Application of Silica Nanoparticles in Combination with Bacillus velezensis and Bacillus thuringiensis for Anthracnose Disease Control in Shallot.

Q3 Agricultural and Biological Sciences
Jilan Tsani Abdullah, Suryanti, Tri Joko
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引用次数: 0

Abstract

<b>Background and Objective:</b> Anthracnose in shallot contributes to significant losses. To solve this issue, silica nanoparticles, in combination with <i>Bacillus velezensis</i> and <i>Bacillus thuringiensis</i> were used together. <b>Materials and Methods:</b> <i>In vitro</i> antagonistic test of <i>Bacillus velezensis</i> B-27 with <i>Colletotrichum gloeosporioides</i> was carried out using dual culture and co-culture methods. Treatment in greenhouse experiments was carried out using single application of silica, <i>B. thuringiensis</i>, <i>B. velezensis</i>, a combination of <i>B. thuringiensis</i> and <i>B. velezensis</i> and a combination of <i>B. thuringiensis</i>, <i>B. velezensis</i> and silica. Detection of <i>B. velezensis</i> in the roots of shallot plants was carried out by PCR using a pair of specific primers. <b>Results:</b> <i>Bacillus velezensis</i> was able to inhibit the growth of <i>C. gloeosporioides</i> mycelium <i>in vitro</i>, both in the dual culture and co-culture methods, by 62.8 and 77.17%, respectively. Treatment of <i>B. thuringiensis</i> and <i>B. velezensis</i>, either individually or in combination with silica, could reduce the intensity of anthracnose disease by 20% each and stimulate the growth of shallot plants. The PCR detection using specific primers on the roots of shallot plants showed that <i>B. velezensis</i> was detected with a DNA band length of ±576 bp. <b>Conclusion:</b> <i>Bacillus velezensis</i> can inhibit the growth of <i>C. gloeosporioides</i> mycelium <i>in vitro</i>. Applying <i>B. velezensis</i>, <i>B. thuringiensis</i> and silica can reduce the intensity of anthracnose disease, promote plant growth and increase plant productivity. Furthermore, <i>B. velezensis</i> was detected in the roots of shallot plants, revealing that the bacteria are well-established.

将纳米二氧化硅颗粒与韦氏芽孢杆菌和苏云金芽孢杆菌结合应用于葱炭疽病的防治。
<b>背景与目的:</b>大葱炭疽病造成重大损失。为解决这一问题,我们将纳米二氧化硅与韦氏芽孢杆菌和苏云金芽孢杆菌结合使用。<b>材料与方法:</b><i>体外</i><i>苏云金芽孢杆菌</i>B-27 与 Colletotrichum gloeosporioides</i> 的拮抗试验采用双培养和共培养方法进行。在温室实验中,使用硅、苏云金芽孢杆菌、苏云金芽孢杆菌、苏云金芽孢杆菌和苏云金芽孢杆菌的组合进行处理。苏云金杆菌</i>和 B. velezensis</i> 以及 B. thuringiensis</i>、B. velezensis</i> 和二氧化硅的组合。使用一对特异性引物通过 PCR 检测大葱植株根中的 B. velezensis</i>。在体外<i>菌丝体<i>的生长<i>中,双培养法和共培养法的抑制率分别为 62.8% 和 77.17%。单独使用或与白炭黑联合使用苏云金杆菌和维氏菌,可使炭疽病的发病率降低 20%,并能促进大葱植株的生长。使用特定引物对大葱植株根部进行的 PCR 检测显示,<i>B. velezensis</i> 的 DNA 带长为 ±576 bp。<b>结论:</b><i>Bacillus velezensis</i>能抑制<i>C. gloeosporioides</i>菌丝体在体外的生长。施用 B. velezensis</i>、B. thuringiensis</i>和白炭黑可以减轻炭疽病的强度,促进植物生长,提高植物产量。此外,<i>B. velezensis</i>在大葱植株的根部被检测到,这表明该细菌已经根深蒂固。
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来源期刊
Pakistan Journal of Biological Sciences
Pakistan Journal of Biological Sciences Agricultural and Biological Sciences-Agronomy and Crop Science
CiteScore
1.90
自引率
0.00%
发文量
102
期刊介绍: Pakistan Journal of Biological Sciences (PJBS) is an international, peer-reviewed and well indexed scientific journal seeks to promote and disseminate the knowledge of biological sciences by publishing outstanding research in the field. Scope of the journal includes: Cell biology, developmental biology, structural biology, microbiology, entomology, toxicology, molecular biology & genetics, biochemistry, biotechnology, biodiversity, ecology, marine biology, plant biology and bioinformatics.
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