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1)  Coleoptile [英][,kəuli'ɔptil]  [美][,kolɪ'ɑptɪl]
芽鞘
1.
Coleoptile Growth of Different Wheat Varieties under Salt Stress;
盐胁迫下不同小麦品种芽鞘生长的研究
2.
The coleoptile growth in vitro was significantly faster in 1/10 buffer solution of citric acid disodium phosphate than that in the original.
小麦离体芽鞘切段在稀释10倍的柠檬酸Na2HPO4缓冲液中的伸长量显著大于原液(原液由0。
2)  coleoptile purple line
芽鞘紫线
1.
Genetic analysis showed that the expression of rice coleoptile purple line was influenced by two genes,inhibiting gene I and anti-inhibiting gene A (i(t)).
遗传分析表明 :水稻芽鞘紫线表达受抑制基因I和反抑制基因Ai(t) 的影响 ,I抑制芽鞘紫线C_A_P_系统中的P基因 ,Ai(t) 抑制I基因。
2.
Coleoptile purple line, which appears in the both opposite side in some rice materials, is useful in identifying the purity of rice seed quickly and early because it expresses at budding period and helpful in studying the interrelations of genes because it is controlled by some interaction genes.
水稻芽鞘紫线是在种子出芽后,芽鞘两侧各出现的一条清晰可见的紫色线条。
3.
As a pigment trait,coleoptile purple line,which clearly appears in both opposite side of Coleoptile in some rice materials,is useful in identifying the purity of rice hybrid seeds quickly,exactly and cheaply because it expresses at budding period and can performance a inheritance behavior of F_1 generations expressing purple line but its two parents don\'t.
水稻芽鞘紫线是在种子出芽后,胚芽鞘两侧各出现的一条清晰可见的紫色线条。
3)  internode of coleoptile
芽鞘节间
1.
Results showed that the elongation of mesocotyl and internode of coleoptile played important roles in the seedling emergence of the weedy rice from northern China.
研究结果表明,在中国北方发现的部分杂草稻具有较强的中胚轴伸长特性和芽鞘节间伸长特性。
4)  Coleoptile [英][,kəuli'ɔptil]  [美][,kolɪ'ɑptɪl]
胚芽鞘
1.
Studies on α-amylase Activity and Coleoptile Length in Plateau Spring Wheat Varieties with Different Drought Resistance;
抗旱性不同的高原春小麦品种α-淀粉酶活性和胚芽鞘长度的研究
2.
Coleoptile Elongation Response of Different Salt-Tolerant Wheat Cultivars to NaCl Stress;
不同耐盐性小麦胚芽鞘伸长对NaCl胁迫的响应
3.
Synergistic effects of 2,4-epibrassinolide and auxin in promotion of coleoptile elongation in barley;
2,4-表油菜素内酯和生长素促进大麦胚芽鞘伸长生长的协同作用
5)  coleoptile length
胚芽鞘长度
1.
Variation of coleoptile length in winter wheat varieties under PEG simulated drought stress and its association with their drought tolerance
模拟干旱胁迫下冬小麦胚芽鞘长度变化及与抗旱性的关系研究
2.
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.
【Objective】 Understanding the effects of wheat dwarfing genes on coleoptile length and plant height is crucial for the proper utilization of dwarfing genes in yield improvement of wheat.
【目的】明确赤霉素敏感性不同的矮秆基因对小麦株高和胚芽鞘长度的效应,促进小麦不同矮秆基因的合理利用。
6)  coleoptile section
胚芽鞘切段
1.
:The barley coleoptile sections in vitro grew significantly faster in 10-fold dilution of buffer solution of citric acid-potassium phosphate than that in the original.
大麦胚芽鞘切段在稀释10倍的柠檬酸-磷酸缓冲液中的伸长量显著大于原液(原液由K2HPO4·3H2O 2。
补充资料:半丰满鞘丝藻
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条


俗名:  半丰满鞘丝藻
产地及产期:
    生长在中、高潮带岩石上。产于海礁、深山、中街山、普陀山、渔山、大陈、南麂。我国沿海均有分布。可供食用。
介绍:
    藻体蓝绿色, 粘滑,丝状, 丛生。为单列细胞不分枝的丝状体,高3~4厘米。直径13~14微米,是细胞高度的4倍,上下直径相同。 胶鞘和藻殖段明显可见。