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51.
以白桦成熟合子胚为外植体,建,3-7白桦合子胚快速不定芽诱导体系:合子胚经消毒纵切后,在培养基WPM+2.0mg·L-16-BA+0.2mg·L-1NAA中,可直接诱导形成不定芽,诱导率最高为93.3%,不定芽诱导数为8.7个;WPM+4.0mg·L-1TDZ上也有较好的诱导效果,不定芽诱导率为90.2%,不定芽诱导数为7.6个,这表明WPM+2.0mg·L-1 6-BA+0.2mg·L-1 NAA是白桦成熟合子胚不定芽诱导的较优培养基。NAA能有效促进嫩茎生根,其最佳浓度为0.2mg·L-1。  相似文献   
52.
Aquatic plants develop strong fragment propagation and colonization ability to endure the natural disturbances. However, detailed research of ability to endure the natural disturbances has been lacking to date. Therefore, reproduction (shoot) and colonization (root) of shoot fragments of Potamogeton crispus L. with or without apices were investigated for the effect of apical dominance, and the growth of decapitated shoot fragments at three lengths (2, 4, 6 cm) was compared. Meanwhile, fragment propagation at levels of bud position was studied for bud position effect after escaping from apical dominance. The results showed significant increases occurred in the outgrowth of lateral branches on fragments decapitated compared with the fragments with apices, implying that apical dominance exists. Different lengths of fragments showed little difference in biomass allocations, but significant differences were noted in their propagation. Meanwhile, the effect of bud position was verified, due to the significant difference of average reproduction per node among the three length groups. Thus, the present study has made progress in the current understanding of aquatic plant dispersion among natural systems and contributes to improve methods of in vitro propagation for re-implantation purposes.  相似文献   
53.
色彩对茶园昆虫的引诱力   总被引:2,自引:0,他引:2  
为评估色板用于监测和诱捕茶园害虫的可能性,于10月份茶园昆虫盛发期在绍兴和杭州分别选有机、无公害茶园,同时使用10种粘性色板大面积诱捕茶园昆虫和蜘蛛.每种色彩重复10次.结果表明:(1)在两片供试茶园捕获的目、科和种类基本相同.蜘蛛很少.24 h后,绍兴茶园中10种色板共捕获9目53科10200个昆虫和蜘蛛;72 h 后杭州茶园中捕获10目63科21526个昆虫和蜘蛛.(2)同翅目为优势类群.绍兴茶园中,纯白色板诱捕的同翅目种数占该色板捕获的总物种数的15.2%、同翅目个体数占该色板捕获的总个体数的34.1%;其它9种色板诱捕同翅目种数占各自捕获总种数的21.2%~31.0%、同翅目个体数占各自捕获总个体数的45.8%~75.4%.杭州茶园中,纯白、湖蓝和天蓝色板诱捕同翅目种数小于各自捕获的总种数的20%、同翅目个体数小于各自捕获的总个体数的51%;其它7种色板诱捕同翅目种数大于各自捕获的总种数的22.7%,果绿和墨绿诱捕的同翅目个体数占各自诱捕的总个体数的48.6%和49.8%,桃红、素馨黄、土黄、芽绿和桔黄诱捕的同翅目个体数占各自诱捕的总个体数的55.5%~78.1%.绍兴茶园中,素馨黄和芽绿诱捕的粉虱、假眼小绿叶蝉和广翅蜡蝉分别占两种色板诱捕的总个体数的67.7%和50.1%;杭州茶园中,素馨黄和芽绿诱捕的这几种害虫总数分别占二者诱捕的总个体数的70.7% 和59.2%.(3) 捕获的主要是害虫,绍兴茶园中诱捕的害虫数是天敌的1.63倍,杭州茶园中诱捕的害虫数是天敌的2.23倍.(4)色板之间引诱的种数和个体数差异显著.素馨黄和芽绿诱捕的种数和个体数最多、被捕昆虫的群落多样性指数很小,对叶蝉、粉虱和蜡蝉的引诱力最强;土黄和桔黄诱捕的种数和个体数较多、多样性指数较小,对同翅目昆虫的引诱力较强;纯白色诱捕的种数和个体数居中、多样性指数最大,即诱捕的各种昆虫的个体数差别小;果绿、桃红、墨绿和湖蓝诱捕的种数和个体数明显较少、多样性指数也较小;天蓝色诱捕的种数和个体数最少.(5) 寄生蝇类偏嗜蓝色,缨小蜂类、茧蜂类和小蜂类偏嗜芽绿色.建议将素馨黄和芽绿色板与信息素组合,分别用于监测和诱捕叶蝉和粉虱.  相似文献   
54.
The freezing behavior of dormant buds in larch, especially at the cellular level, was examined by a Cryo-SEM. The dormant buds exhibited typical extraorgan freezing. Extracellular ice crystals accumulated only in basal areas of scales and beneath crown tissues, areas in which only these living cells had thick walls unlike other tissue cells. By slow cooling (5 °C/day) of dormant buds to −50 °C, all living cells in bud tissues exhibited distinct shrinkage without intracellular ice formation detectable by Cryo-SEM. However, the recrystallization experiment of these slowly cooled tissue cells, which was done by further freezing of slowly cooled buds with LN and then rewarming to −20 °C, confirmed that some of the cells in the leaf primordia, shoot primordia and apical meristem, areas in which cells had thin walls and in which no extracellular ice accumulated, lost freezable water with slow cooling to −30 °C, indicating ability of these cells to adapt by extracellular freezing, whereas other cells in these tissues retained freezable water with slow cooling even to −50 °C, indicating adaptation of these cells by deep supercooling. On the other hand, all cells in crown tissues and in basal areas of scales, areas in which cells had thick walls and in which large masses of ice accumulated, had the ability to adapt by extracellular freezing. It is thought that the presence of two types of cells exhibiting different freezing adaptation abilities within a bud tissue is quite unique and may reflect sophisticated freezing adaptation mechanisms in dormant buds.  相似文献   
55.
濒危植物珙桐的组织培养与植株再生   总被引:3,自引:0,他引:3  
以珙桐冬芽为材料进行组织培养和植株再生研究,结果表明:珙桐冬芽直接诱导丛生芽的最适培养基为WPM+NAA 0.2 mg·L-1+6-BA 3.0 mg·L-1+AC 2.0 g·L-1;珙桐带芽茎段增殖的适宜培养基为WPM+NAA 0.05 mg·L-1+6-BA 1.0 mg·L-1+GA3 2.0 mg·L-1+AC 2.0 g·L-1;生根最佳培养基为White+IBA3.0 mg·L-1+6-BA 1.0 mg·L-1+AC 2.0 g·L-1,在此条件下,根发育良好,植株健壮;组培苗炼苗后移栽,成活率可达80%。  相似文献   
56.
Clonal species are characterised by having a growth form in which roots and shoots originate from the same meristem so that adventitious nodal roots form close to the terminal apical bud of stems. The nature of the relationship between nodal roots and axillary bud growth was investigated in three manipulative experiments on cuttings of a single genotype of Trifolium repens. In the absence of locally positioned nodal roots axillary bud development within the apical bud proceeded normally until it slowed once the subtending leaf had matured to be the second expanded leaf on the stem. Excision of apical tissues indicated that while there was no apical dominance apparent within fully rooted stems and very little in stems with 15 or more unrooted nodes, the outgrowth of the two most distal axillary buds was stimulated by decapitation in stems with intermediate numbers of unrooted nodes. Excision of the basal branches from stems growing without local nodal roots markedly increased the length and/or number of leaves on 14 distally positioned branches. The presence of basal branches therefore prevented the translocation of root-supplied resources (nutrients, water, phytohormones) to the more distally located nodes and this caused the retardation in the outgrowth of their axillary buds. Based on all three experiments we conclude that the primary control of bud outgrowth is exerted by roots via the acropetal transport of root-supplied resources necessary for axillary bud outgrowth and that apical dominance plays a very minor role in the regulation of axillary bud outgrowth in T. repens.  相似文献   
57.
中国野生葡萄组织培养研究   总被引:11,自引:0,他引:11  
对中国野生山葡萄左山—1、左山—2、燕山葡萄燕山—1和秋葡萄平利—7的叶片、叶柄、茎段及单芽茎段进行了离体培养研究。诱导左山—1叶片分化出不定芽的培养基为MS BA 5.0mg/L NAA0.1mg/L,诱导率2.5%;诱导平利—7叶柄分化出不定芽的培养基为MS BA7.0mg/L NAA0.1mg/L,诱导率1.95%;诱导左山—1、燕山—1和平利—7茎段分化出不定芽的培养基与叶柄相同,但诱导率相对较高,分别为8.25%、4.88%和6.49%;应用这一培养基对平利—7、左山—2的单芽茎段进行培养,丛状不定芽的诱导率均为100%。不定芽继代培养基为MS BA0.5mg/L IBA0.2mg/L;生根培养基为1/2MS IBA0.1—0.2mg/L。  相似文献   
58.
Single-node leaf-bud cuttings of Schefflera arboricola Hayata and Stephanotis floribunda Brongn. were set and root formation, onset of axillary bud growth and plant height were measured. An increase in the number of roots in Schefflera, which was achieved with increasing cutting position on the stock plant (measured from top to base) or with increasing stem length below the node, accelerated the onset of axillary bud growth and resulted in an increase in plant height. Increasing the number of roots per cutting in Stephanotis through an increase in basal temperature also accelerated bud and shoot growth. Positional effects on root formation in Stephanotis showed no relationship with axillary bud growth and plant height. A positive relationship between number of roots per cutting and axillary bud growth was found among clones of Stephanotis . In general the results suggest that, with some exceptions, the onset of axillary bud growth is accelerated in cuttings as a result of accelerated root formation and a higher number of roots per cutting.  相似文献   
59.
Flower colour and cytochromes P450   总被引:8,自引:0,他引:8  
Flavonoids are major constituents of flower colour. Plants accumulate specific flavonoids and thus every species often exhibits a limited flower colour range. Three cytochromes P450 play critical roles in the flavonoid biosynthetic pathway. Flavonoid 3′-hydroxylase (F3′H, CYP75B) and flavonoid 3′,5′-hydroxylase (F3′5′H, CYP75A) catalyze the hydroxylation of the B-ring of flavonoids and are necessary to biosynthesize cyanidin-(red to magenta) and delphinidin-(violet to blue) based anthocyanins, respectively. Pelargonidin-based anthocyanins (orange to red) are synthesized in their absence. Some species such as roses, carnations and chrysanthemums do not have violet/blue flower colour due to deficiency of F3′5′H. Successful expression of heterologous F3′5′H genes in roses and carnations results in delphinidin production, causing a novel blue/violet flower colour. Down-regulation of F3′H and F3′5′H genes has yielded orange petunia and pink torenia colour that accumulate pelargonidin-based anthocyanins. Flavone synthase II (CYP93B) catalyzes the synthesis of flavones that contribute to the bluing of flower colour, and modulation of FNSII gene expression in petunia and tobacco changes their flower colour. Extensive engineering of the anthocyanin pathway is therefore now possible, and can be expected to enhance the range of flower colours.  相似文献   
60.
平阴玫瑰花芽分化期叶片内源激素的变化   总被引:15,自引:2,他引:13  
彭桂群  王力华 《植物研究》2006,26(2):206-210
对平阴玫瑰花芽分化期叶片甲醇提取物进行IAA、ZR、GA3、ABA的分离、纯化和测定。结果发现,所测的几种激素均表现出明显的变化规律,其中IAA和GA3在花芽分化期含量逐渐下降,且在分化临界期出现一低峰,而ZR和ABA则完全相反。同时经比较分析得出ABA/GA3, ABA/IAA,ZR/GA3,ZR/IAA也表现明显的变化规律,即比值总体趋势是逐渐提高,且均在分化临界期含量出现一飞跃,显然ABA/GA3,ABA/IAA,ZR/GA3,ZR/IAA在平阴玫瑰的花芽分化过程中起着重要的调控作用,由此推测,增加植物体内的ABA、ZR的含量或降低IAA、GA3的含量,都可以促进玫瑰的花芽分化;反之则抑制其花芽分化。  相似文献   
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