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1. Transcriptome analysis reveals effects of red and blue lightemitting diodes (LEDs) on the growth, chlorophyll fluorescence and endogenous plant hormones of potato (Solanum tuberosum L.) plantlets cultured in vitro
CHEN Li-li, WANG Hao-ying, GONG Xiao-chen, ZENG Zhao-hai, XUE Xu-zhang, HU Yue-gao
Journal of Integrative Agriculture    2021, 20 (11): 2914-2931.   DOI: 10.1016/S2095-3119(20)63393-7
摘要131)      PDF    收藏

研究报道红、蓝光源显著影响植物幼苗生长。马铃薯是世界上重要的粮饲兼用作物。马铃薯组培苗培养在马铃薯生产中扮演重要角色。然而,从转录组水平上揭示红、蓝光源对马铃薯组培苗生长的影响研究较少。本研究的目的是借助转录组技术探索单色红光(RR)、单色蓝光(BB)和红蓝组合(RB)光谱处理的马铃薯组培苗的生长和生理反应。与对照RB相比,RR和BB处理的马铃薯组培苗分别被检测到有3150和814个差异表达基因。与对照相比,富集在“光合作用”和“光合天线蛋白”代谢通路上的差异表达基因分别被BB和RR处理所上调和下调表达,这可能与在上述两个处理中分别增加和降低的叶绿素荧光参数Fv/Fm, φPSⅡ,qp和ETR有关。BB处理的马铃薯组培苗呈现出茎秆矮化、叶片较大,而RR处理则表现为茎秆伸长,叶片较小。这些显著的形态改变与马铃薯组培苗叶和茎器官中内源激素GAs,IAA 和CKs含量不同有关。此外,单色红、蓝LEDs光源引起“植物激素信号传导”通路上差异基因相反的表达模式与其激素含量不同有密切关系。本研究在转录组水平上揭示了马铃薯组培苗对红、蓝LEDs光源的不同响应,并从光谱特征方面有助于马铃薯组培苗快繁。


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2. Effects of different LEDs light spectrum on the growth, leaf anatomy, and chloroplast ultrastructure of potato plantlets in vitro and minituber production after transplanting in the greenhouse
CHEN Li-li, ZHANG Kai, GONG Xiao-chen, WANG Hao-ying, GAO You-hui, WANG Xi-quan, ZENG Zhao-hai, HU Yue-gao
Journal of Integrative Agriculture    2020, 19 (1): 108-119.   DOI: 10.1016/S2095-3119(19)62633-X
摘要162)      PDF    收藏
Light spectrum plays an important role in regulating the growth and development of in vitro cultured potato (Solanum tuberosum L.) plantlets.  The status of potato plantlets at the end of in vitro stage influences the minituber production after transplanting.  With 100 μmol m–2 s–1 total photosynthetic photon flux density (PPFD), a light spectrum study of 100% red light emitting diodes (LEDs) light spectrum (RR), 100% blue LEDs light spectrum (BB), 65% red+35% blue LEDs light spectrum (RB), and 45% red+35% blue+20% green LEDs light spectrum (RBG) providing illumination at the in vitro cultured stage of potato plantlets for 4 weeks using fluorescent lamp as control (CK) was performed to investigate the effects of LEDs light spectrum on the growth, leaf anatomy, and chloroplast ultrastructure of potato plantlets in vitro as well as the minituber yield after 2 months transplanting in the greenhouse.  Compared to CK, RB and RBG promoted the growth of potato plantlets in vitro with increased stem diameter, plantlet fresh weight, plantlet dry weight, and health index.  Furthermore, BB induced the greatest stem diameter as well as the highest health index in potato plantlets in vitro.  Root activity, soluble protein, and free amino acid were also significantly enhanced by BB, whereas carbohydrates were improved by RR.  In addition, thickness of leaf, palisade parenchyma and spongy parenchyma was significantly increased by BB and RBG.  Chloroplasts under BB and RBG showed well-developed grana thylakoid and stroma thylakoid.  Unexpectedly, distinct upper epidermis with greatest thickness was induced and palisade parenchyma and spongy parenchyma were arranged neatly in RR.  After transplanting in the greenhouse for 2 months, potato plantlets in vitro from BB, RB, and RBG produced high percentage of large size tuber.  BB improved fresh and dry weights of the biggest tuber but decreased tuber number per plantlet.  In addition, RBG increased tuber number as well as tuber fresh and dry weight slightly.  Our results suggested monochromatic blue LEDs as well as combined red, blue or/and green LEDs light spectrum were superior to fluorescent lamp spectrum in micro-propagation of potato plantlets.  Therefore, the application of RBG was suitable; BB and RB could be used as alternatives.
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3. Estimates on nitrogen uptake in the subsequent wheat by above-ground and root residue and rhizodeposition of using peanut labeled with 15N isotope on the North China Plain
ZHANG Kai, ZHAO Jie, WANG Xi-quan, XU He-shui, ZANG Hua-dong, LIU Jing-na, HU Yue-gao, ZENG Zhao-hai
Journal of Integrative Agriculture    2019, 18 (3): 571-579.   DOI: 10.1016/S2095-3119(18)62112-4
摘要262)      PDF(pc) (449KB)(205)    收藏
Leguminous crops play a vital role in enhancing crop yield and improving soil fertility.  Therefore, it can be used as an organic N source for improving soil fertility.  The purpose of this study was to (i) quantify the amounts of N derived from rhizodeposition, root and above-ground biomass of peanut residue in comparison with wheat and (ii) estimate the effect of the residual N on the wheat-growing season in the subsequent year.  The plants of peanut and wheat were stem fed with 15N urea using the cotton-wick method at the Wuqiao Station of China Agricultural University in 2014.  The experiment consisted of four residue-returning strategies in a randomized complete-block design: (i) no return of crop residue (CR0); (ii) return of above-ground biomass of peanut crop (CR1); (iii) return of peanut root biomass (CR2); and (iv) return of all residue of the whole peanut plant (CR3).  The 31.5 and 21% of the labeled 15N isotope were accumulated in the above-ground tissues (leaves and stems) of peanuts and wheat, respectively.  N rhizodeposition of peanuts and wheat accounted for 14.91 and 3.61% of the BG15N, respectively.  The 15N from the below-ground 15N -labeled of peanuts were supplied 11.3, 5.9, 13.5, and 6.1% of in the CR0, CR1, CR2, and CR3 treatments, respectively.  Peanut straw contributes a significant proportion of N to the soil through the decomposition of plant residues and N rhizodeposition.  With the current production level on the NCP, it is estimated that peanut straw can potentially replace 104 500 tons of synthetic N fertilizer per year.  The inclusion of peanut in rotation with cereal can significantly reduce the use of N fertilizer and enhance the system sustainability.

 
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4. Winter cover crops alter methanotrophs community structure in a double-rice paddy soil
LIU Jing-na, ZHU Bo, YI Li-xia, DAI Hong-cui, XU He-shui, ZHANG Kai, HU Yue-gao, ZENG Zhao-hai
Journal of Integrative Agriculture    2016, 15 (3): 553-565.   DOI: 10.1016/S2095-3119(15)61206-0
摘要2200)      PDF    收藏
Methanotrophs play a vital role in the mitigation of methane emission from soils. However, the influences of cover crops incorporation on paddy soil methanotrophic community structure have not been fully understood. In this study, the impacts of two winter cover crops (Chinese milk vetch (Astragalus sinicus L.) and ryegrass (Lolium multiflorum Lam.), representing leguminous and non-leguminous cover crops, respectively) on community structure and abundance of methanotrophs were evaluated by using PCR-DGGE (polymerase chain reaction-denaturing gradient gel electrophoresis) and real-time PCR technology in a double-rice cropping system from South China. Four treatments were established in a completely randomized block design: 1) double-rice cropping without nitrogen fertilizer application, CK; 2) double-rice cropping with chemical nitrogen fertilizer application (200 kg ha–1 urea for entire double-rice season), CF; 3) Chinese milk vetch cropping followed by double-rice cultivation with Chinese milk vetch incorporation, MV; 4) ryegrass cropping followed by double-rice cultivation with ryegrass incorporation, RG. Results showed that cultivating Chinese milk vetch and ryegrass in fallow season decreased soil bulk density and increased rice yield in different extents by comparison with CK. Additionally, methanotrophic bacterial abundance and community structure changed significantly with rice growth. Methanotrophic bacterial pmoA gene copies in four treatments were higher during late-rice season (3.18×107 to 10.28×107 copies g–1 dry soil) by comparison with early-rice season (2.1×107 to 9.62×107 copies g–1 dry soil). Type I methanotrophs absolutely predominated during early-rice season. However, the advantage of type I methanotrophs kept narrowing during entire double-rice season and both types I and II methanotrophs dominated at later stage of late-rice.
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5. Non-leguminous winter cover crop and nitrogen rate in relation to double rice grain yield and nitrogen uptake in Dongting Lake Plain, Hunan Province, China
ZHU Bo, YI Li-xia, XU He-shui, GUO Li-mei, HU Yue-gao, ZENG Zhao-hai, CHEN Fu, LIU Zhang-yong
Journal of Integrative Agriculture    2016, 15 (11): 2507-2514.   DOI: 10.1016/S2095-3119(16)61331-X
摘要1264)      PDF    收藏
      Annual ryegrass (Lolium multiflorum Lam.), a non-leguminous winter cover crop, has been adopted to absorb soil native N to minimize N loss from an intensive double rice cropping system in southern China, but a little is known about its effects on rice grain yield and rice N use efficiency. In this study, effects of ryegrass on double rice yield, N uptake and use efficiency were measured under different fertilizer N rates. A 3-year (2009–2011) field experiment arranged in a split-plot design was undertaken. Main plots were ryegrass (RG) as a winter cover crop and winter fallow (WF) without weed. Subplots were three N treatments for each rice season: 0 (N0), 100 (N100) and 200 kg N ha–1 (N200). In the 3-year experiment, RG reduced grain yield and plant N uptake for early rice (0.4–1.7 t ha–1 for grain yield and 4.6–20.3 kg ha–1 for N uptake) and double rice (0.6–2.0 t ha–1 for grain yield and 6.3–27.0 kg ha–1 for N uptake) when compared with WF among different N rates. Yield and N uptake decrease due to RG was smaller in N100 and N200 plots than in N0 plots. The reduction in early rice grain yield in RG plots was associated with decrease number of panicles. Agronomic N use efficiency and fertilizer N recovery efficiency were higher in RG plots than winter fallow for early rice and double rice among different N rates and experimental years. RG tended to have little effect on grain yield, N uptake, agronomic N use efficiency, and fertilizer N recovery efficiency in the late rice season. These results suggest that ryegrass may reduce grain yield while it improves rice N use efficiency in a double rice cropping system.
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6. Effects of Chinese Milk Vetch (Astragalus sinicus L.) Residue Incorporation on CH4 and N2O Emission from a Double-Rice Paddy Soil
ZHU Bo, YI Li-xia, HU Yue-gao, ZENG Zhao-hai, TANG Hai-ming, YANG Guang-li, XIAO Xiao-ping
Journal of Integrative Agriculture    2012, 12 (9): 1537-1544.   DOI: 10.1016/S1671-2927(00)8686
摘要2034)      PDF    收藏
Methane (CH4) and nitrous oxide (N2O) emissions from paddy soils have seldom been estimated when leguminous green manure is applied as a nitrogen source. In this paper, gas fluxes were measured by using a pot sampling device combined with a static chamber method to estimate the effects of Chinese milk vetch (Astragalus sinicus L., CMV) on CH4 and N2O emissions and their integrated global warming potentials (GWP) in a double-rice cropping system. Four treatments (no nitrogen fertilizer, NF; urea as chemical fertilizer, CF; CMV incorporation, MV; 50% CMV incorporation and 50% urea, MVCF) were established. CH4 flux peaked on the 15th d after treatment application. Total season CH4 emission was increased by MV and MVCF by 370 and 209%, 152 and 66%, when compared with NF and CF, respectively. Most of the increased CH4 was emitted in the first two months after incorporation of CMV. N2O emission from CF was 17- and 5.6-fold higher than that from MV and MVCF, respectively. Application of CMV restricted N2O emission caused by the application of urea. Improved CMV residue management was needed to minify CH4 emission induced by the input of organic material. Despite the highest GWP being found in MV, we recommend CMV, when applied as an N source in paddy fields, as a potential mitigation tool for greenhouse gas emissions.
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