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1.
Influence of Basic Tillering and Panicle Proportion on Absorption and Utilization of Nitrogen in Rice
基蘖肥与穗肥比例对杂交水稻氮素吸收利用的影响
2.
Effects of Different Amount of Base-Tiller Nitrogen Fertilizer on Plant N-Uptaking and Soil Nitrogen Supplying and Yield Formation of Rice;
水稻基蘖肥不同施氮量对氮素吸收、土壤供氮和产量形成关系的影响
3.
Effects of the amount of basic and tillering nitrogen on population quality and nitrogen utilization of machine-transplanted rice in rice-duck farming system
机插稻鸭共作系统氮素基蘖肥用量对水稻群体质量与氮素利用的影响
4.
Effects of the Amount of Basic and Tillering Nitrogen Applied on Absorption and Utilization of Nitrogen in Rice
氮素基、蘖肥用量对水稻氮素吸收与利用的影响
5.
Effects of the Basic and Tillering Nitrogen Amount on Population Quality and Nitrogen Use Efficiency in Rice;
基蘖氮肥用量对水稻群体质量影响及氮肥高效利用机理研究
6.
The Effect of Zinc and Boron Micro-Fertilizer Applied in the Soil at the Early Tillering Stage of New-Planting Sugarcane;
新植蔗分蘖初期根施锌、硼微肥的肥料效应研究
7.
Study on Colony Characteristic among Different Emergence Ability Wheat Variety by Density and Fertilizer Control;
密度、施肥对不同分蘖特性小麦群体的影响
8.
Effect of Applying Tillering Fertilizer at Different Time on Yield and Quality of Rice
分蘖肥不同施用时期对水稻产量和品质的影响
9.
Molecular Mapping of a Strong-tillering Gene,stl,in Japonica Rice(Oryza Sativa L.);
水稻强分蘖基因stl的分子定位研究
10.
Synergist could also increase tiller capability and dry weight accumulation of rice.
配方肥增效剂能提高水稻植株的分蘖能力,增加干物质积累量。
11.
So, it is necessary to create mutant associated with tillering and clone its controlling genes.
创造有关分蘖的突变体和分离相关基因,是研究分蘖调控机理的基础性工作。
12.
Genetic Analysis and Gene Mapping for a Highly-Tillering and Dwarf Mutant of Rice (Oryza Sativa L.);
水稻多蘖矮秆突变体的遗传分析和基因定位
13.
The Function Validation of the Candidate Genes Sdg and MT2 in Rice(Oryza Sativa L.) by RNAi;
水稻半矮秆基因Sdg和强分蘖基因MT2候选基因的RNAi研究
14.
For late rice, we should pay attention to seedling and tillering stage, supply certain amount at middle stage, if soil K deficiency is severe.
对晚稻施钾来说,我们应注意苗期和分蘖期,如果土壤缺钾严重,中期供应一定数量钾肥。
15.
Besides the N application, another possible factor which might contribute to the difference was the practice used in controlling of late tillering.
除氮肥用量外,另一个造成差别的可能影响因素是控制迟到的分蘖措施。
16.
An optimum planting density must be employed to get a high yield, depending upon soil condition, varietal tillering ability, fertilizer level, number of plants per hill, and planting season.
获得高产必须采用最适植株密度,视土壤条件、品种分蘖力、肥力水平、每蔸苗数和播种季节而定。
17.
Establishment of Rice Few-tillering Mutant NILs and the Genome-wide Expression Profile Analysis;
水稻寡分蘖突变体近等基因系的构建及全基因组表达谱分析
18.
Analysis on Progeny (T4) of Lysine-rich Protein Gene (sb401) Transgenic Rice and Genetic Mapping on an Excessive Tillering Gene in Rice;
转sb401基因水稻T4后代分析及水稻极度分蘖基因ext-M1b的遗传定位