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柳枝稷被植物促生和拮抗细菌伯克霍尔德氏菌菌株 Lu10-1 定殖。

Colonization of Morus alba L. by the plant-growth-promoting and antagonistic bacterium Burkholderia cepacia strain Lu10-1.

机构信息

College of Forestry, Shandong Agricultural University, Tai'an, Shandong 271018, China.

出版信息

BMC Microbiol. 2010 Sep 20;10:243. doi: 10.1186/1471-2180-10-243.

Abstract

BACKGROUND

Anthracnose, caused by Colletotrichum dematium, is a serious threat to the production and quality of mulberry leaves in susceptible varieties. Control of the disease has been a major problem in mulberry cultivation. Some strains of Burkholderia cepacia were reported to be useful antagonists of plant pests and could increase the yields of several crop plants. Although B. cepacia Lu10-1 is an endophytic bacterium obtained from mulberry leaves, it has not been deployed to control C. dematium infection in mulberry nor its colonization patterns in mulberry have been studied using GFP reporter or other reporters. The present study sought to evaluate the antifungal and plant-growth-promoting properties of strain Lu10-1, to clarify its specific localization within a mulberry plant, and to better understand its potential as a biocontrol and growth-promoting agent.

RESULTS

Lu10-1 inhibited conidial germination and mycelial growth of C. dematium in vitro; when applied on leaves or to the soil, Lu10-1 also inhibited the development of anthracnose in a greenhouse, but the effectiveness varied with the length of the interval between the strain treatment and inoculation with the pathogen. Strain Lu10-1 could survive in both sterile and non-sterile soils for more than 60 days. The strain produced auxins, contributed to P solubilization and nitrogenase activity, and significantly promoted the growth of mulberry seedlings. The bacteria infected mulberry seedlings through cracks formed at junctions of lateral roots with the main root and in the zone of differentiation and elongation, and the cells were able to multiply and spread, mainly to the intercellular spaces of different tissues. The growth in all the tissues was around 1-5 × 105 CFU per gram of fresh plant tissue.

CONCLUSIONS

Burkholderia cepacia strain Lu10-1 is an endophyte that can multiply and spread in mulberry seedlings rapidly and efficiently. The strain is antagonistic to C. dematium and acts as an efficient plant-growth-promoting agent on mulberry seedlings and is therefore a promising candidate as a biocontrol and growth-promoting agent.

摘要

背景

炭疽病由基腐炭疽菌引起,是易感性桑品种桑叶生产和质量的严重威胁。该疾病的防治一直是桑树栽培中的一个主要问题。一些洋葱伯克霍尔德氏菌的菌株被报道为植物害虫的有用拮抗物,并能提高几种作物的产量。尽管 B.cepacia Lu10-1 是从桑叶中获得的内生细菌,但它尚未被用于控制桑树中的 C.dematium 感染,也没有使用 GFP 报告基因或其他报告基因研究其在桑树中的定殖模式。本研究旨在评估菌株 Lu10-1 的抗真菌和促进植物生长特性,阐明其在桑树中的特定定位,并更好地了解其作为生物防治和生长促进剂的潜力。

结果

Lu10-1 在体外抑制基腐炭疽菌分生孢子的萌发和菌丝生长;当应用于叶片或土壤时,Lu10-1 也能抑制温室中炭疽病的发展,但有效性随菌株处理与病原菌接种之间的间隔长度而变化。菌株 Lu10-1 能在无菌和非无菌土壤中存活 60 天以上。该菌株产生植物生长素,有助于磷的溶出和固氮酶活性,并显著促进桑树幼苗的生长。细菌通过侧根与主根的连接处和分化伸长区形成的裂缝感染桑树幼苗,细菌细胞能够繁殖和扩散,主要到不同组织的细胞间隙。在所有组织中的生长量约为每克新鲜植物组织 1-5×105CFU。

结论

洋葱伯克霍尔德氏菌 Lu10-1 菌株是一种内生菌,能在桑树幼苗中快速高效地繁殖和扩散。该菌株对 C.dematium 具有拮抗作用,对桑树幼苗具有高效的促生长作用,因此是一种很有前途的生物防治和促生长剂候选物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b6c5/2949702/1ab14e5da232/1471-2180-10-243-1.jpg

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