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81.
李强  孔凡磊  袁继超 《作物杂志》2020,36(4):150-452
基于2011-2016年大田试验和气象数据资料,研究了年际气象差异对西南丘陵区玉米物质积累与产量的影响,以期为西南丘陵区玉米生产的高产稳产提供理论支持。结果表明:西南丘陵地区雨热资源丰富,但气象因素存在明显的年际波动,降水量波动最大,积温波动最小,且玉米各生育阶段降水、积温和光照配置也有所不同。积温是该区玉米生育前期形态建成的主要限制因子,花前积温、花后日照和降水共同调控玉米的干物质积累与转运,而后期产量形成是各气象因子综合作用的结果。花后日照直接影响玉米穗部性状(穗长、穗粗)和产量构成(穗粒数、千粒重),从而调控玉米的产量;花后积温和降水则通过影响玉米的穗粒数和千粒重对最终产量产生影响。因此,西南丘陵地区玉米在生产过程中可以通过调整播期,适当提高生育前期积温,促进植株生长发育,提高源器官的形态建成,为花后光合生产奠定良好的基础;减少花后降水量,提高花后日照时数,改善籽粒灌浆,提高籽粒充实度,从而实现高产。  相似文献   
82.
ABSTRACT

Invasive alien plant species (IAPs) represent one of the main biological threats to biodiversity worldwide. Information about their phenotypic plasticity are needed to increase awareness about their future invasive potential. A study about phenotypic plasticity in response to contrasting light regimes and its quantification by a plasticity index (PI) of two IAPs (Ailanthus altissima and Robinia pseudoacacia) inside a Strict Nature Reserve was conducted. R. pseudoacacia showed a 70% higher PI, with a strongly greater value at morphological leaf level, associated with a greater ability to survive and grow in forest understory, explaining its greater widespread. Otherwise, A. altissima showed its highest PI at physiological level, which was associated with the ability to colonize and grow in environments with high-light regimes. Based on these results, the conservative management has limited the presence of A. altissima by its lower ability to grow in forest understory. In fact, the small-scale gaps in the forest infrastructure, that could allow its recruitment, are originated only from the death of a single tree or small group of trees. Regarding R. pseudoacacia, it is critical to maintain this type of management because any disturbances resulting in large openings could further promote its presence inside the Reserve.  相似文献   
83.
为了稳定和提高苹果产量,通过对2013 年渭南白水县500 个点农业土壤区进行分析,并对土壤pH、全氮、有机质、碱解氮、速效钾、有效磷、有效铁和有效锰、锌、铜进行有效的对比研究。利用Microsoft Excel 2010 软件进行数据整理统计。结果发现:白水县苹果生长的土壤酸碱度为中性偏碱,并且土壤中的全氮和有机质的含量丰富,速效钾较丰富;有效锌、有效磷含量适中;有效铜含量高,有效铁、碱解氮、有效锰含量低。  相似文献   
84.
张建军  樊廷录  赵刚  党翼  王磊  李尚中 《作物学报》2017,43(7):1077-1086
在陇东黄土旱塬覆盖黑垆土大田,利用陇鉴301进行了连续10年的定位试验,观测长期施用不同氮源有机肥(发酵有机肥、农家肥)或小麦秸秆还田各处理对冬小麦产量相关性状和水分利用效率的影响。结果显示,小麦产量和水分利用效率年际间变化较大,与降雨量有直接关系;不同有机氮源替代部分含氮化肥处理对提高冬小麦产量和水分利用效率具有明显作用。在干旱、平水和丰水年型,较不施肥对照分别增产53.1%~103.7%、40.3%~79.3%和73.1%~94.8%,较单施化肥对照分别增产6.6%~41.8%、7.0%~36.8%和-2.9%~9.3%。以发酵有机肥做替代物处理的产量和水分利用效率最高,增产幅度最大,10年平均产量较不施肥和单施化肥对照分别增加88.9%和25.4%,水分利用效率和边际水分利用率也最高,分别为10.8 kg mm~(-1) hm~(-2)和1.03 kg m~(-3);并且产量构成因素和植株生理指标也优于其他处理。因此,发酵有机肥是陇东半湿润偏旱雨养农业区(年降水量约550 mm)冬小麦生产上替代部分含氮化肥的首选有机氮源。  相似文献   
85.
宋铮      余庭龙    朱春云    李海佳    邓磊   《西北林学院学报》2020,35(6):52-59
基于时空互代法研究不同退耕年限对青海东部人工林形质的影响,为高寒丘陵区人工林经营及多功能利用提供理论依据。在青海东部西宁市大通县设置青杨、祁连圆柏、青海云杉和华北落叶松典型人工林试验样地,开展退耕年限10、20 a和30 a样地调查。以生长情况、侧枝情况和土壤养分情况作为退耕还林林木形质评价指标,运用层次分析法构建林木形质的评价体系,对4种人工林林木形质进行综合评价。干形情况对林木形质的影响最大,贡献率占0.603;生长情况对其影响次之,贡献率占0.337;侧枝情况对其影响较小,贡献率仅占0.060;16个评价指标在林木形质评价中的权重大小依次为健康情况(0.674 9)>自然整枝能力(0.598 8)>土壤有机质(0.578 7)>通直度(0.526 5)>分杈情况(0.348 0)>土壤K(0.232 5)>侧枝平均基径(0.202 7)>胸径年均生长量(0.176 9)>枝粗指数(0.150 6)>土壤N(0.139 2)>树高平均生长量(0.107 6)>高径比(0.071 5)>尖削度(0.054 0)>土壤P(0.049 6)>侧枝数(0.047 9)>冠径比(0.040 7);综合评价得分依次为青杨(81.67)>华北落叶松(80)>青海云杉(75)>祁连圆柏(60)。森林生态系统通过自我调节,其发育呈正向演替。高寒丘陵区人工林形质随退耕恢复年限增加呈先增加后减少趋势。前期造林(10 a)可迅速提高林地盖度;发育至20 a时,林地林木形质最优;退耕30 a,林下光照减少,下层出现竞争缺光,影响林地涵养水分功能发挥,影响林木形质。以层次分析法建立的林木形质评价体系可为高寒丘陵区人工林经营及多功能利用提供依据,为其他树种形质评价提供借鉴。  相似文献   
86.
叶玉 《北京农业》2011,(3):59-60
中单28是中国农科院作物所选育的高产、多抗、优质、中晚熟普通玉米单交种,其组合为中1128x中5493。2005年4月经北京市农作物品种审定,审定编号为:京审玉2005001。2007年3月经山西省农作物品种审定,审定编号为:晋引玉2007008。  相似文献   
87.
为研究炭化竹原纤维的特性,进一步提升竹原纤维的使用性能,拓宽竹原纤维的应用领域,采用可控电炉制备了不同炭化温度和不同保温时间条件下的炭化竹原纤维,利用全自动比表面积及孔隙度分析仪测试了炭化竹原纤维的比表面积、比孔容及平均孔径,探讨了炭化条件对其性能的影响。结果表明:随炭化温度的升高和保温时间的延长,炭化竹原纤维的比表面积、比孔容和孔径分布先增大后减小,在较优的工艺条件下,炭化竹原纤维的比表面积和比孔容最大值分别可达819.35m2/g和0.7358cm3/g,平均孔径最小可达2.0836nm。  相似文献   
88.
宋立  肖平 《安徽农业科学》2015,(12):184-186
以江苏环太湖国际旅游区规划为实验对象,重点探讨生态景观吸引力空间异化过程,即从要素磁场分化开始,经由同质景观间的引力异化,导致同类景观片区间的引力空间异化,最终推导出另一种"同质相斥、异质相吸"的新型生态景观吸引力空间结构。  相似文献   
89.
Trees are the dominant species in agroforestry systems, profoundly affecting the performance of understory crops. Proximity to trees is a key factor in crop performance, but rather little information is available on the spatial distribution of yield and yield components of crop species under the influence of trees in agroforestry systems. Also, little information is available on how crop density may be exploited to optimize the yield in such systems. Here we studied the performance of cotton in jujube/cotton agroforestry. Field experiments were conducted in 2012 and 2013 in Hetian, Xinjiang, China. Cotton was grown at a row distance of 60 cm in three densities, 13.5, 18.0 and 22.5 plants m−2 in six m wide paths between tree lines in a jujube plantation. Plant density affected both cotton aboveground dry matter and yield significantly. The highest yield was attained at the intermediate density of 18.0 plants m−2 (20.0 plants m−2 corresponding in sole cotton), lower than the optimal density in sole cotton (25.0 plants m−2). Yield at the lower density was constrained by the low number of bolls per m2 as a direct consequence of the low density, whereas at the high plant density yield was constrained by a lower allocation of assimilates to cotton seed and lint, as a consequence of intraspecific and interspecific competitions. There were strong gradients in yield and yield components in relation to the distance from the tree rows. Leaf area and total dry matter of cotton in rows close to the tree lines were reduced, especially in the rows next to the trees. Moreover, biomass allocation to cotton fruits was reduced in these rows. Competitive influences from the trees on cotton performance extended two rows deep in a six-year old jujube stand, and even three rows deep in a seven-year old stand. Shading effects on cotton yield were compensated by increasing plant density as a result of greater boll numbers per unit ground area. Data from this study help guide the design of optimal plant density of cotton in jujube plantations and give insight in the spatial distribution and dynamics of competitive effects in agroforestry systems in general.  相似文献   
90.
P deficiency is a major obstacle for crop production in subtropical red soils in South China, and the hydrolysis of organic P (Po) is of great significance in these soils due to the immobilization of P by Fe and Al. Cover cropping in orchards and symbiotic microbial inoculation are considered to improve soil quality, including P status, however, their effects on the hydrolysis of Po is little known. In this study, five soil managements were established in a guava orchard in South China for two and a half years, including clean culture (CC), cover cropping with Paspalum natatu (PN), PN with arbuscular mycorrhizal fungal inoculation (PNA), cover cropping with Stylosanthes guianensis (SG), SG with rhizobial inoculation (SGR). Soil chemical, biochemical and microbial properties were analyzed. Results indicate that soil pH and SOM content tended to increase following cover cropping alone or with microbial inoculation. Po content was significantly elevated in PNA. Po fractionation revealed that cover cropping alone or with microbial inoculation significantly affected the contents of moderately labile Po (MLPo) and moderately resistant Po (FAPo). Enzyme assay indicated that cover cropping with microbial inoculation increased the activities of acidic phosphomonoesterase (ACP), neutral phosphomonoesterase (NP) and alkaline phosphomonoesterase (ALP), with ALP the most sensitive, although ACP activity dominated in red soils. Correlation analysis suggested a significantly positive relationship between ALP activity and MLPo or FAPo. PCR-DGGE profile of the alp-harboring bacterial community showed that cover cropping with S. guianensis and mycorrhizal inoculation to P. natatu promoted the bacterial diversity and/or species richness. For almost all the measured parameters, PN and SG were comparable, however, PNA was superior to SGR, indicating the stronger additive effect of arbuscular mycorrhizal fungus than that of rhizobia. Cat-PCA indicated that MLPo was the most influential factor on phosphomonoesterase. In general, this study suggests that, in subtropical orchards with red soil, cover cropping with microbial inoculation can improve the Po hydrolysis via the promoted alp-harboring bacterial community and then ALP activity. Our results also suggest that the combination of P. natatu and arbuscular mycorrhizal fungus is better than S. guianensis and rhizobia, which possesses practical significance for sustainable production in these orchards.  相似文献   
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