甘薯
- sweet potato
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(1) [sweet potato]
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(2) 一种热带藤本植物,牵牛属,地下块茎肥厚,含丰富淀粉,叶各种形状,花淡紫色,原产热带美洲,现各地有栽培
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(3) 这种植物的块根--俗称番薯、地瓜、红薯、白薯
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甘薯G病毒外壳蛋白基因克隆与序列分析
Cloning and Sequence Analysis of Coat Protein Gene of Sweet Potato Virus G
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甘薯茎总RNA的简易高效提取方法
An Easy RNA Isolation Method for the Stem of Sweet Potato
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N对叶菜型甘薯硝酸盐积累及品质的影响
Effects of nitrogen on the nitrate accumulation of vine-vege table sweetpotato and its quality
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研究了颗粒α化修饰玉米、木薯和甘薯淀粉的结晶特性,从X衍射图谱对其结晶变化进行了对比分析。
This paper studied modified pregelatinized starches crystalline properties .
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研究了不同pH对紫色甘薯花色素稳定性的影响。
Effects of pH values on the stability of anthocyanin in purple-sweet potato were studied .
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甘薯中β-胡萝卜素HPLC测定方法分析
HPLC analysis method on β - carotene in sweet potato
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此外,本文采用荧光光谱法研究了6个品种紫甘薯花色苷对DNA的保护作用。
In addition , the protection of anthocyanin of purple sweet potato on DNA were investigated by spectrofluorometric method .
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光照强度和CO2浓度间接调控对甘薯无糖组培苗光合特性的影响
Effects of photosynthetic photon flux density and CO_2 concentration on photosynthesis of sugar-free micropropagation of sweetpotato plantlets
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NaCl胁迫对甘薯某些生理性状的影响
Effects of NaCl Stress on Some Physiological Characters in Sweet Potato
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盐酸水解DNS比色法快速测定甘薯淀粉含量的标准方法研究
Quick Analysis of Starch Content of Sweetpotato by HCl Hydrolysis-DNS Method
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CO2浓度和光合光量子通量密度对叶用甘薯组培苗光合自养和过氧化物酶活力的影响
Effect of co_2 concentration and photosynthetic photo flux density on photoautotrophic capability and peroxidase activity of Ipomoea batatas Lam in vitro
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甘薯抗、感茎线虫病品种遗传多态性的RAPD分析
Genetic Diversity Analysis Based on RAPD for Resistance and Susceptibility of Sweetpotato Varieties to Stem-nematode
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发现甘薯块根中β-淀粉酶的最适温度为40℃,其温度稳定性范围为0~60℃,最适pH值为5.2~6.5,而pH值为3.0~8.0时酶具有较强的稳定性;
The optimum temperature of amylase in sweet potatoes was 40 ℃, and they were stable in the temperature range 0 ~ 60 ℃;
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快速鉴定甘薯品种抗旱性的生理指标及PEG浓度的筛选
Physiological indices of rapid identification for sweet potato drought resistance and selection of PEG concentration
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甘薯AFLP分子标记体系建立
The Establishment of Technical System of AFLP Markers for Sweet Potato
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PEG胁迫对甘薯不同器官的愈伤组织淀粉酶活性的影响
Effect of PEG Stress for Expression of Amylase in Calli of Sweet Potato 's Different Organ
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本文研究了甘薯(Z)紫色素的酸碱稳定性、热稳定性、光稳定性,以及其黄酮含量和清除DPPH自由基的效率。
The content of flavonoids and their radical scavenging effect were - also examined .
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甘薯可溶性蛋白、叶绿素及ATP含量变化与品种抗旱性关系的研究
Relationship Among Soluble Protein , Chlorophyll and ATP in Sweet potato Under Water Stress with Drought Resistance
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菜用甘薯遗传多样性的ISSR分析
Genetic Diversity Analysis Based on ISSR of Vine-vegetable Sweet Potato
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ABR处理甘薯淀粉废水的试验研究
Study on the treatment of sweet potato starch wastewater in an anaerobic baffled reactor
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这表明利用RAPD标记在甘薯育种中进行辅助选择是可靠的。
The results showed that it was reliable to utilize RAPD markers for assisted selection in sweet potato breeding .
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通过对CTAB法和SDS法提取甘薯的基因组DNA的比较,结果表明CTAB法比较适合提取甘薯基因组DNA。
After compared the CTAB and SDS methods . the result showed that the SDS method was suitable for sweet potato .
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不同紫色甘薯品种的生长差异及其对增强UV-B辐射的响应
Growth Difference of Different Purple Sweet Potato Varieties and Effects of Enhanced Ultraviolet-B Radiation on Them
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DPPH法研究不同品种甘薯抗性淀粉抗氧化性
Study on antioxidant activity of resistant starch of different sweet potatoes by DPPH method
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甘薯糖蛋白功能研究&体外抗肿瘤与Ames实验
Study on Functional Properties of Sweet Potato Glycoprotein & An in vitro Antitumor and Ames Tests
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甘薯块根总RNA提取与psy基因保守序列的克隆
Isolation of total RNA from tubers of Ipomoea batatas and cloning of conserving domain sequence of psy gene
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结果表明,种植6周时接种能够提高甘薯的菌根侵染率、生长和吸P量,收获时可提高甘薯的产量和品质。
The results show that the inoculation can increase mycorrhizal fungi colonization , growth and P uptake of sweet potato six weeks after transplantation and also improve the yield and tuber quality of sweet potato on harvest .
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对不同水力停留时间下ABR反应器的处理效能进行了研究分析,提出了ABR处理甘薯淀粉废水的工艺运行条件。
Analyzes the treatment effect of ABR in different HRT and raises best operation condition in treating sweet potato starch wastewater .
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近年来,AFLP分子标记技术已经逐步应用于甘薯的遗传育种研究中。
In recent years , the AFLP molecular markers technology has been applied to the study of the sweetpotato genetics and breeding .
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筛选了一株对甘薯茎线虫具有高毒力的Bt菌株YBT-008。
Screened out a Bt isolate YBT-008 with high virulence against D.destructor .