scholarly journals Investigation on Wild Germplasm Resources of Machilus and Phoebe in Jiugongshan National Nature Reserve, Hubei Provience, China

Author(s):  
Ming Tu ◽  
Xiaori Tu ◽  
Jie Tu ◽  
Chengshi Huang ◽  
Qingjia Mao ◽  
...  
2020 ◽  
Vol 19 (1) ◽  
pp. 93
Author(s):  
Peng Xu ◽  
Hao Chen ◽  
Duoying Cui ◽  
Chunrong Li ◽  
Guoyuan Chen ◽  
...  

2014 ◽  
Vol 22 (6) ◽  
pp. 785 ◽  
Author(s):  
Wang Guohai ◽  
Shi Zepan ◽  
Liu Xiuju ◽  
Zhou Qihai ◽  
Xiao Zhishu

Agronomy ◽  
2021 ◽  
Vol 11 (4) ◽  
pp. 614
Author(s):  
Diego Cabezas ◽  
Ivone de Bem Oliveira ◽  
Mia Acker ◽  
Paul Lyrene ◽  
Patricio R. Munoz

Wild germplasm can be classified as the raw material essential for crop improvement. Introgression of wild germplasm is normally used in breeding to increase crop quality or resilience to evolving biotic and abiotic threats. Here, we explore the potential of introgressing Vaccinium elliottii into commercial blueberry germplasm. Vaccinium elliottii is a wild diploid blueberry species endemic to the southeastern United States that possesses highly desirable and economically important traits for blueberry breeding such as: short bloom to ripe period, adaptation to upland sandy soils, disease resistance, firmness, and pleasant flavor. To examine the potential of hybridization, we evaluated populations of interspecific hybrids across multiple stages of breeding (i.e., F1, F2, and backcrosses) in two crop seasons. We used our extensive pedigree data to generate breeding values for pre-breeding blueberry hybrid populations. Hybrid performance was evaluated considering fitness (i.e., plant vigor and plant height) in addition to evaluating six fruit-quality and marketable-related traits (i.e., size, firmness, acidity, soluble solids, weight, and yield). Overall, F2 and backcrosses rapidly achieved market thresholds, presenting values not significantly different from commercial blueberry germplasm. Our results confirmed the potential of exploiting the high genetic variability contained in V. elliottii for interspecific hybridization. Additionally, we developed germplasm resources that can be further evaluated and utilized in the breeding process, advancing selections for fruit quality and environmental adaptation.


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