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11.
Ruimin Chao Chengqiang Xia Caixia Pei Wenjie Huo Qiang Liu Chunxiang Zhang Youshe Ren 《Journal of animal physiology and animal nutrition》2021,105(1):26-34
The objective of this study was to investigate the characteristics of ruminal microbial communities of alpacas (Lama pacos) and sheep (Ovis aries) fed three diets with varying ratios of roughage (corn stalk) to concentrate, 3:7 (LS), 5:5 (MS) and 7:3 (HS). Six alpacas (one-year-old and weighing 29.5 ± 7.1 kg) and six sheep (one-year-old and weighing 27.9 ± 2.7 kg) were used in this study, in a replicated 3 × 3 Latin square experiment. Total protozoa concentration was determined under the microscope; total fungi and methanogens were assessed using quantitative polymerase chain reaction and expressed as a percentage of total bacterial 16S rRNA gene copies; bacterial communities were investigated by targeted 16S rRNA gene (V3–V4 region) sequencing. The percentage of fungi was significantly higher in alpacas than in sheep under the LS diet, while the concentration of protozoa was significantly lower in alpacas under HS, MS and LS diets. The alpha diversity including Shannon, Chao l and ACE indices of bacterial communities was higher in alpacas than in sheep, under the LS diet. A total of 299 genera belonging to 22 phyla were observed in the forestomach of alpaca and sheep, with Bacteroidetes and Firmicutes dominating both animal species. Phyla Armatimonadetes and Fusobacteria, as well as 64 genera, were detected only in alpacas, whereas phyla Acidobacteria and Nitrospira, as well as 44 genera, were found only in sheep. The abundance of cellulolytic bacteria, including Butyrivibrio and Pseudobutyrivibrio, was higher in alpacas than in sheep under all three diets. These differences in the forestomach microbial communities partly explained why alpacas displayed a higher poor-quality roughage digestibility, and a lower methane production. Results also revealed that the adverse effects of high-concentrate diets (70%) were lesser in alpacas than in sheep. 相似文献
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Wang Zhun Zhang Hengheng Dong Qiang Gui Huiping Wang Xiangru Pang Nianchang Li Yongnian Niu Jing Jin Dingsha Wang Sujie Zhang Xiling Song Meizhen 《棉花学报》2021,32(6):538-551
[Objective] The aim of this study is to evaluate nitrogen efficient cotton germplasms and improve nitrogen use efficiency. [Method] Eighty cotton germplasms were selected and evaluated in the hydroponic experiment under low (0.25 mmol·L-1) and high (5 mmol·L-1) nitrogen concentration. Different traits for screening were identified and nitrogen use efficiency types were classified. Field experiments were also performed for comparison and confirmation of the identified germplasms. [Result] The results showed that there were significant differences in the total plant dry matter, shoot nitrogen accumulation and nitrogen absorption efficiency in cotton germplasms at the two nitrogen levels. Based on coefficient of variation, principal component analysis and correlation, six traits including total plant dry matter, shoot dry matter, root dry matter, total nitrogen accumulation, shoot nitrogen accumulation and nitrogen absorption efficiency were used as screening indicators. According to the Heatmap clustering analysis and the nitrogen efficiency comprehensive index, two germplasms (Lu05R59 and CCRI 69) were identified as low nitrogen tolerant and nitrogen efficient, and two germplasms (Coker 201 and Xinluzhong 30) as low nitrogen sensitive and nitrogen inefficient. The results of field experiment were consistent with the results of the hydroponic culture at the seedling stage. [Conclusion] It was finally determined that Lu05R59 and CCRI 69 were the low nitrogen tolerant and nitrogen efficient germplasms, and Coker 201 and Xinluzhong 30 were low nitrogen sensitive and nitrogen inefficient germplasms. The results of these studies provide the possibility for screening and rapid identification of nitrogen use efficiency in cotton at the seedling stage, and provide the ideal materials and theoretical basis for further study of cotton nitrogen efficient. 相似文献
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红蓝LED光照强度对茶树生长及生物化学成分的影响 总被引:1,自引:0,他引:1
以‘黔湄601’一年生茶树苗为试材,光量比为1∶3的LED红蓝光作为光源,探讨不同光照强度对茶树幼苗生长特性的影响、光合色素及生物化学成分的变化趋势,探索茶树苗生长发育对光强的响应机制。采用LED精准调节光质和光强,设置50μmol·m-2·s-1、100μmol·m-2·s-1、150μmol·m-2·s-1、200μmol·m-2·s-14个处理。结果表明,不同光强处理15 d后,50μmol·m-2·s-1光照强度有利于茶树叶色素含量的增加及Ca/Cb值的降低;100μmol·m-2·s-1光照强度有利于茶树叶茶多酚含量的降低及氨基酸含量的增加,酚氨比值最低;150μmol·m-2·s-1光照强度对茶树叶重增加有促进作用;200μmol·m-2·s-1光照强度有利于茶树叶茶多酚含量的增加和氨基酸、光合色素含量的减少;酚氨比值最高,光合色素含量最低。红蓝LED光照强度过低、过高都不利于茶叶品质形成,综合考虑,100μmol·m-2·s-1光照强度最有利于茶叶功能成分的积累,是茶叶LED光源设施栽培的理想光照强度。本研究结果对于设施茶树种植具有重要的参考意义。 相似文献
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气候变化下,森林生物量遥感监测是当前研究的热点,机载LiDAR作为重要的遥感信息源,其采样大小对生物量估测精度有着一定的影响。以机载LiDAR数据为信息源,以44块30m×30m的方形橡胶林实测样地数据为基础,对机载激光雷达数据进行不同尺寸采样(共21个采样尺寸,边长从10m至30m,间隔为1m),提取不同采样尺寸下的激光雷达参数,并与橡胶林地上生物量建立PLSR模型,就机载激光雷达采样大小对橡胶林地上生物量估测精度的影响进行研究。研究表明:当采样尺寸小于18m时,估测精度随着采样尺寸的增大而增大;而当采样尺寸大于18m时,估测精度随着采样尺寸的增大而减小,进而趋于平缓。结果虽然呈现出一定的规律性,但是差异并不是很明显。当采样尺寸为18m时估测效果最佳,模型决定系数(R^2)为0.718,均方根误差(RMSE)为17.830 t/hm^2;交叉验证精度P和RMSEcv分别为82.741%和18.874t/hm^2。相较于实际样地(30m)尺寸下的估测结果,18m采样尺寸下的R^2提高了1.989%,RMSEcv降低了2.611%。因此,生物量的估测精度受机载激光雷达数据采样尺寸大小的影响,在生物量估测过程中需结合研究对象和研究区的实际情况对采样尺寸进行选择,从而提高生物量估测精度。 相似文献
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以草莓"红颜"为试材,以PVC(聚氯乙烯)膜为对照,研究了PE(聚乙烯)膜、PHM(多层PE系)膜、纳米银膜、PVDC(聚偏二氯乙烯)膜等5种保鲜处理在(4.0±0.6)℃贮藏条件下对草莓果实失重率、硬度和可溶性固形物、维生素C、可溶性糖含量及感官品质的影响。结果表明:相较于PVC保鲜膜,PVDC膜与PHM膜能够较好的保持草莓果实的贮藏品质。其中PVDC膜包装可以有效地减少果实水分散失,保持草莓的硬度以及果实可溶性固形物含量;PHM膜包装可以较好的保持草莓果实可溶性固形物、维生素C、可溶性糖含量,维持果实的营养成分。 相似文献
19.
为探究影响北方冬油菜农艺性状的气象因子,以新疆自治区阿勒泰、乌鲁木齐和喀什为研究试点,选择陇油6号、陇油7号、陇油8号、天油2号、天油4号、天油7号共6个抗寒性不同的白菜型冬油菜品种为研究材料,采用适定性分析法和相关性分析法,研究气象因子对冬油菜的株高、主花序角果数、单株角果数、角粒数等农艺性状的影响。结果显示:随纬度降低越冬率增加,农艺性状变劣,其中千粒重、株高和角粒数变异系数较小,分别为5.86%、6.23%和12.63%,单株角果数的变异系数较大,为28.25%;参试品种间,强抗寒品种陇油6号和陇油7号的农艺性状变异系数较小,弱抗寒品种天油2号等变异系数较大;农艺性状与越冬率显著正相关(P<0.05),角粒数与各种气象因子的相关性均达显著水平(P<0.05);积雪天数、年降雨量和最大积雪厚度对农艺性状具有正效应,累积贡献率达到0.877,最冷月最低气温、地面极端低温、负积温和年均气温对农艺性状具有负效应,累积贡献率达到-0.871。因此,在北方寒区,选择强抗寒冬油菜品种有利于保持农艺性状稳定,获得较好产量与效益。 相似文献
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