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Potential ecological effects of Piriformospora indica, a possible biocontrol agent, in UK agricultural systems

机译:英国农业系统中可能的生物防治药物,一种可能的生物防治药物,在英国农业系统中的潜在生态效应

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摘要

Piriformospora indica (Sebacinaceae), a root endophytic fungus, was originally isolated from an arid sub-tropical soil. P. indica forms mutualistic symbioses with a broad range of host plants, increases biomass production, resistance and tolerance to fungal pathogens and abiotic stresses. These characteristics make it a very attractive component of more sustainable agriculture. So, it is desirable to understand its wider ecosystem effects. We determined how long P. indica could survive in the soil and how it interacts with other soil microorganisms and some important arable weeds.udSurvival of P. indica in the soil, under winter and summer conditions in the UK was tested by isolating DNA and RNA of P. indica from pots of soil which had been left open to winter-summer weather conditions without host plants, followed by PCR and reverse transcription-PCR (RT-PCR) with P. indica-specific primers. P. indica effects on other soil and root microorganisms were tested by PCR-denaturing gradient gel electrophoresis analysis of DNA extracted from soil and roots from pots in which P. indica-infected wheat had been grown. The effect of P. indica on growth of black-grass (Alopecuris myosuroides), wild-oat (Avena fatua) and cleavers (Galium aparine) was tested alone and in competition with wheat. udIn soil P. indica-mRNA and DNA could still be detected after eight months, but not after 15 months. Soils from P. indica-inoculated pots had distinct fungal and bacterial species communities which were more diverse than non-inoculated controls. P. indica infected A. myosuroides and A. fatua but was not detected in G. aparine. The average above-ground competitiveness of the weeds with wheat was decreased. udIf applied to field crops in the UK, P. indica would be persistent for up to 15 months and likely to alter competitive relations within vegetation. Increased soil microbial diversity during the first eight weeks after inoculation, although usually desirable, could alter soil composition or functioning. ud
机译:内生真菌根瘤菌(Se桐科)最初是从干旱的亚热带土壤中分离出来的。印第安假单胞菌与广泛的寄主植物形成互惠共生体,增加了生物量的产生,对真菌病原体和非生物胁迫的抗性和耐受性。这些特征使其成为更具可持续性的农业的极具吸引力的组成部分。因此,有必要了解其更广泛的生态系统影响。我们确定了印度P在土壤中可以存活多长时间,以及它如何与其他土壤微生物和一些重要的可耕杂草相互作用。 ud通过分离DNA和DNA在英国的冬季和夏季条件下对印度P在土壤中的存活进行了测试。在没有寄主植物的情况下,在冬夏气候条件下开放的土壤中的印度P的RNA,然后进行PCR和使用印度P特异性引物的逆转录PCR(RT-PCR)。 PCR稻对其他土壤和根系微生物的影响通过PCR变性梯度凝胶电泳分析,该方法是从种植有P稻感染的小麦的盆中的土壤和根系中提取的DNA进行检测。单独检测了印度。对黑草(Alopecuris myosuroides),野燕麦(Avena fatua)和切肉刀(Galium aparine)的生长的影响,并与小麦竞争。 ud在八个月后仍可检测到土壤假单胞菌的mRNA和DNA,但在15个月后仍未检测到。接种P.indica的盆栽土壤具有独特的真菌和细菌物种群落,比未接种的对照更多样化。印第安假单胞菌感染了A. myosuroides和A. fatua,但在G. aparine中未检测到。杂草与小麦的平均地上竞争力下降。 ud如果在英国用于大田作物,则印度假单胞菌将持续长达15个月,并可能改变植被之间的竞争关系。接种后前八周,土壤微生物多样性的增加(尽管通常是可取的)可能会改变土壤的组成或功能。 ud

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