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11.
西梅的果实是一种具有较高经济价值的储藏器官。新疆是西梅的主要产区之一,为使西梅的果实能具有较高的品质和产量,在适宜砧木的选择、优良品种的搭配、建园模式、高效栽培树形、土肥水管理和病虫害防治等方法和技术上都要有较高的要求。文章综述目前西梅的研究,结合新疆生产现状总结出提高西梅果实品质和产量的一系列方法和措施。  相似文献   
12.
以"丽格"海棠果实为试材,研究经1.0μL/L的1-MCP处理后,室温(20±1)℃条件下贮藏的海棠果实品质和生理变化,并利用主成分对采后测定的各项生理指标进行分析。结果表明,与不加1-MCP的对照组相比,1-MCP处理可保持海棠果实硬度,抑制可溶性固形物(TSS)含量的升高,减缓VC含量的降低、果皮叶绿素的分解和过氧化物酶(POD)活性的下降,降低呼吸强度和乙烯生成速率,有效地延缓果实衰老,使海棠果更耐贮藏。主成分分析在特征值大于1时将经1-MCP处理后的海棠果实8个生理指标综合为2个因子,累积方差贡献率达到84.44%,其中第1主成分主要代表果肉硬度和叶绿素信息,第2主成分主要代表乙烯释放量信息。  相似文献   
13.
为了解新疆天山野果林中塞威士苹果Malus sieversii与其林下伴生植物短距凤仙花Impatiens brachycentra两种植物叶斑病病原菌的多样性及同源性,采用组织分离法获得病原菌,基于rDNA-ITS序列构建系统发育树,并进行ITS序列BLAST同源性比对,对病原菌进行鉴定分类,并依据科赫氏法则测定致病性。结果显示,从新疆新源县天山野果林中的塞威士苹果及短距凤仙花病叶上共分离得到18株菌落形态各异的病原菌,分属于2属4种,绝大多数属于半知菌亚门。其中,链格孢属Alternaria sp.为塞威士苹果和短距凤仙花叶斑病病原真菌中的优势菌群。致病性测定结果显示,其中11株病原真菌对塞威士苹果具有致病性,7株病原真菌对短距凤仙花具有致病性;塞威士苹果所有的病原真菌对短距凤仙花均有致病性,而且短距凤仙花所有的病原真菌对塞威士苹果也有致病性。推测2种植物叶斑病可能由相同来源的病原真菌引发,短距凤仙花染病加剧了塞威士苹果叶斑病暴发,可能是野果林退化的重要原因。  相似文献   
14.
The overall objective of this work was to improve fruit quality, break alternate bearing and reduce hand thinning using fewer chemicals in fruit crops. A device was constructed for mechanical thinning, which consisted of three independent horizontal rotors with ropes and freely adjustable angles on a frame, mounted on a front three point hitch and powered by the tractor hydraulics. This can be adapted to any fruit tree trained as spindle, Solaxe, (tall) vertical axis or fruit wall (le mur fruitier) irrespective of rootstock employed. Rotor speed varied from 300 to 460?rpm at either 5 or 7.5?km/h tractor speed. Eight-year-old or twelve-old apple trees cvs. ‘Gala’ and ‘Golden Delicious’ were mechanically thinned in 2007 between pink bud and full bloom (flower bud stages 6–8 or F1–F2) near Bonn, Germany; non-thinned and hand-thinned apple trees of the same block and variety served as control. Mechanically thinned flowering branches showed a similar amount of ethylene efflux (0.4–0.6?ppm C2H4/branch) as non-thinned flower branches, preventing potentially unexpected subsequent fruit drop, except for those removed by the rotors. The impact of the horizontal rotors on the branches was from the upper side and removed excessive flowers right to the tree trunk viz. the centre of the tree canopy, where fruits of lesser quality are expected leaving 2–3 flowers per cluster. Leaf damage was less than??10%, even at the fast rotor speed of 420?rpm, which was associated with negligible wood injury. Mechanical thinning induced firmer and sweeter fruit, i.e. tastier apples with longer shelf life, relative to control fruit from non-thinned apple trees. The greatest efficacy in terms of final fruit quality in the grading/sorting was achieved by a rotor speed of 360?rpm at a tractor speed of 5?km/h: Fruit mass increased by up to 20?g and the proportion of fruit larger than 70–75?mm by 10–30% compared with the fruit from non-thinned trees. Mechanical thinning with this newly constructed device led to a 10–20% reduction in yield, but increased returns due to better fruit size and colouration in apple with the potential to overcome alternate bearing.  相似文献   
15.
孙春玉  王忆  孔瑾  许雪锋  李天忠  韩振海 《园艺学报》2009,36(10):1411-1416
 MxIrt1是从苹果属植物小金海棠中克隆出的二价阳离子转运膜蛋白基因。为进一步研究该基 因的功能, 利用MxIrt1基因位于第3和第4跨膜区之间的162 bp片段, 构建了原核表达载体pGEX-MxIrt1,经原核表达、亲和层析、获得GST2MxIRT1融合蛋白, 以融合蛋白为抗原, 制备多克隆抗体, ELISA方法检测抗体效价阳性, 蛋白质印迹检测植物体内总蛋白, 获得与预期大小一致的特异性条带。上述结果表明,表达的目的蛋白可用于免疫组织化学、蛋白质印迹检测。  相似文献   
16.
平邑甜茶后代双胚苗的倍性鉴定及核型分析   总被引:1,自引:0,他引:1  
为了确定平邑甜茶双胚苗的倍性特征和核型特点,采用压片和流式细胞仪观测的方法对平邑甜茶后代中双胚苗进行染色体倍性观察和核型分析。结果表明:4株供试材料均为三倍体,2n=3x=51,染色体为小型,染色体长度比差异不大;核型组成由中部着丝点染色体(m)和亚中部着丝点染色体(sm)组成;株系8-1、8-2、12-1和12-2的核型公式分别为2n=3x=45m+6sm,2n=3x=48m+3sm,2n=3x=27m+24sm,2n=3x=33m+18sm;染色体相对长度和着丝点指数的变异范围分别为1.21%~2.68%和34.19%~42.37%,1.44%~2.63%和35.59%~44.08%,1.36%~3.02%和32.85%~42.18%,1.43%~2.87%和34.23%~44.02%;核型分别属于1B、1A、2B和1B类型,表现为株系之间的核型不完全相同。本研究为丰富无融合生殖型砧木的育种理论,获得新的苹果无融合生殖型砧木提供有益的借鉴。  相似文献   
17.
为了研究晋西黄土区果农间作系统中土壤养分分布特征,选取研究区具有典型代表性的4,6和8年生苹果(Malus pumila)+大豆(Glycine max)间作系统为研究对象,对间作系统土壤养分(速效钾、速效磷、有机质、全氮)含量进行了定位、定量监测。结果表明:(1)在垂直方向上,不同树龄苹果+大豆间作系统速效钾、速效磷和有机质含量均随着土层深度增加而减少,而全氮含量表现为先增加再减少;(2)在水平方向上,随着距树行距离的增加,4年生间作系统与6年生间作系统土壤养分总体上呈现"W"型分布,而在8年生间作系统中呈现"M"型分布(全氮除外),极值分别出现在距树行1.5,2.5,3.5m处,且极大值点养分含量与极小值点含量有显著差异(p0.05);(3)随着树龄增长,果树与农作物的养分竞争关系逐渐发生变化,且在8年生间作系统中养分竞争最激烈。基于间作系统土壤养分特征,建议在田间施肥管理时,应以施氮肥为主,且随着树龄的增长应该适时增大复合界面的距离或停止复合经营。  相似文献   
18.
选取晋西黄土区具有典型代表性的幼龄苹果(Malus pumila)+花生(Arachis hypogaea)间作地作为研究对象,在花生生长季的不同时间对苹果+花生间作地和对照花生单作地的土壤水分进行定位监测,研究苹果+花生间作系统间作界面上土壤水分的时空分布特征和水分效应,及其对花生生长状况和产量的影响。结果表明:1)间作地土壤平均水分含量生长季逐月变化显著,水分耗用最大的时间为7月;2)在垂直方向上,土壤含水量随着土壤深度的增加而增加,在水平方向上,土壤含水量最低值出现在距离果树行最近的区域,并随着与树行距离的增加而增加;3)间作地种间土壤水分耗用量最大的区域为靠近苹果树的表层土壤;4)在当前树龄下,苹果+花生间作系统相对于花生单作土壤水分在整体上表现为负效应,对花生的产量产生了不利的影响,并限制了果农间作系统生态效益和经济效益的进一步提高。建议采取适当的调控和管理措施缓解种间水分竞争并提高花生的产量。  相似文献   
19.
Apple replant disease (ARD) is a disease complex that reduces survival, growth and yield of replanted trees, and is often encountered in establishing new orchards on old sites. Methyl bromide (MB) has been the fumigant used most widely to control ARD, but alternatives to MB and cultural methods of control are needed. In this experiment, we evaluated the response of soil microbial communities and tree growth and yield to three pre-plant soil treatments (compost amendment, soil treatment with a broad-spectrum fumigant, and untreated controls), and use of five clonal rootstock genotypes (M.7, M.26, CG.6210, G.30 and G.16), in an apple replant site in Ithaca, New York. Polymerase chain reaction (PCR)—denaturing gradient gel electrophoresis (DGGE) analysis was used to assess changes in the community composition of bacteria and fungi in the bulk soil 8, 10, 18 and 22 months after trees were replanted. PCR-DGGE was also used to compare the community composition of bacteria, fungi and pseudomonads in untreated rhizosphere soil of the five rootstock genotypes 31 months after planting. Tree caliper and extension growth were measured annually in November from 2002 to 2004. Apple yield data were recorded in 2004, the first fruiting year after planting. Trees on CG.6210 rootstocks had the most growth and highest yield, while trees on M.26 rootstocks had the least growth and lowest yield. Tree growth and yield were not affected by pre-plant soil treatment except for lateral extension growth, which was longer in trees growing in compost-treated soil in 2003 as compared to those in the fumigation treatment. Bulk soil bacterial PCR-DGGE fingerprints differed strongly among the different soil treatments 1 year after their application, with the fingerprints derived from each pre-plant soil treatment clustering separately in a hierarchical cluster analysis. However, the differences in bacterial communities between the soil treatments diminished during the second year after planting. Soil fungal communities converged more rapidly than bacterial communities, with no discernable pattern related to pre-plant soil treatments 10 months after replanting. Changes in bulk soil bacterial and fungal communities in response to soil treatments had no obvious correlation with tree performance. On the other hand, rootstock genotypes modified their rhizosphere environments which differed significantly in their bacterial, pseudomonad, fungal and oomycete communities. Cluster analysis of PCR-DGGE fingerprints of fungal and pseudomonad rhizosphere community DNA revealed two distinct clusters. For both analyses, soil sampled from the rhizosphere of the two higher yielding rootstock genotypes clustered together, while the lower yielding rootstock genotypes also clustered together. These results suggest that the fungal and pseudomonad communities that have developed in the rhizosphere of the different rootstock genotypes may be one factor influencing tree growth and yield at this apple replant site.  相似文献   
20.
与CK相比,施用保水剂对‘紫花’海棠、乌桕、红叶石楠、梓树叶片的结构性状(叶面积、叶绿素含量、比叶面积、气孔导度)和功能性状(光合速率、蒸腾速率、水分利用效率)均有显著影响。4 种供试植物在高温干旱环境下,0.1%用量保水剂能显著改善叶片结构和功能性状。而随保水剂用量的继续增加,4 种植物的叶性状变化趋势并不一致,其中在0.2%保水剂用量下,红叶石楠和梓树叶面积、叶绿素含量、比叶面积、气孔导度、光合速率、蒸腾速率继续显著高于CK或0.1%用量,在0.3%用量下,2 种植物上述指标大多接近于0.2%用量,而‘紫花’海棠和乌桕在0.2%~0.3%用量下已显著下降到接近CK水平。这表明,红叶石楠和梓树比‘紫花’海棠和乌桕较能适应水分较多的环境。而‘紫花’海棠和乌桕水分利用效率在CK条件下显著增大,则表明两者较能适应干旱环境。4 种植物比叶面积在CK和不同保水剂用量下的显著变化表现出适宜水分条件下植物获取资源促进生长的能力和水分胁迫下的适应性。  相似文献   
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