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991.
992.
山西芝麻种质资源遗传多样性分析   总被引:3,自引:0,他引:3  
为了解山西芝麻种质资源遗传多样性,本研究对189份山西芝麻种质资源的10个质量性状和8个数量性状进行遗传多样性分析和聚类分析。结果表明:189份山西芝麻种质资源的表型性状存在较大的遗传差异,质量性状以主茎茸毛量的遗传多样性指数最高,为1.15,以蒴果棱数的变异系数最高,为63.88%;数量性状以节间长度的遗传多样性指数最高,为2.09,以单株产量的变异系数最高,为47.66%;通过聚类分析,将189份山西芝麻种质资源分为4个类群,类群Ⅰ可作为选育八棱、高秆品种的亲本材料,类群Ⅱ为矮秆、短节间特异材料,类群Ⅲ为高产选育目标材料,综合性状较好,可直接作为优异亲本加以利用,类群Ⅳ包含一批单花、高产特异材料。  相似文献   
993.
作为我国玉米的主要产品类型,子粒用玉米收获时含水率是决定玉米子粒机械化直收质量、储藏安全和经济效益的关键因素,收获期子粒含水率高已经成为制约我国机械化粒收技术大面积推广应用、影响玉米及其制品质量与安全生产、限制玉米产业提质增效发展的重要经济与技术问题。对国内外促进玉米子粒脱水的农艺措施相关研究进行总结与分析,认为未来玉米全程机械化生产过程中,在选用适宜子粒机械化直收优良品种的前提下,应结合各区域不同熟期品种的精细化布局,通过不断改进种植模式、优化养分和水分精准运筹方式,创新适时冠层结构调控措施,研发高效促脱水化学调控产品等关键栽培技术途径,建立生育后期子粒灌浆和脱水动力学协同关系,营造通透群体微区环境,加速子粒水分散失;收获时间调节方面,除了依据不同品种生理成熟前后的子粒脱水动力学进程、种植规模、市场供需格局和农机调度管理等因素外,还应充分考虑田间倒伏、落穗、穗腐、虫害及野生动物破坏导致的产量损失;此外,应加强与关键技术措施相配套的轻简化农机装备的有效研制,将农艺农机深度融合,进一步推动玉米子粒机械化直收技术应用,促进我国玉米及其制品质量与安全,提升玉米生产竞争力,实现玉米产业可持续发展。  相似文献   
994.
Elimination of the CRISPR/Cas9 constructs in edited plants is a prerequisite for assessing genetic stability, conducting phenotypic characterization, and applying for commercialization of the plants. However, removal of the CRISPR/Cas9 transgenes by genetic segregation and by backcross is laborious and time consuming. We previously reported the development of the transgene killer CRISPR (TKC) technology that uses a pair of suicide genes to trigger self-elimination of the transgenes without compromising gene editing efficiency. The TKC technology enables isolation of transgene-free CRISPR-edited plants within a single generation, greatly accelerating crop improvements. Here, we presented two new TKC vectors that show great efficiency in both editing the target gene and in undergoing self-elimination of the transgenes. The new vectors replaced the CaMV35S promoter used in our previous TKC vector with two rice promoters to drive one of the suicide genes, providing advantages over our previous TKC vector under certain conditions. The vectors reported here offered more options and flexibility to conduct gene editing experiments in rice.  相似文献   
995.
Dvl1及其结构缺失突变体ΔDIX(dsh and axin)和ΔDEP(dsh,Egl-10 and pleckstrin)腺病毒载体的构建并验证其在MSCs(mesenchymal stem cells)中的表达情况。将目的基因定向克隆至pAdTrack-CMV穿梭载体上,并经PmeⅠ线性化后在BJ5183细菌中与pAdEasy-1骨架质粒同源重组,获得重组腺病毒载体,在QBI-293A细胞中包装及扩增,实时荧光定量PCR和Western bolt验证Dvl1在MSCs中的表达情况。经PCR、PacⅠ单酶切鉴定及测序分析,成功构建Ad-Dvl1、Ad-ΔDIX和Ad-ΔDEP腺病毒载体,目的基因序列与GenBank报道一致,并选出150 MOI为最适感染MSCs的感染复数,成功构建了Ad-Dvl1、Ad-ΔDIX和Ad-ΔDEP腺病毒载体,并获得高滴度的病毒子,qPCR和Western blot证实Dvl1在MSCs中高表达并增加了β-catenin在细胞中的累积,为进一步研究Dvl1在MSCs迁移过程的作用奠定了基础。  相似文献   
996.
Plant Foods for Human Nutrition - Two selected walnut cultivars (Xiangling and Jizhaomian) growing in China were analyzed in terms of proximate and mineral composition, fatty acid and amino acid...  相似文献   
997.
Symbiotic N2 fixation by lucerne (Medicago sativa) has capacity to provide significant inputs of N to agro-ecosystems, and the species has also been shown to scavenge soil mineral N and thus act as a sink for excess reactive N. The balance between these two N cycle processes was investigated in an extensive irrigated lucerne growing region where nitrate contamination of groundwater has been reported. We sampled 18 permanent pure lucerne stands under irrigation for standing dry matter, total shoot N, and N2 fixation using 15N natural abundance along with activity of the inducible enzyme nitrate reductase as indicators of use of soil NO3 by lucerne. On average 65% of lucerne N was obtained from symbiotic N2 fixation. Converting standing dry matter estimates to annual N2 fixation amounts we calculated average N2 fixation of 311 kg N/ha, including N in roots and nodules. Uptake of N from soil by lucerne was calculated to be 181 kg N/ha/year. We were not able to identify the source of this soil mineral N, although nitrate reductase activity of lucerne was higher than that of non-N2 fixing species examined.  相似文献   
998.
A potentially significant cause of damage to grassland soils is compaction of unsaturated soil and poaching of saturated or nearly saturated soil by animal hooves. Damage is caused when an applied stress is in excess of the bearing strength of the soil and results in a loss of soil structure, macroporosity and air or water conductivity. Severely damaged soils can cause reduced grassland productivity and make grazing management very difficult for the farmer. The actual amount of soil damage that can occur during grazing is dependent on the grass cover which acts as a protecting layer, the soil water content and the characteristics of the grazing animal (weight and hoof size). Assuming that the farmer is knowledgeable about the characteristics of the grazing animal and grass cover, it would be very useful for short‐term operational farm planning to be able to predict when soil water contents were likely to be in a critical range with respect to potential hoof damage. In this study soil moisture deficits (SMDs) which can be derived from meteorological forecasts are evaluated for predicting when soil water conditions are likely to lead to hoof damage. Two contrasting Irish grassland soils were analysed using a Hounsfield servo‐mechanical vertical testing machine to simulate static (285.4 N) and dynamic (571 N) hoof loads on the soil over a range of estimated SMDs (0, 5, 10 and 20 mm). The deficits were analysed with respect to the soil volumetric water content, compression (displacement) and change in dry bulk density. The SMDs imposed in the laboratory were similar to those under field conditions and thus the methods used in this study are applicable elsewhere. The change in dry bulk density following loading (0.2–0.7 g/cm3) was linearly related to SMD (R2 ranged from 0.90 to 0.99), leading to the conclusion that a forecast of SMD can be used to predict when grassland soils are likely to be at risk of damage from grazing.  相似文献   
999.
以宁夏枸杞(Lycium barbarum)中的两个品种扁果枸杞和宁杞0702为材料,对比二者在渗透胁迫、盐处理以及渗透胁迫和盐处理互作条件下的生长特征、叶组织含水量以及各器官Na~+、K~+积累量分析。结果表明,与对照相比,-0.5 MPa渗透胁迫下,扁果枸杞和宁杞0702的生长均受到抑制,其鲜重分别降低了34%和38%,根长分别降低了32%和17%;与对照相比,50mmol·L~(-1) NaCl使扁果枸杞幼苗的鲜重显著增加了38%(P0.05),干重、株高和根长均不受影响,但宁杞0702幼苗鲜重、干重、株高和根长分别显著降低了27%、34%、44%和14%(P0.05);渗透胁迫~+盐处理下,扁果枸杞幼苗与对照组差异不显著(P0.05),而宁杞0702幼苗的鲜重、干重、株高和根长分别显著降低了37%、28%、44%和13%。与对照相比,渗透胁迫下,扁果枸杞叶组织含水量维持稳定,而宁杞0702显著降低了12%(P0.05);在盐处理下,扁果枸杞和宁杞0702叶组织含水量分别显著增加了25%和18%(P0.05),在渗透胁迫~+盐处理下二者均维持稳定。在扁果枸杞中,鲜重和叶组织含水量与叶、茎中Na~+浓度呈极显著正相关(P0.01),而在宁杞0702中,鲜重仅与叶中的K~+浓度极显著正相关(P0.01),与茎中的Na~+则呈显著负相关(P0.05),叶组织含水量则与各器官中的Na~+、K~+浓度均不相关。与对照相比,扁果枸杞在渗透胁迫和盐处理下ST值分别显著增加了84%和43%(P0.05),而宁杞0702则分别显著降低了63%和47%(P0.05)。上述结果表明,扁果枸杞能通过体内积累适量的Na~+,调控体内Na~+、K~+平衡,改善体内的水分状况,维持其正常的生长,具有盐生植物的特点;宁杞0702则不具备这些特征。  相似文献   
1000.
The effects of various copper (Cu) concentrations on the antioxidative system in the roots of Medicago sativa were explored. The results indicated that the Cu content of the roots reached a value of 854 μg g?1 DW at 10 μm Cu and a value of 4415 μg g?1 DW at 100 μm Cu, suggesting that M. sativa has better ability to tolerate and accumulate Cu than other Cu‐bioaccumulators, and is a potential plant for phytoremediation. Treatment with Cu resulted in a significant increment in the levels of H2O2, O2˙? and OH˙. The reduced form of ascorbate and glutathione reached a peak at 30 μm Cu, and was followed by a sharp depletion to a lower level than that of the control. In contrast, the levels of the oxidised forms of ascorbate and glutathione showed a progressive increment with increasing Cu concentrations, suggesting that the antioxidant system was unable to cope with Cu stress at higher Cu levels. Under the Cu concentrations tested, the activity of catalase (CAT, EC 1.11.1.6), ascorbate peroxidase (APX, EC 1.11.1.11) and glutathione reductase (GR, EC 1.6.4.2) increased at lower Cu concentrations, and then decreased, reaching a maximum at 30 μm of Cu for APX and GR, at 10 μm for CAT, whereas the activities of guaiacol peroxidase (POD, EC 1.11.1.7) were gradually increased with increasing Cu concentrations. PAGE analysis of superoxide dismutase (SOD, EC 1.1.5.1.1) revealed that one band is a Mn‐SOD and five bands are identified as Cu, Zn‐SOD, whereas Fe‐SOD isoforms were not found in the roots of alfalfa. Cu at 10–100 μm increased the intensity of constitutive isozymes of CAT, APX and POD, whereas it decreased the intensity of isozymes of glucose‐6‐phosphate dehydrogenase (G6PDH, EC 1.1.1.49) significantly. The activities of lipoxygenases (LOX, EC 1.13.11.12) were gradually augmented with increasing Cu concentrations, demonstrating that LOXs are probably involved in production of lipid hydroperoxides and superoxide anion. There was a continuous and pronounced enhancement in the activity of esterase (EST, EC 3.1.1.1) in roots treated with 10–30 Cu μm , whereas EST activity in roots exposed to above 30 μm Cu declined, suggesting that EST plays a protective role under lower Cu concentrations stress.  相似文献   
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