Singh Dhananjaya Pratap, Singh Vivek, Shukla Renu, Sahu Pramod, Prabha Ratna, Gupta Amrita, Sarma Birinchi K, Gupta Vijai K
ICAR-National Bureau of Agriculturally Important Microorganisms, Kushmaur, Maunath Bhanjan 275103, India; ICAR-Indian Institute of Vegetable Research, Jakhini, Varanasi 221305, India.
ICAR-National Bureau of Agriculturally Important Microorganisms, Kushmaur, Maunath Bhanjan 275103, India.
Microbiol Res. 2020 Oct;239:126538. doi: 10.1016/j.micres.2020.126538. Epub 2020 Jun 29.
Stage-dependent concomitant fortification of rice (Oryza sativa L.) varieties PB1612 and CO51 with microbial inoculants Trichoderma asperellum and Pseudomonas fluorescens as seed coating, seedling root inoculation and soil application enhanced growth, activated antioxidant enzymes and modulated defence-related genes in plants. Microbial inoculants improved shoot height, tiller numbers, fresh weight and dry biomass. Co-inoculation was more impactful in enhancing plant growth and development as compared to single inoculation. Single and co-inoculation improved organic carbon (OC) and N, P and K content in the soil substantially. Mean values between control and co-inoculation varied significantly for OC in PB1612 (p0.001) and CO51 (p0.019) and phosphorus content in PB1612 (p0.044) and CO51 (p0.021). Microbial inoculation enhanced soil nutrients and increased their bioavailability for the plants. Total polyphenolics, flavonoids and protein content increased in the leaves following microbial inoculation. Enhanced non-enzymatic antioxidant parameters (ABTS, DPPH, Fe-ion reducing power and Fe-ion chelation) was found in microbe inoculated rice reflecting high free radical scavenging activity in polyphenolics-rich leaf extracts. Increased enzyme activity of superoxide dismutase (SOD), glutathione reductase (GR), phenylalanine ammonia-lyase (PAL), peroxidase (PO), glutathione peroxidase (GPX), ascorbate peroxidase (APX) and catalase (CAT) showed improved ROS scavenging in rice plants having co-inoculation. Over-expression of PAL, cCuZn-SOD and CAT genes in microbial inoculated rice plants was recorded. The study concludes that plant stage-wise concomitant fortification by microbial inoculants could play multi-pronged manifestations at physiological, biochemical and molecular level in rice to positively influence growth, development and defense attributes in plants.
以微生物接种剂棘孢木霉和荧光假单胞菌对水稻品种PB1612和CO51进行阶段依赖性伴随强化,通过种子包衣、幼苗根系接种和土壤施用,增强了植物的生长,激活了抗氧化酶,并调节了植物中与防御相关的基因。微生物接种剂提高了株高、分蘖数、鲜重和干生物量。与单接种相比,共接种对促进植物生长发育更有影响。单接种和共接种显著提高了土壤中的有机碳(OC)以及氮、磷、钾含量。PB1612(p<0.001)和CO51(p<0.019)中OC以及PB1612(p<0.044)和CO51(p<0.021)中磷含量的对照与共接种之间的平均值差异显著。微生物接种提高了土壤养分,并增加了其对植物的生物有效性。微生物接种后,叶片中的总多酚、黄酮类化合物和蛋白质含量增加。在接种微生物的水稻中发现非酶抗氧化参数(ABTS、DPPH、铁离子还原能力和铁离子螯合)增强,这反映了富含多酚的叶片提取物中具有高自由基清除活性。共接种的水稻植株中超氧化物歧化酶(SOD)、谷胱甘肽还原酶(GR)、苯丙氨酸解氨酶(PAL)、过氧化物酶(PO)、谷胱甘肽过氧化物酶(GPX)、抗坏血酸过氧化物酶(APX)和过氧化氢酶(CAT)的酶活性增加,表明ROS清除能力提高。记录了微生物接种水稻植株中PAL、cCuZn-SOD和CAT基因的过表达。该研究得出结论,微生物接种剂对植物进行阶段依赖性伴随强化可在水稻的生理、生化和分子水平上发挥多方面作用,从而对植物的生长、发育和防御特性产生积极影响。