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1.
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
2.
为了建立青蒿的SRAP最佳扩增体系,并筛选出SRAP多态性引物,本研究以青蒿叶片DNA为模板,采用正交试验设计,以Mg^2+、dNTP Mix、Taq DNA聚合酶、引物和DNA模板5种因素5个水平,对青蒿SRAP反应体系进行研究。结果表明,青蒿SRAP-PCR最佳反应体系为:引物0.6μmol/L、Mg^2+2.0 mmol/L、模板DNA 5.1 ng、Taq DNA聚合酶2.0 U、dNTPs 0.25 mmol/L,总体积为25μL。各因素对扩增反应均有不同影响,其中引物浓度的影响最大,dNTPs的影响最小。运用该体系对不同种质资源的青蒿进行验证,证明该体系稳定可靠,并在30个引物组合中筛选出了25对扩增条带清晰,多态性丰富的引物组合。这一结论为今后利用SRAP标记技术进行青蒿分子遗传学研究提供了科学依据。 相似文献
3.
利用中国气象局陆面数据同化系统(CLDAS)验证了2015—2016年土壤水分主动-被动微波数据集(SMAP)在河套灌区的适用性,基于土壤水分亏缺指数(SWDI )和干旱周百分比(PDW)分析了作物生育期内灌区农业干旱时空演变规律,通过两个参考指标检验了SWDI在河套灌区的精度。结果表明:(1)SMAP在河套灌区的适用性较好;区域尺度上,SMAP和CLDAS的相关系数为0.65;栅格尺度上,约有69%的栅格表现良好(R>0.5),且多集中在灌区西南部和东北部。(2)严重干旱主要发生在4月下旬到5月中旬、7月下旬到8月下旬以及9月中旬到10月中旬,主要集中在灌区的西南部、中部和东部;2015—2016年PDW值略有增大,干旱事件的持续时间有所延长。(3)大气水分亏缺量(AWD)表征的气象干旱在时间上显示2 a内灌区干旱月份为5—8月;空间上,除去地形原因,SWDI和AWD的相关性较为显著,且有一半格点通过了显著性水平为0.01的显著检验,表明基于SWDI对河套灌区进行干旱状况分析具有较高的可信度。 相似文献
4.
本文简要阐述了在可视化开发工具Visual foxpro6.0中,文件函数filetostr()和Strtofile()的功能和在实际当中的应用。通过Strtofile()函数,将编辑框中的字符转换为文本文件,通过filetostr()函数,将已存在的文本文件转换为编辑框的内容,以实现在MIS系统中备注字段内容的导入导出。 相似文献
5.
针对龟石灌区农业用水效率低下、浪费严重等问题,提出了节水措施,分析了节水改造的潜力与效益。灌区水资源优化配置与合理利用,提高灌溉水利用率和水分生产率,富余水量用于城市供水及发电,提高单位水量的价值不仅是必要的,而且是灌区发展的必由之路。 相似文献
6.
This paper depicted the physiographic landscape features and natural vegetation situation of study area (the eastern Jilin
Province), and expatiates the definition, basic characters and its development of Ecological Land Classification (ELC). Based
on the combination of relief map, satellite photography for study area and vegetation inventory data of 480 sample sites,
a 5-class and a 15-class ecological land type map was concluded according to 4 important factors including slope, aspect,
vegetation and elevation. Ecological Classification System (ECS) is a method to identify, characterize, and map ecosystems.
The Ecological Land Type (ELT) was examined and applied initially in eastern Jilin Province.
Foundation item: This paper was supported by Chinese Academy of Sciences “100 people” project and the Open Research Station of Changbai Mountain
Forest Ecosystem.
Biography: XIAO Bao-ying (1974-), female, postgraduate in Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang 110016,
P. R. China
Responsible editor: Zhu Hong 相似文献
7.
A field experiment was conducted to find out the critical physiological stages of irrigation schedules inducing better growth, physiological efficiency and seed yield potential of berseem ( Trifolium alexandrinum L., Var. S-99-1). For this purpose eight irrigation treatments were made comprised of four treatments of three irrigation (W1 , W2 , W3 and W4 ), three treatments of four irrigation (W5 , W7 and W8 ) and one treatment of five irrigation (W6 ) at various physiological stages i. e. regeneration, flower initiation, full bloom, seed initiation and advance seed development stage.
Thus based on the experimental results the physiological role of watering in berseem seed production could be discussed as:
With-holding of irrigation either at regeneration or at full bloom stage developed potential water stress in plants as indicated by high proline content of irrigation treatments — W4 , W1 and W7 ; and further brought out disturbance on the formation of carotene, synthesis of water soluble sugar and translocation of sugar towards reproductive organs during grain development stage. These stresses adversely affected the plant growth and flowering behaviour. The irrigation at seed initiation stage increased the seed yield. Continuous irrigation did not appear to be useful. Thus it can be concluded that irrigation at three critical physiological stages i. e. regeneration, full bloom and seed initiation was found to be essential for obtaining potential seed yield of berseem. 相似文献
Thus based on the experimental results the physiological role of watering in berseem seed production could be discussed as:
With-holding of irrigation either at regeneration or at full bloom stage developed potential water stress in plants as indicated by high proline content of irrigation treatments — W
8.
J.A. Díez P. Hernaiz M.J. Muñoz A. de la Torre A. Vallejo 《Soil Use and Management》2004,20(4):444-450
Abstract. The repeated application of pig slurry to agricultural soils may result in an accumulation of salts and a risk of aquifer pollution due to nitrate leaching and salinization. Under Mediterranean conditions, a field experiment on a sandy loam soil (Typic Xerofluvent) was performed with maize (Zea mays) in 1998, 1999 and 2001 to study the effects of applying optimal (P1) and excessive rates (P3) of pig slurry on soil salinization, nitrate leaching and groundwater pollution. The rate of pig slurry was established considering the optimal N rate for maize in this soil (170, 162 and 176 kg N ha?1 for 1998, 1999 and 2001, respectively). Pig slurry treatments were compared to an optimal N rate supplied as urea (U) and a control treatment without N fertilizer (P0). The composition of the slurries showed great variability between years. Mean NO3? leaching losses from 1998 to 2001 were 329, 215, 173 and 78 kg N ha?1 for P3, P1, U and P0 treatments, respectively. The amount of total dissolved salts (TDS) added to the soil in slurry application between 1998 and 2001 was 2019 kg TDS ha?1 for the P1 treatment and 6058 kg TDS ha?1 for the P3 treatment. As a consequence, the electrical conductivity (EC) of the slurry‐treated soils was greater than that of the control soil. The EC correlated significantly with the sodium concentration of the soil solution. Over the entire experimental period, 2653, 2202 and 2110 kg Na ha?1 entered the aquifer from the P3, P1 and P0 treatments, respectively. The P3 treatment did not significantly increase grain production in 1999 and 2001 compared with that achieved with the optimal N rate treatment (P1). This behaviour shows the importance of establishing application guidelines for pig slurry that will reduce the risk of soil and groundwater pollution. 相似文献
9.
系统耦合与荒漠─绿洲草地农业系统─—以祁连山一临泽剖面为例 总被引:7,自引:0,他引:7
生态系统内部自由能的积累,使系统失去平衡并趋于同其它生态系统结合,自由能驱使两个或两个以上的生态系统或亚生态系统,通过会聚,超循环和耦合而联合,从而形成具有特殊结构一功能的更高一级的新系统。系统耦合可以多途径解放生态系统中的自由能而增加农业生态系统的生产力,亦即从催化潜势,位差潜势,多稳定潜势及管理潜势中取得能输出。上述过程可作用于农业系统中的四个子系统,这四个子系统各有自己的产品:前植物生产,植物生产,动物生产,外生物生产,从而大幅度提高其生产力。在荒漠─绿洲草地农业生态系统中,本文分别计量了各个子系统的能流单位及其流程,证明它的子系统也可以成功的发生系统耦合,其中绿洲子系统应居关键地位。 相似文献
10.