Response of jiggs grass to inoculation with plant growth-promoting microrganisms

Sonia Purin da Cruz, Kelen Cristina Basso
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Abstract

Brazil is the second world producer of bovine meat, which often relies on preserved forage to decrease seasonality of forage production. Increased forage accumulation may be favored by technologies such as inoculation. Research works on this theme have been conducted with Azospirillum brasilense associated to oats, ryegrass and guinea grass. However, response of jiggs, a widely cultivated perennial grass, to plant growth-promoting microrganisms is poorly understood. Hence this study aimed to assess effects of inoculation on development of Cynodon dactylon cv. Jiggs. Four treatments were tested: T1) control, T2) Inoculation with A. brasilense, T3) Inoculation with Azospirillum, Rhizobium, Pseudomonas and Saccharomyces, T4) Inoculation + Reinoculation with Azospirillum, Rhizobium, Pseudomonas and Saccharomyces. Forage mass, percentage of leaves, stems, dead mass, reproductive structures and leaf/stem ratio were measured. Data were submitted to analysis of variance, and when significant effects were detected, means were separated by LSD Test. Positive effects of inoculation were recorded at all evaluations, mostly concerning percentage of leaves and leaf/stem ratio. A. brasilense improved leaf/stem ratio up to 56%. Also, a 64% increment on this parameter was obtained with Azospirillum, Rhizobium, Pseudomonas and Saccharomyces. Modifications of plant morphology components are important since grasses with more percentage of leaves increase nutritional value of haylage. Morphology of Cynodon dactylon cv. Jiggs is affected by Azospirillum, Rhizobium, Saccharomyces and Pseudomonas, improving aspects related to palatability and preferred grazing of livestock animals.
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猪蹄草对接种植物促生微生物的响应
巴西是世界第二大牛肉生产国,通常依靠保存的饲料来减少饲料生产的季节性。接种等技术可能有利于增加饲草积累。关于这一主题的研究工作已经与燕麦、黑麦草和几内亚草相关的巴西氮螺旋菌进行了研究。然而,作为一种广泛种植的多年生草本植物,吉格斯对植物生长促进微生物的反应尚不清楚。因此,本研究旨在评价接种对短爪蟹(Cynodon dactylon cv)发育的影响。Jiggs。试验设4个处理:T1)对照,T2)接种巴西螺杆菌,T3)接种固氮螺旋菌、根瘤菌、假单胞菌和酵母菌,T4)接种固氮螺旋菌、根瘤菌、假单胞菌和酵母菌再接种。测定饲料质量、叶、茎百分比、死质量、生殖结构和叶/茎比。数据提交方差分析,当检测到显著效应时,采用LSD检验分离均值。在所有评价中均记录了接种的积极效果,主要是在叶片百分比和叶/茎比方面。巴西螺提高叶茎比达56%。此外,固氮螺旋菌、根瘤菌、假单胞菌和酵母菌对该参数的影响也增加了64%。植物形态成分的改变是重要的,因为叶片比例越大,牧草的营养价值越高。短爪蟹的形态。吉格斯受到固氮螺旋菌、根瘤菌、酵母菌和假单胞菌的影响,改善了牲畜的适口性和偏好放牧。
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