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Role of Environmental Geology for Urbanization of Lahore City Pakistan

Thesis Info

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Author

Sheikh, Mohammad Iqbal

Program

PhD

Institute

University of the Punjab

City

Lahore

Province

Punjab

Country

Pakistan

Thesis Completing Year

2010

Thesis Completion Status

Completed

Subject

Applied Sciences

Language

English

Link

http://prr.hec.gov.pk/jspui/bitstream/123456789/6124/1/3977H.pdf

Added

2021-02-17 19:49:13

Modified

2023-01-06 19:20:37

ARI ID

1676727112849

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لسانیات کے انسانی زندگی پر اثرات

موضوع2:لسانیات کے انسانی زندگی پر اثرات
لسانیات کا انسانی زندگی پر گہرا اثر پڑتا ہے۔ زبان اور ادب کے ساتھ اس کا گہرا تعلق ہے۔لسانیات کی مدد سے ہم قدیم سے قدیم اور جدید سے جدید ادب کی تشکیل اور تفہیم میں آسانی ہوتی ہے۔لسانیات کی مدد سے کس بھی زبان کے قواعد اور تراکیب کو باآسانی سمجھا جا سکتا ہے۔یہ کام ماہر لسانیات ہی کر سکتے ہیں۔لسانیات تاریخ کے ان گوشوں کو بھی بے نقاب کرتی ہیجو وقت کی دھند میں کہیں گم ہو چکے ہوتے ہیں۔ماہر لسانیات کا صرف اپنی زبان میں ماہر ہونا ضروری نہیں ہے۔بلکہ دوسری زبانوں کا ماہر ہونا ضروری ہے۔اگر اردو کا ماہر ہے تو فارسی اور عربی زبان کا ماہر ہونا بھی ضروری ہے۔نہ صرف آگہی بلکہ جانچ پڑتال ضروری ہے۔جو الفاظ متروک ہو چکے ہیںوہ کیوں متروک ہیں۔میرکا دیوان ولی کا کلام دیکھیں نہ وہ الفاظ استعمال ہیں جو اب متروک ہو چکے ہیں۔ لسانیات کے علم سے شاعر کے اسلوب سے بھی آگاہی ہوتی ہے اور اس دور کے متعلق معلومات ملتی ہیں۔
لسانیات میں مختلف زبانوں کے انسانی معاشروں کے درمیان پائے جانے والے تعلق اور رشتوں کی بازیافت کا کام بھی ہوتا ہے۔لسانیات کا کام سماجیات اور اس کے کئی پہلووں کو جانچنا اورپرکھنا اور اسے اجاگر کرنا ہوتا ہے۔ لسانیات تعصبات،قومیت اور وطنیت سے قطع نظر خطوں، ملکوں اور شہروں میں بنے ہوئے لوگوں کو لسانی خصوصیات کے مطابق نزدیک لانے کے اسباب پیدا کرتی ہے۔
زبان کے مختلف نام:
اب لسانیات کے مختلف نام مروج ہیں۔اس سے پہلے کیا تھا؟فرانس میں کارڈینل ریستلو نے 1635ء میں Richelienفروغ اکیڈمی قائم کی اس کا مقصد یہ تھا کہ یہ فرنچ زبان کی تمام جزئیات کو ضابطے اور سلیقے کے سانچے میں ڈھالے۔فرانس میں سترھویں صدی عیسوی میں بالائی متوسط طبقے کے چند افراد نے اپنی زبان...

قرآن كا تصور ارض

The Almighty Allah has exhibited His quality and power of Creation through bringing into existence of this Universe and several creatures in it. Amongst these creatures, are the earth and the skies. According to Islamic doctrine, Allah the Almighty created seven skies. Similarly, he created seven earths, "This is the only Allah who has created seven skies and the same numbers ofearths where His order is obeyed. So that you may know that Allah is the omni-potent and He has circumpassed all the things by His power ofknowledge. In the present article, efforts have been made to know the literal meaning ofthe term "Ardh", which standfor the earth in Arabic. Basic kinds and subsequently the different terms used by the holy Quran for Ardh have been discussed with special refrence to Tabqatul Ardh (layers of earth) . The paper aims to illuminate that the Quran has numerous secrets of universe which need to be discovered in the best interest of the humanity

Cloning and Characterization of H + -Pyrophosphatase and Na + /H + Antiporter Genes from Leptochloa Fusca and Their Expression in Tobacco

Leptochloa fusca L. is a halophyte plant from the Poaceae family and is also locally known as kallar grass. It is a perennial, summer-growing, forage grass that is now cultivated in many parts of the Pakistan and India. It is highly tolerant to salinity, sodicity, water logging and high soil pH. Plants have evolved a variety of adaptation mechanisms against salt stress, such as; restricting the uptake of environmental Na + ; increasing the efflux of Na + from the cell; and sequestering Na + into the large intracellular vacuole to reduce Na + accumulation in the cytosol. Compartmentalization of the Na + into vacuoles can be accomplished by the action of Na + /H + antiporters in the vacuolar membrane. They catalyze the exchange of Na + for H + across tonoplast membranes using the proton gradient generated by the vacuolar H + -ATPase and H + -pyrophosphatase (PPase). The function of the NHX1 antiporter depends upon free H + provided by protons pumps. The objectives of the study were to isolate H + -pyrophosphatase and Na + /H + antiporter genes from Leptochloa fusca and characterize for salt and drought tolerance. During present study the full length H + - PPase and NHX1 genes were isolated from cDNA of L. fusca using degenerate primers generated from corresponding sequences of plants of the Poaceae family. The L. fusca H + -PPase (LfVP1) cDNA contained an uninterrupted open reading frame of 2,292 bp, coding for a polypeptide of 764 amino acids. The LfVP1 sequence showed 91% identity with Z. mays H + -PPase, 90 % with S. bicolor and 80 % with A. thaliana H + -PPase. The L. fusca NHX1 cDNA contained an uninterrupted open reading frame of 1,623 bp coding for a polypeptide of 541 amino acids. The L. fusca NHX1 gene sequence showed 88 % identity with S. bicolor and 87 % with Z. mays genes. The LfVP1 and LfNHX1 genes were characterized using various online bioinformatics tools; hydrophobicity plots; 2 dimensional transmembrane structures; and protein 3 dimensional structures. The LfVP1 and LfNHX1 genes were cloned under the control of Gal promoter in a Gateway ® yeast expression vector and transformed in rg9 (control); ena1 and ena1;nhx1 yeast mutants. Yeast complementation assay on hygromycin plates showed that overexpression of the LfVP1 and LfNHX1 genes suppressed the hygromycin susceptibility phenotype in yeast mutants. The LfVP1 and LfNHX1 were also cloned under control of the 35S, 2X-35S, ZmUbi and OsAct promoters using the Gateway ® technology. The LfVP1 and LfNHX1 genes were transferred in tobacco through Agrobacterium mediated plant transformation under xvicontrol of the 35S promoter and characterized for salt and drought tolerance. The LfVP1 and LfNHX1 transgenic lines showed higher levels of relative water contents, stomatal conductance, net photosynthetic rate, membrane stability index and more negative value of leaf osmotic potential as compared to wild type control plants. The LfVP1 and LfNHX1 transgenic plants were able to germinate and maintain their growth at to 200 mM and 250 mM NaCl. The LfVP1 and LfNHX1 transgenic plants also showed better germination at 2 mg L - Basta ® ( glufosinate-ammonium ) . The LfVP1 and LfNHX1 genes were also transformed in wheat under ZmUbi promoter. Putative transgenic plants were confirmed through PCR amplification and leaf bioassays.