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首页> 外文期刊>Natural Resources >Plant Growth Promoting Rhizobacteria Having 1-Aminocyclopropane-1-Carboxylic Acid Deaminase to Induce Salt Tolerance in Sunflower (Helianthus annus L.)
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Plant Growth Promoting Rhizobacteria Having 1-Aminocyclopropane-1-Carboxylic Acid Deaminase to Induce Salt Tolerance in Sunflower (Helianthus annus L.)

机译:植物生长促进具有1-氨基环丙烷-1-羧酸脱氨酶的根际细菌诱导向日葵的耐盐性(Helianthus annus L.)

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Soil salinity badly affects agriculture productivity through accumulation of salts in upper layers of soils. The harmful effects of salts in arable lands have influenced modern as well as ancient civilizations. A pot study was carried out to test the performance of two PGPR isolates (KS 8, KS 28) on sunflower (SMH-0917) under different salinity levels (8, 10 and 12 dS·m-1). These salinity levels were developed by adding calculated amount of salts (NaCl, Na2SO4, CaCl2 and MgSO4) with ratio of 3:4:2:1. The bacterial strains KS 8 and KS 28 were applied separately in two treatments while third treatment was co-inoculation (KS mix). Completely randomized experimental design (CRD) was used and data were collected at flowering stage about pre-decided plant growth parameters (plant height, shoot dry weight and root dry weight). The bacterial isolate KS 8 showed an increase of 26, 102% and 83% in plant height, shoot dry weight and root dry weight at EC 8 dS·m-1, while this improvement was 67%, 163% and 296% at EC 10 dS·m-1, however an increase of 100%, 74% and 382% was recorded over control respectively at EC 12 dS·m-1. Similarly isolate KS 28 exhibited an increase of 14%, 69% and 54% in plant height; shoot dry weight and root dry weight at EC 8 dS·m-1, whereas this improvement was 56%, 163% and 188% at EC 10 dS·m-1, while an increase of 60%, 41% and 282% was registered respectively over control at EC 12 dS·m-1. The increase due to mixture treatments was 4%, 41% and 16% in plant height, shoot dry weight and root dry weight at EC 8 dS·m-1, while an increase of 33%, 57% and 100% at EC 10 dS·m-1, whereas an improvement of 53%, 33% and 164% respectively was noted at EC 12 dS·m-1 over un-inoculated. The isolate KS 8 performed better than KS 28 and mixture treatment. These two PGPR strains could be used to mitigate the adverse impact caused by salinity stress on sunflower.
机译:土壤盐分通过土壤上层盐分的积累严重影响农业生产力。盐在耕地中的有害影响影响了现代文明和古代文明。进行了盆栽试验,以测试两种盐分水平(8、10和12 dS·m-1)下两种PGPR分离株(KS 8,KS 28)在向日葵(SMH-0917)上的性能。这些盐度水平是通过以3:4:2:1的比例添加计算量的盐(NaCl,Na2SO4,CaCl2和MgSO4)来形成的。细菌菌株KS 8和KS 28在两种处理中分别应用,而第三种处理是共同接种(KS mix)。使用完全随机的实验设计(CRD),并在开花期收集有关预定植物生长参数(植物高度,枝干重和根干重)的数据。在EC 8 dS·m-1时,细菌分离株KS 8的株高,枝干重和根部干重分别增加了26、102 %和83 %,而分别提高了67%,163%和163。 EC 10 dS·m-1处为296%,但是在EC 12 dS·m-1处分别比对照增加了100%,74%和382%。同样,分离株KS 28的株高增加了14%,69%和54%。 EC 8 dS·m-1时的枝干重和根干重,而EC 10 dS·m-1时,则提高了56%,163%和188%,而EC 8 dS·m-1时则提高了60%,41 在EC 12 dS·m-1处分别比对照记录了%和282%。在EC 8 dS·m-1时,由于混合处理,株高,枝干重和根部干重分别增加了4%,41%和16%,而增加了33%,57%和77%。在EC 10 dS·m-1处100%,未接种EC 12 dS·m-1处分别提高53%,33%和164%。分离株KS 8的性能优于KS 28和混合物处理。这两种PGPR菌株可用于减轻盐分胁迫对向日葵造成的不利影响。

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