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根的生长

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Methods Cementum chips were obtained from diseased roots exposed to periodontal pocket.

扫描电镜下观察PDLC在根面上的生长状况,用噻唑蓝比色法分析细胞在根片上的附着和增殖。

With the increase of lead concentration, the inhibition index of the radical growth increased remarkably, the radical became podgy, deformed, even browning and necrotic.

进一步的光学显微镜分析结果表明,根尖生长锥随着铅胁迫浓度的增加而变短、变粗、畸形,根尖细胞变短、变小。

But Armillaria has the unique ability to extend rhizomorphs, flat shoestringlike structures, that bridge gaps between food sources and expand the fungus's sweeping perimeter ever more.

但奥氏蜜环菌有独特的生长方式:延伸菌根,连接食物源与菌体,然后迅速向外生长。

In the process of root cutting, the root accumulated a lot of soluble sugar and soluble protein, which provided material and energy for the cell differentiation. As root differentiating, soluable protein was continuously used up. During 10 to 20 days, the content of soluble sugar and soluble protein in the basipetal top and end of rootkept comparatively stable, then declined as adventitious buds and roots growing. 40 days later, they kept invariable, because the newly formed bud can photosynthesize and the newly formed root can absorb nutrient from outside. The dynamic balances of endogenous hormone regulate adventitious buds and roots of the root. During callus growing and adventitious bud differentiating.

上部根段在细胞分化前期积累了大量的可溶性糖,为后期的分化提供能源物质,同时积累了大量的可溶性蛋白质,为愈伤组织的产生提供能源,而后随着分化,可溶性蛋白质不断被消耗。10~20d根段上部及下部的可溶性糖、可溶性蛋白质含量保持在相对稳定的水平变化不大,后期随着不定芽及不定根的生长下降较快。40d后,新形成的芽已经能够进行光合作用,新形成的根也可从外界吸收营养物质,可溶性糖、可溶性蛋白质含量基本保持不变。

Promotes the weak tree's growth to have to hold raises root this key, because only then the root is deep can the leaf cyclopentadiene.

促进弱树的生长必须抓住养根这个关键,因为只有根深才能叶茂。

The bored hole conduced the new root bourgeoning and vegetating. The color of the leaves were deepen, the water content of the leaves was relatively high, and the disease spots resumed soon after boring the soil where the plant living.

地上部分测量的新梢、叶片厚度获得较大增长;钻孔孔隙有助于萌发新根,促进根尖生长;树叶片颜色加深,叶片肥硕,枝叶繁茂,病斑恢复更快。

Result The results showed that tissue culture seedlings cultured with disinfection seeds and fresh fruit seeds had higher survival rates, which could reached above 75.0%. Taken Pingguoli and Xiangshuili for cions, Shanli without root for rootstock, the survival rate of graft seedlings had obvious difference. And Xiangshuili for cions had higher survival rates. Taken Xiangshuili for cions, Shanli and Xiangshuili for rootstock, the survival rate of graft seedlings with root had higher survival rates than that without root. Added hormone to the media could improve the survival rate of micro-grafting plants, in the medium of MS+BA 1.0 mg/L+IBA 0.3 mg/L, the survival rate reached 86.7%.

结果]种子消毒处理及鲜果取种组培苗的成活率均较高,达75.0%以上;以香水梨和苹果梨为接穗,无根山梨为砧木时的嫁接苗成活率有显著差异,其中以香水梨为接穗的成活率较高;以香水梨为接穗,山梨和香水梨为砧木时,带根的材料嫁接时的成活率都显著高于无根嫁接苗的成活率;此外,添加植物生长调节物质可以有效提高嫁接成活率,在培养基MS+BA 1.0 mg/L+IBA 0.3 mg/L中嫁接苗的成活率最高,达86.7%。

The percentage of total biomass allocated to roots was positively correlated with WUE for the seven investigated species (r=0.93, p.01). Results indicate that the species investigated are typical C3 plants. These spring ephemerals are characterized by higher P T and lower WUE in comparison with other desert species. The unique biomass allocation of low root/aboveground biomass ratio, higher leaf area ratio, higher leaf mass per unit leaf area, and photosynthetic traits are involved in the physiological mechanisms that contributed to the rapid growth of desert spring ephemerals.

这些结果表明,所观测的早春短命植物具有典型的C3植物特征,相比其它类型的荒漠植物具有较高的单位叶面积P高T及低WUE,并且在生长发育过程中表现出很低的根/地上生物量比、较高的叶面积比和单位叶面积干重,说明它们具有相对高的生长速率,这与其生长发育节律相一致,反映了它们与准噶尔荒漠环境相适应的特点。

The percentage of total biomass allocated to roots was positively correlated with WUE for the seven investigated species ( r = 0.93, p 〈 0.01). Results indicate that the species investigated are typical C3 plants. These spring ephemerals are characterized by higher Pn, Tr and lower WUE in comparison with other desert species. The unique biomass allocation of low root/aboveground biomass ratio, higher leaf area ratio, higher leaf mass per unit leaf area, and photosynthetic traits are involved in the physiological mechanisms that contributed to the rapid growth of desert spring ephemerals.

这些结果表明,所观测的早春短命植物具有典型的G植物特征,相比其它类型的荒漠植物具有较高的单位叶面积Pn、高Tr及低WUE,并且在生长发育过程中表现出很低的根/地上生物量比、较高的叶面积比和单位叶面积干重,说明它们具有相对高的生长速率,这与其生长发育节律相一致,反映了它们与准噶尔荒漠环境相适应的特点。

Keeping this in mind, a study was undertaken to determine the effect of CA on early growth of mung bean (Phaseolus aureus=Vigna radiata), morphogenetic response in hypocotyl cuttings of mung bean, and changes in the activities of some associated enzymes – proteases, polyphenol oxidases, and peroxidases – and endogenous total phenolics at root initiation (third day; 48 h; appearance of root primordia; RI), root expression (fifth day; 120 h; appearance of roots; RE), and post-expression (seventh day; 168 h; PE) stages of rhizogenesis.

保持这一点,一项研究,以确定影响钙对早期生长绿豆( phaseolus金黄色葡萄球菌=豇豆拉迪雅塔),形态发生反应,下胚轴插条绿豆,和变化,在活动的一些相关的酶-蛋白酶,多酚氧化酶,过氧化物酶-和内源性总酚的从根本上启动(第三天; 4 8小时;外观根原基;里),根的表达(第五天; 1 20改为H级;外观根;转口),和后表达(第七天; 168改为H级; PE )的阶段rhizogenesis 。

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Fancy gold-plated dangling earrings with facetted White Opal crystals.

花式镀金悬垂耳环与facetted白欧泊水晶。

This essay chooses the study aim from biology teachers in middle school in Shi Jiazhuang which tells us that most of the middle school biology teachers in Shi Jiazhuang have the"burnout", lower successfulness, individualize.

本文选取石家庄市初中生物教师作为研究对象,运用问卷调查的方法对石家庄市初中生物教师职业倦怠的现状进行调查,调查结果发现,石家庄市初中生物教师这一群体普遍存在职业倦怠,情感枯竭程度偏高,成就感偏低,去个性化程度最为严重。

In measurements of a day,generallyspeaking,the photosynthesis of birch in mesophytic habitat is better than that in xerophytichabitat(peak values are 12.8,10.33μmolCO2m-2s-1 respectively);that of sexual birch inmesophytic habitat is better than that of clone birch(peak values are 9.87,6.71μmolCO2m-2s-1respectively);that of young tree is better than that of seedling(peak values are12.37,10.05μmolCO2m-2s-1 respectively).

在一天中的各个时刻,总体说来,中生生境生长的白桦光合作用超过旱生生境生长的白桦光合作用(净光合速率峰值分别为12.8、10.33μmolCO2m-2s-1);白桦幼树的光合作用超过白桦幼苗(净光合速率峰值分别为12.37、10.05μmolCO2m-2s-1);中生生境有性白桦的光合作用超过无性白桦的光合作用(净光合速率峰值分别为9.87μmolCO2m-2s-1、6.71μmolCO2m-2s-1)。