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Social Change in Rural Punjab With Emphasis on Voting Behavior: A Case Study of Village Jandraka District Okara

Thesis Info

Author

Ghulam Samdani

Department

National Institute of Pakistan Studies, QAU.

Program

Mphil

Institute

Quaid-i-Azam University

Institute Type

Public

City

Islamabad

Province

Islamabad

Country

Pakistan

Thesis Completing Year

2010

Thesis Completion Status

Completed

Page

102

Subject

Pakistan Studies

Language

English

Other

Call No: DISS/M.PhIl NIPS/206

Added

2021-02-17 19:49:13

Modified

2023-02-19 12:33:56

ARI ID

1676716073121

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فاخر ہریانوی

فاخرہریانوی (۱۹۰۱ء۔۱۹۷۷ء) کا اصل نام دین محمد تھا اور تخلص فاخرؔ تھا۔ فاخرؔ ہریانہ ضلع ہوشیا ر پور میں پیدا ہوئے۔ پنجاب یونیورسٹی سے ۱۹۳۱ء میں بی او ایل کیا۔ پھر پنجاب ایجوکیشن ڈیپارٹمنٹ سے ۱۹۳۵ء میں سینئر اینگلو ورینکولر کا سرٹیفکیٹ لیا۔ تعلیم کے بعد اردو مرکز لاہور میں ملازم ہو گئے۔ جگر مراد آبادی ،اصغر گونڈوی او ر یاس یگانہ چنگیزی بھی ان دنوں اس مرکز سے منسلک تھے۔ اصغر کے چلے جانے کے بعد فاخر کو اس ادارے کا ناظم بنا دیا گیا۔ فاخر نے کچھ عرصہ پنجاب لیجسلیٹو کونسل میں مترجم کی حیثیت سے بھی کام کیا۔ ۱۹۲۹ء میں فاخر شعبہ تعلیم میں چلے گئے۔ ملازمت کے سلسلے میں وہ بہت سے علاقوں میں رہے۔ اور آخر کار پسرور میں مستقل سکونت اختیار کی۔(۴۳۲)

’’موجِ صبا‘ فاخرؔ کا واحد شائع شدہ شعری مجموعہ ہے۔ جو فروری ۱۹۶۶ء میں ایوانِ ادب لاہور سے شائع ہوا۔ اس مجموعے کا دیباچہ پروفیسر حمید احمد خان نے لکھا ہے ۔ا س کی ترتیب میں ضیاء محمد ضیاء اور طاہر شادانی کی تلاش اور تفتیش شامل ہے۔ مرتبین نے اسے سات حصوں ،حمدیہ ،جذبات و افکار،رومان ،دیہاتی نغمے ،یادِ رفتگاں ،سیاسیات اور متفرقات میں تقسیم کیا ہے۔ یہ شعری مجموعہ ۲۴۰ صفحات پر مشتمل ہے۔ اس کی تفریظ ڈاکٹر وزیر آغا نے لکھی ہے۔ اشکِ عمل ان کا غیر مطبوعہ مجموعہ ہے۔فاخر نے سب سے پہلے مسدس حالی کی بحر میں اشکِ عمل قلمبند کروائی ہے۔ اول حصہ حمد باری تعالیٰ اور دوسرا حصہ حضورؐ کی زندگی سے متعلق اہم واقعات پر مشتمل ہے۔ ان میں تبلیغ اسلام فتح مکہ اور جنگ احد بالخصوص قابل ذکر ہیں- فاخرؔ نے قرآن مجید کا منظوم ترجمہ بھی کرنا شروع کیا لیکن ادھورا چھوڑ دیا۔ پھر ایام پیری میں دوبارہ اس کا م کا عزم کیا ۔قرآن مجید کی آیاتِ کریمہ کو بغیر قافیہ ردیف...

قرآن مجید اور احادیث میں لفظ رحم کا تصور اور استعمالات

All praises and thanks be to Allah, the Lord of the entire Universe Muhammad, who is a symbol of mercy, peace, and love to all human beings. Islam is a universal religion. Its blessings, bounties, and auspiciousness are common to all human beings irrespective of community, caste, creed, region, and nation. Islam is the religion of peace and mercy. It is a religion for humanity. It strongly emphasizes love and mercy in general. It teaches us that we should show mercy. R-?-M (Arabic: ?) is the tri consonantal root of many Arabic and Hebrew words, and many of those words are used in the Holy Quran. Holy Quran is a complete guide for all human beings. All chapters in the Quran, except one (Repentance Chapter), begin with the words “Bismillahiar-Rahman AR-Rahim” or in the name of Allah, Most Gracious, Most Merciful. IN Islam the title “Most Merciful” (al-Rahman) is one of the names of Allah and Compassionate (al-Rahim), which is the most common name occurring in the Quran. Rahman and Rahim both derive from the root Rahmat, which refers to tenderness and benevolence. Allah SWT could have used other attributes in its place, but he chooses these two which show their significance. God’s Mercy precedes his other attributes. Each worshipper repeats the attribute of mercy sixty-eight times/day during his five daily prayers. Without love and mercy, there will be chaos in society. Showing mercy to Allah’s creatures creates a society of peace and tolerance. That is why in Holy Quran Allah emphasized mercy and tenderness.

Population Dynamics, Stability and Molecular Ecology of Rhizosphe Reassociated Ochrobactrum Species

The genus Ochrobactrum has been recently described as containing legume-symbiotic species that are able to induce nodules on Acacia, Lupinus and Cytisus. The present study was planned to characterize an Ochrobactrum isolate from chickpea nodule, to study the ultrastructure of nodules induced by Ochrobactrum, confirmation of nodule occupancy using immunogold labeling, to analyze the effect of its inoculation on chickpea growth and yield, study the colonization potential and occurrence in the rhizosphere of chickpea as well as other crops. A Gram-staining-negative, aerobic, rod-shaped, non-spore forming bacterial strain Ca-34 isolated from root nodules of chickpea was characterized and studied for its taxonomic affiliation using polyphasic approach. Almost full-length 16S rRNA sequence (1492bp) showed similarities with those of the genus Ochrobactrum. The presence of common fatty acids and G+C ratio also supported the genus affiliation. Based on MALDI-TOF analysis and 16S rRNA sequence similarity (98.6%) the strains showed maximum similarities with O. intermedium (LMG 3301 T ). Ca-34 T showed an insertion of 46bp in the Helix 184 of 16S rRNA that forms an additional stem-loop structure. To our knowledge, this is the first report of 46bp insertion in any of the plant associated or nodule endophyte. Both strains (Ca-34 and O. intermedium LMG 3301 T ) are phylogenetic neighbors but DNA-DNA similarity value of 64% confirms their genome dissimilarity. Ca-34 T showed no amplification with primers reported to be specific for O. intermedium (LMG 3301 T ) or recA primers reported to amplify more than 100 Ochrobactrum species showing that Ca-34 T is different from other reported strains of the genus. The differences were further confirmed by different fingerprints obtained from RAPD, ARDRA and TP-RAPD profiles. The strain Ca-34 T was metabolically different from individual other type strains of Ochrobactrum in many reactions and from all type strains in positive gelatin hydrolysis, especially in negative assimilation of alanine amide and L-threonine. Based on phenotypic and genotypic data we concluded that strain Ca-34 T (DSM 22292, CCUG 57879) represents the type strain of a novel species for which we proposed the name Ochrobactrum ciceri sp. nov. xvUltrastructure observation of the nodules induced by Ca-34 T was carried out to see the infection process of the strain in chickpea. The electron microscopic observation showed that Ca-34 T has typical Meso/Rhizobium-like infection process confirmed by the infection thread, symbiosome and absence of PBH granules which is a characteristic of indeterminate chickpea nodules. Nodule occupancy was confirmed using immunogold labeling and nodule PCR using primers designed against the additional 46bp insertion to specifically amplify the Ca-34 T . Until now, there was no literature available on the ultrastructure of nodules induced by any Ochrobactrum specie. This study is the first report of the Ochrobactrum infection and host- ultrastructure. The nodulation and subsequent yield enhancement are important factors that determine the ecological success of any bacteria inoculated to the plant. The strain Ca-34 T was studied for its ecological behavior in the rhizosphere of ten chickpea genotypes (four kabuli and 6 desi) in field alone and/or along-with the Rhizobium in two different soil conditions (fertile and marginal). AT 60DAS (day after sowing) genotype and inoculation response was significant (P<0.05) at both sites but genotype x inoculation was non-significant at site 1 while highly significant at site 2. The data obtained showed that although Ca-34 T -inoculation has non-significant effect on early plant growth (60 DAS) and flowering (120DAS) but highly significant effect on yield (180DAS). Due to the difference in the fertility status and indigenous bacterial population of both soils, site 1 generally produced low biomass (3570-5161 Kg/ha) and grain yield (1317-2158 Kg/ha) as compared to site 2 which produced high biomass (6363- 6929 Kg/ha) as well as grain yield (3478-4265 Kg/ha). When compared to respective un-inoculated controls, maximum grain yield was obtained in Ca-34 T inoculated plants and inoculation response was significantly higher in kabuli genotypes as compared to desi genotypes. Ca-34 T -inoculation resulted in >100% increase in nodulation, biomass and grain yield and ≈72% increase in harvest index. Across bacterial inoculation treatments, grain yield was positively correlated to all the growth and yield parameters (r=0.262 to 0.856) e.g., nodule number and weight, plant weight, biomass, plant height, root length etc. The inoculation effect was more pronounced in marginal soil (Site 1) where no legume was grown previously as compared to the xvifertile soil where legumes were routinely grown (Site 2). PCA analysis clearly showed a site-specific response of genotype x bacterial inoculation. Although, comprehensive studies are available on Meso/Rhizobium-host inoculation and interaction but this kind of ecological data is being reported for the first time in literature for Ochrobactrum. The most important issue of bacterial inoculants is the rhizosphere competitiveness and colonization potential. The inoculated Ca-34 T strain showed very good colonization potential in chickpea roots, rhizosphere and nodules as confirmed by immunoblotting and specific PCR. In inoculated chickpea rhizosphere, the population of Ca-34 T was almost 1.5% while in nodules it was found to be 0.82% of total culturable population. Although the strain had also been isolated from non- inoculated chickpea rhizosphere, roots and nodules, but its presence in the rhizosphere of other crops could not be confirmed suggesting that the Ochrobactrum ciceri is mainly associated with chickpea and can be used for its nodulation and yield improvement in marginal lands.