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国家自然科学基金(30871695)

作品数:3 被引量:4H指数:2
相关作者:王世平王磊王官富李节法王博更多>>
相关机构:上海交通大学广西大学鸟取大学更多>>
发文基金:国家自然科学基金国家现代农业产业技术体系建设项目公益性行业(农业)科研专项更多>>
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Effects of root restriction on nitrogen and gene expression levels in nitrogen metabolism in Jumeigui grapevines(Vitis vinifera L.×Vitis labrusca L.)
2015年
To decipher the relationship between the inhibited shoot growth and expression pattern of key enzymes in nitrogen metabolism under root restriction, the effects of root restriction on diurnal variation of expression of nitrate reductase(NR), nitrite reductase(Ni R), glutamine synthetase(GS1-1, GS1-2, GS2) and glutamate synthase(Fd-GOGAT, NADH-GOGAT) genes and nitrogen levels were evaluated in two-year-old Jumeigui grapevines(Vitis vinifera L.×Vitis labrusca L.) when significant differences in shoot growth were observed between treatments at expansion stage(22 days after anthesis). Grapevines were planted in root-restricting pits as root restriction and in an unrestricted field as the control. Results showed that root restriction significantly reduced shoot growth, but promoted the growth of white roots and fibrous brown roots and improved the fruit quality.(NO3–+NO2–)-N concentration in all plant parts, NH4+-N concentration in white roots and total N concentration in leaves and brown roots were significantly reduced under root restriction. Gene expression analysis revealed that m RNA levels of genes related to the GS1/NADH-GOGAT pathway were lower in root-restricted than in control petioles, whereas genes involved in the GS2/Fd-GOGAT pathway were up-regulated under root restriction. Root restriction also resulted in downregulation of genes involved in nitrogen metabolism in leaves, especially at 10:00, while transcript levels of all these genes were enhanced in root-restricted white and brown roots at most time points. This organ-dependent response contributed to the alteration in NO3– reduction and NH4+ assimilation under root restriction, leading to less NO3– transported from roots and then assimilated in root-restricted leaves. Therefore, this study implied that shoot growth inhibition in grapevines under root restriction is closely associated with down-regulation of gene expression in nitrogen metabolism in leaves.
YU Xiu-mingLI Jie-faZHU Li-naWANG BoWANG LeiBAI YangZHANG Cai-xiXU Wen-pingWANG Shi-ping
关键词:根域限制谷氨酰胺合成酶新梢生长硝酸盐还原酶基因表达分析
部分根域限制和微喷灌对干旱地区成龄葡萄生长发育的影响被引量:2
2010年
为探寻适宜于吐鲁番极端干旱气候条件下成龄葡萄的节水栽培模式,以18年生无核白(V.Vinifera×V.Labrasca‘Thompson Seedless’)葡萄为材料,设置了部分根域限制结合微喷灌处理,调查了成龄葡萄的新梢生长、果实发育和产量等的变化。结果表明,部分根域限制与微喷灌结合的处理对葡萄植株叶面积生长、叶片光合速率、坐果率和果实可溶性固形物含量影响不大,但果粒重和产量增加,且单位面积耗水量约为常规沟灌的50%,节水效果显著。
许文平王官富李亚利伍国红孙峰骆强伟王世平
关键词:成龄葡萄生长发育耗水量
根域限制对转色期‘巨玫瑰’葡萄氮水平和氮代谢关键酶基因表达的影响被引量:2
2015年
为探讨根域限制影响葡萄树氮代谢的分子机制,以二年生‘巨玫瑰‘葡萄为试材,研究根域限制对其转色期不同组织器官中氮水平和氮代谢关键酶基因(NR、Ni R、GS1-1、GS1-2、GS2、Fd-GOGAT和NADH-GOGAT)转录水平的影响。结果表明,根域限制导致转色期葡萄的新梢生长显著受到抑制,但显著促进果实生长和果实品质的提高。根域限制导致(NO2-+NO3-)-N、NH4+-N和全氮含量在转色期叶片、叶柄和褐根中显著下降,而在白根中却显著提高。根域限制栽培条件下叶柄、白根和褐根中的可溶性蛋白含量极显著高于对照。根域限制栽培条件下叶片和叶柄中的谷氨酰胺合成酶(GS)活性均显著低于对照,白根和褐根中的GS活性却高于对照。根域限制下转色期叶片和叶柄(光合组织)中氮代谢关键酶基因的表达水平低于对照,而根域限制却导致这些基因在白根中表达均上调,尤其是白根和褐根中的GS基因。根域限制栽培条件下转色期NO3-还原和NH4+同化过程发生在葡萄地下部分(白根)内比例上升,而在地上部分(叶片和叶柄)内进行的比例显著下降。根域限制导致葡萄叶片和叶柄中氮代谢关键酶基因表达显著下调是根域限制对新梢营养生长产生抑制效应的重要因素。
虞秀明李节法王博王磊王世平
关键词:根域限制葡萄氮代谢氮素水平基因表达
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