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991.
基于无人机多光谱遥感的冬小麦冠层叶绿素含量估测研究 总被引:6,自引:0,他引:6
为探讨利用无人机多光谱影像监测冬小麦叶绿素含量的可行性,基于北京市大兴区中国水科院试验基地的2019年冬小麦无人机多光谱影像和田间实测冠层叶绿素含量数据,选取16种光谱植被指数,确定对冬小麦冠层叶绿素含量显著相关的植被指数,采用一元二次线性回归和逐步回归分析方法建立各生育时期及全生育期的SPAD值估测模型,通过精度检验确定对冬小麦冠层叶绿素含量监测的最优模型。结果表明,两种分析方法中逐步回归建模效果最佳。拔节期选取4个植被指数(MSR、CARI、NGBDI、TVI)建模效果最好,模型率定的决定系数(r~2)为0.73,模型验证的r~2、相对误差(RE)和均方根误差(RMSE)分别为0.63、2.83%、1.68;抽穗期选取3个植被指数(GNDVI、GOSAVI、CARI)建模效果最好,模型率定的r~2为0.81,模型验证的r~2、RE、RMSE分别为0.63、2.83%、1.68;灌浆期选取2个植被指数(MSR、NGBDI)建模效果最好,模型率定的r~2为0.67,模型验证的r~2、RE、RMSE分别为0.65、2.83%、1.88。因此,无人机多光谱影像结合逐步回归模型可以很好地监测冬小麦SPAD值动态变化。 相似文献
992.
花后早期增温对小麦旗叶光合和抗氧化特性及籽粒发育的影响 总被引:1,自引:0,他引:1
为探究小麦花后早期增温对其旗叶和籽粒生长发育的影响,以黄淮海南片主栽小麦品种安农0711和烟农19为试验材料,通过在小麦花后0~10 d搭棚覆盖PO薄膜方式进行人工模拟增温(增温1~ 3 ℃),测定分析了花后早期增温后小麦旗叶光合参数、叶绿素含量、抗氧化酶活性、MDA含量和籽粒性状的变化。结果表明,与常温对照相比,增温显著降低了旗叶净光合速率、叶绿素含量及 CAT和POD活性,增加了旗叶胞间CO2浓度和MDA含量,加速了旗叶衰老,使籽粒长度、宽度、厚度和千粒重均下降,安农0711和烟农19的粒重降幅分别为5.43%和7.34%。这说明在本试验条件下,花后早期增温不利于小麦旗叶光合和抗氧化作用,加速旗叶衰老,抑制籽粒发育。 相似文献
993.
为明确水地强筋冬小麦高产、优质、高效的灌溉技术,试验设3个灌水时期8个灌溉处理[越冬期灌1水(W1),拔节期灌1水(W2),孕穗期灌1水(W3),越冬期和拔节期灌2水(W12),越冬期和孕穗期灌2水(W13),拔节期和孕穗期灌2水(W23),越冬期、拔节期和孕穗期灌3水(W123),全生育期不灌水处理(CK)],于小麦成熟期测定籽粒产量、总蛋白及其组分含量和淀粉含量。结果表明,与不灌水的CK比较,所有灌水处理的籽粒产量、有效穗数、穗粒数、千粒重、蛋白质产量以及籽粒淀粉含量均显著增加,但籽粒的总蛋白及其组分含量均呈不同程度降低(W1处理除外)。越冬期灌水对有效穗数、籽粒产量、总蛋白及其组分含量、淀粉含量的提升作用较大;拔节期灌水对穗粒数的提升作用较大,但对淀粉含量的提升作用较小,对总蛋白及其组分含量的降低作用较大;孕穗期灌水对千粒重的提升作用较大,对蛋白质产量的提升作用较小。随着灌水次数增加,小麦籽粒产量显著提高,淀粉含量先显著提高后基本不变,而籽粒总蛋白及其组分含量降低。W123处理籽粒产量最高,其次是W13处理;W1处理籽粒蛋白质及其组分含量最高,其次是W12及W13处理;W23处理淀粉含量最高,其次是W12或W13处理。综合各项指标,最好的灌水组合是越冬期和孕穗期灌2水(W13)。 相似文献
994.
为在宽泛的稠度范围内检测和估算小麦的粉质参数以服务品质育种,本研究通过构建和应用复合粉质参数,并结合梯度加水、目测加水和误差控制技术,明显降低了加水量对测定结果的影响,成功建立了一系列逻辑算式和回归方程,定量描述了宽泛稠度与标准稠度(500 FU)下检测结果之间的转换关系,实现了标准检测结果的非直接测定。目测加水估计结果与对应标准值的相关性显示,形成时间、稳定时间、粉质质量指数和弱化度的估计标准值与标准值间的相关系数r=0.988~0.995;从不同途径推导出标准加水量预测的三个算式,其预测结果与标准值的相关系数r=0.983~0.995,综合预测效果明显优于单纯粉质仪内置软件的预测值。从而,用小而确定的样品量与一次目测加水测定(推荐稠度440~650 FU)估计标准检测结果,且可据此准确地调整加水量,直接测得达标的粉质参数。另外,借用逻辑算式还可将全部参数的达标值矫正为稠度500 FU时的标准值,使传统的粉质检测结果更加精准、更具可比性。 相似文献
995.
Qing Du Li Zhou Ping Chen Xiaoming Liu Chun Song Feng Yang Xiaochun Wang Weiguo Liu Xin Sun Junbo Du Jiang Liu Kai Shu Wenyu Yang Taiwen Yong 《作物学报(英文版)》2020,(1):140-152
Optimized nitrogen(N)management can increase N-use efficiency in intercropping systems.Legume-nonlegume intercropping systems can reduce N input by exploiting biological N fixation by legumes.Measurement of N utilization can help in dissecting the mechanisms underlying N uptake and utilization in legume-nonlegume intercropping systems.An experiment was performed with three planting patterns:monoculture maize(MM),monoculture soybean(SS),and maize-soybean relay intercropping(IMS),and three N application levels:zero N(NN),reduced N(RN),and conventional N(CN)to investigate crop N uptake and utilization characteristics.N recovery efficiency and 15N recovery rate of crops were higher under RN than under CN,and those under RN were higher under intercropping than under the corresponding monocultures.Compared with MM,IMS showed a lower soil N-dependent rate(SNDR)in 2012.However,the SNDR of MM rapidly declined from 86.8%in 2012 to 49.4%in 2014,whereas that of IMS declined slowly from 75.4%in 2012 to 69.4%in 2014.The interspecific N competition rate(NCRms)was higher under RN than under CN,and increased yearly.Soybean nodule dry weight and nitrogenase activities were respectively 34.2%and 12.5%higher under intercropping than in monoculture at the beginning seed stage.The amount(Ndfa)and ratio(%Ndfa)of soybean N2 fixation were significantly greater under IS than under SS.In conclusion,N fertilizer was more efficiently used under RN than under CN;in particular,the relay intercropping system promoted N fertilizer utilization in comparison with the corresponding monocultures.An intercropping system helps to maintain soil fertility because interspecific N competition promotes biological N fixation by soybean by reducing N input.Thus,a maize-soybean relay intercropping system with reduced N application is sustainable and environmentally friendly. 相似文献
996.
997.
AIM To observe the effect of tanshinone ⅡA on liver lipid deposition and ferroptosis-related protein expression in ApoE -/- mice. METHODS Thirty-two ApoE -/- mice were randomly divided into model group, high-dose (60 mg/kg) tanshinone ⅡA group, low-dose (30 mg/kg) tanshinone ⅡA group and simvastatin group, and C57BL/6J mice (n =8) were used as normal control group. The mice in normal control group were given the basic feeding, while the others were given high-fat diet. The mice in tanshinone ⅡA groups and simvastatin group were given corresponding drugs. The mice in normal control group and model group were intraperitoneally injected with equal volume of saline. Eight weeks later, the serum levels of triglyceride (TG), total cholesterol (TC), low-density lipoprotein cholesterol (LDL-C) and high-density lipoprotein cholesterol (HDL-C) were tested by automatic biochemistry analyzer. The liver tissues were stained with HE and oil red O. The contents of reactive oxygen species (ROS) and glutathione (GSH) in liver tissues of the mice were measured by commercially available kits. The liver glutathione peroxidase 4 (GPX4) and p53 were detected by immunohistochemical method. The protein and mRNA expression levels of ferroptosis-related factors GPX4, xCT/SLC7A11, p53 and ferritin heavy chain 1 (FTH1) were determined by Wes automatic Western blot quantitative analysis system and RT-qPCR. RESULTS Compared with normal control group, the serum levels of TC, TG and LDL-C in model group were increased significantly (P <0.05 or P <0.01), and HDL-C did not change significantly. The fat vacuoles were clearly visible in liver tissue. The content of ROS in liver tissue was increased significantly,and GSH was decreased significantly (P <0.01). The mRNA and protein expression levels of p53 were increased significantly, and GPX4, xCT/SLC7A11 and FTH1 were decreased significantly (P <0.05 or P <0.01). Compared with model group, tanshinone ⅡA significantly decreased the serum levels of TC, TG and LDL-C (P <0.05 or P <0.01), and HDL-C did not change significantly. High-dose and low-dose tanshinoneⅡA also significantly decreased the degree of steatosis, and the size of lipid droplets. The content of ROS in liver tissues was decreased significantly, and GSH was increased significantly (P <0.01). The mRNA and protein expression levels of GPX4, xCT/SLC7A11 and FTH1 were increased significantly, and p53 were decreased significantly (P <0.05 or P <0.01). CONCLUSION Tanshinone ⅡA reduces liver lipid deposition and lipid peroxidation damage in ApoE -/- mice, which may be related to the intervention of ferroptosis-related proteins in the liver cells. 相似文献
998.
ZHENG Hao-long SONG Nan CAO Hui-min CHEN Si WANG Jie Lü Xiao-ming JIA Lian-qun 《园艺学报》2020,36(4):713-718
AIM To investigate the effects of different components of Gynostemma pentaphyllum [gypenosides (Gps), gypenoside XLIX (GpXLIX) and ginsenoside Rb3 (GRb3)] on mitochondrial energy metabolism-related proteins in endothelial cells induced by oxidized low-density lipoprotein (ox-LDL). METHODS EA.hy926 cells were divided into control group, model group, Gps group, GpXLIX group and GRb3 group. The cells in control group were cultured only in DMEM complete medium. The cells in model group were treated with 100 mg/L ox-LDL for 48 h. The cells in Gps group, GpXLIX group and GRb3 group were treated with 100 mg/L ox-LDL for 24 h, and then treated with Gps, GpXLIX and GRb3 at 100 mg/L for another 24 h, respectively. The ATP content in each group was detected by ELISA. The expression levels of mitochondrial energy metabolism-related proteins, cytochrome C oxidase subunit 5a (Cox5a), NADH:ubiquinone oxidoreductase core subunit S1 (Ndufs1), ATP synthase F1 subunit alpha (ATP5a) and cytochrome C (Cyt C), were determined by Wes automatic Western blot quantitative analysis system and Western blot. RESULTS Compared with control group, the ATP content in model group was decreased (P <0.01). After drug intervention, the ATP content increased to different degrees in Gps group, GpXLIX group and GRb3 group (P <0.01). The results of Wes automatic Western blot quantitative analysis system were consistent with those of Western blot. These results showed that compared with control group, the protein expression of Cox5a, Ndufs1 and ATP5a in model group was decreased, and the protein expression of Cyt C was increased (P <0.01). After intervention, the protein expression of Cox5a, Ndufs1 and ATP5a was increased and the protein expression of Cyt C was decreased in Gps group, GpXLIX group and GRb3 group (P <0.05 or P <0.01). Among them, the effect of Gps on the protein expression of Cox5a, Ndufs1 and Cyt C was significantly stronger than those of the 2 monomer components, and the effect of GRb3 was found to be superior in the 2 monomer components. The effect of GpXLIX on ATP5a protein was superior to the other 2 components. CONCLUSION Gynostemma total saponins and related active ingredients protect ox-LDL-induced endothelial cells by affecting mitochondrial energy metabolism-related proteins, thereby preventing and treating atherosclerosis. 相似文献
999.
1000.