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1.
稻田固氮解磷解钾菌筛选及其复合菌剂对土壤培肥作用   总被引:1,自引:0,他引:1  
用固氮、解磷、解钾培养基,分别从稻田土壤中分离获得9个固氮菌株(A1-A9)、7个解磷菌株(B1-B7)和6个解钾菌株(C1-C6)。对各菌株固氮、解磷、解钾能力及水稻促生效果分析表明,最突出菌株分别为A5、B2、C5;各菌株等比例混合组成复合菌剂接入灭菌稻田土壤,30 d后可使土壤总氮、有效磷、速效钾分别增加21.32%、32.17%、45.57%;初步鉴定各菌株分别为固氮菌属(Azotobacter sp.)、假单胞菌属(Pseudomonas sp.)和芽孢杆菌属(Bacillus sp.)。复合菌剂处理稻田土壤,水稻苗高、鲜重、干重及植株全氮、全磷、全钾显著优于对照组,说明筛选菌株可在稻田土壤氮、磷、钾转换及培肥过程中起重要作用。  相似文献   

2.
烟草根际土壤中解钾细菌的分离与多样性分析   总被引:1,自引:0,他引:1  
土壤中含有丰富的钾元素,但主要以缓效态形式存在于钾长石或云母等硅酸盐矿物中,不能被作物直接吸收利用。解钾微生物能溶解硅酸盐矿物中的钾,提高土壤中作物可利用钾的含量,有望缓解我国钾肥短缺的现状。本研究利用选择性培养基,从烟草根际筛选钾细菌,基于16S rDNA序列分析烟草根际土壤解钾细菌的多样性,通过测定解钾细菌的解钾效能及对烟草的促生作用,筛选有应用潜力的优良解钾细菌菌株。结果表明,从四川、湖北和山东烟区烟草根际土壤分离获得的27株解钾细菌,在解钾固体培养上溶钾圈直径为0.11~0.30 cm。16S rDNA序列分析表明,烟草根际土壤解钾细菌主要包括变形菌门γ亚群(Gammaproteobacteria,85.18%)、变形菌门α亚群(Alphaproteobacteria,3.70%)、变形菌门β亚群(Betaproteobacteria,3.70%)、放线菌门(Actinobacteria,3.70%)和拟杆菌门(Bacteroidetes,3.70%),其中克雷伯菌属(Klebsiella)为优势菌属(66.67%)。27个菌株均有一定的解钾能力,解钾活性为0.59~4.40 mg.L–1。参试菌株均对烟草有一定的促生作用,利用解钾细菌菌液处理烟株20 d后,与对照相比,株高增加0.97%~38.64%,最大叶长增加4.40%~31.02%。本研究筛选出的菌株XF11、GM2、JM19和GL7具有较高的解钾活性和促进植物生长的能力,展现了良好的应用潜力。  相似文献   

3.
从铜矿废弃地重金属耐性优势植物根际土壤中分离筛选到两株抗高浓度Cu的细菌菌株HQN2和JYC17.对菌株HQN2和JYC17溶解难溶性Cu的作用进行了研究.结果表明:菌株HQN2和JYC17具有明显的溶解碳酸铜的能力,与接灭活菌对照相比,菌株HQN2和JYC17分别使培养液中水溶性Cu含量增加306%和136%,培养液的pH由初始的7.00分别降低到4.08和4.46.另外,Cu能促进供试菌株有机酸(葡萄糖酸、苹果酸和乙酸等)的合成.菌株HQN2和JYC17对土壤中难溶性Cu亦有明显的促溶作用.与接灭活菌对照相比,菌株JYC17和HQN2分别使土壤中交换态Cu含量增加110%和270%.经生理生化特征分析及16S rDNA序列分析,菌株HQN2和JYC17分别被鉴定为节杆菌属(Arthrobacter sp.)和微杆菌属(Microbacterium sp.).  相似文献   

4.
研究筛选滇重楼根际土壤解磷菌,提高滇重楼产量和品质,为其微生物菌肥的研发提供优良菌株。采集四川、云南、贵州中10个不同地区野生品和移栽品滇重楼根际土壤分离筛选高效解无机磷菌,通过钼锑钪比色法进行溶磷能力测定,结合生理生化和16S rDNA进行鉴定分析。结果表明,共分离纯化42株溶磷菌,发酵液中有效磷的含量为66.68~104.10 mg/L,其中属于芽孢杆菌属Z3-4菌株解无机磷能力最强,发酵上清液中有效磷的含量为104.10 mg/L、增磷量为38.55 mg/L、解磷率为37.03%。菌株Z3-4是一株具有高效解无机磷作用的细菌,可应用于生物菌肥的生产。  相似文献   

5.
棉花根际解钾细菌的生理活性和促生效果   总被引:4,自引:0,他引:4  
考察优良棉花根际解钾菌株K1111、K1114、K2115、K3105和K3205的溶磷、解钾、产铁载体和产吲哚乙酸等生理活性。将其接种到棉花根际,通过盆栽试验,研究5株菌株对棉花根系发育与生长的影响。结果表明,这5株菌的产铁载体能力均达到5+(极高量)水平;分泌吲哚乙酸的浓度在6.6~12.4μg/mL之间;同时具有很高的溶磷能力。接种5株菌株的棉花根系活力、株高和干重均显著高于不施钾肥的对照组,高于或相当于施钾对照组。  相似文献   

6.
为加快堆肥过程中秸秆纤维素的降解速率,本研究从玉米秸秆堆肥中分离纤维素分解菌,并通过测定羧甲基纤维素酶(CMCase)活力、滤纸条崩解能力及兼容性,筛选出优良菌株,进而构建复合菌系,并对降解性能进行评价。结果共获得29株纤维素分解菌,对其中的高效菌株进行配伍,构建了6组复合菌系。除复合菌系F外,其他复合菌系的滤纸酶活力均显著高于单一菌株(P<0.05),尤以复合菌系B(xw1、xw3、xw8)、D(xw16、xw21、xw31)的酶活力最高,分别为22.8、20.4 U·mL-1,比其中的最强单菌株xw3、xw21高出58.3%、68.6%,且所产酶具有耐高温(40~55℃)性。复合菌系B、D培养5 d可将滤纸条崩解为糊状,10 d内对秸秆的降解率达24.5%、21.9%,较单菌株xw8、xw31增加9.4和4.7个百分点。经16S rDNA分子鉴定,复合菌系B由微杆菌属(Microbacterium sp.)、类芽孢杆菌属(Paenibacillus sp.)组成,复合菌系D由芽孢杆菌属(Bacillus sp.)、类芽孢杆菌属(Paenibacillu ...  相似文献   

7.
为探讨干旱生境下植物根际促生细菌对植物抗旱能力的影响,本试验选择长期处于干旱环境的核桃(Juglans regia L.)根际土壤,利用小麦叶片保绿和萝卜子叶增重法选择4株最具有应用潜力的植物根际促生细菌,分别记为X60,X123,X128和L90。4株细菌分离物,并且均可产一定浓度的细胞分裂素。通过对细菌分离物进行形态学观察,生理生化测定、16S rRNA基因序列及系统发育树分析,分别将X60,X123,X128和L90鉴定为短波单胞菌属(Brevundimonas sp.)、假单胞菌属(Pseudomonas sp.)、不动杆菌属(Acinetobacter sp.)和芽孢杆菌属(Bacillus sp.)。核桃抗干旱能力结果表明,同不接种根际促生细菌处理相比,干旱生境下接种Bacillus sp.L90提高了核桃叶片的相对含水量,降低了相对电导率;此外,接种L90还提高了叶片光合速率和水分利用效率。虽然干旱生境下接种Brevundimonas sp.X60、Pseudomonas sp.X123和Acinetobacter sp.X128显著提高了核桃叶片的光合速率和蒸腾速率,但对核桃叶片的相对含水量、相对电导率和水分利用效率影响较小。以上结果表明,从干旱生境中筛选的植物根际促生细菌,可减轻干旱引起的植物伤害,但菌种的合理选择是关键因素。  相似文献   

8.
以FD11(普瑞斯特氏菌Priestia sp.)和CH07(阿氏芽孢杆菌Bacillus aryabhattai)两种溶磷菌剂为试验材料,进行菌剂灌根盆栽试验,测定溶磷菌剂施用对玉米生长、根际土壤养分、土壤微生物特性及土壤不同形态磷含量的影响。结果表明,施用溶磷菌剂可改善根际土壤养分特征和微生物学特性,增加根际土壤的活性磷源含量,对玉米幼苗表现出良好的促生作用。与不施菌剂相比,FD11处理玉米幼苗的株高、茎粗、地上部干重分别增加31.88%、36.39%、104.00%;根际土壤碱解氮、有效磷、速效钾分别增加了21.90%、107.67%、5.77%。施用溶磷菌剂的土壤H2O-Pi(Pi为无机磷)、NaHCO3-P和NaOH-P含量增加,但HCl-Pi和Residual-P含量显著降低。施用溶磷菌剂改变了玉米根际土壤细菌的群落结构,在细菌属分类学水平上,不动杆菌属、假单胞菌属、海洋杆菌属、鞘氨醇单胞菌属、节杆菌属等功能细菌的相对丰度显著增加。综合以上分析,施用溶磷菌剂显著提高了土壤速效养分含量,改变了根际土壤细菌的群落结构,增加了活性磷源的...  相似文献   

9.
植物根际促生菌(Plant growth-promoting rhizobacteria,PGPR)具有抵抗植物病害,促进植物生长等作用。以前期在山东省金乡县连作大蒜根际土壤中分离获得的根际细菌为研究对象,筛选获得对大蒜根腐病病原菌H5(Setophoma terrestris)和H9 (Fusarium solani)具有较好拮抗效果的菌株DS7,经16S rRNA基因序列分析初步鉴定,该菌株属于芽孢杆菌属(Bacillus)。功能特性研究显示:菌株Bacillus sp. DS7对H5抑制率达到51.72%,对H9抑制率达到42.31%;菌株DS7具有产IAA(19.29±0)μg/mL、产铁载体、水解蛋白、溶磷等能力,但不具有产ACC脱氨酶能力。田间接种试验结果显示:与不接菌的对照相比,接种菌株DS7后大蒜产量提高15.42%;土壤的蔗糖酶活性和脲酶活性高于对照土壤,过氧化氢酶活性低于对照土壤。综上,植物根际促生菌Bacillus sp. DS7具有多种功能特性,可以增加田间大蒜产量,改良土壤,是潜在的微生物肥料生产菌种。  相似文献   

10.
棉花根际细菌的生理活性和促生效果   总被引:2,自引:0,他引:2  
测定了29株棉花根际细菌的溶磷、产铁载体、产吲哚乙酸、产1-氨基环丙烷-1-羧酸(ACC)脱氨酶和对致病霉菌的抑制能力等促生生理活性以及对棉花发育与生长的影响。结果表明:96.55%的供试菌株能分泌铁载体,其中46.67%的供试菌株产铁载体能力达到较高的水平;分泌吲哚乙酸的浓度在0.152~26.867 mg/L之间;溶磷能力在8.406~27.661μg/mL之间;菌株N1105(Derxia sp.)、P1108(Pseudomonas sp.)和P2107(Pseudomonas.sp)能抑制棉花枯萎霉菌;菌株P211和P2107具ACC脱氨酶活性。对棉花株高和干重结果分析显示:低浓度IAA分泌量的根际菌对棉花植株有促生作用;菌株N1105(Derxia sp.)、N3101(Azotobacter sp.)、P1(Pseudomonas sp.)、P7(Pseudomonas sp.)、P1108(Pseudomonas sp.)和P2117(Acinetobacter sp.)在促进棉花植株生长方面效果较佳。  相似文献   

11.
利用选择性培养基, 对多年生苹果树根际与连作幼树根际促生细菌进行了分离和测数, 并采用BOX-PCR技术进行聚类分析。结果表明: 多年生苹果树根际细菌总量及固氮细菌、解磷细菌、硅酸盐细菌、拮抗细菌4类根际促生细菌的数量均高于连作幼树根际。在多年生苹果树根际, 硅酸盐细菌的数量最大, 解磷细菌和固氮细菌的数量次之, 拮抗细菌的数量最小; 在连作幼树根际, 解磷细菌的数量最大, 硅酸盐细菌和固氮细菌的数量次之, 拮抗细菌的数量最小。从两种土壤中获得的促生细菌分离株的BOX-PCR图谱最大的相异百分数都在1.25以上, 说明这些细菌分离株的遗传进化距离比较接近。在细菌BOX-PCR图谱相异百分数为0.25的水平上, 多年生苹果树根际促生细菌分为79个聚类群, 其中固氮细菌18个聚类群, 解磷细菌29个聚类群, 硅酸盐细菌19个聚类群, 拮抗细菌18个聚类群; 连作幼树根际促生细菌分为46个聚类群, 其中固氮细菌15个聚类群, 解磷细菌19个聚类群, 硅酸盐细菌8个聚类群, 拮抗细菌9个聚类群。多年生苹果树4类根际促生细菌的多样性、丰富度和均匀度指数均高于连作幼树根际, 而优势度指数低于连作幼树根际。与连作幼树相比, 多年生苹果树根际促生细菌具有丰富的种属多样性。  相似文献   

12.
土壤微生态环境对樱桃树“黑疙瘩”病发生的影响   总被引:1,自引:1,他引:0  
杨璐  杜岩新  徐利娟  黄建新 《土壤》2017,49(2):308-313
研究陕西"黑疙瘩"病樱桃树根际土壤微生态环境,分析其对樱桃树"黑疙瘩"病发病的影响,可为后期防治工作提供理论和实践依据。本研究采用传统微生物学、分子生物学及生物化学相结合的方法,对陕西白鹿原发病樱桃树根际土壤理化性质、土壤酶活性及可培养微生物数量、优势细菌种类与健康樱桃树根际的差异进行了分析,结果表明:健康樱桃树根际土壤全磷、速效钾、有效磷、碱解氮平均含量高于病株根际,土壤有机碳含量低于病株根际,而土壤全氮、全钾含量及pH根际间差异不显著;健康樱桃树根际土壤蛋白酶、脲酶、转化酶及多酚氧化酶活性高于病株根际,而脱氢酶和过氧化氢酶活性低于病株根际。土壤根际微生物分析表明,健康樱桃树根际土壤的可培养细菌、放线菌数量显著高于病株根际,尤其是优势细菌种类及数量;而霉菌平均数量则相反,但差异不显著。因此,根际土壤可培养细菌、放线菌的减少及优势细菌分布不均,以及速效养分的减少、酶活性的降低可能是影响樱桃树"黑疙瘩"病发生的原因之一。  相似文献   

13.
盐碱地小麦根际联合固氮菌数量分布研究   总被引:7,自引:0,他引:7  
姚拓  王刚  陈本建  龙瑞军 《土壤通报》2004,35(4):479-482
结合气相色谱仪和乙炔还原(ARA),采用最可能计数法(MPN)和荧光抗体(FA)染色法对盐碱地小麦根际联合固氮菌及优良固氮菌株Pseudomonassp.ChW1和Zoogloeasp.ChW6数量分布进行了测定。结果表明:小麦根际各部位均存在联合固氮菌类群,但数量相对较小、差异较大(102~106个g-1干土或根),分布趋势呈RP>RS>NRS>HP;菌株Pseudomonassp.ChW1是一种相对广谱的联合固氮菌株,在小麦根际不同部位均有分布,数量除在根系表面(RP)较多(105个g-1干根)外,其它部位较少(102~103个g-1干土或根);Zoogloeasp.ChW6菌株是一种分布谱相对较窄的联合固氮菌株,只分布于根表土壤(RS)和根系表面(RP),数量102~104个g-1干土或根。自然状况下,小麦根际固氮菌数量较少,有必要通过使用联合固氮菌接种剂提高小麦根际固氮菌种群数量,增强种群竞争力,增加根际微生物固氮总量。  相似文献   

14.
The ability of a few soil bacteria to transform unavailable forms of potassium (K) to an available form is an important feature in plant growth-promoting bacteria for increasing plant yields of high-K-demand crops. In this research, isolation, screening, and characterization of six isolates of K solubilizing bacteria (KSB) from some Iranian soils were carried out. The ability of all isolates were tested in three treatments including acid-leached soil, biotite, and muscovite by analyzing the soluble K content after 5 days of incubation at 28 ± 2°C. Identification and phylogenetic analyses were also carried out by morphological, biochemical, and 16S rDNA analyses. Among the six efficient isolates, five isolates belonged to Bacillus megaterium (JK3, JK4, JK5, JK6, and JK7), while isolate JK2 belonged to Arthrobacter sp. The soluble K contents in all isolated-treatments were significantly (< 0.01) higher than the contents in nonbacteria treatment. Herein, isolate JK2 had lower potential for K solubilization (910 mg kg?1) compared with other isolates in acid-leached soils. The six bacterial strains showed higher solubilized K in biotite treatment than other two treatments. Overall, it can be concluded that the isolates belong to B. megaterium are the most efficient KSB under in vitro condition.  相似文献   

15.
为研究库布齐沙地生态恢复过程中不同植被恢复类型土壤微生物细菌群落结构、多样性的变化特征,以流动沙地为对照,运用高通量测序技术,对自然恢复的油蒿群落、人工种植的中间锦鸡儿群落根际和非根际土壤细菌多样性进行了研究,并分析了土壤理化性质对其分布的影响。结果表明:(1)与流沙对照相比,两种植被恢复类型对细菌多样性产生了正效应,细菌群落丰度、多样性和均匀度明显增加。其中,自然恢复的油蒿群落土壤细菌丰度高于人工种植的中间锦鸡儿群落;(2)变形菌门、酸杆菌门和放线菌门为研究区土壤中的优势细菌类群,其中变形菌门在各样地丰度比例最高,变形菌的4个亚群变化趋势一致,α-变形菌相对含量在油蒿和中间锦鸡儿群落根际土壤中明显增加,尤其是自然恢复的油蒿群落根际土壤中α-变形菌得到了很好的恢复;(3)土壤有机质、全氮、速效氮、速效钾含量和土壤含水量是影响土壤细菌群落丰度和多样性的主要土壤因子,典型相关分析表明土壤有机质、全氮、全钾、速效钾、速效氮含量对于研究区土壤细菌群落遗传多样性的变化起着重要作用。  相似文献   

16.
为探讨地下穴贮滴灌条件下根际注气对干旱区葡萄根际土壤化学性质、细菌多样性及群落结构影响。该研究以3a箱栽‘红地球’葡萄为试验材料,以自行设计的地下穴贮滴灌"水肥气"一体化设备作为注气装置,16S高通量基因组测序作为研究土壤细菌多样性及群落结构的关键技术手段。结果表明地下穴贮滴灌根际注气可有效提高土壤pH值,显著增加土壤速效磷(40~50 cm除外)和速效钾含量,促进土层深度20~30 cm土壤有机质分解;对氮磷钾相关菌属的分析表明,根际注气可促进与硝化作用相关的亚硝化螺菌属,磷钾代谢相关的假单胞菌属、芽孢杆菌属,抑制与反硝化相关的罗尔斯通菌属,表明加气灌溉能促进植株对氮磷钾的吸收与能提高硝化作用、解磷解钾相关菌群数量有关。chao1、shannon指数分析表明地下穴贮滴灌根际注气可有效改变细菌群落丰度,但对细菌群落多样性影响较小;对于细菌门,注气处理增加了放线菌门和硝化螺旋菌门的丰度,其中在40~50 cm土层注气处理放线菌门和硝化螺旋菌门分别比未注气高16.7%与22.7%,达到极显著水平;典型相关分析及相关分析表明,地下穴贮滴灌注气条件下土壤pH值、速效磷和硝酸盐含量是影响细菌群落结构的重要指标。该研究结果可为干旱区地下穴贮滴灌条件下科学合理注气提供理论依据。  相似文献   

17.
基于高通量测序研究草莓根际微生物群落结构和多样性   总被引:11,自引:3,他引:8  
赵帆  赵密珍  王钰  关玲  庞夫花 《土壤》2019,51(1):51-60
研究草莓根际土壤微生物群落组成和结构,对健康草莓土壤生态系统的构建和保持具有重要意义。以不同地区草莓根际土壤为研究样本,利用MiSeq平台Illumina第二代高通量测序技术并结合相关生物信息学分析土壤细菌16S rRNA基因V4+V5区域和真菌ITS1+ITS2区域的丰富度和多样性指数以及群落结构。结果表明:从15个草莓根际土壤样本中获得4554个细菌分类操作单元OTU和1298个真菌OTU,草莓根际土壤的优势细菌门为变形菌门、厚壁菌门、放线菌门、酸杆菌门和绿弯菌门,主要的优势细菌属有16种;优势真菌门为子囊菌门、接合菌门和担子菌门,主要的优势真菌属有8种。冗余分析(RDA)显示,全氮和pH对土壤微生物群落结构的影响最大,共解释了61%的群落变化,各因子的贡献率大小依次为土壤全氮pH有效磷全钾全磷有机质速效钾碱解氮;相关性分析也表明,土壤理化指标均与不同优势菌门存在密切的相关关系。本研究结果加深了对草莓根际微生物群落结构和多样性的认识,为深入研究草莓根际微生物多样性及功能与环境因子之间的关系提供了借鉴。  相似文献   

18.
Plant-growth-promoting bacteria isolated from the rhizosphere, phyllosphere and soil of the root zone in different climatic regions of Germany and Uzbekistan were analysed for plant-growth-promoting effects and nutrient uptake on winter wheat on different soils and under different temperature regimes. The investigations were carried out in pot experiments using loamy sand and sandy loam soils from Müncheberg, Germany and Calcisol soil from Tashkent, Uzbekistan. The temperature and soil types were found to influence growth-promoting effects. Inoculation with bacterial strains Pseudomonas fluorescens PsIA12, Pantoea agglomerans 050309 and Mycobacterium sp. 44 isolated from Müncheberg (semi-continental climate) was found to significantly increase the root and shoot growth of winter wheat at 16 °C compared to 26 °C in loamy sand. Mycobacterium phlei MbP18 and Mycoplana bullata MpB46 isolated from Tashkent (semi-arid climate) were found to significantly increase the root and shoot growth of winter wheat in nutrient-poor Calcisol at 38 °C as well as in nutrient-rich loamy sand at 16 °C. Bacterial inoculation also resulted in significantly higher N, P, and K contents of plant components. The bacteria isolates were able to survive in the rhizosphere and in the soil of winter wheat after root and shoot inoculation.  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   

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