1)  coleoptile length
胚芽鞘长
1.
In this study 46 maize inbred lines were evaluated for the traits of subcrown internode length,coleoptile length,subcrown internode and coleoptile total length,seedling emergence rate at 10 cm planting depth.
该研究在播深10 cm条件下,对46份玉米自交系的根茎长、胚芽鞘长、根茎与胚芽鞘总长、出苗率进行了鉴定评价和相关分析。
2)  coleoptile length
胚芽鞘长度
1.
A set of recombinant inbred lines (RILs) population including 195 lines derived from a cross of Zhenshan 97B (lowland rice variety) and IRAT109 (upland rice variety) was used for correlation analysis and QTL identification for coleoptile length (CL) and drought resistance index (DRI).
对由水稻品种珍汕97B和旱稻品种IRAT109构建的重组自交系195个株系的胚芽鞘长度及抗旱系数的研究表明,水分胁迫下水稻重组自交系群体的胚芽鞘长度与抗旱系数的相关系数为0。
3)  germ
胚芽
1.
Study on functional oil in soybean germ;
大豆胚芽中功能性油脂的研究
4)  embryo
胚芽
1.
Tissue culture and plantlet regeneration from embryo of Saussurea involucrate;
新疆雪莲胚芽的组织培养和植株再生
2.
Research on Application of Computer Vision in Identifying Rice Embryo;
计算机视觉在大米胚芽识别中的应用
3.
With corn embryo of coproduct from corn starch produced with wet method as material, superoxide dismutase(SOD) was extracted through sonication after supercritical CO2 fluid extraction for defating and low temperature crushing.
以玉米湿法加工淀粉副产物玉米胚芽为原料,经超临界CO2萃取脱脂、低温超细粉碎处理后超声波破碎提取超氧化物歧化酶(SOD)。
5)  Plumule
胚芽
1.
Determination of Entrin Plumule by GC/MS;
胚芽中雌激素成分的GC/MS测定
2.
A new biosenor based on plumule of colchicum Autumnale tissue is investigated.
利用秋水仙(Colchicumautumnale)胚芽组织研制了对秋水仙碱选择性响应的新型生物传感器。
3.
the paper puts forward a proposal on the basis of its differentiation model to distinguish plumule grains in rice mass.
利用计算机视觉系统,研究大米胚芽的自动识别方法,在分析大米的表面积及轮廓线的二次微分曲线基础上,提出利用大米微分模型识别群体胚芽米的留胚率的设想。
6)  corn germ
玉米胚芽
1.
Research on extraction technology of protein isolate in corn germ;
玉米胚芽分离蛋白提取工艺研究
2.
Study on bioactive peptides from corn germ by enzyme hydrolysis;
玉米胚芽肽酶解工艺初步研究
3.
Multi-step aqueous enzymatic extraction of corn germ oil;
玉米胚芽分步酶解法提油工艺的研究
参考词条
补充资料:角槐豆荚胚芽黄色素
分子式:
CAS号:

性质:一种天然食用黄色素。浅黄至蛋黄色的粉末。水悬浮液的pH值为6.5,pH值在2.8以下则褪色。在碱性条件下逐渐转深,至pH值为10时呈深黄色并具有很好的吸水、持水性。其主要的着色物质属黄酮类化合物。可由角槐豆荚胚芽直接粉碎或焙炒后粉碎成粉末制成。用于面制品,可使呈蛋黄色,并起品质改良剂的作用。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。