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1.
研究不同产量水平冬小麦群体冠层不同层次光合有效辐射(Photosynthetically Active Radiation,PAR)截获、干物质分布及产量的影响,为缩小新疆冬小麦产量差距、提高光能资源利用和高产栽培提供理论依据。试验于2018—2019年在军户和奇台两个不同试验区进行,以当地主栽品种为试验材料,采用综合管理模式模拟了超高产(SH:≥9000 kg·hm^-2)、高产(HH:7500~9000 kg·hm^-2)、农户(FP:6000~7500 kg·hm^-2)、基础(CK:≤4500 kg·hm^-2)4个产量水平。研究4个产量水平下新疆冬小麦开花期上、中、下冠层的光截获特性及干物质积累与分配特性,分析其与产量构成的相关性,探究增产途径。结果表明:产量水平高的群体在灌浆期仍能保持较高的叶面积指数(Leaf Ar?ea Index,LAI);随着产量水平的提高,冠层上、中、下层的PAR截获率和PAR截获量均提高,且总体表现为上层>中层>下层,呈现“上强下弱”的垂直分布特征,PAR透射率变化趋势与之相反;中层干物质积累量要低于上、下层干物质积累量,且上层干物质随着产量水平的升高增幅要大于中层和下层,干物质上、中、下层均与PAR截获率呈极显著相关,与籽粒产量的相关系数分别为0.97、0.90、0.78。可见花后维持较高LAI,提高光合有效辐射截获量(IPAR),增加开花后干物质积累,是实现小麦增产,缩小产量差的途径。  相似文献   
2.
绿咖啡油是一种富含生物活性成分的功能性油脂,贮藏过程中极易氧化酸败影响产品品质。本文以海南地区兴隆咖啡为原料提取绿咖啡油,系统研究在60 ℃加速贮藏36 d内氧化指标、生物活性成分及表征氧化的光谱特征峰变化。结果表明:过氧化值、茴香胺值、硫代巴比妥酸、总氧化值初始值分别为0.97±0.04 meq/kg、4.19±0.14、55.08± 1.98 nmol/mL、8.05±0.06,经过36 d的氧化分别显著升高到28.56±0.15 meq/kg、19.19±0.13、102.38±2.18 nmol/mL、133.43± 0.45。本研究中共鉴定出11种脂肪酸,在绿咖啡油氧化过程中,饱和脂肪酸与不饱和脂肪酸比值由1.14上升至1.49。利用高效液相色谱测定绿咖啡油中的二萜类物质和生育酚,咖啡豆醇、咖啡醇的初始含量分别为21.01±0.31 mg/g、23.44±0.52 mg/g,在氧化24 d后升高至8.21±0.10 mg/g、8.99±0.02 mg/g,随后含量趋于稳定。共定性出α、δ和γ-生育酚,总生育酚含量由初始的49.75±0.88 mg/100 g在氧化18 d达到最大值53.70±1.72 mg/100 g,在氧化结束时降至34.58± 0.05 mg/100 g。利用傅里叶变换红外光谱(FTIR)从特征官能团的角度分析绿咖啡油的氧化过程,油脂在3008、2927、2854、1745、1461、1375、1238、1164、721 cm-1处有特征吸收峰。采用拉曼光谱技术表征绿咖啡油加速贮藏中的氧化变质,在1000~1800 cm-1波段的峰强度有明显减弱趋势。本研究表明绿咖啡油在热诱导下的贮藏过程中发生了明显的氧化反应,可为提升绿咖啡油贮藏稳定性提供理论参考。  相似文献   
3.
含糖量是决定和影响花生食用品质和加工特性的重要指标,蔗糖含量占成熟花生籽仁总糖量的90%以上,建立蔗糖含量的高效检测技术,有助于加快高蔗糖甜味食用型花生品种培育进程。本研究利用蔗糖含量差异显著的185份花生材料,利用近红外仪(波长范围1100~2500 nm),配合小样品杯,扫描和采集自然干燥籽仁的近红外光谱,采用液相色谱(HPLC)结合标准曲线法测定试验材料的蔗糖含量,利用偏最小二乘法(partial least squares,PLS)构建了花生籽仁蔗糖含量的近红外定标模型,模型的决定系数R2=0.962,均方差为0.383。利用20份材料对模型进行外部验证,预测值和化学值的决定系数达0.947,表明该模型可较好地预测蔗糖含量,可以高效地测定杂交早期世代的单株花生蔗糖含量。利用该模型在“吉花02-1-4×中花26”杂交后代中发掘出6份含糖量7%以上、油酸78%以上、含油量48%以下,且农艺性状优良的食用花生新品系。  相似文献   
4.
将辐射制冷材料粘贴或涂刷于浅圆仓仓顶和外壁,试验表明:试验仓比对照仓仓顶外表面平均温度低4.3℃,最高值低26.1℃;平均仓温低2.8℃,最高值低5.6℃;平均粮面温度低2.4℃,最高值低4.7℃。试验表明,辐射制冷材料应用于浅圆仓具有显著的降温效果,新型辐射制冷技术产业化的突破为粮食仓储行业实现更高质量的仓储环境提供了新材料,为实现浅圆仓的准低温储粮提供了新的参考方法。  相似文献   
5.
为了充实河北雾灵山自然保护区的野生动物资源本底资料,提高监测能力和监测水平,雾灵山保护区自2015年开始将红外相机技术应用到野生动植物的资源调查和管护中。目前应用红外相机技术发现兽类5目10科14种,鸟类4目6科10种,掌握了区内主要物种猪獾(Arctonyx collaris)、狍(Capreolus)和勺鸡(Pucrasia macrolopha)的日活动节律,补充了保护区的本底调查资料,为保护区进一步开展金钱豹(Panthera pardus)、斑羚(Naemorhedus goral)和鸟类多样性等科学研究奠定了基础,为保护区制定关于野生动物资源的相关管护政策提供了科学依据。  相似文献   
6.
刘亮  王丹  王诚  陈红  胡国宇  黎青 《核农学报》2021,35(5):1009-1019
为研究60Co-γ射线对栀子插条的辐射诱变作用及3种保护剂的保护效应,采用不同辐射剂量(5、10、20、40 Gy)辐射栀子插条,运用氯化钠(NaCl)、半胱氨酸(Cys)及维生素C(Vc)3种保护剂,分别设置4种不同浓度浸泡辐射后插条,分析不同辐射剂量及保护剂处理栀子插条的生根率、存活率、根长、根数、成株率、节间长度、分枝数、叶片数、叶长、叶宽等指标。结果表明,随着辐射剂量的增加,栀子插条的损伤逐渐增大。栀子插条60Co-γ射线半生根剂量为21.22 Gy,半致死剂量为81.65 Gy,半成株剂量为20.30 Gy。3种保护剂在较高剂量辐射下具有显著的保护效应。在20 Gy辐射剂量下,3.00 g·L-1 NaCl处理对栀子插条生根、生长保护效果较好。40 Gy辐射剂量下,0.12 g·L-1 Cys和0.08 g·L-1 Vc处理对栀子插条生根、生长保护效果较好。综上所述,3种保护剂均对较高剂量60Co-γ射线损伤具有较好的保护作用,且保护效果与辐射剂量、保护剂浓度相关。本研究为栀子的辐射诱变育种及保护剂应用提供了技术参考。  相似文献   
7.
Long-term fertilization and crop rotation can influence both organic C sequestration as well as the C composition of soils and the more resistant organic C compounds contained in humic acid(HA). This study examined the effects of fertilization and cropping type(monoculture corn(MC) and Kentucky bluegrass sod(KBS) and corn-oat-alfalfa-alfalfa rotation(RC)) on the HA composition of soil from a 52-year field study in southern Ontario, Canada. Humic acid samples were extracted from soil, and elemental analysis, infrared spectroscopy, solid state 13C nuclear magnetic resonance spectra, and electron paramagnetic resonance methods were used to determine the influence of the cropping type on the characteristics of HA. Both fertilization and cropping type affected the chemical characteristics of HA. Fertilization led to a 5.9% increase in C, a 7.6% decrease in O, and lower O/C and(N + O)/C ratios in HA as compared to the corresponding non-fertilized treatments. Rotation resulted in a lower proportion of C(48.1%) and a greater(N + O)/C ratio(0.7) relative to monoculture cropping. Infrared spectroscopy analysis showed that HA contained more C-O groups in fertilized soil than in non-fertilized soil under MC and KBS. Fertilization increased the O-alkyl-C, phenolic-C, and free radical contents of HA relative to non-fertilization treatments. Rotation decreased the aliphatic and carboxyl groups and increased the O-alkyl, carbohydrate, aryl, and phenolic groups and free radicals, relative to MC and KBS. Both long-term crop rotation and fertilization dramatically modified the soil HA composition. Significant relationships were observed between the molecular composition of HA and soil organic C. Hence, humic acid characterization could be used as an indicator of the long-term sustainability of crop management practices.  相似文献   
8.
  1. Although the frequency of occurrence of plastic ingestion in the large-sized dolphinfish and tunas taken by the Hawai'i longline fishery is very low (frequency of occurrence < 5% of sampled individuals), the ingestion of plastic in smaller-sized specimens caught with pole-and-line gear by commercial and recreational fishers has not been investigated.
  2. This study examined ingestion of >0.25 mm marine plastic debris (MPD) by four predatory fish species caught by commercial fishers around the Main Hawaiian Islands, and documented ingestion in three species: 85.7% of albacore tuna (n = 7), 40.0% of skipjack tuna (n = 10) and 12.5% of dolphinfish (n = 8).
  3. Yellowfin tuna (n = 10) did not contain any MPD, probably owing to the high proportion of empty stomachs (60%).
  4. For skipjack tuna, the frequency of occurrence of MPD ingestion was significantly higher for the smaller-sized specimens caught with pole-and-line (40%), compared with the larger-sized specimens caught with longlines (0%).
  5. For dolphinfish, the frequency of occurrence of MPD ingestion was similar for the similar-sized specimens caught with pole-and-line and with longlines.
  6. The ingested MPD items were micro–meso plastics, between 1 and 25 mm. While most ingested items were fragments, albacore also ingested line and skipjack also ingested sheets.
  7. The predatory fishes ingested light MPD items that float in sea water, but there were species-specific differences in their polymer composition: albacore contained more polypropylene and polyethylene, and skipjack contained more elastomers, characterized by a high percentage of ester plasticizers.
  8. Altogether, these results suggest that albacore and skipjack tunas ingest plastic of different types and polymers. Yet more research is needed to understand how differences in vertical distribution, foraging ecology and diet influence the MPD sampled by these predatory fish species.
  相似文献   
9.
We provide estimates of glacier mass changes in the High Mountain Asia (HMA) area from April2002 to August 2016 by employing a new version of gravity solutions of the Gravity Recovery and ClimateExperiment (GRACE) twin-satellite mission. We find a total mass loss trend of the HMA glaciers at a rateof –22.17 (±1.96) Gt/a. The largest mass loss rates of –7.02 (±0.94) and –6.73 (±0.78) Gt/a are found forthe glaciers in Nyainqentanglha Mountains and Eastern Himalayas, respectively. Although most glaciers inthe HMA area show a mass loss, we find a small glacier mass gain of 1.19 (±0.55) and 0.77 (±0.37) Gt/a inKarakoram Mountains and Western Kunlun Mountains, respectively. There is also a nearly zero massbalance in Pamirs. Our estimates of glacier mass change trends confirm previous results from the analysisof altimetry data of the ICESat (ICE, Cloud and Land Elevation Satellite) and ASTER (AdvancedSpaceborne Thermal Emission and Reflection Radiometer) DEM (Digital Elevation Model) satellites inmost of the selected glacier areas. However, they largely differ to previous GRACE-based studies which weattribute to our different post-processing techniques of the newer GRACE data. In addition, we explicitlyshow regional mass change features for both the interannual glacier mass changes and the 14-a averagedseasonal glacier mass changes. These changes can be explained in parts by total net precipitation (netsnowfall and net rainfall) and net snowfall, but mostly by total net radiation energy when compared to datafrom the ERA5-Land meteorological reanalysis. Moreover, nearly all the non-trend interannual masschanges and most seasonal mass changes can be explained by the total net radiation energy data. The massloss trends could be partly related to a heat effect due to increased net rainfall in Tianshan Mountains, QilianMountains, Nyainqentanglha Mountains and Eastern Himalayas. Our new results for the glacier mass changein this study could help improve the understanding of glacier variation in the HMA area and contribute tothe study of global change. They could also serve the utilization of water resources there and in neighboringareas.  相似文献   
10.
We studied the effects of temperature and solar radiation on rice yield with the aim of understanding the temperature and solar radiation requirements for high yield rice production in the lower reaches of the Huai River, China. Field experiments were conducted with two medium-maturing japonica rice(MMJR) varieties and four late-maturing japonica rice(LMJR) varieties in 2017 and 2018. Seeds were sown on May 10(T1), May 17(T2), May 24(T3), May 31(T4), June 7(T5), June 14(T6), and June 21(T7). The whole growth duration(WGD) of rice was shortened when sowing date was delayed, especially for the duration from sowing to heading(S–H). The effective accumulated temperature(EAT), mean daily temperature(T_(mean)), cumulative solar radiation(CSR), and mean daily solar radiation(R_(mean)) over the WGD decreased when sowing date was delayed. Compared with T1, yields in T2, T3, T4, T5, T6, and T7 decreased by 0.12–0.35, 0.45–0.89, 0.74–1.56, 1.41–2.24, 2.16–2.90, and 2.69–3.64 t ha-1, respectively. There was a significant positive correlation between rice yield and EAT in different growth stages. Temperature was the main factor that affected the yield of good eating-quality rice in the lower reaches of the Huai River. We found that a relatively high yield can be obtained when the optimal T_(mean) for medium-maturing japonica rice(MMJR) and late-maturing japonica rice(LMJR) was 25.8–27.0℃ and 26.6–27.1℃ in the stages from sowing to heading(S–H), and 20.3–23.3℃ and 20.3–22.1℃ in the stages from heading to maturity(H–M), respectively. The optimal sowing dates for MMJR and LMJR in the lower reaches of the Huai River were May 15–31 and May 15–18, respectively.  相似文献   
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