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tomato相关的网络例句

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与 tomato 相关的网络例句 [注:此内容来源于网络,仅供参考]

The author is in inadvertently Baidu discovered tomato garden is right on the vocabulary entry of garden of 100 divisions tomato the illuminate of him meaning and concept: If use 4 words to describe tomato, very simple, that is consistent.

笔者无意中在百度百科番茄花园的词条上发现了番茄花园对自己含义与理念的阐释:如果用四个字来形容番茄,很简单,那就是表里如一。

The method is simple, has safe operation, creates an approach utilizing a plant gene to safely select the marker gene for the tomato genetic transformation, can replace the disadvantages caused by the widely used heterogenous genes such as antibiotic genes, weedicide resistant genes, xyl A, pmi, GUS and so on, taken as marker genes, obtains a transgenic tomato with food safety, biological safety and ecological safety, relieves the public from anxiety of marker gene safety, and inevitably facilitates the commercialized application of the transgenic tomato.

该方法简单,操作安全,开创了利用植物基因作为番茄转化安全筛选标记基因的途径,能够代替目前广泛使用的抗生素基因、抗除草剂基因以及xylA、pmi、GUS等异源基因作为标记基因存在的弊端,获得具有食品安全性、生物安全性和生态安全性的转基因番茄,解除公众对标记基因安全性的顾虑,必将促进转基因番茄的商业化应用。

In the greenhouse, tomato seedling was treated with 100 times, 200times and 300times of juice of clover and leek and wood vinegar, and with three different way of treatment: spraying the leaf, sprinkling the root and sprinkling the root combination of spraying the leaf. Then the disease index of tomato early blight was investigated, and the controlling effects was calculated .At the same time, the quantities of microbes around the tomato root were counted.

在温室中用苜蓿汁、韭菜汁和木醋液三种不同物质以100倍、200倍和300倍按叶面处理+灌根处理、单纯灌根处理和单纯叶面处理三种方式处理番茄苗,测定番茄土壤根际微生物数量并调查番茄早疫病的病情指数和防治效果。

Therefore the nonrandom distribution of 3′ end sequences of effectual primers in tomato RAPD reflected the sequence-specific structure may occur in tomato genome at flank of polymorphic regions. It is probably an attribute of tomato genomic sequence and is common in Lycopersicon.

RAPD引物3′端序列的非随机分布,反映了番茄基因组内的多态性区段侧翼具有序列的特异性,这种特异性结构应是番茄基因组序列的一种属性,这种属性为番茄属基因组所共有。

Tomato (Lycopersicon esculentum Mill.) is one of the most important vegetables in protected culture, researchs on tomato grafting techniques, identification and the plants response to disease and pest attack have been carried out, but few reports on physiological and biochemical mechanisms of grafted tomato in salt stress have been published.

番茄是设施栽培的主要蔬菜之一,近年来关于番茄嫁接技术、嫁接效果鉴定以及抗病性方面进行了一些研究,在嫁接番茄耐盐性有关的生理生化机制研究方面,国内外尚鲜有报道。

After having established genetic transformation system with tomato cotyledons as explant and determined the transformable of preculture time,incubation time and co-culture time,we set up the system of high frequency transformation of tomato cotyledons.Then hBMP-3m gene was transferred into tomato via Agrobacterium-mQdiated transformation,and the resistant plants to Hyg were obtained.

建立了以番茄子叶为外植体的遗传转化体系,确定了预培养时间、浸菌时间及共培养时间等转化条件,建立了番茄高频转化系统,然后通过农杆菌介导法将hBMP-3m基因导入番茄,并且获得了Hyg抗性植株。

With the established protocol, we were able to show that silencing COI1, an essential key player in the jasmonic acid signaling pathway, led to increase of R. solanacearum proliferation in stembases and mid-stems of 'Hawaii 7996', a tomato cultivar with durable resistance to BW. Our study provides the first demonstration for a positive role of the JA signaling pathway in tomato resistance to BW, and notably, is inconsistent with the reports in Arabidopsis. The involvement and possible interplays of other known defense signaling pathways in the tomato BW-defense network to R. solanacearum are discussed.

利用本文建立之静默系统进行茉莉酸防御讯息传递途径关键基因COI1之静默,结果发现青枯病菌在番茄抗病品种'Hawaii 7996'茎基部及中段内的菌量显著增加,显示茉莉酸防御讯息传递途径在番茄对青枯病的防御机制中扮演正面角色,此发现与阿拉伯芥对青枯病的防御机制研究所知的相反;文中并讨论其他防御讯息传递途径可能如何共同参与番茄青枯病防御网络。

That the tomato translates seedling machine is that the tomato gains key organization in mechanizing,the tomato translates seedling machine the chassis design is entire machinery go-list.

番茄翻秧机是番茄收获机械化中的关键机构,番茄翻秧机机架的设计是整个机械的关键部件。

Results No effect of tomato juice on the growth of human normal cells and tumor cells when the proportion of tomato juice in cell culture fluid under 15%; cell growth was inhabited when the proportion of tomato juice in cell culture fluid was up to or higher than 20%.

结果 当番茄汁体积在培养液中所占比例低于15%时,对正常细胞和肿瘤细胞的增殖没有任何影响;当番茄汁在培养液中所占比例达到或超过20%时,此时的培养液不是细胞生长的最适条件,表现为细胞生长抑制。

Rresults from those studies can be summariazed as follow:(1) A preliminary study no correlationship between the UV-VIS reflection spectrum of tomato fruit surface and the lycopene amount of tomato fruit was undertaken. Based on observation from this study, a damage-free and in-situ detection technique of lycopene amount from tomato was developed with UV-VIS reflection spectroscopy;(2) The geometrical isomers of lycopene were separated successfully on C30-HPLC-PDA-ELSD. The absorption coefficients of Z-isomers were consequently dedermined. The geometrical isomer composition of lycopene could therefore be assessed. Those efforts formed a solid base to identify the natural product from synthetic compound of lycopene;(3) Lycopene resource from the fruit of Autumn oliver was proved to be available for industrial application. An extraction methos of lycopene from the fruit of Autumn oliver by supercritical carbon dioxide was developed at laboratory scale;(4) A method to extract lycopene by supercritical liquid with improved efficiency was developed; Data from this investigation suggested that a proper raw material pre-extraction process was important for a better extraction efficiency;(5) Variation in the geometrical isomer composition of lycopene during its metabolish in rat was assessed. A large amount of Z-isomers were observed. This variation took place in serum;(6) The absorption rate and accumulation in serum of natural lycopene in rat were assessed;(7) Ability to quench singlet oxygen by different geometrical isomers of lycopene was compared;(8) It was detected that whether natural lycopene had functions to regule blood-lipids and LDL antioxidation;(9) A C31 degradation piece of lycopene was found in the prostate gland of rat.

研究结果包括:[1]应用UV-VIS反射光谱法建立了番茄果实中番茄红素含量的无损伤、现场检测技术;[2]应用C30-HPLC-PDA-ELSD技术实现了对番茄红素几何异构体的分离,测定了不同顺式异构体的吸光系数,建立了天然番茄红素几何异构体组成的检测方法,为区分和鉴定人工合成品和天然产物奠定了基础;[3]证实了秋橄榄果实中的番茄红素资源具有工业开发价值,并建立了超临界CO_2萃取的实验室方法;[4]探索了提高番茄红素超临界流体萃取效率的方法,证明了物料前处理对提高萃取效率起了极其重要的作用;[5]观察了番茄红素在大鼠体内几何异构体组成的变化情况,发现了大量顺式异构体的存在,并证实了几何异构体组成在血清中发生了显著变化;[6]测定了天然番茄红素在大鼠体内的吸收率和在大鼠血清中的动态积累规律;[7]比较了不同番茄红素几何异构体淬灭单线态氧的能力;[8]检测了天然番茄红素是否具有调节血脂作用和抗低密度脂蛋白氧化的功能;[9]首次发现大鼠前列腺内存在番茄红素C31降解片段,并证实其仍具有淬灭单线态氧的能力。

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