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Intercropping Transplanted Pigeon Pea With Finger Millet: Arbuscular Mycorrhizal Fungi and Plant Growth Promoting Rhizobacteria Boost Yield While Reducing Fertilizer Input

机译:与手指小米的间隔移植的鸽子豌豆:丛枝菌根真菌和植物生长促进无根茎杆菌,同时减少肥料输入

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摘要

Pigeon pea (Cajanus cajan) and finger millet (Eleusine coracana) are staple food crops for millions of the rural population in Asia and Africa. We tested, in field trials over three consecutive seasons at two sites in India, an intercropping and biofertilization scheme to boost their yields under low-input conditions. Pigeon pea seedlings were raised during the dry season and transplanted row-wise into fields of finger millet, and arbuscular mycorrhizal fungi (AMF) and plant growth-promoting rhizobacteria (Pseudomonas) were added alone or in combination to both pigeon pea and finger millet. Our major findings are (i) effects of the biofertilizers were particularly pronounced at the site of low fertility; (ii) dual inoculation of AMF+PGPR to finger millet and pigeon pea crops showed increased grain yields more effectively than single inoculation; (iii) the combined grain yields of finger millet and pigeon pea in intercropping increased up to +128% due to the biofertilizer application; (iv) compared to direct sowing, the transplanting system of pigeon pea increased their average grain yield up to 267% across site, and the yield gains due to biofertilization and the transplanting system were additive. These technologies thus offer a tool box for sustainable yield improvement of pigeon pea and finger millet.
机译:Pigeon Pea(Cajanus Cajan)和手指小米(Eleusine Coracana)是亚洲和非洲数百万农村人口的主食作物。在印度的两个站点,我们在田间试验中进行了测试,在印度的两个站点,一个间作和生物元化方案,在低输入条件下提高产量。在干燥的季节期间饲养鸽豌豆幼苗,并将行明智的群体移植到手指小米,丛生菌根真菌(AMF)和植物生长促进的流虫(假单胞菌)单独添加或组合到鸽子豌豆和手指小米中加入。我们的主要研究结果是(i)生物元素的影响在低生育率的部位特别明显; (ii)对amf + pgpr的双重接种到手指小米和鸽豌豆作物的谷物产量比单次接种更有效; (iii)由于生物通化器应用,手指小米和鸽子豌豆在间作中的颗粒产量增加到+ 128%; (iv)与直接播种相比,鸽子豌豆的移植系统在围绕场地增加到267%的平均谷物产量,并且由于生物元化和移植系统引起的产量提升是添加剂。因此,这些技术为鸽子和手指小米提供了可持续产量改善的工具箱。

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