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1.
猕猴桃自然居群SSR遗传变异的空间自相关分析   总被引:12,自引:2,他引:10  
本研究采用空间自相关分析方法对同域分布的中华猕猴桃(Actinidiachinensis)和美味猕猴桃(A.deliciosa)自然居群SSR遗传变异的空间结构进行了研究,以探讨猕猴桃自然居群遗传变异的分布特征。选用的9对SSR引物在两物种中共扩增出104个等位基因。选择频率在20–80%的SSR等位基因,运用等样本对频率方法分别对同域分布的中华猕猴桃和美味猕猴桃各1个居群及其中华/美味猕猴桃复合居群进行了空间自相关系数Moran’sI值计算。结果表明:中华猕猴桃和美味猕猴桃的遗传变异在居群内均存在着一定程度的空间结构,尽管近半数或半数以上的等位基因在居群内表现为随机分布的空间模式,但也有相当比例(29.6–48.0%)的等位基因在种内居群中和复合居群中(河南西峡51.0%,陕西商南44.7%)呈现渐变、衰退、双向衰退或侵扰模式。而且其居群内遗传变异的空间分布规律,不论是在种内还是复合居群中都基本一致:相距在100m以内,特别是30m范围内的个体间的等位基因表现出显著性的正相关,但随着地理距离的增大逐渐显示出负相关,说明猕猴桃属植物的有效传粉距离可能在100m左右,种子散播主要集中在30m的近距离内。猕猴桃自然居群遗传变异的空间结构是其传粉和种子散播等生物学特性与生境共同作用的结果,其中种子近距离的散播、花粉传播的有限距离及人为干扰是最主要的因素。本研究结果揭示了这两个近缘物种居群遗传变异的空间分布特征及相互关系,有助于进一步探讨猕猴桃属植物的遗传变异、居群扩散及其地理系统发育进化等方面的规律,并为制定相应的保育策略和措施提供基础数据和科学依据。  相似文献   
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中华猕猴桃和美味猕猴桃的倍性变异及地理分布研究   总被引:2,自引:0,他引:2  
根据已有的猕猴桃自然地理分布资料,通过对中华猕猴桃(Actinidia chinensis)和美味猕猴桃(A.deliciosa)野外分布居群的详细调查,利用流式细胞技术对我国西部高原台地向中东部丘陵平原过渡地带6个纯中华猕猴桃、1个纯美味猕猴桃和5个中华/美味猕猴桃同域分布居群共276个个体的倍性进行了检测。结果表明:(1)中华猕猴桃存在二倍体和四倍体,美味猕猴桃存在四倍体、五倍体和六倍体;(2)中华猕猴桃和美昧猕猴桃在经度和纬度的分布上存在显著差异(P〈0.05),中华猕猴桃在经度上偏东分布而美味猕猴桃偏西,纬度分布上中华猕猴桃偏南而美味猕猴桃偏北;而且不同倍性小种在经、纬度分布上呈现显著差异(P〈0.05),二倍体、四倍体、六倍体的分布在经度上依次从东到西、纬度上从南到北;(3)中华猕猴桃和美味猕猴桃不同倍性小种的海拔分布存在显著性差异(P〈0.05),二倍体小种分布海拔最低,四倍体小种次之,六倍体小种海拔分布最高,但通过LSD分析四倍体个体和六倍体个体在海拔分布上不存在显著差异(P〉0.05)。通过对中华/美味猕猴桃这两种具有重要经济价值的果树的倍性变异及地理分布的探讨,提出了猕猴桃倍性小种分布的上述规律并给猕猴桃种质资源收集、评价、创新和可持续利用方面提供了初步的研究基础,尤其是为我国猕猴桃新品种选育提供了基础数据和科学依据。  相似文献   
3.
在春季田间条件下,我们对美味猕猴桃品种米良1 号(Actinidia deliciosa cvMiliang-1)的光-光合特性与净光合速率日变化及其与环境因子的关系进行了初步研究.结果表明美味猕猴桃米良1 号在适宜的环境条件下(气温34 ℃,相对湿度62% ),同化CO2 的光合速率达到17.37~18.69 μm olm - 2s- 1,但是在高温和干旱条件下(气温41℃,相对湿度30% ),其光合能力降低到7.32 μm olm - 2s- 1.该品种的光饱和点与光补偿点分别为1 100 和20 μm olm - 2s- 1, 表明是一种阴性偏阳的树种. 5 月初的晴天,美味猕猴桃米良1号的净光合速率日变化呈双峰曲线型,第一高峰出现在上午10∶00,18.65 μm olm - 2s- 1,午间13∶00 剧降到3.15 μm olm - 2s- 1,下午16∶00 出现第二高峰,其值为10.35 μm olm - 2s- 1. 在测定净光合速率的同时,还对田间条件下环境因子如光照、气温、空气湿度与CO2浓度以及植物叶表面温度与蒸腾速率日变化等进行了监测,用多元线形回归的方法分析了环境因子对猕猴桃光合作用日变化的影响  相似文献   
4.
Most plants are constructed from repeating modular units such as phytomers, merophytes, and cell packets. Even an organism as simple as the filamentous cyanobacterium Anabaena shows recurrent patterns of differentiated cellular structures, notably with respect to its heterocysts. These examples reflect the inherent rhythms established within developmental processes of living organisms. In the present article, attention is paid to repetitious production of idioblasts—isolated cells, or clusters of cells, with an identity different to that of neighbouring cells from which they are derived. In higher plant root tissues, idioblasts are contained within cell packets that grow up from mother cells during the course of a number of cycles of cell production. The heterocysts of Anabaena are also discussed; they, too, are a type of idioblast. The idioblasts of root tissues originate as small cells which result from unequal cell divisions. Such divisions are usually the final ones within a cell packet which has already undergone a number of division cycles and are characteristically located at one or both ends of a packet. The packet end walls are suggested to have a role in regulating division asymmetry. Idioblastic systems discussed are root cortical trichosclereids and diaphragm cells; in their earliest stage, the cells from which lateral root primordia arise are also considered as clusters of idioblasts because they, too, are the products of asymmetric divisions of pericyclic mother cells. The division patterns of all these idioblastic systems were modelled in a consistent way using L-systems, with the assumption that the age of a cell-packet end wall plays a special role in cell determination. This article is dedicated to Vsevelod Ya. Brodsky, doyen of Russian studies of rhythms in cell division and development, who celebrates his 80th birthday on August 4, 2008 This article was presented in original.  相似文献   
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本文报道美味猕猴桃(Actintdia delictosa cv.Hayward)(6x)和毛花猕猴桃(A.eria-ntha)(2x)杂交当代种子的胚胎学分析和胚援救的结果:1.根据杂交种子外部形态和胚胎发育程度,区分为正常的和败育的两类,其比率接近1:1。正常种子的胚发育分化正常,且含有适量胚乳。败育种子中,除少数不含胚和胚乳外,绝大多数种子的胚发育终止于球形、心形和早子叶阶段,胚体畸形。胚乳处于消失或完全解体。2.在被试8组培养基中,最适合胚萌发和生长的是:MS+IAA0.5ppm+GA_30.5ppm,MS+2ip2ppm+IAA0.5ppm+GA_30.5ppm和 MS+2ip2ppm+GA_30.5ppm。适于实生苗生长的培养基为 MS+GA_30.5ppm 和 MS 培养基。在 MS+BAP2ppm 和 MS+IAA0.5ppm+GA_30.5ppm 培养基上,一些正常种子和少数不正常种子胚的下胚轴直接形成了许多不定芽,从而诱导产生了更多的杂种植株。但是在MS十BAP2ppm+GA_30.5ppm,MS+BAP2ppm+IAA0.5ppm 和 MS+2ip2ppm+GA_30.5ppm培养基上,虽然胚产生了愈伤组织,但都未分化出器官。杂种实生苗根尖细胞近半数的含有近4倍性染色体数(4x=116),约半数为其他倍性。  相似文献   
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The cytokinin content in fruit tissue of the kiwifruit ( Actinidia deliciosa [A. Chev.] C. F. Liang et A. R. Ferguson var. deliciosa cv. Hayward) was monitored during fruit development to identify which cytokinins were present and if they were linked with specific stages of fruit growth. Cytokinins were isolated and purified by column chromatography and high-performance liquid chromatography and quantified by radioimmunoassay. A novel HPLC step utilising an amine column was successfully introduced as a preparative step in the separation of the O - and 9-glucosides from the free bases and ribosides. The radioimmunoassay results were validated, and the different cytokinins identified, by gas chromatography-mass spectrometry. Cytokinins detected in fruit included the cytokinin free bases, zeatin and isopentenyladenine, their ribosides, nucleotides and both O - and 9-glucosides. Both qualitative and quantitative changes of the cytokinins occurred during fruit development. A decrease in cytokinin concentration occurred after anthesis (from 342 pmol g−1 fresh weight at anthesis to 41 pmol g−1 fresh weight 27 days after anthesis). A large increase in cytokinin concentration and content per fruit occurred as the fruit reached commercial maturity (to 1900 pmol g−1 fresh weight). Individual cytokinins showed quite different patterns. Zeatin, in particular, showed a peak in concentration (13 pmol g−1 fresh weight) 11 days after anthesis that correlated with the beginning of the cell division phase of fruit growth. The accumulation of cytokinin (mostly zeatin riboside or zeatin nucleotide) in mature fruit may be of significance for the postharvest storage of kiwifruit fruit.  相似文献   
10.
猕猴桃属种间体细胞杂种   总被引:10,自引:0,他引:10  
利用PEG融合方法,分别进行了中华猕猴桃(Actinidia chinensis var.chinensis)(2n=2x=58)子叶愈伤组织来源的原生质体与美味猕猴桃(A.deliciosa var.deiciosa)(2n=6x=174)子叶愈伤组织原生质体、以及狗枣猕猴桃(A.kolomikta)(2n=2x=58)叶肉原生质体种间原生质体融合。结果表明:中华猕猴桃与美味猕猴桃融合的1个克隆和中华猕猴桃与狗枣猕猴桃融合的4个克隆的RAPD谱带分别具有双亲特异的DNA谱带;经流式细胞仪分析,前者细胞核倍性推测为8倍体,后者细胞核为3倍体、4倍体和5倍体。初步鉴定这5个克隆是猕猴桃属种间体细胞杂种。  相似文献   
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