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Zhiwei Wang Chenyang Hao Jing Zhao Chang Li Chengzhi Jiao Wei Xi Jian Hou Tian Li Hongxia Liu Xueyong Zhang 《作物学报(英文版)》2021,(1):29-41
Common wheat(Triticum aestiuum L.)is one of the most important crops because it provides about 20%of the total calories for humans.T.aestiuum is an excellent modern species for studying concerted evolution of sub-genomes in polyploid species,because of its large chromosome size and three well-known genome donors.Establishment of common wheat genome reference sequence and development of high-density SNP chips provide an excellent foundation to answer questions of wheat evolution and breeding at the genomic level.By genotyping more than 600 accessions of common wheat and their diploid and tetraploid ancestors using a Wheat660 K SNP array,we found dramatic genome changes due to tetraploidization and hexaploidization,in contrast to weaker influences of domestication and breeding on them.Further,since common wheat was introduced in China in 1500 BCE,Chinese landraces formed two subgroups(T.aestiuum-L1 and T.aestiuum-L2)with considerably diverse geographic distributions and agronomic traits.T.aestiuum-L2,mainly distributed in central and east China is found to have more but smaller oval grains with early maturity characteristics.We found that variation and selection in intergenic regions of the A and B sub-genomes dominated this differentiation,in which chromosomes 7 A and 3 B took the leading roles due to the existence of putative genes related to defense responses and environmental adaption in the highly differentiated regions.Large haplotype blocks were detected on 3 B(232.6-398.3 Mb)and 7 A(211.7-272.9 Mb)in the landraces,forming two distinct haplotypes,respectively.We discovered that artificial crosses in breeding promoted recombination in the whole genome,however,this recombination and differentiation was highly asymmetric among the three sub-genomes in homoeologous regions.In addition,we found that the wide use of European and northern American cultivars in breeding at early era,led dramatic changes in Chinese wheat genome,whereas,the recent breeding functioned to optimize it.This study will provide the insight for reconsideration of wheat evolution and breeding,and a new strategy for parent selection in breeding. 相似文献
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He Jing-lei Zhou Yan-tong Kong Ling-ze-lai Li Bing Yu Jin-qiu Gong Hao Sun Xue Cui Guo-wen 《东北农业大学学报(英文版)》2021,28(2):69-76
In order to reveal the effects of different altitudes on the nutritional quality of wild forage in Qinghai-Tibet Plateau,this study used Elymus nutans as the tested plants to evaluate the changes of nutrient contents and the correlation between the nutrient contents and altitudes.Four sampling sites were set up at altitudes of 2 562,2 660,2 775 and 2 905 m with the vertical distance among each sampling point was about 100 m.The results showed that the crude protein,ash and phosphorus contents of Elymus nutans decreased significantly with an increase in altitudes.The crude protein contents decreased by 1.87 % with each 100 m increase in altitudes.The variation rule of crude protein contents with altitudes in the simulated curve was "y=–0.0187x+63.244 (R~2=0.9557)".The crude ash contents decreased by 1.77% with each 100 m increase in altitudes.The variation rule of crude ash contents with altitudes in the simulated curve was "y=–0.0177x+56.144 (R~2=0.978)".Neutral detergent fiber (NDF) and acid detergent fiber (ADF) showed an overall increasing trend with the increase of altitudes,but the most obvious increase was at 2 775 m.The contents of crude fat and Ca did not change regularly with altitudes. 相似文献
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黑木耳产业对栎木资源的依赖是该产业发展和生态文明建设不相适应的突出表现,因而选取果树替代传统栎木是促进黑木耳产业绿色生态发展的潜在途径。本文选取苹果树木屑、桃树木屑、桔树木屑和核桃树木屑为黑木耳主要栽培基质,通过菌丝生长速度、菌丝密度、菌丝色泽以及锁状联合数目等指标考核最佳果木木屑袋栽基质。结果表明,黑木耳菌丝在桃树木屑袋料基质上生长最好,生长速度(5.62 mm/d)比对照组(5.24 mm/d)提高了7.25%;菌丝生长势较好,边缘整齐、浓密、色泽洁白且锁状联合数目较多;选取78%、82%、86%和90%等4个不同桃树木屑配比,通过不同袋料基质对桃树木屑黑木耳袋栽基质进行优化研究,最佳果木黑木耳袋栽基质配方为:桃树木屑78%、米糠19%、红糖1.5%、石膏粉1%、石灰粉0.5%,此时黑木耳菌丝的生长速度(10.06 mm/d)比对照组的生长速度(5.88 mm/d)提高了71.09%,且锁状联合数目最多。本研究结果表明,桃树可替代栎木进行黑木耳袋料栽培,为黑木耳产业的绿色高质量发展奠定基础。 相似文献
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二氯吡啶酸在油菜及土壤中的残留动态研究 总被引:1,自引:0,他引:1
采用高效液相色谱仪测定除草剂二氯吡啶酸在油菜及土壤中的残留消解动态和最终残留量。结果表明:在油菜和土壤上喷施质量分数75%的二氯吡啶酸可溶性粒剂(有效成分338 g/hm2),测出油菜和土壤中的原始沉积量分别为5.63~6.75 mg/kg和0.47~0.48 mg/kg,半衰期为8.49~10.11 d和3.76~4.74 d。对油菜施药1次,施药后45 d测得油菜上残留量为0.15~0.17 mg/kg。 相似文献
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