于2017—2018年在泰安、淄博和烟台,根据生产调研和各地夏玉米高产经验,在同一地块综合设置了超高产栽培、高产高效栽培和农户栽培3种栽培模式,分别模拟超高产生产水平(SH)、高产高效生产水平(HH)和农户生产水平(FP) 3个层次。并分别设置不施氮(SHN_0、HHN_0、FPN_0)、不施磷(SHP_0、HHP_0、FPP_0)和不施钾(SHK_0、HHK_0、FPK_0)的肥料空白处理。定量分析不同产量层次之间产量差及肥料利用效率差,探究产量差和效率差的影响因素及缩差增效途径。结果显示,当前山东省夏玉米SH、HH和FP的籽粒产量分别实现了光温潜力产量的68.13%、63.71%、53.22%。随着产量差距的增大,肥料利用效率降低。FP的N、P、K肥料利用效率分别为4.23、5.83、4.94 kg kg~(–1), SH的分别为3.84、4.64、2.97 kg kg~(–1)。通过优化栽培措施后,高产高效管理模式能够较FP籽粒产量提升10.49%, N、P、K的肥料利用效率分别提高67.07%、101.35%、57.65%,是实现产量与肥料利用效率协同提升的有效技术途径。对各产量水平进行产量性能分析发现,随着产量水平的提高,平均叶面积指数和单位面积穗数明显提高,而穗粒数、平均净同化率和粒重则有所下降。随着产量水平的提高,吐丝后干物质和N、P、K元素积累比例有增加的趋势。因此,在保持现有功能性参数不降低情况下,优化结构性参数是当前产量与资源利用效率协同提升的有效措施,今后高产高效应更加注重生育后期群体结构性能的优化。 相似文献
Herbicide treatments in viticulture can generate highly contrasting mosaics of vegetated and bare vineyards, of which vegetated fields often provide better conditions for biodiversity. In southern Switzerland, where herbicides are applied at large scales, vegetated vineyards are limited in extent and isolated from one another, potentially limiting the distribution and dispersal ability of organisms.
Objectives
We tested the separate and interactive effects of habitat amount and fragmentation on invertebrate abundance using a multi-scale framework, along with additional environmental factors. We identified which variables at which scales were most important in predicting patterns of invertebrate abundance.
Methods
We used a factorial design to sample across a gradient of habitat amount (area of vegetated vineyards, measured as percentage of landscape PLAND) and fragmentation (number of vegetated patches, measured as patch density PD). Using 10 different spatial scales, we identified the factors and scales that most strongly predicted invertebrate abundance and tested potential interactions between habitat amount and fragmentation.
Results
Habitat amount (PLAND index) was most important in predicting invertebrate numbers at a field scale (50 m radius). In contrast, we found a negative effect of fragmentation (PD) at a broad scale of 450 m radius, but no interactive effect between the two.
Conclusions
The spatial scales at which habitat amount and fragmentation affect invertebrates differ, underpinning the importance of spatially explicit study designs in disentangling the effects between habitat amount and configuration. We showed that the amount of vegetated vineyards has more influence on invertebrate abundance, but that fragmentation also contributed substantially. This suggests that efforts for augmenting the area of vegetated vineyards is more beneficial for invertebrate numbers than attempts to connect them.
AIM:To investigate the effect of proline-spirooxindole on the viability and apoptosis of human non-small-cell lung cancer A549 cells. METHODS:The effect of proline-spirooxindole on the viability of A549 cells was determined by CCK-8 assay. The apoptosis was analyzed by flow cytometry. The effects of proline-spirooxindole on the expression of PARP and p53 and the phosphorylation of mTOR were determined by Western blot. RESULTS:After A549 cells were treated with proline-spirooxindole (25, 50 and 100 mg/L), the cell viability was decreased (P<0.01) compared with DMSO control group. The apoptotic rate was increased compared with DMSO control group (P<0.01). The protein expression of p53 was up-regulated, the increased apoptotic protein cleaved PARP was observed, and the phosphorylation of mTOR was inhibited (P<0.01). CONCLUSION:Proline-spirooxindole inhibits the viability of A549 cells and induces apoptosis, which may be related to the phosphorylation of mTOR. 相似文献