首页> 外文会议>Proceedings of the 12th International Rapeseed Congress: Sustainable Development in Cruciferous Oilseed Crops Production >Composition of glucosinolates in biomass of brassica genus and their role in crop system
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Composition of glucosinolates in biomass of brassica genus and their role in crop system

机译:芸苔属生物质中芥子油苷的组成及其在作物系统中的作用

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Glucosinolates are discussed besides their anti - nutrition effect, also as compounds which create natural defend and with its chemical composition they are ranked among natural pesticides and natural biofumigators. The principle of these effects is passive protection created by the two - component system, glucosinolates - myrosinase. The two - component system of glucosinolate -myrosinase is activated only due to an attack diseases, insects and in the case biofumigators is soil after ploughing in their biomass as green fertilizing or after ploughing in after harvest the left overs of rape. In accordance was observed content and composition of glucosinolates during growth. The most resistance against diseases and insects has white mustard (Sinapis alba) and radish (Raphanus sativus), which differ from Rape, Turnip rape and Brassica juncea, where prevail aliphatic decomposition products.White mustard contains aromatic sinalbin and radish has 4 - ethylsulfinylbutyl glucosinolat- glucoraphanin. Biofumigative effect of Brassica preceding crops lies on the content and composition of Brassica roots glucosinolates considering that during growth the content of glucosinolates decreases and transported in the generative organs and go over from pods into seeds.Brassica crops (Brassica napus var. napus biennis and napus annua, Brassica campestris, Brassica juncea var.biennis, Sinapis alba, Raphanus sativus var. oleiferus) are more suitable preceding crops for the consequently grown winter wheat than the wheat itself. Winter wheat grown after Brassica preceding crops had less leaves on the main stem invaded by leafspots,with minor intensity and substantially less number of Septoria leaf blotch on the flag leaf and it also gave higher yields with higher TSW. These Brassica preceding crops positive results are not only caused their natural biofumigators, but also their large capability to improve physical quality of soil and her microbial activity.
机译:讨论了芥子油苷除具有抗营养作用外,还可以产生天然防御作用,并以其化学成分被列为天然农药和天然生物熏蒸剂。这些作用的原理是由芥子油苷两组分系统(芥子油苷)创造的被动保护作用。芥子油苷-黑芥子酶的两组分系统仅由于侵袭性疾病,昆虫而被激活,并且在生物熏蒸剂将其生物质耕作为绿色肥料后或在收获剩余油菜后进行耕种的情况下,该生物熏蒸剂为土壤。根据观察,在生长过程中芥子油苷的含量和组成。对疾病和昆虫的抵抗力最高的是白芥子(Sinapis alba)和萝卜(Raphanus sativus),与油菜,萝卜芜菁和芥菜油菜不同,后者主要是脂族分解产物。白芥菜含有芳香芥兰和萝卜具有4-乙基亚磺酰基丁基葡萄糖苷-葡糖苷。考虑到在生长过程中芥子油苷的含量减少并在生殖器官中运输并从豆荚转移到种子,甘蓝型早先作物的生物熏蒸作用取决于芸苔根中芥子油苷的含量和组成。芸苔属作物(甘蓝型油菜(Brassica napus var。napus biennis和napus)因此,冬小麦,芸苔属油菜,芥菜油菜,双胞胎菜,白芥子油菜,油菜Raphanus sativus var.oleiferus)比小麦本身更适合作为最终种植的冬小麦的先行作物。早先的芸苔属作物生长后的冬小麦叶片受到叶斑侵害,主茎上的叶片较少,强度较小,旗叶上的Septoria叶片斑点数量较少,TSW较高时单产也较高。这些甘蓝型油菜先前的作物取得积极成果,不仅是其天然的生物熏蒸剂,而且还具有改善土壤物理质量及其微生物活性的强大能力。

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