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1.
长武塬区苹果园和农田相互转换的深层土壤水环境效应   总被引:1,自引:0,他引:1  
研究长武塬区苹果园和农田相互转换后0~1 000 cm土壤含水量特征,分析了苹果园土壤干燥化和苹果园转换为农田后土壤水分的恢复效应。结果表明:2、7、17、23、29 a苹果园200~1 000 cm的平均土壤含水量分别为22.8%、21.4%、16.8%、15.4%、14.9%。500~1 000 cm土层中,29 a苹果园平均土壤含水量(14.5%)高于23 a的果园(13.3%);17~29 a的苹果园均表现为轻度干燥化;基于苹果园和农田转换后土壤水分变化情况估算,苹果园最大种植年限为21 a。苹果园转换为农田1、5、10 a后,农田200~1 000 cm土层土壤含水量分别为:15.3%、15.7%和16.2%,恢复到土壤稳定湿度以上的土层厚度分别为140 cm(1 a)、220 cm(5 a)和400 cm(10 a)。  相似文献   
2.
笔者对苹果施用沼肥后的生物性状进行了长达4a的对比试验研究,采取对比设计法,在叶、枝、花、果等器官的相关指标取得了极为明显的效果,在果业生产上有极好的推广价值。  相似文献   
3.
苹果试管苗不定根起源及其发育状况的研究   总被引:4,自引:0,他引:4  
利用光学和扫描电子显微镜观察结果表明,经琼脂生根培养基诱导产生的长富—2苹果 (Malus pumila Mill.) 试管苗的不定根起源于维管形成层。这种不定根发育不良,根表面缺乏根毛,内部解剖构造为典型的初生结构。为避免因不定根吸收、运输能力差而影响试管苗移栽成活,宜采用通透性良好的基质进行瓶内或瓶外生根,可诱导出优质不定根。  相似文献   
4.
用PCR方法从人的基因组DNA中扩增了人血栓调节蛋白(hTM)基因,将其克隆到带有人EF-1α启动子的pEF-neo哺乳动物表达载体上,得到表达质粒pEF-TM。在转染pEF-TM的COS-1细胞中,hTM得到了瞬时表达,并且正确地定位到细胞膜上。用pEF-TM转染猪内皮细胞(PEC),经G418筛先得到稳定转染的克隆。凝血活性测定结果显示,表达hTM的PEC凝血时间明显延长,表明其抗凝血能力增强。通过显微注射方法,得到了1只F0代hTM转基因小鼠。Southern杂交结果表明,该转基因小鼠整合了9个拷贝的pEF-TM DNA,并能将外源DNA遗传给后代。  相似文献   
5.
转基因植物已在全球范围内大面积推广应用 ,全球 5大转基因植物中的油菜、棉花、玉米均是主要的蜜粉源植物 ,对养蜂生产有重要意义 ,其对蜜蜂的安全性问题值得关注。 2种主要的抗虫 (Bt毒蛋白、蛋白酶抑制剂 )基因或抗真菌基因的产物只有在高浓度时才可能对工蜂的寿命、消化酶活性、行为等有不良影响。从目前的研究来看 ,转基因植物对蜜蜂是安全的  相似文献   
6.
M. Fladung 《Plant Breeding》1993,111(3):242-245
The iaaL gene of Pseudomonas syringae subsp. savastanoi encodes an indoleacetic acid-lysine synthetase which conjugates free indoleacetic acid (IAA) with lysine. lAA-lys is biologically less active than free IAA. The iaaL coding region was expressed under the control of the cauliflower mosaic virus 35S promoter and transgenic potato plants were produced (Spena et al. 1991). 35S iaaL potato plants are characterized by increased internodal length and epinastic bending of older leaves. In three greenhouse experiments with plants grown in pots of different size and in two growth chamber experiments tuber number increased in iaaL transgenic plants compared to untransformed and vector-transformed controls of the same genotype. The increase in tuber numbers observed under controlled conditions was reflected in tuber yield which increased in the pot grown transgenics.  相似文献   
7.
Modern biotechnology promises a number of new applications in animal breeding and production. Although conventional pig breeding has achieved a high level of efficiency and productivity numerous problems have been encountered with animal health and the loss of meat quality. Selection based on phenotypic performance data of individual animals does not take into account the importance of specific genes and their relevance within a complex regulatory system. In most cases it is therefore difficult to trace back the genetic origins of clinically important disorders. The application of genetic engineering techniques in pig production will facilitate diagnosis, improvement of productivity, and animal health by allowing direct genetic manipulation. Attention must be focussed on the physical and genetic analysis of the procine genome. The isolation and characterisation of genes, DNA-markers, polymorphic DNA-fragments, and their chromosomal assignment will be important prerequisites and tools for the elucidation of genetic disorders. Especially the detection of heterozygous carriers of recessive disorders and their elimination from the breeding stock will increase selection accuracy and decrease the generation intervals. But also the rapid and simple detection of infectious diseases, which is sometimes difficult if not impossible at present, will improve animal health and welfare. Although the production of transgenic animals either by DNA-microinjection into zygotes or the use of embryonal stem cells manipulated in vitro is less straightforward than DNA-based diagnosis it will play an important role in the direct manipulation of the porcine genome and genes. Breeding programmes including the use of transgenic livestock have already been developed. There is no doubt that genetic engineering has reached a degree of practical feasibility, allowing it to play an important role in pig breeding in particular and animal production in general.  相似文献   
8.
试验于1992~1994年在山东和北京的6个地区,14个苹果园进行。田间试验表明,用灭菌肥Ⅰ型50倍液涂治苹果树腐烂病患处,平均治愈率可达90%以上,比对照2%福美砷当年平均治愈率提高7.22─29.51%,周年平均治愈率提高18.05%~32.39%,愈伤组织宽度增加3.03%~29.23%。室内试验表明,灭菌肥Ⅰ型最低抑菌剂量1000倍,抑菌面积可达2289.06mm2。  相似文献   
9.
10.
The coding sequences in RNA2 for the coat proteins (CP) of strawberry latent ringspot virus (SLRSV) were modified and amplified using polymerase chain amplification reactions (PCR) to facilitate their expression inAgrobacterium tumefaciens-transformedNicotiana tabacum Xanthi-nc. The coding sequences for the smaller capsid protein (S, 29kDa) and that for the theoretical precursor of L and S (P, 73kDa) had ATG initiation codon sequences added at the 5-proximal Ser/Gly (S/G) cleavage site in the unmodified sequence. The sequence coding for the larger of the two proteins of mature SLRSV capsids (L, 44kDa) had an ATG codon added at its 5 S/G site and a TAG stop codon sequence added at the 3-proximal S/G site. The P, L and S proteins were expressedin planta to a maximum concentration of 0.01 % of total extractable proteins but did not assemble into virus-like particles. When challenged by mechanical inoculation with virus particles or viral RNA, and compared with control plants, tobacco plants (primary transgenic clones or S1 and S2, kanamycin-resistant seedlings) expressing the virus capsid subunits separately, or their precursor, decreased the accumulation of SLRSV particles in inoculated leaves and fewer plants became invaded systemically. In experiments in which the roots of seedlings were exposed to SLRSV-carrying vector nematodes (Xiphinema diversicaudatum), SLRSV was detected in the roots of non-transformed control tobacco plants (6/20) and in transgenic tobacco expressing the L protein (7/40), but not in any of 25 tobacco plants expressing the S protein or in 35 expressing the P protein. This is the second example of CP-mediated resistance to virus inoculation by nematode vectors.  相似文献   
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