查询词典 flagleaf
- 与 flagleaf 相关的网络例句 [注:此内容来源于网络,仅供参考]
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So the variety of L21 andLainong9217 should be planted in dry land of high yield,and the variety ofLainong8834 and YD27 in dry land of middle yield,and gaining high yieldand high efficiency.2 The researches on the flag leaf and root system senescence after anthesisand yield were studied in dry land wheat of high yield,the activity of super-oxide dismatase and catalase、and the soluble protein content、Cytokinincontent in wheat flag leaf and root system after anthesisand Cytokinincontent in grain decreased slowly,and the content ofmalondiadehydeand the Abscisic Acidcontent in wheat flagleaf and root system and the Abscisic Acidcontent in grain increasedslowly,meanwhile keep higher root vigor and the root vigor decreased slow-ly,the result would be benefit to delay the senescence and gain high yield.3 The effects of soil thickness on the senescence of flag leaf and root sys-tem、nitrogen distribution and utilization and water consumption law andyield in dry land wheat had been studied in soil column and field.
通过大田条件下旱地高产小麦耗水规律及产量变化的研究表明,4个品种耗水量、产量、水分生产率、籽粒产量中来自花后光合器官输送的比例及综合效益评判结果均以鲁麦21和莱农9217为高,而莱农8834和烟D27则与此相反,因而在旱地高产麦田应以种植鲁麦21和莱农9217为主,中产麦田以莱农8834和烟D27为主,以获得高产高效。2在旱地高产大田对鲁麦21与烟D27两品种花后旗叶、根系衰老及产量变化进行了研究,认为花后旗叶与根系SOD、CAT活性、可溶性蛋白质含量、i-PAs含量及籽粒iPAs含量降低缓慢,MDA含量、ABA含量及籽粒ABA含量增加缓慢,同时保持较高的根系活力且下降缓慢,有利于延缓衰老,形成高产。3土层厚度对旱地小麦花后衰老、氮素分配利用及产量的影响进行了研究,随土层厚度加深,根系活力、根系与旗叶SOD、CAT活性及可溶性蛋白质含量增加,MDA含量减少,土层愈薄,其根系与旗叶衰老愈快。
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The results as followed:gaining high yield must keep higher flagleaf and canopyphotosynthetic rate after anthesis,highter flag leaf andcanopy photosyntheticrate would be benefit to keep grain filling rate andform high yield.
在旱地高产大田通过对L21与D27两品种旗叶与群体光合速率、籽粒灌浆速率及产量变化的研究,认为旱地小麦要获得高产必须保持花后高的旗叶与群体光合速率,以有利于籽粒灌浆速率维持,形成高产。
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By determination of CHL Contentand MDA content of the flag leaf show, tr4 per bunch have obvious downwardtrend, tr3 is the second and the tr2 is the minimum: MDA content of flagleaf shows, tr4>tr3>tr1>tr2.(2) Luliangyou 996 with super early rice in four different transplantingdensities construct four different population traits.
对4种不同栽插本数下稻株剑叶的叶绿体与丙二醛含量的测定表明,4种不同栽插本数剑叶叶绿素的含量,以4本栽插剑叶叶绿素含量的下降趋势最为明显,3本栽插其次,2本栽插最低;而剑叶丙二醛含量依次为,4本>3本>1本>2本。
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The results showed that diploid and tetraploid had higher root activity, flagleaf soluble protein content, SOD and CAT activity before anthesis. However, the rootactivity, flag leaf soluble protein content, SOD and CAT activity of diploid and tetraploiddeclined more quickly and became lower than those of hexaploid species from 15 days afteranthesis. While MDA content increased more quickly and became higher than those ofhexaploid species from 5 days after anthesis. Correlation analysis showed that delaying the flag leaf senescence can promoted transfer of nitrogen and dry matter, increasedaccumulation of nitrogen and dry matter after anthesis, enhanced grain and protein yield.
结果表明,与普通小麦和小黑麦相比,二倍体和四倍体材料开花以前具有比较高的根系活力、可溶性蛋白含量、SOD和CAT活性;开花以后,根系活力、旗叶可溶性蛋白含量、SOD和CAT活性快速下降,MDA含量快速上升,衰老加快;相关分析表明,延缓小麦旗叶衰老进程,可以促进花后氮素和干物质运转,增加花后氮素和干物质积累,提高籽粒产量和籽粒氮素积累量。
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3During 15 to 30 days after anthesis,the CHL content of the wheat flagleaf decrease promptly,and there are significant differences between CTW and WTW.Thedecreasing rates of the CHL of CTW are lower than that of WTW.Similar results are foundin the WSP content of flag leaf.The MDA content of the wheat flag leaf increase exponen-tially along with the DAA.
开花后15~30天,小麦旗叶叶绿素含量迅速下降,冷型小麦旗叶CHL分解缓慢、CHL稳定时间长;小麦开花后旗叶可溶性蛋白质含量迅速下降,不同温型小麦的下降速度有别,冷型小麦下降速度慢,结果导致从开花后15天开始,冷型小麦WSP含量高明显高于暖型小麦;小麦旗叶丙二醛含量在开花后随天数的增加而呈指数增长,在整个籽粒形成和灌浆期,冷型小麦MDA含量均低于暖型小麦,从花后12天开始,不同温型小麦之间MDA含量的差距越来越大。
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