当社グループは 3,000 以上の世界的なカンファレンスシリーズ 米国、ヨーロッパ、世界中で毎年イベントが開催されます。 1,000 のより科学的な学会からの支援を受けたアジア および 700 以上の オープン アクセスを発行ジャーナルには 50,000 人以上の著名人が掲載されており、科学者が編集委員として名高い
。オープンアクセスジャーナルはより多くの読者と引用を獲得
700 ジャーナル と 15,000,000 人の読者 各ジャーナルは 25,000 人以上の読者を獲得
Werkissa Yali, Temesgen Begna
Crop production supplies food for humans, animal fodder and fabric for clothing. Crop production concepts include the production of food crops, fodder crops, fiber crops, sugar, oil seeds and other crops. Improving food security requires a thorough grasp of the dynamics involved in food production. Crop production is a difficult task. It has been proven that increasing crop yields reduces poverty dramatically. Several factors influence yield or the amount of harvested crop product in a given area. These factors are divided into three categories: Technological (agricultural methods, managerial decisions), biological (diseases, insects, pests and weeds) and environmental (diseases, insects, pests and weeds) (climatic condition, soil fertility, topography, water quality, etc). These variables account for yield disparities between regions around the world. The current review will go over each of these three main factors and offer some suggestions for dealing with them. It will also emphasize the relevance of climate smart agriculture in increasing agricultural yields while also facilitating crop production in a safe environment. This aligns with the United Nations' 2030 agenda for sustainable development's second aim of ending hunger, achieving food security, improving nutrition and promoting sustainable agriculture in transforming our planet. Many beneficial characteristics have been included and hybrids generated by breeders and biotechnologists.