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Plant lactobacillus had the resistant to 10 of the 32 kinds antibacterial; and 4 strains sporangium bacilliform bacteria were sensitive to 32 kinds antibacterial except bacitracin.

在氨基酸微量元素螯合物基础上再添加黄霉素,具有更好的促生长效果和更高的饲料利用效率。

In order to raise the competitive capacity, it is necessary for enterprises to establish management information system of plant, so that whole plants system can be in a benignant cycle of sensitive information, scientific management and precise decision.

通过建立设备管理信息系统,使整个企业设备系统处于一个信息灵敏、管理科学、决策准确的良性循环中,提高设备综合管理水平,最终达到提高企业的市场竞争力。

When you plant your Calla Lily, it is important that the soil is free from salt since Calla Lilies are very sensitive to salt.

当你厂你马蹄莲百合、这是非常重要的,因为土壤免受马蹄莲百合盐盐很敏感。

Cutworm is am important tobacco pest in Hunan Province, its larvae of first generation injures tobacco plant in April and May, the egg and larvae of 1-3rd instar are sensitive to storm.

小地老虎眼Agrotisypsilon穴Rottemberg雪演是湖南的一种重要烟草害虫,其第1代幼虫于4、5月为害烟株,卵和1-3龄幼虫对大风雨敏感。

High protein feed can enhance airframe the absorption to zinc, keep in storage and feed of sex of metabolization; animal and the zincic absorptivity of inorganic, organic additive are taller, and the zincic absorptivity in plant sex feed is very low, zinc inside pig body excrete basically through bowel, along with eduction of fluid of pancreatic juice, bowel. 1.1 zinc inside pig body physiology function 1.1.1 raise collecting appetite zinc is element of the taste in saliva to make part, and the structural function with gustatory epithelial to oral cavity mucous membrane element and metabolization are influential action, affect the configuration of alveolus of the taste bud in glossal tit and function then, because this adds zinc,can enhance taste bud to taste sensitive.

高蛋白饲料能增强机体对锌的吸收、贮存和代谢;动物性饲料和无机、有机添加剂的锌吸收率较高,而植物性饲料中的锌吸收率则非常低,锌在猪体内的排泄主要通过肠道,随胰液、肠液排出。1.1锌在猪体内的的生理功能1.1.1提高采食量锌是唾液中味觉素的构成成分,而味觉素则对口腔黏膜上皮细胞的结构功能及代谢有影响功能,进而影响舌乳头中味蕾小孔的形态和功能,因此添加锌可增强味蕾对味觉的敏感。

The above three soybean varieties were treated with short-day of 12 h and long-day of 16 h in whole growth period, the different photoperiod treatments changed development process, podding-habits, plant morphogeny, and agronomical characters of different types of stem termination. And by this method photoperiod-sensitive and photoperiod-insensitive soybeans were divided, which is an important meaning at the production and popularization of soybean varieties.

对以上三个不同结荚习性品种进行两种较为极端的全生育期光照处理,短日照处理(12小时)和长日照处理(16小时)均可不同程度地影响不同茎顶类型品种的生育进程、结荚习性、株型和其他农艺性状,并且以此方法可区分出光敏感性相对较强和较弱的品种,对品种的生产和推广有一定的指导意义。

This method is simple, accurate and sensitive and reliable to determine oxadiazon residues in plant food.

该方法的建立具有操作简便、准确、灵敏度高的特点,适合于植物性食品中恶草酮残留量的测定。

The results showed that length from flag leaf pulvinus to spike base has the largest coefficient of variance of 42.1% and 37.2% in both DS and WW environments, respectively, while the spikelet per spike has the smallest CV of 6.4% and 5.7%. Under different water regimes, spike number per plant, effective spikelet per spike and peduncle length contribute a lot to the stable grain yield. Genetic diversity indices of DTI were from 1.95 to 2.07, with an average value of 2.02. Based on the DTI of agronomic traits, all accessions could be clustered into seven groups, the first and third groups are not sensitive to the water regimes, and the second group is more suitable for planting in dryland.

结果表明:在雨养和灌溉条件下,穗叶距的变异系数最高,分别为42.1%和37.2%,单穗总小穗数的变异系数最低,为6.4%和5.7%;不同水分条件下,植株稳产性主要受单株穗数、有效小穗数及穗下节长的影响;性状耐旱指数的多样性指数在1.95到2.07之间变化,平均值为2.02;根据性状耐旱指数将供试材料分为7个类群,其中第I、第III类群材料表现为对水分条件不敏感,而第II类群材料更适于在干旱条件下种植。

The result showed that mesophyllous cell in cotton was sensitive to plant diseases, insect pests and higher level dose. This result prove that in agricultural environment of south Xinjiang, agricultural chemicals would likely affect ultrastructure of plant,and then destroy natural ecological environment.

结果首次发现,棉株的叶肉细胞对病虫害危害和高浓度药剂处理的反应都很敏感,而低浓度药剂处理后的叶肉细胞趋于正常,表明了在本地区的农业环境条件下,农药可能会影响植物的超微结构并破坏其正常的生理代谢过程。

In order to disclose the adaptive strategies and capacity of Potaninia mongolica Maxim, acquired during its evolution history, the whole response system, which was composed of individual morphology plasticity response, organs anatomy structure response, physiological function response of anti-arid and anti-hotness, activities of protective enzymes response, endogenous hormone adjustment response, sexual reproduction strategies response of seeding, dispreading, sprouting and renewing, asexual reproduction strategies response of clonal growth patterns, clonal growth architectures, clonal growth architectures plasticity, heterogeneous resources utilization strategies, endogenous hormone distribution in clonal organs, foraging behavior, risk-spreading, and resource sharing, individual density allocation patterns response, niche differentiation response, species connection response, allelopathy response and biodiversity components response of the plant was profoundly explored in this paper.The studies come to at least four important results:(1) Taking the sensitive response and evading strategy to adapt to environment stress, Potaninia mongolica Maxim is a successful species has lived through the long-term evolution. Nevertheless, it is narrow climate and soil niche and characteristic of vegetation reproduction which has made the plant a rare and endangered species.

本论文通过对绵刺环境胁迫下个体形态可塑性响应、器官解剖结构响应、抗旱性和抗热性生理功能响应、保护酶系统激活响应、内源激素调控响应,有性繁殖对策中结实、扩散、萌发、更新等生活史过程响应,无性繁殖对策中克隆生长格局响应、克隆生长构型响应、克隆生长构型可塑性响应、克隆生长构型与资源异质性响应、内源激素调控克隆生长构型响应、克隆器官结构与功能响应、觅食行为响应、风险分摊响应、资源共享响应,种群中格局配置响应、生态位分异响应,群落中种间关联、异株克生响应、生物多样性组成响应等内容进行研究,揭示绵刺在进化过程中的适应对策和适应能力,为绵刺保护提供理论依据。

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