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31.
何首乌茎尖嫩叶主要营养成分分析及评价 总被引:1,自引:0,他引:1
测定了何首乌茎尖嫩叶的VB2、VC、粗纤维等主要营养成分含量和K、Fe、Zn等矿质元素含量,以期为何首乌茎尖嫰叶的合理开发利用提供理论依据。结果表明,何首乌茎尖嫩叶营养丰富,各种营养成分较为全面,其主要营养成分和矿质元素含量也远远高于其他4种常见蔬菜,这为何首乌茎尖嫩叶的食用价值提供了科学依据,也为改善人们的膳食营养和餐饮文化、开发蔬菜资源及提高其利用价值提供了参考。 相似文献
32.
为筛选适宜保定地区栽植的早熟苹果品种,以嫁接在SH40中间砧上的不同早熟苹果品种(系)为试材,测定了不同品种(系)早熟苹果树体生长发育指标和果实品质。结果表明:除嘎啦早熟变异外,其他供试品种(系)树体生长较好,3年生时Xu2-7、Xu3-2树高330.0~352.5 cm,4年生时为394.0~417.5 cm,Xu3-2、藤牧1号、信浓红4年生为336.5~381.0 cm。4年生时,干径以Xu2-5最大;短枝、中枝、叶丛枝均以Xu2-5最多,长枝以Xu2-7最多,总枝量以Xu2-5最多;藤牧1号短枝所占比例最高(57.4%)。应用模糊综合评判法得出Xu2-5、Xu2-7、信浓红、藤牧1号果实品质较高。 相似文献
33.
WUSCHEL是植物干细胞命运的决定基因,在植物发育过程中WUSCHEL基因的表达决定着干细胞的形成和器官的发生.从狗蔷薇的类原球茎中克隆出其同源基因;经过对其进行蛋白质序列比对和系统发育分析,将其命名为Ra WUS基因.构建在XVE系统下的化学调控的表达载体.在该系统下,Ra WUS基因的超量表达能诱导转基因烟草根尖形成不定芽;同时显微观察表明,根部的皮层中有圆球形的分生组织干细胞团的产生.结果表明:Ra WUS基因的过量表达能够促使根的皮层中薄壁细胞转变成为分生组织干细胞而形成不定芽在根尖异位发生,说明其能够在植物的根尖中诱导茎尖分生组织干细胞的活性和发育的可塑性. 相似文献
34.
GUO Yuan LIU Zong-zheng LIU Le MENG Fan-hua ZHANG Yan-ru ZHOU Huan-min LIU Chun-xia 《中国畜牧兽医》2016,43(11):3011-3018
In order to obtain the cloned sheep using bone marrow mesenchymal stem cells(BMSCs)as the donor cells,the BMSCs of sheep were chosen and reconstructed embryos were built to transfer.10 published microsatellite markers were chosen,and the DNA samples from clone sheep,donor cells and surrogate ewes were amplified,and the relationship of father-son(RCP)was analyzed using the Quantity One for genotyping.The results showed that the reconstructed embryos were successfully built for electric fusion using sheep BMSCs as nuclear donor,and making nuclear transplantation into enucleated mature oocytes of which the fusion rate was 80.62%.20 surrogate ewe were chosen to be implanted with the reconstructed embryos at morula stage by implant surgery,and 5 lambs were born and only 3 were survived.The genotype of cloned sheep was in line with the dornor cell and the RCP were more than 99.999%.In conclusion,the first clone sheep were obtained successfully by using BMSCs as a nuclear donor in this experiment. 相似文献
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Three trickle irrigation schedules, two of which were scheduled according to soil water potential ( soil) (tensiometer method) and daily stem contraction (DSC) (dendrometer method) respectively and the other one was a schedule of restricted water supply, were applied to a mature peach orchard.The annual water application based on soil was greater than that based on DSC. However, tree growth, fruit size and leaf water potential (leaf) on the trees in the dendrometer scheduling plot did not differ from those in the tensiometer scheduling plot while the premature fruit drop and fruit bud initiation were greatly different. The restricted water supply treatment limited significantly both tree and fruit growth. In addition, the lower leaf was observed on the trees in this plot.Further study shows that use of the dendrometer method for scheduling irrigation satisfies the water needs of the plant and that the tensiometer method is less accurate.Abbreviations leaf
leaf water potential
- soil
soil water potential
- DSC
daily stem contraction
- LVDT
linear variable displacement transducer
- PET
potential evapotranspiration 相似文献
38.
AIM To construct the mouse embryonic stem cell (ESC) line with stable pancreatic and duodenal homeobox 1 (Pdx1 ) expression by Tet-On system, which may lay a foundation for further research on the differentiation of Pdx1+ definitive endoderm cells into pancreatic cells. METHODS The Pdx1 -overexpressing lentiviral vector with green fluorescent protein marker and puromycin resistance was constructed by Tet-On system and was used to infect the mouse ESC. The cells were divided into 3 groups: blank control group (ESC group), empty lentivirus control group (PDX1- ESC group) and Pdx1 lentivirus transfection group (PDX1+ ESC group). Flow cytometry was used to detect the transfected cells after screening by doxycycline (DOX). The function of Tet-On system and the expression of Pdx1 gene were detected. The transfected cells in PDX1- ESC group and PDX1+ ESC group were sorted by flow cytometry, and constructed ESC line with stable expression of Pdx1 and negative control ESC line were verified. RESULTS (1) The positive rates of transfected cells in PDX1- ESC group and PDX1+ ESC group were 90.72% and 94.01% after screening by DOX, respectively. The positive rates of transfected cells in PDX1- ESC group and PDX1+ ESC group was 97.84% and 98.13% after sorting by flow cytometry, respectively. (2) With DOX, green fluorescence was observed in PDX1- ESC group and PDX1+ ESC group. The mRNA and protein expression of Pdx1 was significantly increased in PDX1+ ESC group (P <0.05). Without DOX, no green fluorescence was observed in the cells of the 3 groups, and no significant difference in the mRNA and protein expression of Pdx1 was observed (P >0.05). (3) After 3 months of cryopreservation, the cell lines still survived in resuscitation culture and were regulated by DOX. CONCLUSION Using Tet-On system, the mouse ESC line with inducible Pdx1 expression were successfully established and could be used as an effective cell model to research the differentiation of Pdx1+ definitive endoderm cells into pancreatic cells. 相似文献
39.
作物茎秆膨胀和收缩变化与其水分状态密切相关,实时监测茎秆的膨胀和收缩变化能够及时掌握作物水分状态,对指导灌溉、提高农业水资源利用率具有重要意义。目前,对于作物茎秆膨胀和收缩变化的监测主要采用基于线性微位移测量原理的传感器,通过测量茎秆的膨胀和收缩引起的位移变化来反映水分状态,存在体积大、价格高、安装不便等问题。为此,该研究提出了一种基于压阻效应的柔性可穿戴传感器,采用柔性压力电极作为传感元件,贴附在作物茎秆表面,通过监测茎秆膨胀和收缩引起的压力变化来反映作物的水分状态,压力检测电路和数据采集电路将作物茎秆的压力信号转换成电信号进行输出和存储。首先在实验室环境下对传感器性能进行测试和标定,然后在温室环境下将传感器安装在番茄茎秆上观测番茄茎秆的压力变化,并与线性微位移传感器观测结果进行比较,最后在充分灌溉和水分亏缺2种条件下观测番茄茎秆的膨胀和收缩变化。结果表明,柔性压力传感器稳定性测试的平均相对变化率为0.109%;弯折前后引起的输出变化非常小,可以忽略不计;标定结果的决定系数大于0.99,最合适的工作压力范围为2~100 kPa;实验室环境下,柔性压力传感器与线性微位移传感器输出值之间的决定系数为0.9551;温室环境下,充分灌溉组中柔性压力传感器与线性微位移传感器输出值变化趋势一致,两者之间的决定系数为0.7672,亏缺灌溉组中两类传感器输出值均因水分亏缺而呈现下降趋势,输出值之间的决定系数为0.8519。本文所设计的柔性可穿戴压力传感器不仅能够实时监测番茄茎秆的膨胀和收缩变化,还可以对番茄亏水胁迫进行诊断,为实现高效节水灌溉提供重要的技术支撑。 相似文献
40.
夏威夷菠萝高效再生体系研究 总被引:1,自引:0,他引:1
采用菠萝试管苗的叶片、叶鞘、茎段和茎薄片作外植体,以MS或1/2 MS为基本培养基,应用正交试验设计方法研究了不同浓度的2,4-D、6-BA、NAA和AgNO3对夏威夷菠萝不定芽的诱导效果,并在添加不同激素组合的培养基中进行芽的增殖和生根培养研究.结果表明,茎段为诱导不定芽的最佳外植体,6-BA是影响不定芽产生的最主要因素.其中MS 6-BA 5.0 mg/L 2,4-D 0.5 mg/L NAA 0.3 mg/L AgNO3 2.0 mg/L为不定丛芽诱导的最佳培养基,诱导率为83.3%;MS 6-BA 1.0 mg/L NAA 0.05 mg/L为芽增殖的最佳培养基,可分化成绿色小苗;1/2 MS IBA 1.0 mg/L NAA 0.5 mg/L为小苗生根的最佳培养基,生根粗壮,生根率达100%. 相似文献