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2篇 您的检索式:作者名="Haile Tewolde"
    题名 作者 年代 出处 被引量
1Nitrogen uptake and transfer in broad bean and garlic strip intercropping systems显示文摘Utilization and transfer of nitrogen(N)in a strip intercropping system of garlic(Allium sativum L.)and broad bean(Vicia faba L.)have been investigated rarely.The objectives of this study were to quantify N uptake and utilization by intercropped broad bean and garlic and determine the magnitude of N transfer from broad bean to garlic.Field and pot trials were carried out in the Erhai Lake Basin in China using ^(15)N tracer applied to the soil or injected into broad bean plants.Strip intercropping of garlic and broad bean increased N absorption(47.2%)compared with sole crop broad bean(31.9%)or sole crop garlic(40.7%)and reduced soil residual N.Nearly 15%of ^(15)N injected into petioles of broad bean intercropped with garlic was recovered in garlic at harvest,suggesting that N could be transferred from broad bean to strip intercropped garlic.The findings provide a basis for evaluating legumes’role in optimizing N fertilization when intercropped with non-legumes.TANG Qiu-xiang Haile Tewolde LIU Hong-bin REN Tian-zhi JIANG Ping-an ZHAI Li-mei LEI Bao-kun LIN Tao LIU En-ke 2018Journal of Integrative Agriculture2018,17,1:5
2Fourier transform infrared spectral features of plant biomass components during cotton organ development and their biological implications显示文摘Background:The majority of attenuated total reflection Fourier transform infrared(ATR FT-IR)investigations of cotton are focused on the fiber tissue for biological mechanisms and understanding of fiber development and maturity,but rarely on other cotton biomass comp on ents.This work examined in detail the ATR FT-IR spectral features of various cott on tissues/organs at reproductive and maturation stages,an a lyzed and discussed their biological implications.Results:The ATR FT-IR spectra of these tissues/organs were an a lyzed and compared with the focus on the lower wavenumber fingerprinting range.Six outstanding FT-IR bands at 1730,1620,1525,1235,1050 and 895 cm^(-1) represented the major C=O stretching,protein Amide I,Amide II,the O-H/N-H deformation,the total C-O-C stretching and the β-glycosidic linkage in celluloses,respectively,and impacted differently between these organs with the two growth stages.Furthermore,the band intensity at 1620,1525,1235,and 1050 cm^(-1) were exclusively and significantly correlated to the levels of protein(Amide I bond),protein(Amide II bond),cellulose,and hemicellulose,respectively,whereas the band at 1730 cm^(-1) was negatively correlated with ash content.Conclusions:The resulting observations indicated the capability of ATR FT-IR spectroscopy for monitoring changes,transportation,and accumulation of the major chemical components in these tissues over the cotton growth period.In other words,this spectral technology could be an effective tool for physiological,biochemical,and morphological research related to cotton biology and development.HE Zhongqi LIU Yongliang KIM Hee Jin TEWOLDE Haile ZHANG Hailin 2022Journal of Cotton Research2022,5,2:0
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