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    Study on Salt-tolerance Mechanisms and Resistance Breeding of Main Popular Varieties in Westward Northeast
    东北主要杨树抗盐机理及抗性品种选育的研究
    Salt-tolerance Mechanism Study on Thellungiella Halophila as a New Model Halophyte
    盐芥(Thellungiella Halophila)作为耐盐模式植物的耐盐机理研究
    STUDIES ON SALT TOLERANCE MECHANISM OF RICE Ⅱ.COMPARISON OF SALT TOLERANCE OF CALLI IN DIFFERENT GENOTYPES
    水稻耐盐机理的研究Ⅱ、不同基因型愈伤组织耐盐性比较
    Salt Tolerance Mechanism and Molecular Markers of Genes Associated with Salt Tolerance in Soybean
    大豆耐盐机理及相关基因分子标记
    Salt Tolerance Mechanism of the New Wheat Cultivar DK961 with Salt Tolerance and High Yield
    耐盐丰产小麦品种德抗961的耐盐生理机制
    Research advances in plant salt-tolerance mechanism
    植物耐盐性机理研究进展
    Study on the Purification of the V-H~+-ATPase in the Cells of Populus Euphratica and Its Salt Tolerance Mechanism
    胡杨液泡膜H~+-ATPase的纯化及其耐盐性机理研究
    Studies on the Growth Characteristics and Salt-tolerance Mechanism of Upland Cotton under Salinity Stress
    盐胁迫下棉花生长发育特性与耐盐机理研究
    Study of Salt Tolerance Mechanism of Puccinellia Tenuiflora Using Suppression Subtractive Hybridzation and cDNA Microarray
    抑制性消减杂交和cDNA微阵列技术研究星星草耐盐机理
    So, the salt resistance capacity and salt tolerance mechanisms of main popular varieties in westward northeast, the breeding of new salt-tolerance strains by means of chemical treatments of EMS and genetic transformation technology have been studied in detai 1 in this thesis.
    为此,本研究对东北西部主要杨树品种的抗盐能力及耐盐机理进行了系统地研究,并利用化学诱变及基因遗传转化技术对耐盐新品种的培育进行了探讨和研究,揭示了杨树的耐盐机理,并进一步获得了耐盐变异体和耐盐转基因植株。
    The research on the Na+/H+ antiporter gene from Zostera marina L. can help to find the structural and functional difference of the different plant Na+/H+ antiporter gene and help to mastering the salt-tolerance mechanisms of the Na+/H+ antiporter gene.
    研究大叶藻中Na~+/H~+逆向转运蛋白基因对于了解不同植物Na~+/H~+逆向转运蛋白基因在结构与功能上的差异,以及进一步深入了解该类基因的耐盐作用机理具有重要意义。
    So gene silence study of SOS1 in Thellungiellahalophila is important for reveal the base of salt tolerance mechanism of halophyte.
    因此在盐芥中沉默SOS1基因进行研究,对揭示盐生植物耐盐性的基础具有重要意义。
 

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