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Brassica juncea

网络  印度芥菜; 芥菜; 芥菜型油菜; 年生草本植物; 褐芥末

双语例句

  • At present, China has cultivated Brassica napus from abroad, germplasm resources are very limited; Brassica juncea originated in China, has many good features.
    目前我国主要栽培的甘蓝型油菜由国外引进,种质资源极为有限;芥菜型油菜起源于我国,具有许多优良特性。
  • Study on the Effects of Cadmium and Lead Absorption and Accumulation by Brassica juncea and Its Phytoremediation Efficiency
    印度芥菜对土壤Cd,Pb的吸收富集效应及修复潜力研究
  • History of cultivation are campestris and Brassica juncea.
    历史上栽培的都是白菜型和芥菜型油菜。
  • It is of great significance to make full use of the germplasm resources of Yellow-seeded Brassica juncea, and innovate germplasm through the useful genes transferring in rape breeding.
    充分利用我国芥菜型黄籽油菜的丰富种质资源,通过转移有益基因进行种质创新,在油菜育种中具有重要意义。
  • To further study the function of potherb mustard and cabbage SGR gene, We have constructed SGR gene silencing RNAi vector of potherb mustard and cabbage, and have carried out genetic transformation of Brassica juncea with floral-dip and tissue culture transformation by Agrobacterium-mediated.
    为了进一步研究雪里蕻和白菜SGR基因的功能,本研究构建了雪里蕻和白菜SGR基因的RNAi沉默载体,并采用了农杆菌介导的花序浸染法和组织培养转化法,进行了雪里蕻的遗传转化。
  • Inheritance, Mapping, and Origin of Yellow-Seeded Trait in Brassica juncea
    芥菜型油菜黄籽性状的遗传、基因定位和起源探讨
  • Characteristics of Growth and Development and Adventitious Ogan Origin in Chimera of Brassica Juncea and Brassica Oleracea
    榨菜和紫甘蓝嫁接嵌合体生长发育特性与不定器官起源的研究
  • The effects of organic-neutralization technology on the growth and uptake of Cd and Pb of Brassica juncea var. foliosa in the Cd-Pb Contaminated soil were studied by pot experiments.
    采用盆栽试验研究了在镉、铅污染的土壤上,有机&中性化技术对春菜生长以及污染元素(Cd和Pb)吸收的影响。
  • Effect of Exogenous Calcium on Seedling Growth and Physiological Characteristics of Brassica juncea Under Cadmium Stress
    外源钙对镉胁迫下芥菜型油菜幼苗生长和生理特性的影响
  • On the base of phenotypic and molecular biological characteristics of lateral bud of Brassica juncea var. gemmifera Lin. and mustard, this research mainly focused on the relative gene in MAX pathway.
    本课题以儿菜和芥菜侧芽的表型特征和分子生物学特性为基础,重点对控制侧芽发生的MAX途径相关的几个基因进行研究。