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1.
不同基质生物有机肥防控番茄土传青枯病及促生效果研究   总被引:6,自引:2,他引:4  
本文旨在研究功能菌株解淀粉芽孢杆菌配合不同原料的有机肥,制备不同生物有机肥对番茄防控土传青枯病以及促生的效果研究,并考察不同生物有机肥对土壤养分及根际细菌群落的影响,获得能够有效防控番茄青枯病的生物有机肥。本研究以解淀粉芽孢杆菌T-5为功能菌株,分别配合秸秆有机肥及鸡粪有机肥,经二次发酵分别制得秸秆生物有机肥(BIO1)和鸡粪生物有机肥(BIO2)。于江苏省南京市一处青枯病多发的番茄大棚进行试验。考察不同施肥处理下番茄的发病情况、生长情况以及土壤理化性质,并利用高通量测序探究根际细菌群落的变化。两种生物有机肥均能显著降低番茄土传青枯病的发病率,且BIO1处理的防控效果最佳,使发病率降低了94.45%。两种生物有机肥均能显著促进番茄生长,增加了番茄地上部的生物量并提高了产量,但对于番茄果实品质并无显著提升。此外,施用BIO1可显著增加土壤有机质含量,BIO2则显著提高了土壤pH。土壤有机质与番茄的发病率呈负相关,与番茄地上部生物量和产量呈显著正相关关系。基于高通量测序结果,发现生物有机肥可显著提高根际细菌多样性,同时改变了细菌群落结构。防控效果最好的BIO1处理中,变形菌门相对丰度最高,放线菌门相对丰度最低,土壤硝态氮和pH与这两个门水平的细菌类群具有显著相关性。以解淀粉芽孢杆菌为功能菌株、秸秆为原料制备的秸秆生物有机肥可有效防控番茄土传青枯病,效果优于鸡粪生物有机肥。该生物有机肥还可显著促进番茄生长及产量提升,并通过调控根际细菌群落中变形菌门和放线菌门的相对丰度,提高土壤抑病能力,减少土传青枯病的发生。  相似文献   

2.
西瓜根际促生菌筛选及生物育苗基质研制   总被引:1,自引:0,他引:1  
通过从西瓜根际分离筛选具根际定殖能力的植物根际促生菌,将其保活添加至普通育苗基质研制生物育苗基质,以确保功能菌株能够在苗期定殖根际,进而在移栽后发挥促生功能。结果表明,分离获得一株同时具有产吲哚乙酸(IAA)和NH_3,且对尖孢镰刀菌和茄科劳尔氏菌均有拮抗作用的植物根际促生菌(PGPR)菌株N23;在三季育苗试验中,与普通基质处理(CK)相比,添加菌株N23的生物育苗基质所育种苗,在多项苗期生长指标上均表现出稳定的促生作用;盆栽试验表明,除叶绿素相对含量测量值(SPAD)外,生物基质所育西瓜种苗的其他检测指标均显著高于对照(普通育苗基质所育种苗,下同);田间试验表明,生物基质所育种苗西瓜、黄瓜、辣椒和番茄种苗移苗后,在苗期植株株高和茎粗均显著优于对照,在产量上均增产10%以上。结合形态、生理生化特征和16S rDNA基因序列分析,初步鉴定菌株N23为芽孢杆菌属细菌(Bacillus sp.)。综上,利用芽孢杆菌N23研制的生物育苗基质能够有效促进所育不同作物种苗质量,增强移栽后作物的生长和田间产量。因此,本研究能够为根际有益微生物的应用提供新的思路,为生物育苗基质的研制提供理论支撑。  相似文献   

3.
生物有机肥育苗防控烟草青枯病   总被引:2,自引:0,他引:2  
【目的】烟草青枯病是影响贵州烟叶生产的主要土传病害之一。生物防控方法作为防控烟草青枯病体系的有效措施之一,寻求经济可行的途径势在必行。【方法】利用实验室自主筛选到的烟草青枯菌拮抗菌NJL-14,通过二次固体发酵研制成烟草专用拮抗青枯病型生物有机肥 (BIO),选取K326和红花大金元两个烟草品种分别进行育苗和盆栽试验。育苗床基质分别添加BIO 1%、2%、3%、4%和5%,以确定适宜的BIO育苗添加量。盆栽试验两个品种分别设定五个处理:常规基质育苗 + 植烟健康土壤(CKn+CKp)、常规基质育苗?+?青枯病病土(CKn+Rs)、常规基质育苗?+?青枯病病土?+?有机肥(CKn+OFp)、常规基质育苗?+?青枯病病土?+?BIO(CKn+BIOp)、育苗和盆栽病土中都施入BIO(BIOn+BIOp)。分别采用荧光定量PCR和Biolog-ECO研究育苗基质和盆栽土壤中细菌和真菌数量变化,以及微生物功能多样性,特别是烟草青枯菌及其拮抗菌的消长关系。【结果】当BIO浓度在2%以内时,烟草的发芽率与对照无显著差异;与普通漂浮育苗相比,托盘育苗不但能稳定和延长拮抗菌NJL-14在根际的定殖,而且显著提高烟苗生物量,K326经BIO育苗处理的烟苗地上部和地下部的干重分别比常规基质育苗的处理高17.2%和30.8%,而红花大金元分别高14.9%和20.0%;采用育苗与移栽土壤双重使用BIO模式对烟草青枯病的防控效果明显,防控效果可以达到100%,明显优于只在盆栽中使用BIO模式,并且能够显著抑制土壤中病原菌数量在107 cfu/g土以下,同时有效提高土壤微生物生态多样性。【结论】采用育苗与移栽土壤双重使用烟草专用拮抗青枯病型生物有机肥模式可有效防控烟草青枯病,控制土壤中病原菌数量,改善土壤微生物功能多样性,为有效地生物防控烟草青枯病奠定基础。  相似文献   

4.
产脂肽菌株发酵生物有机肥的生物防治与促生作用研究   总被引:3,自引:0,他引:3  
选取对番茄青枯菌有明显抑制作用的产脂肽菌株XZ-173,与有机肥混合发酵制成生物有机肥。通过温室盆栽试验,评价了该生物有机肥对番茄青枯病的防治效果及对番茄的促生效用。结果表明,生物有机肥能够显著降低青枯病发病率,相对防效达56.8%。与施用化肥和未添加XZ-173的有机肥处理相比,施用该生物有机肥能显著提高番茄植株叶绿素含量、番茄地上部和地下部生物量、根际土壤细菌和放线菌数量,显著降低根际土壤中真菌数量。生物有机肥的有益效果使其在作物种植中具有广阔的应用前景。  相似文献   

5.
【目的】我国北方农业生产中氮肥过量施用现象较普遍,冬小麦?夏玉米轮作体系是当地主要种植方式。研究轮作体系氮肥减施对玉米产量、氮肥利用率、根系形态及根际中无机氮特征的影响,为集约化农业生产体系中氮肥合理施用提供支持。【方法】选择河北衡水潮土试验点冬小麦?夏玉米轮作体系,连续开展了三年田间试验,小麦收获后免耕播种夏玉米。冬小麦季设置N 0、180、225、300 kg/hm2四个氮肥用量处理,其夏玉米季相应氮肥用量依次设置为N 0、144、180和240 kg/hm2,为不施氮肥、减施40%、减施25%和习惯施氮量处理。分别在玉米生育期的苗期、大喇叭口期、灌浆期及收获期在处理小区随机选植株5株,测定玉米籽粒产量、地上部氮含量、氮累积量及根际土壤中无机氮等指标,利用WinRHIZO根系分析系统分析获取根长、直径等数据。【结果】与N240 处理相比,N144、N180处理连续三年的玉米籽粒产量、地上部含氮量与氮累积量、根系长度与直径、根际土壤硝态氮与铵态氮含量均未受到明显影响,而氮肥利用率显著提高,农田氮素表观损失降低。三季N0、N144和N180处理的夏玉米籽粒产量、非根际土壤硝态氮和铵态氮含量出现下降。除2008年大喇叭口期之外,三季玉米所有生育时期中,施用氮肥处理的夏玉米根际土壤硝态氮含量明显低于非根际土壤。2008年玉米抽雄期,根际土壤中铵态氮含量显著高于非根际土壤,而在收获期,根际土壤铵态氮含量比非根际土壤明显降低。同一生育期,氮肥减施未明显降低根际土壤铵态氮含量。2008和2009年两季玉米籽粒产量均与大喇叭口期以后地上部氮累积量呈显著正相关,而2010年只与苗期和成熟期显著相关。2009年玉米根际硝态氮含量均与玉米产量呈正相关,生育后期呈极显著正相关关系,而除大喇叭口期非根际土壤硝态氮含量与玉米籽粒产量不相关外,其他生育期的非根际土壤硝态氮含量均与籽粒产量显著相关。【结论】在华北小麦–玉米轮作种植体系下,在土壤肥力水平较高地区,连续三年减氮 25% 甚至 40%,未显著改变夏玉米根系形态及根际无机氮供应水平,氮肥利用率显著提高,但非根际无机氮供应水平和籽粒产量有下降趋势。因此,在河北高肥力地区小麦?玉米轮作下短期减少氮肥用量可行,持续减施还需进一步研究。  相似文献   

6.
利用FACE(Free air carbon dioxide enrichment)技术,在两种氮肥施用(低氮LN和常规氮NN)水平下,研究CO:浓度升高对水稻和小麦收获后根际和非根际土壤硝态氮、铵态氮和有机氮的影响。结果表明,相对于对照CO2浓度处理,高CO2浓度处理在显著增加作物生物量的前提下,使水稻季根际土壤硝态氮含量降低,NN水平下降低明显,小麦季变化不大,高CO2浓度处理对作物根际的影响大于非根际。高CO2浓度对土壤铵态氮含量的影响不显著,仅小幅度增加了水稻季和降低了小麦季土壤铵态氮含量,且根际降低幅度大于非根际;增加氮肥施用使土壤铵态氮含量在高CO2浓度处理增加幅度低于对照。高CO2浓度处理并没有显著增加有机氮的含量,在小麦季作物对土壤有机氮的贡献大于水稻季,且增加氮肥施用条件下根际对有机氮的贡献较大。  相似文献   

7.
在河北衡水潮土上进行田间试验,以当地习惯高氮用量(小麦季施N 300 kg/hm2,玉米季施N 240 kg/hm2)为对照,研究冬小麦-夏玉米轮作体系中减少氮肥用量对玉米季植株生长、氮素吸收及根际土壤中无机氮与微生物量氮的影响。结果表明,两季作物氮肥施用量减少25%和40%,对玉米产量、生物量及植株体内氮累积量未产生明显影响,氮肥利用率提高。不同氮肥施用量对根际和非根际土壤铵态氮含量的影响不显著;减少氮肥施用量,对玉米根际土壤硝态氮含量也没有明显影响。在玉米苗期、抽雄期和成熟期,习惯高施氮量处理的非根际土壤硝态氮含量较高,其中抽雄期,非根际土壤硝态氮含量较氮肥减施40%用量处理高出近一倍,但非根际土壤微生物量氮水平含量明显降低。氮肥减施未影响根际土壤微生物量碳、氮含量,反而增加了非根际土壤微生物量碳、氮水平。在高肥力的潮土上,冬小麦/夏玉米轮作体系中适当减施氮肥并未影响玉米根际土壤氮素水平,可保证玉米稳产,实现减氮增效。  相似文献   

8.
抑制烟草青枯病型生物有机肥的田间防效研究   总被引:3,自引:2,他引:1  
【目的】烟草青枯病是影响烟叶生产最主要的土传病害之一,生物防控烟草青枯病是近年来的研究热点。为验证抑制烟草青枯病型生物有机肥对生防青枯病的影响,进行2年田间试验研究其防效及其对土壤微生物的影响。【方法】本试验采用从烟草根际原位土壤分离得到的烟草青枯病拮抗菌株L-25和L-9,利用有机肥二次固体发酵技术,制成烟草青枯病拮抗生物有机肥。连续两年在安徽进行田间试验,分别在烟草移栽后50天和105天调查生物防控率,探求生物有机肥对青枯病的田间防效和对烟叶产量的影响;利用平板计数法、Biolog特征性碳源法和梯度变性凝胶电泳法摸索生物有机肥施用后根际土壤微生物数量、群落功能多样性和结构多样性的变化,揭示生物有机肥对青枯病的防控机理。【结果】 1)第一年和第二年施用生物有机肥处理移栽50天后烟草青枯病的生物防控率分别为82.2%和96.2%,105天后烟草青枯病的生物防控率分别达到75.2%和95.4%; 2)生物有机肥处理第一年和第二年烟叶产量分别为2212.5 kg/hm2、1475.5 kg/hm2,是对照的2.4和2.6倍; 3)两年生物有机肥处理的根际土壤可培养细菌、放线菌数量均显著高于对照,真菌数量显著低于对照(P<0.05),其中第一年生物有机肥处理50天和105天拮抗菌数量分别为对照的241.8倍和13.4倍,病原菌数量仅为对照的19.7%和56.6%,第二年生物有机肥处理50天和105天拮抗菌数量分别是对照的111.0倍和26.7倍,病原菌数量仅为对照的9.1%和31.4%; 4)两年生物有机肥处理50天和105天根际土壤的微生物群落功能多样性,即Shannon指数、Simpson指数和Mclntosh指数均显著高于对照(P<0.05); 5)生物有机肥处理与对照土壤微生物群落结构也不相同,细菌和真菌梯度变性凝胶电泳图谱明显不同,分别属于不同的聚簇,生物有机肥处理的细菌种类较对照有所增加,同时真菌的种类有所减少。【结论】在烟草青枯病发病较为严重的烟田施用生物有机肥,可以显著降低青枯病发病率,增加烟草产量。生物有机肥可以显著提高拮抗菌数量,抑制根际土壤病原菌的数量,提高土壤微生物群落功能多样性,改善微生物种群和组成,丰富土壤微生物群落结构,使土壤保持健康的微生物生态平衡。  相似文献   

9.
生物有机肥对香蕉植株生长和香蕉枯萎病防治的研究   总被引:19,自引:3,他引:16  
通过盆栽试验,研究了生物有机肥(BIO)对香蕉植株生长和香蕉枯萎病防治效果的影响。结果表明,1)香蕉植株移栽45 d后,施用BIO的处理香蕉植株地上部鲜重、干重、株高和假茎围分别比对照增加了31.9%~93.8%、5.9%~43.1%、43.9%~62.9%和12.3%~18.5%。2)香蕉苗移栽25 d时,施用BIO的香蕉植株根尖几丁质酶活性提高了2.64~12.88个酶活单位,显著高于对照;营养钵育苗施用BIO的处理,香蕉植株根尖β-1,3-葡聚糖酶活性显著地高于营养钵育苗未施BIO的处理,是其酶活的5.22~7.22倍。施用BIO的处理香蕉植株根尖和茎基部中胼胝质含量分别只有对照的59.7%~77.9%和47.6%~68.9%,显著低于对照处理。3)营养钵育苗施用BIO的处理,根际的细菌数量和放线菌数量分别比对照增加了1.56~1.76倍和1.11~1.55倍,而根际真菌数量却减少了19.2%~52.2%,根际尖孢镰刀菌的数量也大大减少。4)营养钵育苗施用BIO的处理,到香蕉植株移栽45 d时,香蕉植株枯萎病的病情指数未超过2.4,比对照降低47.8%~56.5%。上述结果表明,采用营养钵育苗和移栽时都施用BIO的方法种植香蕉,能显著地促进香蕉植株生长,有效地降低香蕉枯萎病的发病指数。  相似文献   

10.
文春燕  高琦  张杨  李荣  沈其荣 《土壤》2016,48(2):414-417
根际促生细菌(PGPR)与普通育苗基质联合形成生物育苗基质,能够有效促进PGPR菌株的根际定殖,从而增强菌株促生效果的发挥。本研究以辣椒和番茄两种经济作物为供试材料,采用拌土的方式向基质中添加PGPR菌株LZ-8发酵液形成生物育苗基质,研究了该生物基质对这两种作物苗期的促生效果及种苗移栽后大田产量的增加情况。结果表明:含PGPR菌株的生物育苗基质对辣椒和番茄苗期均具有显著的促生效果,其中苗期辣椒和番茄的株高、茎粗、叶面积、鲜重和干重分别比对照高出22%、15.9%、33.6%、21.84%、31.25%和26.8%、29.4%、62%、72.7%、83.3%;生物基质所育种苗移栽至大田后显著增加了辣椒和番茄的产量,分别比对照增产22%和11%。  相似文献   

11.
Vermicompost, a byproduct of earthworm digestion of organic solid waste is receiving attention as a peat substitute in the production of plug seedling media. We aimed to test the effects of adding nitrogen to vermicompost on the morphological development of tomato seedlings. Nursery experiments on tomato seedlings were carried out in the greenhouse. Urea at 0.00 kg/m3, 0.25 kg/m3, 0.50 kg/m3, and 1.00 kg/m3 was added to vermicompost and to the vermicompost-vermiculite (at a volume ratio of 4:1) mixture. Results showed that (1) Nitrogen application at different rates to the vermicompost significantly increased the strong seedling index (SSI) at the middle (T1) and late (T2) seedling growth stages. Besides, nitrogen application significantly increased concentrations of available nitrogen (available-N) at the beginning of seedling cultivation (T0) and nitrate nitrogen (NO3?-N) at T2 in vermicompost. (2) Adding nitrogen to vermicompost significantly increased the number of root tips at T1 and T2 and the root volume at T2. And it significantly decreased the electrical conductivity (EC), total N (TN), available N, ammonium N (NH4+-N), and NO3?-N at T1 and T2. (3) Adding nitrogen to the vermicompost-vermiculite mixture significantly increased the root/shoot ratio, and SSI at T1 and T2. And it significantly increased the pH and reduced the EC at T1 and the available-N, NH4+-N, and NO3?-N at T2. In short, adding nitrogen (0.5~1.0 kg/m3 urea) to vermicompost improved the shoot and root morphological development of tomato seedlings, as well as the biomass accumulation and allocation. Adding nitrogen to the vermicompost-vermiculite mixture further promoted the development of tomato seedlings.  相似文献   

12.
Plant growth-promoting rhizobacteria (PGPR) represent an important microbial community group and have beneficial effects on plant growth and development. A pot experiment was conducted to study the effect of biochar applied with PGPR on the soil microbial community composition and nitrogen use efficiency (NUE) of tomato, which could provide a theoretical basis for rational fertilization. Six treatments were designed: no nitrogen (N), PGPR, or biochar control (CK); biochar without N or PGPR (BCK); N without PGPR or biochar (U); N and PGPR without biochar (UP); N and biochar without PGPR (UB); and N, PGPR, and biochar (UBP). The tomato yield in the UP treatment was 9.09% lower than that in the U treatment, whereas that in the UB treatment was 19.93% higher than that in the U treatment. The tomato yield in the UBP treatment was 32.45%, 45.69%, and 10.44% higher than those in the U, UP, and UB treatments, respectively. Biochar combined with PGPR increased the relative abundance of Nitrospira and Bradyrhizobium in the soil. At the tomato maturity stage, the soil NO3--N content in the UBP treatment was 87.12%, 88.12%, and 31.04% higher than those in the U, UP, and UB treatments, respectively. The NUE in the UP treatment was 4.03% lower than that in the U treatment, and that in the UBP treatment was 13.63%, 17.66%, and 10.77% higher than those in the U, UP, and UB treatments, respectively. This study showed that biochar combined with PGPR can improve soil microbial community structure and increase the NUE of tomato.  相似文献   

13.
《Journal of plant nutrition》2013,36(12):1995-2007
Uptake of the two forms of nitrogen NO3 ? and NH4 + and nitrate reduction have been studied in two varieties of Moroccan wheat seedlings, cvs. Sais and Jouda, cultivated under controlled conditions in a hydroponic medium. The available form of nitrogen in the medium had a direct effect on the rate of nitrogen absorption. A brief nitrogen starvation increased the root length and stimulated accumulation of soluble carbohydrates, especially in the root tissues. A resupply of nitrogen stimulated ammonium and nitrate uptake and assimilation with higher mobilization of the soluble carbohydrates previously accumulated in root seedlings. It is suggested that root nitrogen and carbohydrate status might both regulate nitrate uptake and reduction in Moroccan wheat seedlings.

The seedlings raised with the nitrate supply accumulated nitrate in the vacuole as an osmoticum. Shoots are the preferential site for such accumulation. The accumulation of mineral nitrogen was absent in the seedlings cultivated with ammonium supply but was compensated by accumulation of soluble organic nitrogen.  相似文献   

14.
The effects of nitrogen (N) forms (ammonium- or nitrate-N) on plant growth under salinity stress [150 mmol sodium chloride (NaCl)] were studied in hydroponically cultured cotton. Net fluxes of sodium (Na+), ammonium (NH4+), and nitrate (NO3?) were also determined using the Non-Invasive Micro-Test Technology. Plant growth was impaired under salinity stress, but nitrate-fed plants were less sensitive to salinity than ammonium-fed plants due mainly to superior root growth by the nitrate-fed plants. The root length, root surface area, root volume, and root viability of seedlings treated with NO3-N were greater than those treated with NH4-N with or without salinity stress. Under salinity stress, the Na+ content of seedlings treated with NO3-N was lower than that in seedlings treated with NH4-N owing to higher root Na+ efflux. A lower net NO3? efflux was observed in roots of nitrate-fed plants relative to the net NH4+ efflux from roots of ammonium-fed plants. This resulted in much more nitrogen accumulation in different tissues, especially in leaves, thereby enhancing photosynthesis in nitrate-fed plants under salinity stress. Nitrate-N is superior to ammonium-N based on nitrogen uptake and cotton growth under salinity stress.  相似文献   

15.
水氮调控对设施土壤氨挥发特征的影响   总被引:1,自引:0,他引:1  
基于连续6年设施番茄水氮调控定位试验,采用高分辨激光光谱法观测分析灌水下限(土壤水吸力为W_1:25 kPa、W_2:35 kPa、W_3:45 kPa)和施氮量(N_1:75 kg N/hm~2、N_2:300 kg N/hm~2、N_3:525 kg N/hm~2)对设施土壤氨挥发通量、累积挥发量、番茄产量及单产累积排放量的影响。结果表明:灌水下限、施氮量及两者交互作用极显著的影响设施土壤氨挥发通量峰值、累积挥发量、单产氨挥发累积量、氨挥发损失率和番茄产量。氨挥发通量表现为施氮后6~8天氨挥发达到峰值。经验S模型可以较好地表征基肥和追肥2个时期氨挥发累积量随时间的变化,氨挥发特征参数表现为基肥期以灌水下限和水氮交互影响为主,追肥期以施氮量和水氮交互影响为主。与基肥相比,采用滴灌追肥可显著的降低氨挥发累积量94.78%~96.30%。受土壤pH和土壤NH_4~+-N含量及施肥带比例影响,氨挥发的氮损失率在0~2%。施氮量为300 kg N/hm~2和灌水下限25 kPa组合的水氮处理(W_1N_2)是协调氨挥发量和设施番茄产量的最佳水氮管理模式。  相似文献   

16.
Controlled-release urea (CRU) and its placement method in rice production were investigated during 2007 and 2008 seasons. Controlled-release urea was applied at 62.5, 125, and 187.5 kg nitrogen (N) ha?1, and the urea was 187.5 kg N ha?1. All the CRU treatments were applied to the nursery beds once, and they were brought into the paddy field during transplanting, while the urea treatment was split into three applications from the plowing to the harvest. The results showed that rice seedlings with CRUs germinated and grow well and there was no salt damage at the nursery stage. The CRU treatment with 125 kg N ha?1 had 33% less N than urea treatment (187.50 kg N ha?1), but it produced significantly higher grain and straw yields, higher total N uptake and total apparent N uptake efficiency. In addition, all the CRU treatments effectively decreased floodwater ammonium (NH4 +)-N and nitrate (NO3 ?)-N concentrations, pH, and N runoff.  相似文献   

17.
Plant growth-promoting rhizobacteria (PGPR) are considered to be the most promising agents for cash crop production via increasing crop yields and decreasing disease occurrence. The Bacillus amyloliquefaciens strain W19 can produce secondary metabolites (iturin and bacillomycin D) effectively against Fusarium oxysporum f. sp. cubense (FOC). In this study, the ability of a bio-organic fertilizer (BIO) containing W19 strain to promote plant growth and suppress the Fusarium wilt of banana was evaluated in both pot and field experiments. The results showed that application of BIO significantly promoted the growth and fruit yield of banana while suppressing the banana Fusarium wilt disease. To further determine the beneficial mechanisms of the strain, the colonization of green fluorescent protein-tagged strain W19 on banana roots was observed using confocal laser scanning microscopy and scanning electron microscopy. The effect of banana root exudates on the formation of biofilm of strain W19 indicated that the banana root exudates may enhance colonization. In addition, the strain W19 was able to produce indole-3-acetic acid (IAA), a plant growth-promoting hormone. The results of these experiments revealed that the application of strain W19-enriched BIO improved the banana root colonization of strain W19 and growth of banana and suppressed the Fusarium wilt. The PGPR strain W19 can be a useful biocontrol agent for the production of banana under field conditions.  相似文献   

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