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首页> 外文期刊>Indian Journal of Horticulture >Effect of PGPR on strawberry cultivation under greenhouse conditions
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Effect of PGPR on strawberry cultivation under greenhouse conditions

机译:PGPR对温室条件下草莓栽培的影响

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The present study was conducted during 2016-18 to evaluate the effect of plant growth promoting rhizobacteria (PGPR) on strawberry cv. 'Chandler' under greenhouse conditions. Three PGPR strains (Pseudomonas sp. strain MHA75, Bacillus sp. strain RCA3 and Bacillus sp. strain SYB101) were used either alone or in combination as biofertilizer in a completely randomized design with four replicates. Data obtained from the study showed that the use of PGPR significantly increased fruit quality, yield, plant growth and control of disease. The inoculation of PGPR strains i.e., SYB101, MHA75 + SYB101, RCA3, MHA75 + RCA3 and MHA75 increased cumulative yield by 28.95, 28.15, 23.36, 18.60 and 17.46%, respectively. Ascorbic acid and anthocyanin content of fruit were increased significantly by the application of MHA75+ SYB101 (44.49, 45.54) ml/100 ml and SYB101 (43.96, 45.11) ml/100 ml as compared with the control (38.84, 40.43) ml/100 ml, respectively. Combinations of MHA75 + SYB101 and MHA75 + RCA3 showed 83.25 and 85.0% reduction in gray mould disease than control. Overall, the results of this study suggested that root inoculation with Bacillus sp. strain RCA3 and Bacillus sp. strain SYB101 alone or in combination with Pseudomonas sp. strain MHA75 have the potential to increase the yield and growth of strawberry. These microbial inoculants could be exploited for use under field conditions.
机译:本研究在2016 - 18期进行,评价植物生长促进植物生长的影响(PGPR)对草莓CV。 “钱德勒”在温室条件下。三个PGPR菌株(假单胞菌SP。菌株MHA75,Bacillus SP。菌株RCA3和芽孢杆菌SP。菌株SYB101)单独使用或组合用作完全随机化设计中的生物元素,四个重复。从研究中获得的数据表明,PGPR的使用显着提高了果实质量,产量,植物生长和对疾病的控制。接种PGPR菌株I.,SYB101,MHA75 + SYB101,RCA3,MHA75 + RCA3和MHA75分别将累积产量增加28.95,28.15,23.36,18.60和17.46%。通过施用MHA75 + SYB101(44.49,45.54)mL / 100mL和SYB101(43.96,45.15)mL / 100ml与对照(38.84,40.43)mL / 100ml相比,抗坏血酸和花青素含量显着增加, 分别。 MHA75 + SYB101和MHA75 + RCA3的组合显示出灰色霉菌疾病的83.25%和85.0%,而不是对照。总体而言,该研究的结果表明,用芽孢杆菌的根部接种。菌株RCA3和Bacillus Sp。单独菌株SYB101或与PSEUDOUDONAS SP组合。菌株MHA75有可能提高草莓的产量和生长。这些微生物孕育剂可以在现场条件下利用。

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