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بابا فضل دین سائیں

بابا فضل دین سائیں
) رجسٹرار ہائی کورٹ (
قلندر پاک یسارو یمین فضل دین بابا سائیں
کیتا روشن دین ، مبین، فضل دین بابا سائیں
عالم، فاضل، کامل جہدے علم دا انت ناں کوئی
علم و عمل تے زہد عبادت، حدوں ودھ یکسوئی
عشق نبی دا چولا پایا ، شرع شریف دی لوئی
ساڈے لئی وی کرو دعائیں، فضل دین بابا سائیں
عالم فاضل مسئلے پچھدے پاوندے راہنمائی اے
ایڈا فیض روحانی ملدا کمی نہ ایتھے کائی اے
تونسے پاک دا لنگر جاری سب نے موج منائی اے
ساڈے تے وی کرم کمائیں ، فضل دین بابا سائیں
علم شریعت ، علم طریقت ،علم حقیقت تے ہے عبور
عشق نبی وچ اکھاں رہندیاں ہر ویلے بے حد مخمور
بدن مبارک بن خوشبوئوں جیویں لائی ہووے سندور
ساڈی وی توں لج نبھائیں ، فضل دین بابا سائیں

سوہنا مکھڑا بابا جی دا سیاں ویکھن آئیاں نیں
رج رج ویکھن تے خوش ہوون رحمتاں جھڑیاں لائیاں نیں
اللہ سوہنے آساں ایتھے سب دیاں آن پجائیاں نیں
کر دیو ساڈیاں دُور بلائیں ، فضل دین بابا سائیں
بھٹی قوم توں صدقے جاواں کیتے جیس اُجالے نیں
دین نبی دی خدمت کر کے گھر گھر دیوے بالے نیں
فقہ ، حدیث ، قرآن فقر دے چشمے خوب نکالے نیں
آپ تے راضی رسولِ امیں فضل دین بابا سائیں
پیر اقبالؔ بھتیجا ہے جو بیٹھا رونق لائی اے
فیض روحانی بابا جی دا جاندا ایہہ ورتائی اے
کرے دعا تے خیراں ہوون رحمت رب فرمائی اے
جھات کرم دی ساتھے پائیں فضل دین بابا سائیں
قادریؔ نے تے پائی اے در دی ایس غلامی
آندے جاندے محفل دے وچ گزرے عمر تمامی
ہائی کورٹ دے جسٹس جتھے بھردے آن سلامی
سانوں...

Personal Knowledge of a Judge As a Source of Proof: An Islamic Perspective

Islam has given pivotal role to the judiciary and considers it one of the most important pillar of the state. In this regard, the role of a judge is also of great importance as justice cannot be dispensed in society without the contribution of a judge. When a dispute is brought to a court, it becomes the responsibility of the judge to provide justice to the parties. A judge relies on testimony, oath and circumstantial evidences as sources of proof. Jurists have discussed them in detail while they have also discussed personal knowledge of a judge (Ilm al-Qadi) as a source of proof. This article focuses on it, where different stipulations and conditions, as laid down by the jurists, have been discussed along with their arguments.

Development of Transgenic Wheat Triticum Aestivum L. for Drought Tolerance

Drought is a major limiting factor for plant growth and crop production. It is essential to understand and control transgene expression in plant transformation and biotechnology. The aim of this study was to develop drought tolerant crops especially wheat. Promoters play a pivotal role in controlling gene expression. Introns and sequences surrounding translation initiation codons are important cis-elements that modulate the expression of genes in drought stress. Using both GFP and GUS as reporter genes, expression pattern of rice SalT promoter was characterized in barley. Agrobacterium mediated method was used to transform SalT-GUS and SalT-GFP constructs in barley. Promoter activity was tested in embryo, callus, Leaf, shoots and root of barley. GFP and GUS under SalT promoter were observed in all plant parts. On the basis of these results, DREB1A gene was cloned under SalT promoter to express first in tobacco and then in wheat. In an attempt to develop drought tolerant tobacco, an expression cassette containing the Arabidopsis DREB1A cDNA under the Figwort Mosaic Virus promoter (FMV) and SalT promoter was transformed into tobacco via Agrobacterium mediated transformation. FMV is a strong and constitutive promoter while SalT is an inducible promoter that can be used for enhancing expression of AtDREB1A gene in tobacco. Putative transgenic T0 plants were confirmed by PCR and copy number was determined by Southern hybridization. RTPCR confirmed the expression of gene in transgenic plants. Selected single copy transgenic plants were further analyzed for drought stress tolerance at T1 generation. Seed germination results showed that transgenic tobacco seeds of both FMVDREB1A and SalT-DREB1A were able to germinate on 20 % PEG and 300 mM mannitol while wild type seeds failed to germinate. Different physiological tests demonstrated enhanced tolerance to drought stress in transgenic tobacco plants than their wild type counterparts. Transgenic tobacco plants of both constructs showed enhanced drought tolerance and produced more seeds than control plants when water was withheld for 10 days. The present investigation clearly showed that overexpression of the AtDREB1A gene under FMV and SalT promoters enhanced drought tolerance in transgenic tobacco and offers applications in developing drought tolerant crops. Based on the results in tobacco, three drought responsive constructs (SalT-DREB1A, rd29A-DREB1A and LEA-SUT2) were transformed in wheat. Wheat transformation was done through Agrobacterium mediated method. Putative transgenes were confirmed by PCR and Southern hybridization. One to four copies of insertions were found in Southern hybridization analysis. Single copy plants were selected for further analysis. RT-PCR showed the expression of transgene while no expression was observed in wild type. Osmotic stress (by mannitol) showed higher seed germination in transgenic wheat plants of all constructs than wild type. Transgenic progenies obtained significantly more number of tillers, increased flag leaf area and 1000 grain weight than wild type. Similarly physiological results indicated that most of the transgenic plants of all constructs gained higher relative water content, photosynthetic rate, stomatal conductance, transpiration efficiency than wild type plants. The present research clearly showed that over-expression of the AtDREB1A gene under rd29A and SalT promoters and HvSUT2 gene under LEA promoter enhanced drought tolerance in transgenic wheat. This study offers applications to grow transgenic wheat in drought prone environment for food security.
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Asian Research Index Whatsapp Chanel

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