Rootstock, scion, and microbiome contributions to cadmium mitigation in five Indonesian cocoa cultivars.

Jennifer Elise Schmidt, Mikael Dorman, Andrew Ward, Alana Firl
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Abstract

Reducing levels of heavy metals such as cadmium (Cd) in cacao beans has become an important priority for cacao production in Indonesia. Current mitigation strategies revolve around breeding and the use of soil ameliorants, and in the future, the soil microbiome may also have the potential to reduce Cd bioavailability and uptake by cacao trees. However, there remains a need for locally specific recommendations for low-Cd-accumulating cacao cultivars and knowledge of native beneficial bacteria and fungi. In a greenhouse study using field soil supplemented with Cd, five cacao clones (MCC02, M01, S1, S2, and ICCRI 9) were grafted in a fully factorial design to the same hybrid half sibling rootstocks, plant uptake was measured before and after the addition of cadmium nitrate, and rhizosphere microbial communities were characterized. Rootstock, scion, and graft combinations all significantly affected plant Cd levels, but the ranking of clones differed between low and high Cd soils. Twenty-six bacterial taxa and one fungal taxon were associated with Cd uptake. These results highlight the continued importance of breeding as a cadmium mitigation strategy and support the potential for the soil microbiome to contribute to reducing cadmium uptake in cacao.
根茎、接穗和微生物组对五个印度尼西亚可可栽培品种的镉缓解作用。
降低可可豆中镉等重金属的含量已成为印度尼西亚可可生产的一个重要优先事项。目前的缓解策略主要围绕育种和土壤改良剂的使用,未来,土壤微生物组也有可能降低可可树对镉的生物利用率和吸收率。不过,仍然需要针对当地情况推荐低镉积累的可可栽培品种,并了解本地有益细菌和真菌。在一项使用添加了镉的田间土壤进行的温室研究中,采用全因子设计将五个可可克隆(MCC02、M01、S1、S2 和 ICCRI 9)嫁接到相同的杂交半同胞砧木上,在添加硝酸镉之前和之后测量植物的吸收量,并对根瘤微生物群落进行表征。砧木、接穗和嫁接组合都会显著影响植物的镉含量,但克隆的等级在低镉土壤和高镉土壤中有所不同。26 个细菌类群和 1 个真菌类群与镉吸收有关。这些结果凸显了育种作为镉缓解策略的持续重要性,并支持土壤微生物组在减少可可对镉的吸收方面的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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