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fodder beet相关的网络例句

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与 fodder beet 相关的网络例句 [注:此内容来源于网络,仅供参考]

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真空冻干产品:小虾、白金虾、南极虾、海虾仁、金钩虾、丰年虾、珍珠虾、小鱼、红赤虫、丰年虫、珍珠虫、轮虫、线虫、豆虫、虫卵、面包虫、棉花虫、水蚤、水苍蝇、蟋蟀、蚕蛹、蚱猛等;颗粒产品:精致脱壳卵、精致龟饲料、小型鱼粮、锦鲤金鱼专用鱼粮、血鹦鹉专用鱼粮、龙鱼专用饲料、七彩专用饲料、高级观赏鱼饲料、增艳高级观赏鱼饲料、海水观赏鱼饲料等;其它产品:鱼药等。

Compared diploid fodder beet with tetraploid fodder beet, tetraploid plants put up characteristics of bigger and thicker dark green leaf, more folds on leaf, stronger footstalk and so on .we can take those characters as the advancing index in testing tetraploid fodder beet.

饲用甜菜四倍体植株与二倍体植株相比,表现出叶片增大变厚,叶色浓绿,叶面多皱褶,叶柄粗壮等特点,可以将这些特点作为饲用甜菜四倍体田间初步筛选的指标。

The first part discusses about the effects of the five factors:temperature,relative air moisture,rate of frass sifting,density of larvae,fodder water percentage to growth speed and survival rate of older mealworm (Tenebrio molitor L.) larvae through rotational composite design of quadratic regression. Two models were established to describe the effects of the five factors. The models showed that percentage of fodder water is the major factor that has effect on the growing speed of T. molitor larvae,and fodder water is the major factor on death rate. The models also show that temperature on growth speed,temperature and fodder have important effects on death rate,and the significant test showed they have significant difference on 1% or 5% level. From the two models,by frequency analysis,we can get the optimizing rearing condition,in which the mealworm larvae overweight 10% per day,temperature is 25-26 ,frass sifting rate is once 2-4 days,density of larvae is 0.61-0.79 g/cm2,fodder water is 33.27%-39.71%. And the rearing condition,in which total death rate of T.

第一部分:采用五因素二次正交旋转组合设计,以黄粉虫幼虫饲养过程中饲养温度(X_1)相对湿度(X_2)、虫粪筛除频率(X_3)、饲养密度(X_4)以及饲料含水量(X_5)五因素为参试因素,考查它们对黄粉虫高龄幼虫的生长及存活的影响,建立了以黄粉虫幼虫增重率及死亡率为目标函数的回归模型,并进行了简化: Y_增=127.5079+18.6559x_5+2.7894x_3x_4-2.3854x_3x_5-3.0594x_1~2+1.8241x_3~2-3.8559x_5~2 Y_死=1.7459+0.4108x_1+0.0975x_2+0.9025x_4+0.3442x_5+0.0834x_1~2+0.3060x_4~2-0.2623x_5~2 分析结果表明:影响黄粉虫幼虫生长后期增重及死亡的主要因素分别为饲料含水量和饲养密度;饲料含水量和温度对黄粉虫增重有着重要的影响,饲养密度、温度、饲料含水量对黄粉虫的死亡有着重要的影响,其影响均达1%或5%显著水平;黄粉虫幼虫后期日增重率大于10%的饲养条件为:温度26~27℃、筛粪频率2~4天/次、饲养密度0.61~0.79g/cm~2、饲料含水量33.27~39.71%。

Through two steps, advancing cultivation and inducing differentiation, principium founded tissue culture system of fodder beet with explant from footstalk, so established foundation for inducing polyploid fodder beet with tissue culture and enlarging reproduction.

通过预培养、诱导分化两步法,初步建立了以叶柄为外植体诱导不定芽再生的饲用甜菜组织培养体系,为进一步利用组织培养诱导饲用甜菜多倍体及多倍体扩繁奠定了基础。

Uses: A selective aphicide used in cereals, fruit, ornamentals, strawberries, potatoes, sugar beet, fodder beet, cotton, oilseed rape, tobacco, and glasshouse crops, effective against organophosphorus-resistant Myzus persicae . Phytotoxicity: Compatibility

抗蚜威对瓢虫、食蚜蝇、蚜茧蜂等蚜虫天敌没有不良影响,因保护了天敌,而可有效地延长对蚜虫的控制期,抗蚜威对蜜蜂安全,用于防治大白菜、萝卜等蔬菜制种田的蚜虫时,可提高蜜蜂授粉率,增加产量。

Of beetroot does NOT include fodder beet, sugar beet or mangelwurzels:.

注意,甜菜的定义不包括饲料甜菜,糖用甜菜和饲牛用甜菜。

Fodder beet is a mutation of beet planting specific(Beta vulgaris , Chenopodiaceae ),it has many characteristics such as weighty fleshy root、luxuriance phyllome、excellent quality of dainty and high biology production, so it is a high yield、all wool and a yard wide feed crop.

饲用甜菜是藜科甜菜属甜菜栽培种的一个变种,具有根体肥大,叶丛繁茂,适口性好,生物产量高等特点,是一种高产优质的饲料作物。

The trials were carried out in field experiment and artificial climate incubator. The sugar beet growth buds were treated at 1~3pairs of true leaves with gibberellin , autix , naphthaleneacetic acid and kinetin , and the plant growth regulating substances enhancing bolting of sugar beet in the first year and its doses were selected out. The sugar beet seedling induced by temperature and light were treated by abscisic acid , maleic hydrazide , uniconazole (S-3307) and paclobutrazol (PP333), and the plant growth regulating substances which make bolting reverse and their doses were screen out. The mechanisms of bolting and bolting reversing were discussed by examining the changes of endogenous hormones, activities of correlative enzyme to bolting, soluble protein, components of amino acid in the protein, components of fatty acid. The results were as follow

本研究通过田间试验和人工气候箱培养相结合的方法,在甜菜幼苗1~3对真叶时利用赤霉素、生长素、奈乙酸和激动素等生长调节物质处理茎生长点,筛选促进甜菜当年抽苔的植物生长物质及剂量;同时利用脱落酸、马来酰肼、烯效唑(S-3307)和多效唑(PP333)等处理经温光诱导当年抽苔的甜菜幼苗,筛选对当年抽苔逆转有效的种类和剂量,并通过测定内源激素含量、相关酶活性、可溶性蛋白质含量和氨基酸组分及脂肪酸含量及其组分的变化,探讨甜菜当年抽苔和抽苔逆转的机理,得到如下结论

In our study,two important lepidopteron pests,beet armyworm and cotton bollworm were surveyed for their endogenous piggyBac.As a result,endogenous piggyBac elements were found in these two insects,and one of the piggyBac elements isolated from the genome of cotton bollworm was intact and thought to be potentially active.1 Clonging and sequence analysis of piggyBac from beet armywormUsing PCR technique,with degenerate primers,a DNA fragment of piggyBac-like element was cloned from the genome of beet armyworm,spodoptera exigua hubner.The DNA fragment was 456bp in length,and the deduced amino acid sequence shares 50%- 78% similarity with other piggyBac elements from insects.But one stop code was found in this DNA fragment.

由于转座子很难用常规的RT-PCR和RACE技术进行克隆鉴定,故本研究在兼并引物PCR的基础上,利用inverse PCR和vectorret PCR技术,不仅调查了鳞翅目两种重要的农业害虫甜菜夜蛾和棉铃虫的內源piggyBac存在情况,同时克隆到了內源性的piggyBac转座子,并且从棉铃虫中获得了一个结构完整、具有潜在活性的piggyBac转座子HaPLE1.1甜菜夜蛾piggyBac转座子基因的克隆与序列分析采用PCR技术,利用兼并引物,从甜菜夜蛾基因组中克隆出一个內源性piggyBac类似因子的DNA片段,并命名为SePLE。

"Three distinct types are cultivated: the garden beet, as a garden vegetable; the sugar beet, a major source of sugar and commercially the most important type; the mangel-wurzel, a succulent feed for livestock; and the leaf beet"

所种植的有三种类型︰一、作蔬菜的菜园甜菜;二、制糖的糖用甜菜,是商业上最重要的类型;三、作为牲畜多汁饲料的饲料甜菜

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相关中文对照歌词
Fodder In Her Wings
Fodder On My Wings
Fiend
Nightmares
Day Will Come
Beet Drop
Spazzin'
My Remedy
Mars
Pastures Of Plenty
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