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Screening of Sesbania for tolerance to aluminum toxicity and symbiotic effectiveness with acid tolerant rhizobia strains in acid soil in Western Kenya

机译:肯尼亚西部酸性土壤中耐酸根瘤菌菌株对Sesbania铝耐性和共生有效性的耐受性筛选

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摘要

Nitrogen fixation by leguminous trees such as sesbania (Sesbania sesban) in acid soils is limited by aluminium (Al) toxicity and phosphorus (P) deficiency. We screened 214 East African sesbania accessions for Al toxicity tolerance, P use efficiency and sesbania-rhizobia symbiosis. Aluminium toxicity tolerance or sensitivity was measured by the relative root elongation index. Highly Al tolerant and sensitive accessions were screened for P use efficiency. Highly P use efficient and Al sensitive accessions were assessed for symbiotic effectiveness with acid tolerant rhizobia. Eighty-eight per cent of the accessions were Al toxicity tolerant. High Al levels reduced shoot P content by 88% and total dry matter (TDM) by 83%. P addition increased shoot P content and TDM. Rhizobia inoculation increased nodulation by 28-82%, shoot N content by 28-45% and TDM by 15-34% in the low rhizobia density acid soil of Bumala, Kenya. P use efficient accessions had higher nodulation, shoot N content and TDM in the ranges 32-70, 20-52 and 22-36%, respectively, compared to sensitive genotypes. The combination of sesbania accession (SSUG10) and rhizobia strain ASs48 was superior in shoot N accumulation. Inoculation of P use efficient germplasm with acid tolerant rhizobia can improve N-rich biomass accumulation suitable for N replenishment in acid soils.
机译:在酸性土壤中,豆科植物(如芝麻)的固氮作用受到铝(Al)毒性和磷(P)缺乏的限制。我们筛选了214种东非芝麻植物的铝毒性耐受性,磷的利用效率和芝麻-根瘤菌共生。铝毒性耐受性或敏感性通过相对根伸长指数来测量。筛选了高度耐铝和敏感的种质,以提高磷的利用效率。对耐酸根瘤菌的共生有效性进行了评估,评估了磷使用效率高和铝敏感的种质。 88%的种质对铝具有毒性耐受性。高的铝含量使茎中的磷含量降低了88%,总干物质(TDM)降低了83%。磷的添加增加了芽中磷的含量和TDM。在肯尼亚布马拉的低根瘤菌密度酸性土壤中,根瘤菌接种使根瘤菌增加了28-82%,茎秆氮含量增加了28-45%,TDM增加了15-34%。与敏感基因型相比,磷肥高效种质有较高的根瘤,芽N含量和TDM,分别在32-70、20-52和22-36%的范围内。芝麻(SSUG10)和根瘤菌菌株ASs48的组合在芽N积累方面表现优异。用耐酸根瘤菌对有效利用磷的种质进行接种,可以改善适合在酸性土壤中补充氮的富氮生物量积累。

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