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91.
Guang-Hua Wang Yasunori Nakajima Ichiro Shaku Makoto Kimura 《Soil Science and Plant Nutrition》2013,59(2):303-314
Coating of rice seeds with fungicide Thiram improved the seed germination capability over a long period of time (11 weeks) under low temperature conditions (4 and 8°C), which simulated the sowing of rice seeds in the winter season (the farmer's slack season). To analyze the effect of Thiram on the community structure of microorganisms on the rice seed surface, culture-dependent and culture-independent (PCR-RFLP) methods were applied. PCR-RFLP patterns of 16S rDNA showed that the bacterial communities on the rice seed surface were different between coated and uncoated treatments under 8°C conditions, but that they were very similar under 4°C conditions. PCR-RFLP patterns of 18S rDNA revealed the remarkable effect of Thiram on the fungal community structure under both 4 and 8°C conditions. Although the fungal communities were quite different between coated and uncoated seeds at the beginning of incubation, the fungal communities on the coated seed surface became similar to those of uncoated seeds along with the duration of the incubation period. As the dominance percentage of Fusarium spp. among the isolates increased with the duration of the incubation period for both coated and uncoated seeds, Fusarium was considered to be a responsible for the poor germination of rice seeds that were sown in the winter season. 相似文献
92.
小麦籽粒胚乳淀粉合成酶基因表达及酶活性分析 总被引:2,自引:1,他引:2
为研究小麦籽粒淀粉合成酶基因表达与酶活性的特征,选用4个淀粉含量差异较大的普通六倍体小麦新春24、E28(高淀粉含量组)和宁春16、安农9912(低淀粉含量组)为试验材料,采用实时荧光定量RT-PCR ,对灌浆期籽粒淀粉合成酶相关基因的表达进行研究,并对其表达量与相应酶活性的相关性做了分析。结果表明,束缚态淀粉合成酶基因(GBSS)、可溶性淀粉合成酶基因(SSS)、淀粉分支酶基因( SBE)、淀粉去分支酶(DBE)基因均呈单峰曲线变化。利用实时荧光定量PCR技术检测9个基因在不同淀粉含量的4个供试品种花后不同时期的相对表达量,结果表明,花后6d这些基因开始表达,在灌浆的中期(花后12~18d不等)有表达的小高峰,但在不同时期,2个高淀粉含量的品种中各种酶活性及其酶基因的相对表达量均比2个低淀粉含量的品种相对较高;这些基因表达谱与酶活性相关分析显示, 除GBSS外其他几种淀粉合成酶基因均与相应酶活性呈显著或极显著正相关,而且GBSS酶活性到达峰值时间稍迟于DBE、SSS、SBE等酶,说明DBE、SSS、SBE基因可能主要通过转录水平来控制籽粒淀粉的合成,而GBSS基因可能主要通过转录后水平来控制籽粒淀粉的合成。 相似文献
93.
Short-term population dynamics of ammonia oxidizing bacteria in an agricultural soil 总被引:2,自引:0,他引:2
Ammonia oxidizing bacteria (AOB) control the rate limiting step of nitrification, the conversion of ammonia (NH4+) to nitrite (NO2−). The AOB therefore have an important role to play in regulating soil nitrogen cycling. Tillage aerates the soil, stimulating rapid changes in soil N cycling and microbial communities. Here we report results of a study of the short term responses of AOB and net nitrification to simulated tillage and NH4+ addition to soil. The intensively farmed vegetable soils of the Salinas Valley, California, provide the context for this study. These soils are cultivated frequently, receive large N fertilizer inputs and there are regional concerns about groundwater N concentrations. An understanding of N dynamics in these systems is therefore important. AOB population sizes were quantified using a real-time PCR approach. In a 15 day experiment AOB populations, increased rapidly following tillage and NH4+ addition and persisted after the depletion of soil NH4+. AOB population sizes increased to a similar degree, over a 1.5-day period, irrespective of the amount of NH4+ supplied. These data suggest selection of an AOB community in this intensively farmed and C-limited soil, that rapidly uses NH4+ that becomes available. These data also suggest that mineralization may play an especially important role in regulating AOB populations where NH4+ pool sizes are very low. Methodological considerations in the study of soil AOB communities are also discussed. 相似文献
94.
The influence of soil properties on the structure of bacterial and fungal communities across land-use types 总被引:3,自引:1,他引:3
Christian L. Lauber Michael S. Strickland Mark A. Bradford Noah Fierer 《Soil biology & biochemistry》2008,40(9):2407
Land-use change can have significant impacts on soil conditions and microbial communities are likely to respond to these changes. However, such responses are poorly characterized as few studies have examined how specific changes in edaphic characteristics do, or do not, influence the composition of soil bacterial and fungal communities across land-use types. Soil samples were collected from four replicated (n = 3) land-use types (hardwood and pine forests, cultivated and livestock pasture lands) in the southeastern US to assess the effects of land-use change on microbial community structure and distribution. We used quantitative PCR to estimate bacterial–fungal ratios and clone libraries targeting small-subunit rRNA genes to independently characterize the bacterial and fungal communities. Although some soil properties (soil texture and nutrient status) did significantly differ across land-use types, other edaphic factors (e.g., pH) did not vary consistently with land-use. Bacterial–fungal ratios were not significantly different across the land-uses and distinct land-use types did not necessarily harbor distinct soil fungal or bacterial communities. Rather, the composition of bacterial and fungal communities was most strongly correlated with specific soil properties. Soil pH was the best predictor of bacterial community composition across this landscape while fungal community composition was most closely associated with changes in soil nutrient status. Together these results suggest that specific changes in edaphic properties, not necessarily land-use type itself, may best predict shifts in microbial community composition across a given landscape. In addition, our results demonstrate the utility of using sequence-based approaches to concurrently analyze bacterial and fungal communities as such analyses provide detailed phylogenetic information on individual communities and permit the robust assessment of the biogeographical patterns exhibited by soil microbial communities. 相似文献
95.
植酸酶基因在农业生产中具有很高的应用价值,正被广泛用于农作物的基因工程研究。为了满足转植酸酶基因作物安全监管的需要,通过优化PCR检测条件,建立了植酸酶基因特异性定性PCR检测方法。该方法具有良好的扩增特异性和检测灵敏度,可以满足我国植酸酶转基因作物监管需要。此外,我们将6大作物(小麦、水稻、棉花、大豆、玉米和油菜)的内标准基因和植酸酶基因克隆到同一载体上,构建成了阳性质粒分子pBS Endogenous-phytase。该质粒分子适用于这6大作物中植酸酶基因的筛查检测。本研究为转植酸酶基因作物的安全监管提供了阳性材料和检测方法。 相似文献
96.
为了获得牡丹类脱水素基因的全长cDNA序列,推测其在休眠解除进程中的生物学功能,以不同低温处理时间的牡丹花芽为供试材料,末端快速扩增方法克隆全长cDNA序列,实时定量PCR分析其表达模式。结果表明牡丹类脱水素基因全长cDNA序列为1187 bp,包括831 bp的开放阅读框,114 bp的5’非编码区和242 bp的3’非编码区。其编码的蛋白具有两个植物脱水素蛋白特征性K片段,根据Close的分类方法,属于YSK2类脱水素蛋白。系统发生分析表明psDHN-YSK2基因与葡萄亲缘关系最近。在花芽内休眠解除前期随着低温处理时间的延长psDHN-YSK2表达呈上调趋势。本研究克隆了牡丹psDHN-YSK2的全长cDNA序列,分析了其在花芽内休眠解除过程的表达趋势,暗示了其参与了牡丹花芽的内休眠过程。 相似文献
97.
春兰AGL6基因的克隆及实时定量表达分析 总被引:1,自引:0,他引:1
本研究采用RT-PCR结合RACE技术从春兰(Cymbidium goeringii)中分离到一个AGL6基因。序列分析表明,该基因含有一个729bp长的开放阅读框(ORF),共编码242个氨基酸。系统进化树分析显示,该基因属于MADS-box基因家族AP1/AGL9组的AGL6同源基因,其编码的蛋白与其它植物AGL6类蛋白具有较高的同源性,命名为CgAGL6(基因登录号为HM208533)。实时荧光定量表达分析表明,CgAGL6基因春兰不同组织中均有表达,其中在唇瓣、花芽和子房中的表达量较高,在花瓣和萼片中的表达量次之,在根、叶和蕊柱中的表达量最低,显示了CgAGL6基因可能在春兰成花转变和花器官的形成过程中起着重要作用。 相似文献
98.
猪圆环病毒Ⅱ型PCR检测方法的研究 总被引:5,自引:0,他引:5
【目的】建立快速、简便、特异的检测猪圆环病毒II型的PCR方法;【方法】根据已发表的猪圆环病毒II型基因序列设计合成了一对引物,用酚-氯仿法抽提可疑病料中的病毒DNA,应用PCR技术对猪圆环病毒进行基因扩增,PCR产物进行序列测定;以猪瘟病毒、猪伪狂犬病毒、猪细小病毒为对照,进行特异性试验;取部分病料进行重复性试验;【结果】PCR方法扩增出了长度为702bp的片段,扩增产物经测序和序列分析表明扩增的序列为PCV2序列;猪瘟病毒、猪伪狂犬病毒、猪细小病毒的PCR扩增均为阴性,与预期结果一致;部分病料PCR重复检测5次,检测结果完全一致;【结论】PCR检测方法可以对猪圆环病毒病作出敏感、特异、准确地诊断,该方法检测的基因最低模板量为2×10-5ng/ml。 相似文献
99.
富含多糖的转基因石斛基因组DNA提取方法(英文) 总被引:3,自引:0,他引:3
在石斛兰转基因研究中,需通过PCR和Southern杂交等手段检测外源基因是否转入并整合到转化植株基因组.由于转化石斛植株生长缓慢,且含有多糖,因此从转化植株中提取高质量的基因组DNA以尽快对转基因苗进行分子检测存在较大困难.本研究旨在通过改良现有的DNA提取法(CTAB法或SDS法1,克服转化石斛植株基因组DNA提取中碰到的产量低,纯度不高而导致难以进行PCR或酶切等问题.在本研究所用的3种改良法中,方法Ⅱ能从少量的转化石斛苗中提取出高产量和高纯度的基因组DNA.研究结果表明方法Ⅱ提取的基因组DNA完全适用于转基因石斛的外源基因PCR扩增,限制性酶切和Southern杂交分析. 相似文献
100.