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1.
外生菌根菌不同接种方法对樟子松苗木生长的影响   总被引:1,自引:0,他引:1       下载免费PDF全文
 以提高外生菌根真菌对樟子松(Pinus sylvestris var. mongolica)苗木促生长效果为目的, 在前期研究的基础上, 采用菌株配对培养的方法对获得的樟子松外生菌根真菌进行混合接种菌株组合筛选; 采用苗木截根-菌液浸根和沟施接种方法分别对2年生和3年生樟子松苗木进行野外单接种及混合接种。研究外生菌根真菌不同接种方法、菌株单接种及混合接种对樟子松苗木生长的影响。试验结果表明: 供试菌株及菌株组合对樟子松苗木生长均有一定的促进作用。菌株GT005和菌株035为供试菌株中对樟子松苗木促生长效果最佳的菌株。采用苗木截根-菌液浸根方法接种2年生樟子松苗木130 d, GT005接种的苗木高生长提高54%, 地径生长提高15%, 过氧化氢酶活性提高48%, 而根系活力降低3%; 菌株035接种的苗木高生长提高42%, 地径生长提高56%, 过氧化氢酶活性提高47%, 根系活力提高11%。沟施接种方法接种3年生樟子松苗木100 d, GT005接种苗木高生长提高10%, 地径生长提高15%, 过氧化氢酶活性提高90%, 而根系活力降低34%; 菌株035接种苗木高生长提高7%, 地径生长提高9%, 过氧化氢酶活性提高6%, 而根系活力降低46%; 菌株组合044/GT001和GT001/GT005 接种的苗木高生长仅比对照提高3.47%和2.07%, 而菌株组合 044/025 和044/009 接种的苗木高生长低于对照; 混合接种的苗木其地径生长高于对照0.16%~7.98%。综上所述, 苗木截根-菌液浸根接种方法对苗木的促生长效果显著高于沟施接种方法; 外生菌根菌高效菌株与一般菌株混合接种会弱化高效菌株自身接种效果; 苗木过氧化氢酶活性、苗木根系活力与苗木的生物量间无相关性。  相似文献   

2.
外生菌根菌对樟子松苗木生长的影响   总被引:2,自引:0,他引:2  
通过菌种野外采集、分离培养、纯化及室内人工接种试验,获得9株樟子松外生菌根菌。采用苗木截根—菌剂浸根方法,对2年生樟子松移床苗进行外生菌根菌野外单接种试验,以接种无菌液体培养基的苗木作为对照,研究外生菌根菌单接种对樟子松苗木生长的影响。野外单接种试验表明,9株外生菌根菌对樟子松苗木均有一定的促生长效果。接种130 d,除菌株010外,其他菌株均可提高樟子松苗高23%以上。其中,接种菌株GT005的苗高提高54.24%;接种菌株035、009、LH004及GT001的苗高分别提高41.53%、36.44%、35.59%和35.59%。菌株035、LH004、025、010和GT001可使苗木地径提高20%以上,其中菌株035提高地径56.31%,菌株LH0040、25分别提高39.93%和29.01%。除接种菌株010的苗木外,接种其他菌株的樟子松苗木过氧化氢酶活性均高于对照30.23%~48.37%。接种菌株004的苗木根系活力最强,高于对照39.17%;接种菌株GT005和010的苗木,根系活力低于对照;接种其他菌株的苗木根系活力高于对照2.5%~16.67%。接种菌株GT005的苗木的叶绿素含量最高,高于对照20%以上。9个菌株均可用于樟子松苗木生产中。樟子松苗木的过氧化氢酶活性、根系活力与苗木的生物量间无相关性。  相似文献   

3.
红皮云杉外生菌根菌对苗木生长的影响   总被引:4,自引:0,他引:4  
宋瑞清  吴克 《微生物学报》2005,45(6):910-914
2000年8~10月自大兴安岭新林林业局和兴隆林业局采集各种林型下的伞菌担子果,进行分离培养、纯化,获得36个菌株。经对红皮云杉室内接种试验获得6个可与红皮云杉共生形成外生菌根的菌株。室内接种试验结果表明,在红皮云杉播种苗上接种菌根菌的时期应在出苗后30d左右。菌根形成的适宜温度为20℃左右。筛选得到的6个菌株对红皮云杉幼苗的生长有明显的促进作用。接种林地菇(Agaricus silvaticus)、031和L15菌株的苗木叶绿素a含量明显高于其他菌株和对照;接种009、004、林地菇和L15菌株的苗木叶绿素b含量也明显高于其他菌株和对照;接种林地菇、L15、031、009和025菌株的苗木与对照苗木在重量上差异显著;其中接种林地菇和L15菌株的苗木比对照苗木分别增加了19.23%和23.08%;接种6个菌株的苗木与对照苗木高度比较差异非常显著,接种林地菇和L15菌株的苗木与对照相比分别增加17.83%和16.37%。室外接种结果表明,接种林地菇的苗木高生长最好,接种70d高于对照9.24%;接种菌株L15的苗木地径生长最好,接种70d高于对照9.92%;接种菌株009的苗木侧根数最多,接种70d高于对照51.91%;接种菌株009的苗木主根最长,接种70d高于对照3.36%;而接种菌株031的苗木全株感染菌根率最高,接种70d高于对照13.90%;接种菌株031的苗木光合作用最强,高于对照20.02%。从几项主要的指标综合来看,菌株L15、菌株009和菌株031是有潜在研究和应用价值的优良菌株。  相似文献   

4.
AMF及Frankie混合接种对沙棘生长效应的研究   总被引:4,自引:0,他引:4  
报道了丛枝菌根真菌Glomus mosseae和Frankia混合接种对沙棘苗期的接种效应。研究发现,丛枝菌根真菌和Frankia之间存在联合增效作用,混合接种对沙棘苗木具有显的促生长作用,明显优于单接种处理苗木。  相似文献   

5.
报道了丛枝菌根真菌GlomusmosseaeFrankia混合接种对沙棘苗期的接种效应。研究发现 ,丛枝菌根真菌和Frankia之间存在联合增效作用 ,混合接种对沙棘苗木具有显著的促生长作用 ,明显优于单接种处理苗木。  相似文献   

6.
外生菌根真菌对杉木的接种效应   总被引:2,自引:0,他引:2  
对商南县2年生杉木苗木进行乳牛肝菌(Suillus bovines)、褐环乳牛肝菌(Suillus luteus)和褐黄牛肝菌(Boletus luridus)3种外生菌根真菌的接种试验.结果显示,外生菌根真菌对杉木苗木成活率、苗高和地径生长均有明显的促进作用,能明显提高苗木的菌根化水平,增加苗木体内叶绿素含量,促进其游离脯氨酸含量的累积,降低丙二醛含量.对不同坡向杉木苗木各项生长指标的分析显示,在杉木人工造林中,阳坡的综合效应明显优于阴坡.乳牛肝菌和褐黄牛肝菌可作为一种生物肥料,在杉木人工造林中应用.  相似文献   

7.
对沙土中的大豆接种丛枝菌根真菌及丛枝菌根真菌与解磷菌和根瘤菌联合接种, 动态监测大豆的生长状况和营养吸收情况。结果表明, 在沙土中, 根瘤菌与丛枝菌根真菌的组合效应对豆科植物营养元素的改善最为有效。接种丛枝菌根真菌以及丛枝菌根真菌与其他微生物联合应用对宿主矿质营养吸收尤其是磷吸收有明显的促进作用, 种植30 d、45 d 和64 d 接菌处理植物叶片的平均全磷含量比对照分别高1.45%、73%和56%。接种微生物使植物从土壤中吸收氮、磷、钾元素的强度比对照高, 接菌植物根际土壤养分浓度低于对照。接菌植物生物量显著高于对照, 单接种丛枝菌根真菌处理、双接种丛枝菌根真菌与解磷菌、双接种丛枝菌根真菌与根瘤菌以及丛枝菌根真菌、解磷菌与根瘤菌三种菌剂混合处理的总生物量分别比对照高出181%、134%、153%和89%。丛枝菌根真菌与解磷菌和根瘤菌三种菌剂混合接种对植物的促生作用并不明显。  相似文献   

8.
接种菌根真菌对青冈栎幼苗耐旱性的影响   总被引:3,自引:0,他引:3  
利用丛枝菌根真菌摩西球囊霉(Glomus mosseae)、根内球囊霉(Glomus intraradices)和外生菌根真菌彩色豆马勃(Pisolithus tinctorius)对石漠化地区造林树种青冈栎(Cyclobalanopsis glauca)幼苗进行接种试验。在大棚盆栽条件下模拟土壤干旱胁迫,研究菌根真菌对青冈栎生长和耐旱性的影响。结果表明:在土壤干旱条件下,接种菌根处理植株生物量显著高于未接种处理(P0.05),菌根依赖性随土壤水分含量降低而升高;未接种处理植株叶绿素含量在土壤干旱条件下显著降低(P0.05),除接种Pisolithus tinctorius处理外,其它接种处理叶绿素含量无显著变化。土壤干旱使植株体内脯氨酸和可溶性糖含量上升,在中度干旱条件下,接种处理可溶性糖含量均显著高于对照处理,接种Glomus intraradices、Pisolithus tinctorius处理脯氨酸含量显著低于对照(P0.05);在重度干旱条件下,接种Glomus mosseae和Glomus intraradices处理可溶性糖含量显著高于对照处理(P0.05),而相应的脯氨酸含量显著低于对照处理。当土壤水分含量在田间持水量55%—65%时,接种处理植株SOD、POD和CAT酶活性显著高于未接种处理(P0.05),在土壤水分含量降至35%—45%时,Glomus mosseae和Glomus intraradices处理SOD酶活性显著高于对照,并且所有接种处理POD酶活性均显著高于对照。此外,在水分干旱条件下,植株全磷和全钾含量也显著高于未接种处理(P0.05)。研究表明,丛枝菌根真菌和外生菌根真菌均能够侵染青冈栎幼苗根系;在干旱胁迫条件下,接种菌根真菌能够提高青冈栎植株生物量、抗氧化酶活性、增加植株可溶性糖含量和促进植株养分吸收,提高植株耐旱性,从而使青冈栎幼苗在岩溶干旱环境下更容易存活。  相似文献   

9.
采用盆栽实验研究了小叶白蜡(Fraxinus sogdiana)接种4种外生菌根真菌(E1-毛边滑锈伞(Hebeloma mesophaeusm)、E2-劣味乳菇(Lactarius insulsns)、E3-松塔牛肝菌(Stro-bilomyces floccopus)和E4-丝膜菌(Cortinarius russus)对沈抚灌区土壤石油烃的降解效果。结果表明:在白蜡不同组合双接种及混合接种中,以混合接种对土壤石油烃的降解效果最好,降解率比对照提高23.6%;其次为双接种中的E1E3和E2E4组合,降解率分别比对照提高21.0%和12.7%。接种外生菌根真菌可促进白蜡生长,尤其可明显提高其根生物量,增加侧根数,接种E1E3、E2E4和混合菌使白蜡侧根数分别增加了100%、67%和81%。相关分析表明,石油烃降解率与白蜡的侧根数呈显著相关,可能是其降解率提高的主要原因。  相似文献   

10.
高效降解石油外生菌根真菌的室内筛选   总被引:1,自引:0,他引:1  
对7个外生菌根真菌菌株在不同石油浓度培养基中的生长及其对石油的降解作用进行了研究。结果表明:(1)不同菌株在同一石油浓度培养基中生长速度不同,同一菌株在不同石油浓度培养基中的生长速度亦不同。菌株010和菌株025在不同石油浓度培养基中生长速度均较其他菌株快。菌株010的菌丝干重随着石油浓度的增加而增加,当石油质量浓度为500 mg/L时,菌丝干重达到最大值,高于对照5.27%,石油对其生长产生了促进作用;当石油质量浓度为700 mg/L时,菌丝干重低于对照,随着石油质量浓度的升高,菌株生长呈下降趋势。石油质量浓度为100 mg/L时,菌株025生长最慢,菌丝干重低于对照9.1%。随着石油浓度的增加,菌株生长加快,当石油质量浓度为500 mg/L时,菌丝干重高于对照;当石油质量浓度为700 mg/L时,菌株025菌丝干重最高,高于对照25.65%。随着石油浓度的再度升高,菌株生长呈下降趋势。(2)不同菌株在同一石油浓度下对石油的降解能力不同,同一菌株在不同石油浓度下对石油的降解能力亦不同。菌株025对石油的降解能力最强,对石油的降解能力随着石油浓度的升高而提高。当培养基中石油质量浓度为900 mg/L时,菌株025对石油的降解率最高,达到73.65%。(3)菌株0100、09、035、LH004的菌丝生物量与对石油的降解能力呈正相关。  相似文献   

11.
The effectiveness of ectomycorrhizal inoculation at the tree nursery seedling production stage on growth and survival was examined in jack pine (Pinus banksiana) and white spruce (Picea glauca) planted in oil sands reclamation sites. The seedlings were inoculated with Hebeloma crustuliniforme strain # UAMH 5247, Suillus tomentosus strain # UAMH 6252, and Laccaria bicolor strain # UAMH 8232, as individual pure cultures and in combinations. These treatments were demonstrated to improve salinity resistance and water uptake in conifer seedlings. The field responses of seedlings to ectomycorrhizal inoculation varied between plant species, inoculation treatments, and measured parameters. Seedling inoculation resulted in higher ectomycorrhizal colonization rates compared with non-inoculated control, which had also a relatively small proportion of roots colonized by the nursery contaminant fungi identified as Amphinema byssoides and Thelephora americana. Seedling inoculation had overall a greater effect on relative height growth rates, dry biomass, and stem volumes in jack pine compared with white spruce. However, when examined after two growing seasons, inoculated white spruce seedlings showed up to 75 % higher survival rates than non-inoculated controls. The persistence of inoculated fungi in roots of planted seedlings was examined at the end of the second growing season. Although the inoculation with H. crustuliniforme triggered growth responses, the fungus was not found in the roots of seedlings at the end of the second growing season suggesting a possibility that the observed growth-promoting effect of H. crustuliniforme may be transient. The results suggest that the inoculation of conifer seedlings with ectomycorrhizal fungi could potentially be carried out on a large scale in tree nurseries to benefit postplanting performance in oil sands reclamation sites. However, these practices should take into consideration the differences in responses between the different plant species and fungal strains.  相似文献   

12.
植物体和植物根际均是复杂的微生态系统,其内栖息着关系复杂的共生微生物,共同影响植物的生长发育.为探讨混合接种真菌与细菌对兰科植物生长的影响,筛选出真菌与细菌的优势促生组合,本研究选取经分离、筛选获得的4株促生内生真菌(铁皮石斛内生真菌C22、C35,美花石斛内生真菌L12、L28)和3株促生内生细菌(铁皮石斛菌内生细菌TX-7、TX-16、TX-19),以"真菌+细菌"的方式混合接种于铁皮石斛无菌组培苗中,共培养120 d.结果获得了3组优势组合:C22+TX-19、L28+TX-16和L28+TX-19,它们对铁皮石斛组培苗的生长均表现出正效应,其中C22+TX-19和L28+TX-19对促进组培苗生物量的增长具有协同效应,L28+TX-19对提高组培苗的根分枝率具有协同效应,3个组合对增加组培苗的分蘖数和根尖数均表现为累加效应.研究结果表明,内生真菌与内生细菌的共同作用可显著促进铁皮石斛的生长,混合接种有可能更大地发挥微生物的效能.  相似文献   

13.
不同类型菌根菌对烟草幼苗生理代谢的影响   总被引:13,自引:2,他引:11  
在自然土壤中以VA菌根菌接种烟草幼苗,测得叶片中N、P、K、叶绿素含量,硝酸还原酶活性及蛋白质含量均高于对照;与对照相比,接种的幼苗中丙二醛(MDA)、过氧化氢(H2O2)含量减少,超氧物歧化酶(SOD)、过氧化氢酶(CAT)、过氧化物酶(POD)活性增加,同时以外生菌根菌两个菌株分别接种,与所测指标变化趋势相同,而且其中的Calvatia lilacina菌株超过VA菌根菌接种的效果。  相似文献   

14.
Interactions between two ectomycorrhizal fungal species, Piloderma croceum Erikss. and Hjortst. and Piloderma sp. 1 (found to colonise spruce roots and wood ash granules in the field), were investigated in wood ash amended substrates. The comparative ability of these fungi to colonise roots of non-mycorrhizal spruce (Picea abies (L.) Karst.) seedlings was studied in relation to factorial combinations of wood ash and N fertilisation. Non-mycorrhizal spruce seedlings (bait seedlings) were planted together with spruce seedlings colonised by P. croceum or Piloderma sp. 1. The growth substrate was a sand-peat mixture with wood ash or no ash and supplied with two levels of N, so that four substrate combinations were obtained. Piloderma sp. 1 mycelia colonised around 60% of the fine roots of bait seedlings in ash treatments regardless of N level and around 20-26% in treatments without ash. P. croceum only colonised 8% of the root tips in the presence of ash but 56% of the root tips in the low-N treatment without ash. However, in the high-N treatment without ash the colonisation level was reduced to around 30%. Total numbers of root tips per seedling did not vary significantly between the treatments. Possible reasons for the competitive advantage of Piloderma sp. 1 in wood ash fertilised substrate are discussed.  相似文献   

15.
丛枝菌根真菌对牡丹生长及相关生理指标的影响   总被引:7,自引:1,他引:6  
以采自山东省菏泽牡丹园的牡丹'凤丹'种子为试材,采用盆栽的方法研究了接种丛枝菌根(Arbuscular mycorrhizal,AM)真菌Glomus mosseae、Glomus versiforme和Glomus intraradices对牡丹幼苗生长及生理生化特性的影响.结果表明:(1)不同AM真菌的侵染率不同,并以G.mosseae的侵染率最高,为48.3%;(2)AM真菌能够促进牡丹幼苗生长,接种G.mosseae的植株干重比对照显著提高了69.5%;(3)AM真菌能够提高牡丹的叶绿素、可溶性糖、可溶性蛋白、矿质元素(N、P、K)含量和硝酸还原酶活性,并对可溶性蛋白含量和硝酸还原酶活性的影响达显著水平.(4)植株总干重与菌根侵染率、硝酸还原酶活性、叶绿素含量呈极显著正相关,与可溶性糖、可溶性蛋白含量呈显著正相关.研究发现,G.mosseae是最适宜牡丹接种的优良菌种.  相似文献   

16.
There is phenotypic variation among individual trees of interior Douglas-fir (Pseudotsuga menziesii var. glauca [Beissn.] Franco) in their resistance to defoliation by the western spruce budworm (Choristoneura occidentalis Freeman). We evaluated the potential role of ectomycorrhizal fungi in determining this resistance using half-sib seedlings derived from parent trees that are resistant versus susceptible to budworm defoliation in the field. The seedlings were inoculated with Laccaria bicolor ectomycorrhizal fungi, fertilized, or untreated. Approximately 48 d after treatment, late-instar larvae from a nondiapausing laboratory colony of C. occidentalis were allowed to feed on pairs of resistant versus susceptible seedlings for 1 wk. Chemical analyses of current-year shoots for nitrogen (N), phosphorus (P), magnesium (Mg), and zinc (Zn) indicated that the fungus increased foliar concentrations of P and Mg in resistant seedlings, but it did not increase their growth rate. However, L. bicolor had no effect on foliar concentrations of P or Mg in susceptible seedlings, even though seedling growth rates increased slightly in response to the inoculation. L. bicolor had no effect on foliar levels of N or Zn in any of the seedlings. As expected, fertilization increased levels of N and P in the foliage of both resistant and susceptible seedlings, but it did not affect levels of Mg and Zn. Surprisingly, the fertilizer treatment had no effect on seedling growth rates. Despite these differences, late-instar budworms showed no feeding preference among untreated, mycorrhizal, or fertilized seedlings. The fact that seedlings from resistant versus susceptible Douglas-firs responded differently to the L. bicolor treatment lends preliminary support to the hypothesis that ecotmycorrhizae might play a role in Douglas-fir resistance to damage from the western spruce budworm. Finally, differences in foliar concentrations of N and P among untreated seedlings from different maternal trees suggested that foliar nutritional chemistry is influenced by the tree's genotype.  相似文献   

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