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<title>Masters Thesis</title>
<link>http://103.7.193.12:8080/xmlui/handle/123456789/98</link>
<description/>
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<rdf:li rdf:resource="http://103.7.193.12:8080/xmlui/handle/123456789/2082"/>
<rdf:li rdf:resource="http://103.7.193.12:8080/xmlui/handle/123456789/2070"/>
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<dc:date>2026-06-09T23:45:47Z</dc:date>
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<item rdf:about="http://103.7.193.12:8080/xmlui/handle/123456789/2107">
<title>EFFECTS OF KITCHEN WASTE COMPOST ON GROWTH AND YIELD OF  TOMATO</title>
<link>http://103.7.193.12:8080/xmlui/handle/123456789/2107</link>
<description>EFFECTS OF KITCHEN WASTE COMPOST ON GROWTH AND YIELD OF  TOMATO
A field experiment was conducted at the research field of Department of Crop Physiology &#13;
and Ecology, Hajee Mohammad Danesh Science and Technology University (HSTU), &#13;
Dinajpur during December, 2022 to April, 2023 to find out the effect of kitchen waste based &#13;
composts (KWC) on the performance of tomato cultivation. The experiment was laid out &#13;
in a single factorial Randomized Complete Block Design (RCBD) with three replications. &#13;
The experiment was consisted of 6 treatments such as C1 = 100% Recommended Dose of &#13;
Fertilizer (RDF)+10 t ha-1 of KWC, C2 = 100% RDF +7 t ha-1 of KWC, C3 = 100% RDF+5 &#13;
t ha-1 of KWC, C4 = 80% RDF+10 t ha-1 of KWC, C5 = 80% RDF+7 t ha-1 of KWC and C6 &#13;
= 80% RDF+5 t ha-1 of KWC. The tomato variety Bipul Plus was used as planting material. &#13;
No significant variation was observed among all the compost treatments for number of days &#13;
to 50% flowering and for number of days to 50% fruiting. KWC in combination with RDF &#13;
had positive impact on plant height, number of leaf plant-1, number of branches plant-1, &#13;
SPAD value, fruit length, fruit diameter, fruit plant-1 , single fruit weight, yield plant-1 and &#13;
yield at harvest. At harvest, the highest fruit length (54.20mm) and fruit weight (66.09g) &#13;
was found in C2 treatment; the highest fruit weight (66.09g) was found in C1 treatment, &#13;
whereas the highest yield plant-1 (1.68kg), yield plot-1 (16.39kg), yield (81.97 t ha-1) was &#13;
found in C3 treatment. Among the six treatments, C3 treatment (100% RDF+5 t KWC) is &#13;
the most effective combination for enhancing tomato production.
EFFECTS OF KITCHEN WASTE COMPOST ON GROWTH AND YIELD OF &#13;
TOMATO; &#13;
A Thesis &#13;
By &#13;
Student No. 1501013, &#13;
MASTER OF SCIENCE; &#13;
IN &#13;
CROP PHYSIOLOGY AND ECOLOGY, &#13;
DEPARTMENT OF CROP PHYSIOLOGY AND ECOLOGY, &#13;
HAJEE MOHAMMAD DANESH SCIENCE AND TECHNOLOGY UNIVERSITY &#13;
DINAJPUR, BANGLADESH; &#13;
DECEMBER 2023.
</description>
<dc:date>2023-12-01T00:00:00Z</dc:date>
</item>
<item rdf:about="http://103.7.193.12:8080/xmlui/handle/123456789/2082">
<title>IMPROVEMENT OF DROUGHT AND SALINITY TOLERANCE OF  CORIANDER (Coriandrum sativum L.) THROUGH APPLICATION OF  MELATONIN</title>
<link>http://103.7.193.12:8080/xmlui/handle/123456789/2082</link>
<description>IMPROVEMENT OF DROUGHT AND SALINITY TOLERANCE OF  CORIANDER (Coriandrum sativum L.) THROUGH APPLICATION OF  MELATONIN
NAHIAN, KAZI AN
Coriander (Coriandrum sativum L.) is one of the most important condiments for culinary &#13;
purposes.Addressing this issue, there were two experiments were carried out at Hajee &#13;
Mohammad Danesh Science and Technology University in the Department of Crop Physiology &#13;
and Ecology from 2023 to 2024 followed by completely randomized design (CRD) with three &#13;
replications. During the experimental period germination traits, seedling growth, &#13;
photosynthetic pigments, proline contents and water relations were measured to understand the &#13;
role of melatonin in mitigating the ill effects of drought and salinity stress of coriander (BARI &#13;
Coriander 2). &#13;
The experiment 1 was related to drought stress and the treatments were T1 = Control condition &#13;
(Tap water + 0 µM MT), T2 = Moderate drought stress (-2 bars) + 0 µM MT, T3 = Moderate &#13;
drought stress (-2 bars) + 50 µM MT, T4 = Moderate drought stress (-2 bars) + 100 µM MT, &#13;
T5 = Moderate drought stress (-2 bars) + 150 µM MT, T6 = Higher drought stress (-4 bars) + 0 &#13;
µM MT, T7 = Higher drought stress (-4 bars) + 50 µM MT, T8 = Higher drought stress (-4 bars) &#13;
+ 100 µM MT and T9 = Higher drought stress (-4 bars) + 150 µM MT. From the results of &#13;
Experiment 1, it was observed that drought stress plots (T2-T9) showed lower performance in &#13;
respect of germination, seedling growth and photosynthetic traits compared to control &#13;
condition (T1). However, the pots treated with MT showed the better results in compared to the &#13;
no MT-treated pots in artificially created drought conditions. The plants treated with 100 µM &#13;
MT (T4) revealed that the highest germination traits (Germination percentage, 97%; Mean &#13;
Germination Time, 14.31 days and Germination rate index, 37.46; Co-efficient velocity of &#13;
germination,9.15 and Timson germination rate index 17.14); Photosynthetic pigments &#13;
(chlorophyll a 6.05 mg g-1 FW; chlorophyll b 1.90 mg g-1 FW, total chlorophyll 7.95 mg g-1 &#13;
FW, and total carotenoids 2.46 mg g-1 FW) and growth attributes (shoot length ,9.29 cm; root &#13;
length, 10.04 cm ; seedling dry weight, 0.037 mg) traits. Whereas, the lowest germination &#13;
(Germination percentage, 56%; Mean Germination Time, 13.18 days and Germination rate &#13;
index,21.71;co efficient velocity of germination 7.04; Timson germination rate index,10.35); &#13;
Photosynthetic pigments (chlorophyll a ,3.10 mg g-1 FW; chlorophyll b, 1.13 mg g-1 FW, Total &#13;
chlorophyll ,4.23 mg g-1 FW, and Total carotenoids, 0.85 mg g-1 FW) and growth parameters &#13;
(shoot length ,7.30 cm; root length, 6.89 cm ; seedling dry weight, 0.016 mg) traits were &#13;
observed at T9 treatment. On the other hand, highest level of proline was observed in drought &#13;
stress plots compared to the control (T1) condition. Among all the treatments (T2-T9) under &#13;
drought condition, the lowest level of proline observed T4.
IMPROVEMENT OF DROUGHT AND SALINITY TOLERANCE OF &#13;
CORIANDER (Coriandrum sativum L.) THROUGH APPLICATION OF &#13;
MELATONIN; &#13;
A Thesis &#13;
By &#13;
KAZI AN NAHIAN, &#13;
Student No: 2205100;  &#13;
MASTER OF SCIENCE &#13;
IN &#13;
CROP PHYSIOLOGY AND ECOLOGY, &#13;
DEPARTMENT OF CROP PHYSIOLOGY AND ECOLOGY, &#13;
HAJEE MOHAMMAD DANESH SCIENCE AND TECHNOLOGY UNIVERSITY &#13;
DINAJPUR; &#13;
DECEMBER 2024.
</description>
<dc:date>2024-12-01T00:00:00Z</dc:date>
</item>
<item rdf:about="http://103.7.193.12:8080/xmlui/handle/123456789/2070">
<title>EFFECTS OF GA3 AND NITROBENZENE ON GROWTH AND YIELD  PERFORMANCE OF WHEAT UNDER LATE SOWN CONDITION</title>
<link>http://103.7.193.12:8080/xmlui/handle/123456789/2070</link>
<description>EFFECTS OF GA3 AND NITROBENZENE ON GROWTH AND YIELD  PERFORMANCE OF WHEAT UNDER LATE SOWN CONDITION
AHMED, SABBIR
To evaluate the effect of Gibberellic acid (GA3) and Nitrobenzene on late sown wheat, an &#13;
experiment was conducted at the research field of Crop Physiology and Ecology &#13;
Department, Hajee Mohammad Danesh Science and Technology University, Dinajpur, &#13;
during November 2022 to April 2023. The experiment was laid out in a two factorial RCBD &#13;
design with three replications. The factors used in the experiment were, Factor A: three &#13;
growing conditions viz. Normal (seeds were sown on November 15, 2022), foliar &#13;
application of GA3 under late sown condition (seeds were sown on January 1, 2023), and &#13;
foliar application of Nitrobenzene under late sown condition (seeds were sown on January &#13;
1, 2023). Factor B: three wheat varieties (BARI Gom 28, BARI Gom 30, and BARI Gom &#13;
33). Interaction effect of growing conditions and wheat varieties significantly influenced &#13;
the different physiological traits, yield and yield attributes of wheat. Highest SPAD value &#13;
was found in BARI Gom 33 under normal condition and the lowest SPAD value was found &#13;
in BARI Gom 33 under late sowing condition with Nitrobenzene, however they are not &#13;
statistically different. Canopy temperature was cooler in normal growing condition &#13;
compared to late sown condition. Foliar application of GA3 increased plant height, spike &#13;
length, and biological yield in BARI Gom 28; thousand grain weight in BARI Gom 30 and &#13;
BARI Gom 33; grains spike-1 and grain yield in BARI Gom 30. &#13;
Foliar application of Nitrobenzene increased plant height, spike length in BARI Gom 28 &#13;
and BARI Gom 33; grains spike-1, thousand grain weight, grain yield in BARI Gom 30 and &#13;
BARI Gom 33; and biological yield in all the varieties. &#13;
The results of the present study indicated that the application of GA3 and Nitrobenzene &#13;
increased wheat yield at late sown condition, and BARI Gom 33 showed highest yield &#13;
among the three late sown varieties.
EFFECTS OF GA3 AND NITROBENZENE ON GROWTH AND YIELD &#13;
PERFORMANCE OF WHEAT UNDER LATE SOWN CONDITION; &#13;
A Thesis &#13;
By &#13;
SABBIR AHMED, &#13;
Student No. 1701169; &#13;
MASTER OF SCIENCE &#13;
IN &#13;
CROP PHYSIOLOGY AND ECOLOGY, &#13;
DEPARTMENT OF CROP PHYSIOLOGY AND ECOLOGY, &#13;
HAJEE MOHAMMAD DANESH SCIENCE AND TECHNOLOGY UNIVERSITY, &#13;
DINAJPUR-5200, BANGLADESH; &#13;
DECEMBER 2023.
</description>
<dc:date>2023-12-01T00:00:00Z</dc:date>
</item>
<item rdf:about="http://103.7.193.12:8080/xmlui/handle/123456789/2069">
<title>SUSTAINABLE PRODUCTION OF SWEET PEPPER (Capsicum annuum L.) USING  POLYHOUSE FOR LOW TEMPERATURE MANAGEMENT</title>
<link>http://103.7.193.12:8080/xmlui/handle/123456789/2069</link>
<description>SUSTAINABLE PRODUCTION OF SWEET PEPPER (Capsicum annuum L.) USING  POLYHOUSE FOR LOW TEMPERATURE MANAGEMENT
Islam, Md. Shajedul
A research work was conducted during November 2022 to May 2023 to manage low &#13;
temperature effect for sustainable production of sweet pepper (Capsicum annuum L.) using &#13;
polyhouse. Two growing conditions (Polyhouse and open field) and four genotypes were &#13;
evaluated based on their morpho-physiological, biochemical characteristics and yield attributes &#13;
at research field and laboratory of the Department of Crop Physiology and Ecology, HSTU, &#13;
Dinajpur. The experiment was laid out in a Split Plot Design with three replications. Main plot &#13;
treatment comprised of two growing conditions mentioned above and subplot treatment &#13;
included four varieties of sweet pepper such as green, orange, red and yellow varieties. &#13;
Polyhouse condition played a significant role on regulation of temperature and relative &#13;
humidity (%) which ultimately control the production of sweet pepper. Different growth &#13;
parameters, physiological, biochemical and yield attributes such as plant height, leaf number, &#13;
SPAD value, vitamin C, total carotenoid, fruit length, fruit diameter, single fruit weight, no. of &#13;
fruit per plant, fruit weight per plant, fruit yield per plot and fruit yield (tha-1) were measured &#13;
during the experiment period. Result revealed that the poly house condition always showed &#13;
better performance in production of sweet pepper than that of open field condition.  All the &#13;
varieties performed equally in terms of fruit yield. Red variety contained the maximum vitamin &#13;
C (74.1mg/100ml) but the yellow variety contained the highest total carotenoid (30.48 µ/g). &#13;
Poly house growing condition significantly influenced the yield and yield traits. Red variety in &#13;
polyhouse field condition produced the highest yield (12.33 tha-1) but the best market quality &#13;
of fruit (fruit length 105.95 mm and diameter 100.53 mm) was produced by green variety in &#13;
poly house field condition which was statistically similar with red variety. Therefore, polyhouse &#13;
field condition could be used for sweet pepper production at farmer’s level as a low-cost &#13;
sustainable technique.
SUSTAINABLE PRODUCTION OF SWEET PEPPER (Capsicum annuum L.) USING &#13;
POLYHOUSE FOR LOW TEMPERATURE MANAGEMENT; &#13;
A Thesis &#13;
By &#13;
Md. Shajedul Islam, &#13;
Student ID No. 1601376; &#13;
MASTER OF SCIENCE &#13;
IN &#13;
CROP PHYSIOLOGY AND ECOLOGY, &#13;
DEPARTMENT OF CROP PHYSIOLOGY AND ECOLOGY, &#13;
HAJEE MOHAMMAD DANESH SCIENCE AND TECHNOLOGY UNIVERSITY, &#13;
DINAJPUR-5200, BANGLADESH; &#13;
DECEMBER 2023.
</description>
<dc:date>2023-12-01T00:00:00Z</dc:date>
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