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pod borer相关的网络例句

查询词典 pod borer

与 pod borer 相关的网络例句 [注:此内容来源于网络,仅供参考]

The results showed that five bands including POD-1, POD-2, POD-3, POD-4 and POD-5 were detected in the gel of POD as well as EST-1, EST-2, EST-3, EST4 and EST-5 for EST. POD-3 and POD-4 were common in all the tissues, but most intensive in F. tartaricum. POD-2 was only discovered in the leaves of F. cymosum and caudex of F. cymosum 1. Although there was some difference between the location, POD-2 appeared in the caudexes of three buckwheat and root of F. tartaricum. POD-5 was detected in all leaves and caudx of F.

结果显示,POD和EST都检测到5条谱带,包括POD-1,POD-2,POD-3,POD-4及POD-5,其中POD-3及POD-4在所有组织中都存在,但在苦荞麦1号中的带最强;POD-1只在金荞麦叶片及金荞麦1号茎中出现;POD-2在茎组织及苦荞麦1号根中存在,但在金荞麦及苦荞麦中的位置不同;POD-5存在于叶片及苦荞麦1号茎中,在苦荞麦的带较强。

The results showed that POD activity increased at first and then decreased in the skin and flesh of root. The peak occurred at 40 d and 60 d in the skin and flesh, respectively. POD activity in the skin was higher than that in the flesh at 30 d and then contrary results were observed. The higher POD activity was, the more POD isoenzyme was. The pattern of POD isoenzymes was different between skin and flesh at different vegetative growth stages. POD isoenzymes in the skin were composed of five monomers and four dimers while five dimers or two monomers, two dimers and one tetramer in the flesh. POD isoenzymes in the root were mainly acidic. POD localized mainly in the cell walls of periderm, cambium, xylem ray, xylem vessels and primary xylem.

结果显示,心里美萝卜营养生长期肉质根的皮和肉中POD活性均先升高后降低,分别在播种后第40 d和60 d出现峰值,30 d时皮中POD活性高于肉,之后则相反,酶活性最高时同工酶数目也最多,不同时期,皮和肉中同工酶种类不同;皮中POD同工酶由5个单体和4个二聚体组成,而肉中由5个二聚体或2个单体、2个二聚体和1个四聚体组成,均以酸性同工酶为主;组化定位显示POD主要分布在肉质根的周皮、形成层、木射线、木质部导管和肉的初生木质部等的细胞壁附近。

The reseach on activity changes of SOD, POD and CAT during the somatic embryogenesis of Y35 showed:(1) The activty of SOD was from 52.98 to 133.20 U·g-1·h-1, and remained a rising trend after early single embryo forming, this revealed that SOD might be positively correlated to the differentiation of embryogenic cell and the development of somatic embryo.(2) The activty of POD was from 0.05 to 0.50 U·mg-1·min-1, ascended firstly and desceded later, and was highest in embryogenic callus and lowest in late single embryo , this revealed that POD might be positively correlated to the division and differentiation of proembryo mass, while negatively correlated to the development of PEMⅢto late single embryo.(3) The activty of CAT was from 0.86 to 2.81 U·mg-1·min-1, showed an up-down-up trend, reaching to the highest peak at the time of early embryo formating and decreasing to the lowest at the time of early cotyledonary embryo formating, this revealed that CAT might be positively correlated to the development of early single embryo, while negatively correlated to the formation of middle single embryo and early cotyledonary embryo.The changes in activty of SOD, POD and CAT indicated these three antioxidant enzymes coregulated the differentiation and development of embryogenic cells during Larix somatic embryogenesis.4. Differentially expressed cDNA libraries of the stages of proembryo mass and somatic embryo maturation were successfully constructed by suppression subtractive hybridization.

对Y35体细胞胚胎发生过程中抗氧化酶活性变化的研究显示:(1)SOD活性在52.98~133.20 U·g-1·h-1之间,并在早期单胚形成后一直保持上升的趋势,表明其与胚性细胞的分化及体细胞胚的发育均具呈正相关;(2)POD活性在0.05~0.50 U·mg-1·min-1之间,呈现出先下降后升高的趋势,在胚性愈伤组织中最高,而在后期单胚形成时降至最低,表明其与原胚团的分裂和分化呈正相关,但与PEMⅢ向后期单胚的发育呈负相关;(3)CAT活性在0.86~2.81 U·mg-1·min-1之间,表现出升-降-升的变化趋势,在早期单胚形成时升至最高,在早期子叶胚形成时降至最低,表明其与早期单胚的发育呈正相关,而与中期单胚和早期子叶胚的发育呈负相关。

The above facts indicated that silicon accumulation in the rice leaf sheath inside, the leaf surface and the sclerenchymatous cell, played the physical barrier role, delayed the hypha of sheath blight expansion.5、Analysing the physiological and biochemical mechanism of the resistance to rice sheath blight improved by silicon application in several respects.(1) After being inoculated with R.solani, O2 and POD activities disordered, CAT activities obviously declined. O2 producingvelocity in 91SP\'s leaves and leaf sheaths of Si+ rice plants were lower than those of Siriceplants, MDA content in leaves and leaf sheaths of Si+ rice plants were lower thanthose of Si- rice plants significantly in three days after inoculating, SOD、POD、CATactivities in leaf sheaths of Si+ rice plants were higher than those of Si- rice plantssignificantly in one day after inoculating, SOD、POD、CAT activities in leaves ofSi-treatment were higher than those of Si- rice plants significantly in three days afterinoculating. O2 producing velocity and MDA content in Lemont\'s leaves and leafsheaths of Si+ rice plants were lower than those of Si- rice plants significantly afterinoculating, and SOD、POD、CAT activities of Si+ rice plants were higher than those ofSi- rice plants significantly.

说明硅在水稻叶鞘内侧、叶表和厚壁细胞积累,起到了物理屏障的作用,延缓了纹枯病菌的扩展。5、阐明了施硅增强水稻抗纹枯病的生理生化机制(1)接种纹枯病菌后,两个水稻品种91SP和Lemont的叶鞘和叶片超氧阴离子自由基O2性紊乱,CAT活性明显下降;抗病品种91SP叶鞘和叶片施硅处理的O2产生速率小于缺硅处理,叶鞘和叶片MDA含量在接种第3 d后显著低于缺硅处理,叶鞘SOD、POD、CAT活性在接种1 d后一直显著高于缺硅处理,叶片SOD、POD、CAT活性在接种3 d后显著高于缺硅处理;感病品种Lemont叶鞘和叶片施硅处理的O2产生速率、MDA含量始终显著小于缺硅处理,SOD、POD、CAT活性始终显著大于缺硅处理。

In our country the corn borer is comprised of the Asian corn borer and the Europe corn borer.

玉米螟在我国主要有欧洲玉米螟和亚洲玉米螟,其中亚洲玉米螟在我国是优势种,发生严重,在我国各地均有分布。

The results showed that the POD activity was higher in the sporophyll than that in the stems and leaves in which the POD activities were weak from bottom to top in native plant. For the Japanese plant, the POD activities of the stems and leaves were the same in all positions. However, the activity was slightly higher in mid-portion of a leaf than that in stems. The high enzyme activities were observed in mid-bottom stems in the half-bred plant, and the activity was higher in bottom leaf than that in mid-top leaf.

结果表明:3个裙带菜群体的POD同工酶其孢子叶活力都相对强于其它部位;日本裙带菜茎和叶的各部位POD酶活力相同,但叶中部的酶活力稍强于茎;自育裙带菜茎底部和茎中部的POD酶活力较强些,而叶底部的酶活力较叶中部和顶部的强;本地裙带菜的茎和叶由底部到顶部POD酶活力逐渐变弱。

Graceful course observes Paasche carefully, discovered the secret that octopus cultivates eventually, original, the overgrow on its branch fructification pod, the fructification that a few belts prick is in fructification pod; Its branch is extremely rich also stretch, have very powerful pulling force; When run animal touchs branch, branch can be played come over to be twined closely go up in animal body, meanwhile, mature fructification pod is met above dissilient, if shell fragment is same,those fruit in fact that bring thorn are met deeply the skin of penetrate into animal; The animal struggles to be pestered more closely the more, because of,have a few animals this get killed, that only small boar is an unfortunate victim.

帕斯曼经过仔细观察,终于发现了章鱼树的秘密,原来,它的树枝上长满了果实荚,果实荚里都是一些带刺的果实;它的枝条也极富弹性,具有很强的张力;当有奔跑的动物触动枝条时,枝条就会弹过来紧紧缠绕在动物身上,与此同时,上面成熟的果实荚就会爆裂,那些带刺的果实则会如弹片一样深深地刺入动物的皮肤;动物越是挣扎就被缠得越紧,有一些动物因此丧命,那只小野猪就是一个不幸的牺牲者。

The cowpea number per pod, weight per pod, length per pod, number of inflorescence; and the height of main stem, number of branches and node of main stem at seedling-pulling at each single plant were investigated for the yield-calculating, and meanwhile, the analysis of relevant factor and path analysis of the component of yield/plant was conducted.

方法]定株调查每株美国无架豇豆的豆英数、英重、英长、花序数,拉秧时测定主茎高、分枝数及主茎节数,并计算单株产量,进行单株产量构成因素的相关分析和通径分析。

In the latter generations of rice suspension cell, the activity of extracellular POD and the cell suspensibility curve raises at first and then declines. The activities of extracellular POD induced by exogenous H_2O_2, CaCl_2 and VK3 are different and the same concentration of VK3, CaCl_2, H_2O_2 can all inhibit extracellular POD activities, especially to the callus tissue subculturing for six times.

外源H_2O_2,CaCl_2与VK3诱导悬浮细胞所产生的胞外POD活性并不相同,相同浓度的VK3、CaCl_2和H_2O_2都抑制胞外POD活性,对继代六次的愈伤组织的悬浮细胞胞外POD活性影响最大,H_2O_2对POD的抑制作用更为强烈。H_2O_2随浓度和处理时间的增加,使胞外POD的活性减弱;处理6h、12h,胞外POD活性随着VK3和CaCl_2浓度的增加而增强,但处理48h胞外POD活性随浓度的增加而减弱。

Nigrum and S. melongena seedlings presented a different rule. The leaf SOD activities of S. nigrum increased under low Cd (≤50 μM) and then decreased, POD and CAT increased continuously. However, SOD activities of S. melongena gradually decreased, POD activities increased and the CAT presented the rule of drop-rise-drop. SOD, POD, and CAT in the leaves of S. nigrum plaved an important role against Cd stress.

龙葵叶片SOD活性随镉胁迫程度的增加先增高后降低,POD和CAT活性基本上表现为逐渐上升趋势,而茄子叶片中SOD活性逐渐下降,POD逐渐上升,CAT呈先降后升又降的变化规律,龙葵体内的3种抗氧化酶对镉胁迫起到较强的抗氧化保护作用。

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