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1.
Detection and Genetic Analysis of the Gene Dispersed Crosses for Tiller Angle in Rice (Oryza sativa L.)
水稻分蘖角度基因分散态组合的检测及遗传分析(英文)
2.
Genetic Analysis and Gene Mapping of a Rice Tiller Angle Mutant tac2
一个水稻分蘖角度突变体tac2的遗传分析和基因初步定位
3.
Studies on Morphological Characterization and Eco-physiological Response of Dynamic Tiller Angle Rice (Oryza Sativa L.);
分蘖角度动态型水稻的形态特征与生理生态效应研究
4.
Dynamic changes of rice(Oryza Sativa L.) tiller angle under effects of photoperiod and effective accumulated temperature
光周期和有效积温对水稻分蘖角度动态变化的影响
5.
Effects of Plant Density on Physiological Characteristics of Different Stems during Tillering Stage in Two Spike-types Winter Wheat Cultivars
种植密度对两种穗型小麦品种分蘖期茎蘖生理特性的影响
6.
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
7.
Genetic Analysis and Molecular Tagging on a Novel Excessive Tillering Mutant in Rice;
一份新型水稻极度分蘖突变体的遗传分析及微卫星定位
8.
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
9.
Influence of Different Planting Density on Tillering Tendency and Yield of E-Jingnuo 437
不同栽插密度对鄂粳糯437分蘖动态和产量的影响
10.
Influence on the Density of Tiller and Multiple Ear Silage Maize to Biological Yield and Correlated Analysis of Main Characters
分蘖多穗型青贮玉米密度对生物产量的影响及主要性状的相关分析
11.
The results showed that salinity-alkalinity stress postponed the beginning time of the first tiller, reduced by 50% of tiller number and effective tiller number.
结果表明:盐碱胁迫推迟了一次分蘖的时间,降低了水稻分蘖数和有效分蘖数约50%。
12.
Analysis of the Tiller Productivity of Early Rice Cultivars Ⅶ Tiller Productivity at Different Transplanting Stage
水稻早熟品种分蘖生产力的初步分析──Ⅶ.不同插秧期的分蘖生产力
13.
Rice Cooling Injury in Heilongjiang Province Ⅳ Effect of Low Temperature on Rice Tillering
黑龙江水稻冷害 Ⅳ分蘖期低温对水稻分蘖的影响
14.
A shallow-rooted, high-tillering variety has a very high root density around the plant base but the roots grow vertically as well as laterally.
浅根、分蘖品种在植物根茎周围根密度很大,但根系同时向垂直和水平方向生长。
15.
Differential temperature effects also were observed after measurement of tillering in infested and non-infested genotypes.
通过调查被害和未被害基因型的分蘖情况,也可以看到不同的温度效应。
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.
Tillering theoretic Analysis of tourism and Real estate Turning An Independent Industry
旅游房地产业形成的分蘖理论分析
18.
Analysis on Tiller Growing into Ears and High Yield Structure of Wheat Variety Lankao-906
兰考906小麦分蘖成穗与高产结构分析