论文标题

基于农业基质基质的多组学结构分析,对用嗜热堆肥施肥的土壤中的胡萝卜

Agricultural quality matrix-based multiomics structural analysis of carrots in soils fertilized with thermophile-fermented compost

论文作者

Miyamoto, Hirokuni, Shigeta, Katsumi, Suda, Wataru, Ichihashi, Yasunori, Nihei, Naoto, Matsuura, Makiko, Tsuboi, Arisa, Tominaga, Naoki, Aono, Masahiko, Sato, Muneo, Taguchi, Shunya, Nakaguma, Teruno, Tsuji, Naoko, Ishii, Chitose, Matsushita, Teruo, Shindo, Chie, Ito, Toshiaki, Kato, Tamotsu, Ohno, Hiroshi, Kurotani, Atsushi, Shima, Hideaki, Moriya, Shigeharu, Horiuchi, Sankichi, Satoh, Takashi, Mori, Kenichi, Nishiuchi, Takumi, Miyamoto, Hisashi, Hattori, Masahira, Kodama, Hiroaki, Kikuchi, Jun, Hirai, Yumi

论文摘要

堆肥被全世界用作农作物的土壤调节剂,但仍探讨了其功能。在这里,在用嗜热芽孢杆菌发酵的堆肥(堆肥)中,研究了胡萝卜作为根植物植物模型的杂音。暴露于堆肥会显着提高生产率,抗氧化活性,红色和胡萝卜根的味道,并随叶,根和土壤的特征代谢物水平改变了土壤细菌成分。根据数据,结构方程建模(SEM)估计植物中的L-2-氨基磷酸,苯丙氨酸,类黄酮和 /或类胡萝卜素通过暴露与堆肥的暴露最佳地联系在一起。土壤的SEM估计,在暴露期间,Paenibacillus属,L-2-氨基二磷酸和烟酰胺以及S-甲基L-半胱氨酸最佳参与。这些估计值并未显示堆肥衍生的Paenibacillus分离株的整个基因组分析与生物活性数据之间的矛盾,从而推断出植物生长促进作用的复杂级联和通过堆肥本身对氮循环的调节。这些观察结果提供了有关复杂土壤植物相互作用中堆肥定性指标的信息,并通过有效利用天然氮为化学独立的可持续农业提供了新的观点。

Compost is used worldwide as a soil conditioner for crops, but its functions have still been explored. Here, the omics profiles of carrots were investigated, as a root vegetable plant model, in a field amended with compost fermented with thermophilic Bacillaceae for growth and quality indices. Exposure to compost significantly increased the productivity, antioxidant activity, red color, and taste of the carrot root and altered the soil bacterial composition with the levels of characteristic metabolites of the leaf, root, and soil. Based on the data, structural equation modeling (SEM) estimated that L-2-aminoadipate, phenylalanine, flavonoids and / or carotenoids in plants were optimally linked by exposure to compost. The SEM of the soil estimated that the genus Paenibacillus, L-2-aminoadipate and nicotinamide, and S-methyl L-cysteine were optimally involved during exposure. These estimates did not show a contradiction between the whole genomic analysis of compost-derived Paenibacillus isolates and the bioactivity data, inferring the presence of a complex cascade of plant growth-promoting effects and modulation of the nitrogen cycle by compost itself. These observations have provided information on the qualitative indicators of compost in complex soil-plant interactions and offer a new perspective for chemically independent sustainable agriculture through the efficient use of natural nitrogen.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源