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| 1 | Hybridization between salt resistant and salt susceptible genotypes of mungbean(Vigna radiata L.Wilczek)and purity testing of the hybrids using SSRs markers显示文摘Six cultivated and two wild genotypes of mungbean(Vigna radiata L. Wilczek) possessing variation for phenotypic and genotypic response for salt tolerance were hybridized. Hybridization results showed successful pod set and significant variations in cross-compatibility of investigated genotypes. Genotypes PLM 380 and PLM 562 showed promising combining ability with all genotypes. Results revealed significant crossing compatibility between V. radiata and V. sublobata. The cross ability ranged from 1.99 to 5.12%(average 3.08%). Molecular analysis confirmed the hybrids purity. All F_1 seeds were bold, green/shiny green and germinated between 3 to 5 days. Hybrid plants were normal, fertile and healthier over their respective progenitors. Uniform flowering and maturity of the hybrids showed absence of any defect or alteration in plant habit and life cycle of the hybrids. The hybrid plants showed increase in yield characteristics as no. of pods, pod length, 100 seeds weight, and yield per plant. Number of pods containing F_2 seeds ranged from 5–8 per cluster. The F_2 seeds were collected and stored for further research. Present study suggests that salt resistant wild relatives or cultivars of mungbean can be explored by breeding as a source of useful traits/genes providing salt tolerance. This may help in development of best mungbean variety for saline prone areas. Micro-satellite markers linked to the trait/genes may assist breeding by early selection of the genotypes compared to the phenotypic screening. | Sehrawat Nirmala Yadav Mukesh Bhat Kangila Venkataraman Sairam Raj Kumar Jaiwal Pawan Kumar | 2016 | Journal of Integrative Agriculture2016,15,3: | 3 |
| 2 | Effect of NaCl on nitrate reductitase, glutamate dehydrogenase and glutamate in Vignaradiata Calli显示文摘 | Gulati A Jaiwal P K | 1996 | Bio Plant1996,38,: | 1 |
| 3 | Strategies to deal with the concern about marker genes in transgenic plants:some environment-friendly approaches显示文摘 | Jaiwal P K Sahoo L Singh N D | | 0,,02: | 1 |
| 4 | Osteogenic differentiation of purified,culture-expanded human mesenchymal stem cells in vitro 显示文摘 | Jaiwal N Hayneworth SE Caplon AI | 1997 | J Cell Biochem1997,64,: | 1 |
| 5 | Cellular and whole plant responses of Vigna radiata to NaCl stress 显示文摘 | Gulati A Jaiwal P K | 1994 | Biologia Plantarum1994,36,2: | 1 |
| 6 | Effect of NaCl on nitrate reductitase, glutamate dehydrogenase and glutamate in Vignaradiata Calli显示文摘 | Gulati A Jaiwal P K | 1996 | Bio Plant1996,38,: | 1 |
| 7 | Agrobacterium tumefaciens- mediated transformation of blackgram: An assessment of factors influencing the efficiency of uidA gene transfer显示文摘 | Saini R Jaiwal P K | 2007 | BiologiaPlantarum2007,51,1: | 1 |
| 8 | Strategies to deal with the concern about marker genes in transgenic plants: some environment-friendly approaches显示文摘 | JAIWAL P SAHOO L SINGH N D | 2002 | Current Science2002,83,2: | 1 |
| 9 | Effect of NaCl on Nitrate Reductase Glutamate Dehydrogenase and Glutamate in Vigna Radiata Calll 显示文摘 | Gulati A Jaiwal P K | 1996 | Bio Plant1996,38,: | 1 |
| 10 | Agrobacterium tumefaciens-mediated genetic transformation of sesame (Sesamum indicum L.)显示文摘 | Manju Yadav Darshna Chaudhary Manish Sainger Pawan K. Jaiwal | 2010 | Plant Cell Tissue and Organ Culture (PCTOC)2010,,3: | 1 |
| 11 | Effect of NaC1 on nitrate reductitase, glutamate dehydrogenase and glutamate in Vignaradiata Calli显示文摘 | Gulati A Jaiwal P K | 1996 | Bio Plant1996,38,: | 1 |
| 12 | Selection and characterization of mannitol-tolerant calluse lines of Vigna radiata 显示文摘 | GULATI A JAIWAL P K | 1993 | Wilczek Plant Cell Tisss Org Cult1993,34,: | 1 |
| 13 | Agrobacterium tumefaciens mediated genetic transformation of mung bean -a recalcitrant grain legume 显示文摘 | Jaiwal P K Kumari R Ignacimuthu S | 2001 | Plant Science2001,61,: | 1 |
| 14 | Agrobacterium tumefaciens mediated genetic transformation of mung bean-a recalcitrant grain legume 显示文摘 | Jaiwal P K Kumari R Ignacimuthu S | 2001 | Plant Sci2001,161,: | 1 |
| 15 | Osteogenic differentiation of purified, culture-expanded human mesenchymal stem cells in vitro 显示文摘 | Jaiwal N Haynewworth SE Caplan AL | 1997 | J Cell Biochem1997,64,: | 1 |
| 16 | Agrobacterium tumefaciens-mediated transformation of blackgram: An assessment of factors influencing the efficiency of uidA gene transfer显示文摘 | R. Saini P. K. Jaiwal | 2007 | Biologia Plantarum2007,,1: | 1 |
| 17 | Effect of NaCl on Nitrate Reductase Glutamate Dehydrogenase and Glutamate in Vigna Radiata Calli显示文摘 | Gulati A Jaiwal P K | 1996 | Bio Plant1996,38,: | 1 |
| 18 | Effect of NaCl on nitrate reductase,glutamate dehydrogenase and glutamate in Vigna radiate calli显示文摘 | Gulati A Jaiwal P K | 1996 | Biol Plant1996,38,: | 1 |
| 19 | Biotechnological interventions for the sustainable management of a global pest,whitefly(Bemisia tabaci)显示文摘Whiteflies(Bemisia tabaci)are polyphagous invasive hemipteran insects that cause serious losses of important crops by directly feeding on phloem sap and transmitting pathogenic viruses.These insects have emerged as a major threat to global agriculture and food security.Chemically synthesized insecticides are currently the only option to control whiteflies,but the ability of whiteflies to evolve resistance against insecticides has made the management of these insects very difficult.Natural host-plant resistance against whiteflies identified in some crop plants has not been exploited to a great extent.Genetic engineering approaches,such as transgenics and RNA interference(RNAi),are potentially useful for the control of whiteflies.Transgenic plants harboring insecticidal toxins/lectins developed via nuclear or chloroplast transformation are a promising vehicle for whitefly control.Double-stranded RNAs(dsRNAs)of several insect genes,delivered either through microinjection into the insect body cavity or orally via an artificial diet and transiently or stably expressed in transgenic plants,have controlled whiteflies in model plants and in some crops at the laboratory level,but not at the field level.In this review,we highlight the merits and demerits of each delivery method along with strategies for sustained delivery of dsRNAs via fungal entomopathogen/endosymbiont or nontransgenic RNAi approaches,foliar sprays,root absorption or nanocarriers as well as the factors affecting efficient RNAi and their biosafety issues.Genome sequencing and transcriptome studies of whitefly species are facilitating the selection of appropriate genes for RNAi and gene-editing technology for the efficient and resilient management of whiteflies and their transmitted viruses. | Archna Suhag Honey Yadav Darshna Chaudhary S.Subramanian Ranjana Jaiwal Pawan K.Jaiwal | 2021 | Insect Science2021,28,5: | 0 |