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261.
Among the most important Mediterranean annual crops durum wheat is widely grown in drought-prone areas. Therefore improving water-use efficiency 《分子植物育种》2007,5(2):223-223
Among the most important Mediterranean annual crops, durum wheat is widely grown in drought-prone areas. Therefore, improving water-use efficiency (WUE) of durum wheat represents a major breeding goal. IDu-WUE (Improving Durum wheat for Water Use Efficiency and yield stability through physiological and molecular approaches) is a collaborative project among public and private research centres in Italy, Spain and WANA (West Asia and North Africa) countries (Morocco, Tunisia, Syria and Lebanon) funded by the European Union aimed at investigating the genetic variation for WUE and yield stability in durum wheat grown in Mediterranean droughtprone areas. During the first year of the project, a number of morpho-physiological traits (e.g. early vigour, flowering time, leaf rolling, number of fertile tillers, etc.), WUE, WUE-related traits (e.g. carbon isotope discrimination, canopy temperature, chlorophyll fluorescence, etc.), yield and its components have been investigated in a RIL population (249 lines) and a collection of ca. 190 durum wheat accessions characterized by a high level of linkage disequilibrium (Maccaferri et al., 2005), 相似文献
262.
Here we report the adaptation optimization of an efficient accurate inexpensive assay that employs custom-designed silicon-based optical thin-film biosensor chips to detect unique transgenes in genetically modified 《分子植物育种》2007,5(2):241-241
Here we report the adaptation and optimization of an efficient, accurate and inexpensive assay that employs custom-designed silicon-based optical thin-film biosensor chips to detect unique transgenes in genetically modified (GM) crops and SN-P markers in model plant genomes. Briefly, aldehyde-attached sequence-specific singlestranded oligonucleotide probes are arrayed and covalently attached to a hydrazine-derivatized biosensor chip surface. Unique DNA sequences (or genes) are detected by hybridizing biotinylated PCR amplicons of the DNA sequences to probes on the chip surface. In the SN-P assay, target sequences (PCR amplicons) are hybridized in the presence of a mixture of biotinylated detector probes and a thermostable DNA ligase. Only perfect matches between the probe and target sequences, but not those with even a single nucleotide mismatch, can be covalently fixed on the chip surface. In both cases, the presence of specific target sequences is siL, nified by a color change on the chip surface (gold to blue/purple) after brief incubation with an anti-biotin IgG horseradish peroxidase (HRP) to generate a precipitable product from an HRP substrate. 相似文献
263.
The growing set of fully-sequenced angiosperm genomes highlight the role of polyploidy in angiosperm evolution suggest that even the high level of importance we had already attributed to this mechanism was inadequate.…… 《分子植物育种》2007,5(2):151
The growing set of fully-sequenced angiosperm genomes highlight the role of polyploidy in angiosperm evolution, and suggest that even the high level of importance we had already attributed to this mechanism was inadequate. 相似文献
264.
India being the primary center of origin for rice had a very large treasure of local land races most of which are out of cultivation today. The exact genetic potential their differences from commercial varieties the magnitude of heterogeneity still present in them are not well catalogued. Hence the need to characterize the available land races has become imminent in the modem day concept of crop improvement 《分子植物育种》2007,5(2):257-258
India being the primary center of origin for rice had a very large treasure of local land races, most of which are out of cultivation today. The exact genetic potential and their differences from commercial varieties and the magnitude of heterogeneity still present in them are not well catalogued. Hence the need to characterize the available land races has become imminent in the modem day concept of crop improvement (Rezai and Frey, 1990). The present study addresses the utility of SSR markers in divulging the genetic relationships at molecular level among the major component factions office gennplasm viz., local cultivars, land races and wild species collected from a wide range of agro-geographical regions of Indian subcontinent. 相似文献
265.
华南地区覆盖旱种水稻节水及其水分利用效率研究 总被引:3,自引:0,他引:3
大田试验条件下设置常规水稻(T11)、覆膜旱作水稻(T12)、覆草旱作水稻(T13)和裸地旱作水稻(T14)4个处理,研究旱作水稻的节水效率及水分利用效率。水稻本田期T11用水总量545.40 mm,显著高于各旱作处理水稻,以此为参照,T12、T13和T14节水效率分别为35.1%、22.8%和21.2%。以裸地旱作处理T14为参照,T12节水率17.7%,而T13无明显节水效果。旱作水稻的节水效果主要发生在水稻移栽后前2个月,之后无明显节水效果。各处理以籽粒产量/耗水量为基础计算的水分利用效率(WUE),T12、T13、T14和T11处理分别为1.47、1.31、1.21和1.05 g/kg,以干物质量/耗水量为基础计算的WUE各处理之间的趋势与以籽粒产量/耗水量计算的WUE基本一致。 相似文献
266.
动物精子的性别可通过流式精子分选仪和DNA标识进行鉴定,而利用鉴定性别的精子(即性控精子)并借助人工授精技术或其它授精技术产生的后代,在过去5年中估计已多达30000个(其中大多数是母牛)。有关文献资料证明,能有效地区分X精子和Y精子的唯一标记物是精子染色体中的DNA。众所周知,目前世界各地采用的方法是Beltsville精子分选技术,该技术根据X精子群和Y精子群中DNA相对含量上的差异,用荧光染液(Hoechst33342染液)标记精子,随后利用流式细胞仪分选经荧光标记的精子,从而达到分离精子的目的。目前,X精子或Y精子正常的生产速度是每小时1500万个,该项技术已在家畜、实验动物和动物园动物中应用,如果将该技术应用在人上,在预选后代性别比例上可达90%~95%的成功率。因动物品种不同,性控精子在动物体内的授精部位也不相同。常规的人工授精技术、宫内授精技术、输卵管内授精技术、用于胚胎移植的体外受精(in-vitro fertilization,IVF)技术或子宫角深部授精技术均能有效地使动物怀孕,至于利用哪种技术进行性控精子的精则取决于动物品种。尽管所有动物都能获得高纯度的分选精子,但是在实际生产中利用低剂量精子还难以让母猪怀孕。子宫角深部授精技术每次授精0.5~1.00亿个性控精子已能产生可喜的效果:利用特制的输精管,输入常规人工授精所需精子量的五十分之一的性控精子,足以使动物怀孕。性控精子通过常规的授精技术能够被猪成功利用前,还需重新设计输精管,同时输精的次数和每次授精时精子数量也需作进一步的研究。分选精子的低温保存技术已被牛人工授精普遍采用。尽管已能利用冷冻的性别分选精子生产小猪,但是性别分选精子经冷冻和解冻处理后在常规生产中的应用还未达到最理想的效果。本文将讨论猪精子性别分选的最新研究成果及其发展趋势,并重点探讨将性别分选技术应用于养猪生产中必须对其进行必要的技术开发。 相似文献
267.
即使是最有进取心的养猪生产者也会忽视水质对猪生产性能的影响。尽管水质检验表明猪场水质仍在可接受的范围内,但水管内积聚起的水藻、细 相似文献
268.
本文分析了印度Leh地区沙棘籽油中脂肪酸各成分的含量,结果显示沙棘种子含油量为17.61%,籽油富含油酸(23.012%)和亚油酸(30.162%). 相似文献
269.
伤口愈合是一种复杂的现象,是机体控制的系统对细胞进行精微同步调节的结果.然而,一系列可变因素通过多种方法来影响此过程.通常来说,机体内的各种维生素,矿物质,脂肪酸,氨基酸和其他营养物质对该过程起着直接或间接的重要影响.不仅如此,各种疾病与无数的外界因素也以不可预料的形式影响着该过程.因此,任何治疗方法都是努力控制上述因素以使机体处于最佳恢复状态.因此,当这种天然愈合过程被打断,机体的伤口就会转变为慢性,或者出现溃疡. 相似文献
270.
Isabel GARRIDO Carmen M. MARTNEZ Pilar FLORES Pilar HELLN Fulgencio CONTRERAS Jos FENOLL 《土壤圈》2024,34(3):641-651
Agriculture has a close relationship with nature, but it can also be the source of negative and permanent environmental effects. The use of pesticides in modern agriculture is a common practice, but their side effects on the environment cannot be disregarded. In this study, we evaluated a combination of solarization and ozonation techniques for the elimination of six amide pesticides (boscalid, chlorantraniliprole, cyflufenamid, fluopyram, napropamide, and propyzamide) in soil. Initial experiments were performed with four different soils to assess the efficiency of this methodology at different soil temperatures and ozone dosages under laboratory conditions, and then a greenhouse pot experiment was conducted under controlled conditions during summer. Fifty days after the onset of the experiments, higher degradation percentages of amide pesticides were observed in ozonized soils than in other treated soils, particularly when ozone was applied at 10 cm soil depth. The results show that the utilization of ozonation, along with solarization, represents a valid method for degrading residues of the studied pesticides and suggest that this combined technology may be a promising tool for remediating pesticide-polluted soils. 相似文献