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在保护地栽培条件下,来自未感染和感染番茄的根际细菌对南方根结线虫的差异影响。

Differential effects of rhizobacteria from uninfected and infected tomato on Meloidogyne incognita under protected cultivation.

机构信息

Division of Nematology, ICAR-Indian Agricultural Research Institute, New Delhi, India.

Division of Microbiology, ICAR-Indian Agricultural Research Institute, New Delhi, India.

出版信息

J Basic Microbiol. 2023 Jun;63(6):604-621. doi: 10.1002/jobm.202200695. Epub 2023 Jan 20.

Abstract

Intermingled uninfected and root-knot nematode-infected tomato plants are commonly observed under protected cultivation. To understand the role of rhizobacteria underlying the susceptibility to nematode infectivity in these tomato plants, 36 rhizobacteria (18 from each type) with morphologically distinct colony characteristics were isolated from the rhizosphere of uninfected and root-knot nematode-infected tomato plants. The in vitro nematicidal potential of rhizobacteria from the uninfected rhizosphere was significantly higher than that from the infested rhizosphere. The three most effective antagonists were identified as Microbacterium laevaniformans, Staphylococcus kloosii, Priestia aryabhattai from root-knot-nematode-infected tomato rhizosphere and Staphylococcus sciuri, Bacillus pumilus, and Priestia megaterium from the rhizosphere of uninfected tomato. Volatile organic compounds from these rhizobacteria were characterized. Except for S. kloosi, the soil drenching with other rhizobacteria significantly reduced juvenile penetration (>60%) in tomato roots. Furthermore, the application of a single or consortium of these rhizobacteria affected nematode reproduction in tomato. Four consortia of rhizobacteria (S. sciuri + B. pumilus + P. megaterium), (B. pumilus + P. megaterium), (S. sciuri + B. pumilus), and (S. sciuri + P. megaterium) from uninfested rhizosphere and two consortia (M. laevaniformans + P. aryabhattai), (M. laevaniformans + S. kloosii + P. aryabhattai) from infested rhizosphere (IRh) effectively reduced M. incognita reproduction and considerably enhanced plant growth and yield in tomato. The nematicidal efficacy, however, decreased when S. kloosii was applied in the consortium. These distinctive effects illustrate how the plant susceptibility to nematode infectivity is modulated under natural conditions.

摘要

在保护地栽培中,经常观察到未感染和根结线虫感染的番茄植株混生。为了了解这些番茄植株对根结线虫感染易感性的根际细菌的作用,从未感染和根结线虫感染的番茄植株根际分离出具有形态特征明显不同的菌落特征的 36 株根际细菌(每种类型 18 株)。未感染根际的根际细菌的体外杀线虫潜力明显高于受感染根际的根际细菌。从根结线虫感染的番茄根际中鉴定出三种最有效的拮抗菌,分别为微杆菌(Microbacterium laevaniformans)、金黄葡萄球菌(Staphylococcus kloosii)和节杆菌(Priestia aryabhattai),而从未感染的番茄根际中分离出的三种最有效的拮抗菌分别为松鼠葡萄球菌(Staphylococcus sciuri)、巨大芽孢杆菌(Bacillus pumilus)和施氏假单胞菌(Priestia megaterium)。对这些根际细菌的挥发性有机化合物进行了表征。除了 S. kloosii 之外,用其他根际细菌进行土壤浇灌可显著减少番茄根中幼虫的穿透(>60%)。此外,单一或混合这些根际细菌的应用影响了番茄中的线虫繁殖。从未感染的根际分离出的四个根际细菌共生体(S. sciuri + B. pumilus + P. megaterium)、(B. pumilus + P. megaterium)、(S. sciuri + B. pumilus)和(S. sciuri + P. megaterium)以及来自受感染根际的两个共生体(M. laevaniformans + P. aryabhattai)、(M. laevaniformans + S. kloosii + P. aryabhattai)有效地降低了南方根结线虫的繁殖,并显著提高了番茄的生长和产量。然而,当 S. kloosii 应用于共生体时,杀线虫效果会降低。这些独特的效果说明了在自然条件下植物对线虫感染易感性是如何被调节的。

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