of larval emergence and potentially cyprinid lithophilic fish survival.  相似文献   
106.
The introduction of new hybrids and integrated crop-soil management has been causing maize grain yield to increase. However, less attention has been paid on the nutrient concentration of the grain; this aspect is of great importance to supplying calories and nutrients in the diets of both humans and animals worldwide. Increasing the retranslocation of nutrients from vegetative organs to grain can effectively increase the nutrient concentration of grain and general nutrient use efficiency. The present study involved monitoring the dynamic change of macro- and micronutrients in different organs of maize during the grain filling stage. In addition, the mobility of different elements and their contribution to grain nutrient content were evaluated in a 2-year experiment under low (LN, no N supplied) and high N (HN, 180 kg N ha−1) supply. Under HN supply, the net remobilization efficiency (RE) of the vegetative organs as a whole (calculated as nutrient remobilization amount divided by nutrient content at silking) of N, P, K, Mn, and Zn were 44%, 60%, 13%, 15%, and 25%, respectively. The other nutrients (Mg, Ca, Fe, Cu, and B) showed a net accumulation in the vegetative organs as a whole during the grain filling stage. Among the different organs, N, P, and Zn were remobilized more from the leaves (RE of 44%, 51% and 43%, respectively) and the stalks (including leaf sheaths and tassels) (RE of 48%, 71% and 43%, respectively). K was mainly remobilized from the leaves with RE of 51%. Mg, Ca, Fe, Mn, and Cu were mostly remobilized from the stalks with the RE of 23%, 9%, 10%, 42%, and 28%, respectively. However, most of the remobilized Mg, Ca, Fe, Mn, Cu, and Zn were translocated to the husk and cob, which seemingly served as the buffer sink for these nutrients. The REs of all the nutrients except for P, K, and Zn were vulnerable to variations in conditions annually and were reduced when the grain yield and harvest index were lower in 2014 compared with 2013. Under LN stress, the RE was reduced in P and Zn in 2013, increased in Cu and unchanged in other nutrients. The concentration of these nutrients in the grain was either unchanged (P, K, Ca, Zn, and B) or decreased (N, Mg, Fe, Mn, and Cu). It is concluded that grain N, P, K, Mn, and Zn, but not Mg, Ca, Fe, Cu, and B concentration, can be improved by increasing their remobilization from vegetative organs. However, enhancing the senescence of maize plant via LN stress seems unable to increase grain mineral nutrient concentration. Genetic improvement aiming to increase nutrient remobilization should take into account the organ-specific remobilization pattern of the target nutrient.  相似文献   
107.
Cadmium (Cd) intake is harmful to human health and Cd contamination in rice grains represents a severe threat to those consuming rice as a staple food. Knockout of Cd transporters is a promising strategy to reduce Cd accumulation in rice grains. OsNRAMP5 is the major transporter for Cd and manganese (Mn) uptake in rice. Nevertheless, it is uncertain whether knockout of OsNRAMP5 is applicable to produce low Cd rice without affecting plant growth and grain yield. In this study, we adopted CRISPR/Cas9-based gene editing technology to knock out OsNRAMP5 in two japonica varieties. We generated three independent transgene-free osnramp5 mutants and investigated the effect of osnramp5 mutations on Cd accumulation and plant growth. Hydroponic experiments showed that plant growth and chlorophyll content were significantly reduced in osnramp5 mutants at low Mn conditions, and this defective growth in the mutants could be fully rescued by supply of high levels of Mn. Cd and Mn accumulation in both roots and shoots was markedly reduced in the mutants compared to that in wild-type plants. In paddy field experiments, although Cd in flag leaves and grains was greatly reduced in osnramp5 mutants, some agronomic traits including plant height, seed setting rate, and grain number per panicle were affected in the mutants, which ultimately caused a mild reduction in grain yield. The reduced plant growth in the mutants can be attributed to a marked decrease in Mn accumulation. Our results reveal that the manipulation of OsNRAMP5 should be treated with caution: When assessing the applicability of osnramp5 mutants, soil pH and soil water content in paddy fields need to be taken into consideration, since they might affect the levels of available Mn in the soil and consequently determine the effect of the mutation on grain yield.  相似文献   
108.
采用微波辐射法和中性2,2,6,6-四甲基哌啶-1-氧化物(TEMPO)自由基氧化工艺来预处理竹浆纤维素,之后用超声波机械处理制备微纤化纤维素。实验结果表明,在60℃下,TEMPO用量为0.15 mmol/g(以绝干浆计,下同),Na Cl O2用量为10 mmol/g,Na Cl O用量为1 mmol/g,微波氧化2 h,其羧基含量最高到达0.729 mmol/g,氧化效果最佳,超声波处理后微纤化纤维素得率高达85.7%。FT-IR分析表明纤维素氧化后引入羧基官能团;XRD结果揭示纤维素氧化反应只发生在纤维素的无定型区或结晶区表面;纤维素氧化前后的聚合度(Dp)结果表明相对于碱性氧化,微波辐射和中性TEMPO氧化对纤维的降解程度低,从而有效地保持了纤维素原本的长度。  相似文献   
109.
本研究针对W axy基因第四外显子和第五外显子的3个功能位点开发了新的AS-PCR标记,完善了W axy基因的分子标记体系,为更精确的鉴定和筛选目标W axy等位基因提供了工具。直链淀粉含量测定和AS-PCR分析结果显示,云南传统水稻品种具有极为丰富的W axy基因多样性和直链淀粉含量变异,308个传统品种中共检测到65种不同的W axy单倍型,直链淀粉含量变幅为0~48%。In1、E6、E10和E4op/hp这4个位点的碱基频率在四大稻区间存在显著差异,E2位点和In1位点的碱基频率在不同民族间存在显著差异,表明不同稻作区、不同民族对水稻直链淀粉含量和W axy基因有着多样化的选择。同时民族混居地区E2和In1位点的碱基频率不同于其相应的民族独居地区,说明不同民族混居也会产生对W axy基因不同的选择并增加W axy基因的多样性。多样化的选择和民族混居是云南传统水稻品种W axy基因多样性形成和维持的重要机制。在云南四大稻作区中,南部边缘水陆稻区的W axy单倍型最为丰富,共检测到50种单倍型,占总数的77%,这一区域应被设为云南传统稻种资源的保护优先区和核心区。  相似文献   
110.
The physicochemical properties and in-vitro digestibility of extruded rice noodles with different amylose contents were characterized from a rheological point of view. Thermo-mechanical measurements showed that the rice flour with higher amylose contents exhibited greater stability to dual-mixing and higher degrees of starch gelatinization and retrogradation. In addition, greater elastic properties were clearly observed in the high amylose rice samples. The use of high amylose rice flour produced noodles with a harder texture, consequently contributing to reduced cooking loss. Furthermore, the rheological changes of extruded rice noodles were monitored in real time during the in-vitro starch digestion. The rice noodle digesta with higher amylose contents exhibited greater viscosities throughout the simulated oral-gastric-intestinal digestion steps. The flow behaviors of the rice noodle digesta consisted of the Power-law region and infinite shear plateau that were satisfactorily characterized by the Sisko model (R2 > 0.99).  相似文献   
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