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有害根际细菌假单胞菌 X33d 的配方开发用于生物防治硬质小麦中的雀麦(Bromus diandrus)。

Formulation development of the deleterious rhizobacterium Pseudomonas trivialis X33d for biocontrol of brome (Bromus diandrus) in durum wheat.

机构信息

Institut National Agronomique de Tunisie, Laboratoire de Botanique et de Malherbologie, Tunis-Mahrajène, Tunisia.

出版信息

J Appl Microbiol. 2013 Jan;114(1):219-28. doi: 10.1111/jam.12036. Epub 2012 Nov 7.

Abstract

AIM

To develop an appropriate formulation of the deleterious rhizobacterium Pseudomonas trivialis X33d and to evaluate its effectiveness to reduce brome growth.

METHODS AND RESULTS

Two formulations of Ps. trivialis X33d, a semolina-kaolin granular formulation (Pesta) and talc-kaolin powder, were prepared and their effectiveness in reducing brome growth was evaluated. Both brome suppression and cell viability of X33d were higher in Pesta granular formulation than in talc-kaolin powder one. The impact of storage temperature and the addition of adjuvants (sucrose and oil) to the granular formulation of X33d were assessed in order to improve the shelf life of the formulation. The longest viability was found in formulated product supplemented with adjuvants and stored at 4°C. The effect of Pesta granules supplemented with adjuvants and stored for 6 months at 4°C on brome and wheat growth under controlled and greenhouse conditions was evaluated. The X33d formulation in Pesta increased the growth of wheat and reduced brome growth.

CONCLUSION

Our results indicate that Ps. trivialis X33d formulated in Pesta has potential as a bioherbicide to control brome.

SIGNIFICANCE AND IMPACT OF THE STUDY

Because of the impracticality of applying bacterial cell suspension on a large scale, the use of Pesta granules of X33d against brome could help in achieving a sustainable agriculture application of a bioherbicide.

摘要

目的

开发有害根际细菌假单胞菌 X33d 的合适配方,并评估其减少雀麦生长的效果。

方法和结果

制备了假单胞菌 X33d 的两种制剂,即半粒-高岭土颗粒制剂(Pesta)和滑石-高岭土粉末,并评估了它们抑制雀麦生长的效果。与滑石-高岭土粉末相比,Pesta 颗粒制剂中 X33d 的抑制雀麦生长和细胞活力更高。为了提高制剂的保质期,评估了 X33d 颗粒制剂储存温度和添加助剂(蔗糖和油)的影响。在添加助剂并在 4°C 下储存的制剂中发现了最长的活力。评估了在 4°C 下储存 6 个月并添加助剂的 Pesta 颗粒对控制和温室条件下雀麦和小麦生长的影响。添加助剂并储存在 Pesta 中的 X33d 制剂增加了小麦的生长,减少了雀麦的生长。

结论

我们的结果表明,在 Pesta 中制成的假单胞菌 X33d 作为一种生物除草剂具有控制雀麦的潜力。

研究的意义和影响

由于在大规模应用细菌悬浮液不切实际,因此使用 X33d 的 Pesta 颗粒来防治雀麦有助于实现生物除草剂在可持续农业中的应用。

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