SSR markers associated with fiber yield traits in ramie (Boehmeria nivea L. Gaudich)

2017 ◽  
Vol 107 ◽  
pp. 439-445 ◽  
Author(s):  
Ming-Bao Luan ◽  
Chen-Chen Liu ◽  
Xiao-Fei Wang ◽  
Ying Xu ◽  
Zhi-Min Sun ◽  
...  
2016 ◽  
Vol 31 (1) ◽  
pp. 36-44 ◽  
Author(s):  
Siyuan Zhu ◽  
Touming Liu ◽  
Qiuzhong Dai ◽  
Duanqing Wu ◽  
Xia Zheng ◽  
...  

2021 ◽  
Vol 13 (23) ◽  
pp. 13255
Author(s):  
Zerihun Yemataw ◽  
Alemar Said ◽  
Tesfaye Dejene ◽  
Walter Ocimati ◽  
David Amwonya ◽  
...  

The quantification of yield for different enset products has mainly been based on farmers’ estimates, which are often inaccurate. Several allometric models have been developed to overcome this challenge. Building on past work, the current study developed allometric models for enset fiber, kocho, and bula yield estimation. Enset yield limiting factors and associated yield gaps were also determined. In this study, above-ground growth and yield (kocho, bula, and fiber) traits of five-year-old plants of two widely grown enset landraces, ‘Unjame’ and ‘Siskela’, were assessed in farmers’ fields at three contrasting altitude sites. Except for bula, a minor yield component, correlation, and PCA analysis showed strong association between the above-ground and yield traits. Allometric equations based on the above-ground traits significantly (R2 = 25 to 68%) explained the variation in the yield traits. This study, for the first time, generated allometric models that can reliably estimate enset fiber yield. Leaf length, petiole length, and plant height are especially good for estimating fiber and kocho yields. The performance of models for bula were poor possibly due to the very low bula yields per plant. Soil chemical characteristics differently influenced enset yield attributes. For example, improving K supply can potentially enhance fiber yield. Higher yield gaps were observed for bula, with P accounting for the highest yield gaps across yield traits. Through careful targeting, the different yield attributes can thus be enhanced. This and previous studies clearly show that non-destructive enset plant assessments can provide solid information for quick and easy yield assessments for various traits during e.g., agronomic, germplasm evaluation, soil fertility enhancement, and intercropping trials.


2013 ◽  
Vol 44 ◽  
pp. 677-683 ◽  
Author(s):  
Li-jun Liu ◽  
Cheng-ying Lao ◽  
Na Zhang ◽  
He-quan Chen ◽  
Gang Deng ◽  
...  

Author(s):  
N. Hari Satyanarayana ◽  
V. Visalakshmi ◽  
J. Jagannadham ◽  
K. Madhu Kumar ◽  
P. Amarajyothi ◽  
...  

2020 ◽  
Vol 9 (4) ◽  
pp. 121
Author(s):  
ADJI SASTROSUPADI ◽  
BUDI SANTOSO

<p>Penelitian dilaksanakan di rumah kaca Instalasi Penelitian Tanaman Tembakau dan Serat, Karangploso, Malang pada bulan September 1998 sampai dengan Agustus 1999. Tujuan dai penelitian ini untuk mengetahui pengaruh dosis pupuk dai unsur hara mikro, dolomit dan waktu pembeian terhadap petumbuhan dan hasil serat rami pada tanah gambut Berengbengkel Kalimantan Tengah. Perlakuan disusun secara faklorial dalam ancangan acak lengkap dengan tiga ulangan. Faktor I berupa paket dosis pupuk yang terdii atas lima dosis yaitu d,. 30 g dolomit per pot ; d2. 50 mg CuSO, ♦ 50 mg ZnS04 + 50 mg MnS04 + 30 g dolomit per pot ; dj. : 100 mg CuS04 + 100 mg ZnS04 + 100 mg MnS04 + 30 g dolomit per pot ; &lt;U 50 mg CuS04 + 50 mg ZnS04 + 50 mg MnS04 + 15 g dolomit per pot; dan d, TOO mg CuS04 + 100 mg ZnSO, + 100 mg MnS04 + 15 g dolomit per pot. Faktor II berupa tiga waktu pemberian pupuk mikro yang terdii atas tiga taraf yaitu w, : dibeikan setiap habis di panen (setiap umur 60 hari sekali tanaman rami dipanen , dipotong pada pangkal batang); w2: dibeikan setiap dua kali dipanen ; dan wj: dibeikan setiap tiga kali dipanen. Klon rami yang ditanam adalah Pujon 10. Panjang stek rhizome yang ditanam 8 cm. Tanah gambut, dolomit dan pupuk kandang dicampur secara merata. Pot-pot plastik wana hitam diisi campuran media tersebut dengan takaran sebanyak 20 kg/pot. Pot-pot ini merupkan unit percobaan. Pot-pot diletakan dengan jarak 75 cm x.40 cm. Pupuk dasar (1.5 g urea + 1.0 g ZA + 1.0 g SP-36 + 1.0 g KCI)/pot/panen + 100 g pupuk kandang (kotoran kambingj'pot'tahun Pupuk kandang dan dolomit diberikan hanya sekali saja pada permulaan tanam Hasil penelitian menunjukkan bahwa hasil serat kasar (china-grass) tertinggi diperoleh dari total panenan II, III dan IV sebesar 8.62 g/pot yang dihasilkan dai perlakuan 100 mg CuS04 + 100 mg ZnS04 + 100 mg MnS04 /pot dan 30 g dolomit dengan pembeian pupuk setiap kali dipanen.</p><p>Kata kunci: Lahan gambut, dolomit, rami (Boehmeria nivea) <br /><br /></p><p><strong>ABSTRACT </strong></p><p><strong>Response of ramie to the dose and application of micro element and dolomite in peat soil Central Kalimantan</strong></p><p>The experiment was conducted at the glass house of Ihe Research Institute For Tobacco and Fiber Crops, Karangploso, Malang from September 1998 to August 1999. The purpose of this expeiment was to ind out the dose of micro element, dolomite and time of application of fertilizer on the growth and iber yield of ramie in peat soil of Berengbengkel, Central Kalimantan Province. The treatment was arranged factoially in a completely randomized design with three replications. The irst factor was ive kind of fetilizers d|. : 30 g dolomite per pot ; di. 50 mg CuS04 + 50 mg ZnS04 + 50 mg MnS04 * 30 g dolomite per pot; dj. : 100 mg CuSO&lt; + 100 mg ZnSO. * 100 mg MnS04 * 30 g dolomite per pot ; &lt;U 50 mg CuS04 + 50 mg ZnS041 50 mg MnS04 + 15 g dolomite per pot; and d5 MOO mg CuS04 ♦ 100 mg ZnS04 * 100 mg MnS04 + 1J g dolomite per pot. The second factor was time of fetilizer application Wj : every harvesting ; w2 : every two times of harvesting , and wj : every three times of harvesting. The rhizome of ramie wilh 8 cm length size was used in this experiment. Black plastic pots were illed with 20 kg peat soil. These pots were the experiment unil. The peat soil, dolomite and farm manure were mixed evenly. The pots were arranged in a space 75 cm x 40 cm Basic fetilizer was 1.5 g urea * 1.0 g ZA + 1.0 g SP-36 • 1.0 g KCI) potliarvcsling ♦ 100 g farm manure pot/year. Dolomite and farm manure were applied at earl) planting. The result showed that the highest tolal fiber yield of harvest II, III and IV 8 62 g/pot was achieved by applying 100 mg CuSO&lt; + 100 mg ZnS04 + 100 mg MnSO*/ pot/harvesting and 30 g dolomite/pot/year.</p><p>Key words : Ramie, Boehmeria nivea, peat soil, dolomite</p>


2012 ◽  
Vol 11 (7) ◽  
pp. 1199-1206 ◽  
Author(s):  
Li-jun LIU ◽  
He-quan CHEN ◽  
Xiao-bing DAI ◽  
Hui WANG ◽  
Ding-xiang PENG

Author(s):  
Sanket Rathi ◽  
Sameer Upadhyay ◽  
P. K. Singh ◽  
Rajesh Kumar ◽  
Pallavi . ◽  
...  

Aim: Identification of polymorphic markers is prerequisite for conducting any QTL mapping experiment because if the parents are polymorphic for the traits of interest, then further selection of plants in the progenies becomes easy. Hence, the objective of the present study was to identify polymorphic markers for grain quality and yield traits among the parental lines Improved Samba Mahsuri and Badshabhog. Place and Duration of Study: It was carried out at Molecular Breeding Lab, Department of Genetics and Plant Breeding, Institute of Agricultural Sciences, Banaras Hindu University, Varanasi - 221 005, India, during 2019. Methodology: Two parents Improved Samba Mahsuri and Badshabhog were used for the present study. The DNA extraction was done as per the CTAB method suggested by Murray and Thompson. Standard PCR protocol was followed. Results: For parental polymorphism survey, a total of 576 randomly selected SSR markers including 26 gene specific markers related to aroma, cooking and eating quality, grain dimension and yield related traits distributed across the 12 chromosomes of rice were used. Overall, 96 markers including 4 gene specific markers were found to be polymorphic between the two genotypes indicating a total polymorphism percentage of 16.67%. The highest polymorphism percentage was recorded on chromosome 6 (26.67%) followed by chromosome 4 (21.43%) and the lowest polymorphism percentage was observed on chromosome 10 (8.93%). The gene specific markers nksbad2, ARO7, BADEX7_5 and SSI were found to be polymorphic. Conclusion: Based on the present study it may be concluded that the polymorphic markers identified will further be utilized in genotyping of F2:3 population, linkage analysis and mapping QTL’s for grain quality and yield traits.


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