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斯威士兰与刀豆(Canavalia ensiformis (L.))结瘤相关的根瘤菌诱导的共生功能和光合速率

Symbiotic Functioning and Photosynthetic Rates Induced by Rhizobia Associated with Jack Bean ( L.) Nodulation in Eswatini.

作者信息

Ngwenya Zanele D, Dakora Felix D

机构信息

Department of Crop Sciences, Tshwane University of Technology, Private Bag X680, Pretoria 0001, South Africa.

Department of Chemistry, Tshwane University of Technology, Private Bag X680, Pretoria 0001, South Africa.

出版信息

Microorganisms. 2023 Nov 16;11(11):2786. doi: 10.3390/microorganisms11112786.

Abstract

Improving the efficiency of the legume-rhizobia symbiosis in African soils for increased grain yield would require the use of highly effective strains capable of nodulating a wide range of legume plants. This study assessed the photosynthetic functioning, N fixation, relative symbiotic effectiveness (%RSE) and C assimilation of 22 jack bean ( L.) microsymbionts in Eswatini soils as a first step to identifying superior isolates for inoculant production. The results showed variable nodule number, nodule dry matter, shoot biomass and photosynthetic rates among the strains tested under glasshouse conditions. Both symbiotic parameters and C accumulation differed among the test isolates at the shoot, root and whole-plant levels. Although 7 of the 22 jack bean isolates showed much greater relative symbiotic efficiency than the commercial strain XS21, only one isolate (TUTCEeS2) was statistically superior to the inoculant strain, which indicates its potential for use in inoculant formulation after field testing. Furthermore, the isolates that recorded high %RSE elicited greater amounts of fixed N.

摘要

提高非洲土壤中豆科植物与根瘤菌共生效率以增加谷物产量,需要使用能够使多种豆科植物结瘤的高效菌株。本研究评估了22株刀豆(L.)微共生体在斯威士兰土壤中的光合功能、固氮作用、相对共生有效性(%RSE)和碳同化,作为鉴定用于生产接种剂的优良分离株的第一步。结果表明,在温室条件下测试的菌株之间,根瘤数量、根瘤干物质、地上部生物量和光合速率存在差异。在地上部、根部和全株水平上,测试分离株的共生参数和碳积累均有所不同。虽然22株刀豆分离株中有7株的相对共生效率远高于商业菌株XS21,但只有一个分离株(TUTCEeS2)在统计学上优于接种菌株,这表明其在田间试验后有用于接种剂配方的潜力。此外,记录到高%RSE的分离株能固定更多的氮。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/07f7/10673450/6b00f1e6c558/microorganisms-11-02786-g001.jpg

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